TLE6251-2G. Data Sheet. Automotive Power. High Speed CAN-Transceiver with Wake and Failure Detection. Rev. 1.1,

Size: px
Start display at page:

Download "TLE6251-2G. Data Sheet. Automotive Power. High Speed CAN-Transceiver with Wake and Failure Detection. Rev. 1.1, 2011-06-06"

Transcription

1 High Speed CAN-Transceiver wih Wake and Failure Deecion Daa Shee Rev. 1.1, Auomoive Power

2 Table of Conens 1 Overview Block Diagram Pin Configuraion Pin Assignmen Pin Definiions and Funcions Funcional Descripion High Speed CAN Physical Layer Operaion Modes Normal Operaion Mode Receive-Only Mode Sand - By Mode Go-To-Sleep Command Sleep Mode Ener Sleep Mode Wake-Up Funcions Remoe Wake-Up Local Wake-Up Mode Change via he EN and NSTB pin Fail Safe Feaures CAN Bus Failure Deecion Local Failures TxD Time-Ou Feaure TxD o RxD Shor Circui Feaure RxD Permanen Recessive Clamping Bus Dominan Clamping Over-Temperaure Deecion Under-Volage Deecion Under-Volage even on V CC and V IO Under-Volage Even on V S Volage Adapaion Spli Circui Diagnosis-Flags a NERR and RxD General Produc Characerisics Absolue Maximum Raings Funcional Range Thermal Resisance Elecrical Characerisics Funcional Device Characerisics Diagrams Applicaion Informaion Applicaion Example ESD Robusness according o IEC Volage Drop over he INH Oupu Mode Change o Sleep mode Furher Applicaion Informaion Package Oulines Revision Hisory Daa Shee 2 Rev. 1.1,

3 High Speed CAN-Transceiver wih Wake and Failure Deecion TLE6251-2G 1 Overview Feaures HS CAN Transceiver wih daa ransmission raes up o 1 MBaud Complian o ISO Very low power consumpion in Sleep Mode Bus Wake-Up and local Wake-Up Inhibi oupu o conrol exernal circuiry Spli erminaion o sabilize he Recessive level Separae V IO inpu o adap differen micro conroller supply volages Separae oupu for failure diagnosis Opimized for low elecromagneic emission (EME) Opimized for a high immuniy agains elecromagneic inerference (EMI) Very high ESD robusness, ± 9 kv according o IEC Proeced agains auomoive ransiens Receive-Only mode for node failure analysis TxD ime-ou funcion and RxD recessive clamping wih failure indicaion TxD o RxD shor circui recogniion wih failure indicaion CANH and CANL shor circui recogniion wih failure indicaion Bus dominan clamping diagnosis Under-volage deecion a V CC, V IO and V S Power-Up and Wake-Up source recogniion Shor circui proof and Over-Temperaure proecion Green Produc (RoHS complian) AEC Qualified PG-DSO-14 Descripion As a successor of he TLE6251G, he TLE6251-2G is designed o provide an excellen passive behavior in Power Down. This feaure makes he TLE6251-2G exremely suiable for mixed power supply HS-CAN neworks. The TLE6251-2G provides differen operaion modes wih a very low quiescen curren in Sleep mode. Based on he high symmery of he CANH and CANL signals, he TLE6251-2G provides a very low level of elecromagneic emission (EME) wihin a broad frequency range. The TLE6251-2G is inegraed in a RoHS complian PG-DSO-14 package and fulfills or exceeds he requiremens of he ISO The TLE6251G and he TLE6251-2G are fully pin compaible and funcion compaible. Based on he Infineon Smar Power Technology SPT, he TLE6251-2G provides indusry leading ESD robusness ogeher wih a very high elecromagneic immuniy (EMI). The Infineon Smar Power Technology SPT allows bipolar and CMOS conrol circuiry in accordance wih DMOS power devices o exis on he same monolihic circui. The TLE6251-2G and he Infineon SPT echnology are AEC qualified and ailored o wihsand he harsh condiions of he auomoive environmen. Type Package Marking TLE6251-2G PG-DSO-14 TLE6251-2G Daa Shee 3 Rev. 1.1,

4 Block Diagram 2 Block Diagram V S SPLIT 11 V CC 10 7 INH V CC CANH CANL Oupu Sage Driver Temp.- Proecion Mode Conrol Logic + imeou 6 14 EN NSTB 5 V IO V CC /2 Diagnosis & Failure Logic 1 TxD Normal Receiver Wake-Up Deecion V IO Low Power Receiver RxD Oupu Conrol 8 NERR V S V IO WK 9 Wake-Up Comparaor 4 RxD 2 GND Figure 1 Block Diagram Daa Shee 4 Rev. 1.1,

5 Pin Configuraion 3 Pin Configuraion 3.1 Pin Assignmen TxD 1 14 NSTB GND 2 13 CANH V CC 3 12 CANL RxD 4 11 SPLIT V IO 5 10 V S EN 6 9 WK INH 7 8 NERR Figure 2 Pin Configuraion 3.2 Pin Definiions and Funcions 9 Table 1 Pin Definiions and Funcions Pin Symbol Funcion 1 TxD Transmi Daa Inpu; inegraed pull-up resisor o V IO, Low for Dominan sae. 2 GND Ground 3 V CC Transceiver Supply Volage; 100 nf decoupling capacior o GND recommend. 4 RxD Receive Daa Oupu; Low in Dominan sae. Oupu volage level dependen on he V IO supply 5 V IO Logic Supply Volage; Digial Supply Volage for he logic pins TxD, RxD, EN, NERR and NSTB; Usually conneced o he supply volage of he exernal microconroller; 100 nf decoupling capacior o GND recommend. 6 EN Mode Conrol Inpu; Inegraed pull-down resisor; High for Normal Operaion mode. Daa Shee 5 Rev. 1.1,

6 Pin Configuraion Table 1 Pin Definiions and Funcions Pin Symbol Funcion 7 INH Inhibi Oupu; Open drain oupu o conrol exernal circuiry; High impedance in Sleep mode 8 NERR Error Flag Oupu; Failure and Wake-Up indicaion oupu, acive Low Oupu volage level depends on he V IO supply 9 WK Wake-Up Inpu; Local Wake-Up inpu; Wake-Up inpu sensiive o a level change in boh direcions, High o Low and vice versa. 10 V S Baery Volage Supply; 100 nf decoupling capacior o GND recommend. 11 SPLIT Spli Terminaion Oupu; Sabilizaion oupu o suppor he Recessive volage level of he CAN bus lines. 12 CANL CAN Bus Low Level I/O; Low in Dominan sae 13 CANH CAN Bus High Level I/O; High in Dominan sae 14 NSTB Sand-By Conrol inpu; Inegraed pull-down resisor; High for Normal Operaion mode. Daa Shee 6 Rev. 1.1,

7 Funcional Descripion 4 Funcional Descripion CAN is a serial bus sysem ha connecs microconrollers, sensor and acuaors for real-ime conrol applicaions. The usage of he Conrol Area Nework (abbreviaed CAN) wihin road vehicles is described by he inernaional sandard ISO According o he 7 layer OSI reference model he physical layer of a CAN bus sysem specifies he daa ransmission from one CAN node o all oher available CAN nodes inside he nework. The physical layer specificaion of a CAN bus sysem includes all elecrical and mechanical specificaions of a CAN nework. The CAN ransceiver is par of he physical layer specificaion. Several differen physical layer sandards of CAN neworks have been developed over he las years. The TLE6251-2G is a High Speed CAN ransceiver wih dedicaed Wake-Up funcions. High Speed CAN Transceivers wih Wake-Up funcions are defined by he inernaional sandard ISO High Speed CAN Physical Layer TxD V IO CAN_H CAN_L V CC V IO = Logic Supply V CC = Transceiver Supply TxD = Inpu from he Microconroller RxD = Oupu o he Microconroller CANH = Volage on CANH Inpu/Oupu CANL = Volage on CANL Inpu/Oupu V DIFF = Differenial Volage V DIFF = V CANH V CANL V DIFF Dominan V DIFF = ISO Level Dominan Recessive V DIFF = ISO Level Recessive RxD V IO Figure 3 High Speed CAN Bus Signals and Logic Signals Daa Shee 7 Rev. 1.1,

8 Funcional Descripion The TLE6251-2G is a High Speed CAN ransceiver, operaing as an inerface beween he CAN conroller and he physical bus medium. A High Speed CAN nework (abbreviaed HS CAN) is a wo wire differenial nework which allows daa ransmission raes up o 1 MBaud. Characerisic for a HS CAN nework are he wo CAN bus saes Dominan and Recessive (see Figure 3). A HS CAN nework is a Carrier Sense Muliple Access nework wih Collision Deecion. This means, every paricipan of he CAN nework is allowed o place is message on he same bus media simulaneously. This can cause daa collisions on he bus, which migh corrup he informaion conen of he daa sream. In order avoid he loss of any informaion and o prioriize he messages, i is essenial ha he Dominan bus signal overrules he Recessive bus signal. The inpu TxD and he oupu RxD are conneced o he microconroller of he ECU. As shown in Figure 1, he HS CAN ransceiver TLE6251-2G has a receive uni and a oupu sage, allowing he ransceiver o send daa o he bus medium and monior he daa from he bus medium a he same ime. The HS CAN TLE6251-2G convers he serial daa sream available on he ransmi daa inpu TxD ino a differenial oupu signal on CAN bus. The differenial oupu signal is provided by he pins CANH and CANL. The receiver sage of he TLE6251-2G moniors he daa on he CAN bus and convers hem o a serial daa sream on he RxD pin. A logical Low signal on he TxD pin creaes a Dominan signal on he CAN bus, followed by a logical Low signal on he RxD pin (see Figure 3). The feaure, broadcasing daa o he CAN bus and lisening o he daa raffic on he CAN bus simulaneous is essenial o suppor he bi o bi arbiraion on CAN neworks. The volage levels for a HS CAN on he bus medium are defined by he ISO /-5 sandards. If a daa bi is Dominan or Recessive, his depends on he volage difference beween CANH and CANL: V DIFF = V CANH - V CANL To ransmi a Dominan signal o he CAN bus he differenial signal V DIFF is larger or equal o 1.5 V. To receive a Recessive signal from he CAN bus he differenial signal V DIFF is smaller or equal o 0.5 V. The volage level on he digial inpu TxD and he digial oupu RxD is deermined by he power supply level a he pin V IO. Depending on volage level a he V IO pin, he signal levels on he logic pins (EN, NERR, NSTB, TxD and RxD) are compaible o microconrollers wih 5 V or 3.3 V I/O supply. Usually he V IO power supply of he ransceiver is conneced o same power supply as I/O power supply of he microconroller. Parially supplied CAN neworks are neworks where he paricipans have a differen power supply saus. Some nodes are powered up, oher nodes are no powered, or some oher nodes are in a Low-Power Mode, like Sleep mode for example. Regardless on he supply saus of he HS CAN node, each paricipan which is conneced o he common bus, shall no disurb he communicaion on he bus media. The TLE6251-2G is designed o suppor parially supplied neworks. In Power Down Condiion, he resisors of he Normal Receiver are swiched off and he bus inpu on he pins CANH and CANL is high resisive. Daa Shee 8 Rev. 1.1,

9 Operaion Modes 5 Operaion Modes Five differen operaion modes are available on TLE6251-2G. Each mode wih specific characerisics in erms of quiescen curren, daa ransmission or failure diagnosic. For he mode selecion he digial inpu pins EN and NSTB are used. Boh digial inpu pins are even riggered. Figure 4 illusraes he differen mode changes depending on he saus of he EN and NSTB pins. A mode change via he mode selecions pins EN and NSTB is only possible if he power supplies V CC, V IO and V S are acivaed. Normal Operaion mode EN -> 1 NSTB -> 1 Power Down EN -> 1 NSTB = 1 EN NSTB INH 1 1 On EN -> 0 NSTB = 1 EN = 1 NSTB ->1 EN -> 0 NSTB -> 0 Sar Up Supply V S Supply V CC wihin < UV(VCC) Supply V IO wihin < UV(VIO) Receive Only mode EN = 0 NSTB -> 0 Sand-By mode EN NSTB INH 0 1 On EN = 0 NSTB -> 1 EN NSTB INH 0 0 On V S > V S,Pon EN = 0 NSTB -> 1 V CC & V IO ON EN -> 0 NSTB -> 1 EN -> 1 NSTB -> 0 EN = 1 NSTB -> 0 Go-To-Sleep command EN NSTB INH 1 0 On EN -> 1 NSTB = 0 EN -> 0 < hslp NSTB = 0 Under-volage on V S V S < V S,Poff EN -> 0 > hslp NSTB = 0 hslp Timing imporan for mode selecion EN -> 1 NSTB -> 1 V CC & V IO ON Sleep mode EN NSTB INH 0 0 Off Wake-Up Even Bus-Wake: > BUSdom Local-Wake: > Wake V CC < V CC,UV > UV(VCC) V IO < V IO,UV > UV(VIO) Under-volage on V CC Under-volage on V IO Figure 4 Operaion Modes Daa Shee 9 Rev. 1.1,

10 Operaion Modes In Sleep mode he power supply V CC and he logic power supply V IO are usually urned off. A Wake-Up even, via he CAN bus or he local Wake-Up pin, shifs he device from Sleep mode ino Sand-By mode. The following operaions modes are available on he TLE6251-2G: Normal Operaion mode Receive-Only mode Sand-By mode Sleep mode Go-To-Sleep command Depending on he operaion mode, he oupu sage, he receiver sage, he spli erminaion and he bus biasing are acive or inacive. Table 2 shows he differen operaion modes depending on he logic signal on he pins EN and NSTB wih he relaed saus of he INH pin, he SPLIT pin and he bus biasing. Table 2 Overview Operaion Modes Operaion Mode EN NSTB INH Bus Bias SPLIT Normal Operaion 1 1 V S V CC /2 V CC /2 Receive-Only 0 1 V S V CC /2 V CC /2 Sand-By 0 0 V S GND Floaing Go-To-Sleep 1 0 V S GND Floaing Sleep 0 0 Floaing GND Floaing Power Down 0 0 Floaing Floaing Floaing 5.1 Normal Operaion Mode In Normal Operaion Mode he HS CAN ransceiver TLE6251-2G sends he serial daa sream on he TxD pin o he CAN bus while a he same ime he daa available on he CAN bus is moniored on he RxD oupu pin. In Normal Operaion mode all funcions of he TLE6251-2G are acive: The oupu sage is acive and drives daa from he TxD o he CAN bus. The normal receiver uni is acive and provides he daa from he CAN bus o he RxD pin. The low power receiver and he bus Wake-Up funcion is inacive. The local Wake-Up pin is disabled. The INH pin is conneced o V S. The RxD pin is Low for a Dominan bus signal and High for a Recessive bus signal The SPLIT pin is se o V CC /2. The bus basing is se o V CC /2. The failure deecion is acive and failures are indicaed a he NERR pin. (see Chaper 8). The under-volage deecion on he all 3 power supplies V CC, V IO and V S is acive. The HS CAN ransceiver TLE6251-2G eners Normal Operaion mode by seing he mode selecion pins EN and NSTB o logical High (see Table 2 or Figure 4). 5.2 Receive-Only Mode The Receive-Only Mode can be used o es he connecion of he bus medium. The TLE6251-2G can sill receive daa from he bus, bu he oupu sage is disabled and herefore no daa can be sen o he CAN bus. All oher funcions are acive: The oupu sage is disabled and daa which is available on he TxD pin will be blocked and no communicaed o he CAN bus. The normal receiver uni is acive and provides he daa which is available on he CAN bus o he RxD pin. The INH pin is conneced o V S. The RxD pin is Low for a Dominan bus signal and High for a Recessive bus signal. Daa Shee 10 Rev. 1.1,

11 Operaion Modes The SPLIT pin is se o V CC /2. The bus biasing is se o V CC /2. The low power receiver and he bus Wake-Up funcion is inacive. The local Wake-Up pin WK is disabled. The failure diagnosic is acive and local failures are indicaed a he NERR pin (see Chaper 8). The under-volage deecion on he all 3 power supplies V CC, V IO and V S is acive. The HS CAN ransceiver TLE6251-2G eners Receive-Only mode by seing he EN pin o logical Low and he NSTB o logical High (see Table 2 or Figure 4). 5.3 Sand - By Mode Afer he power-up sequence he TLE6251-2G eners auomaically ino Sand-By mode. Sand-By mode is an idle mode of he TLE6251-2G wih opimized power consumpion. In Sand-By mode he TLE6251-2G can no send or receive any daa. The oupu sage and he normal receiver uni are disabled. Boh CAN bus pins, CANH and CANL are conneced o GND and he Spli erminaion oupu is floaing. The following funcions are available in Sand-By mode: The oupu sage is disabled. The normal receiver uni is disabled. The low power receiver is acive and moniors he CAN bus. In case of a message on he CAN bus he TLE6251-2G ses an inernal Wake-Up flag. If he power supplies V CC and V IO are acive, he Wake-Up even is indicaed by he RxD pin and he NERR pin (see Chaper 8). The local Wake-Up pin is acive and a local Wake-Up even is indicaed by he RxD and NERR pin, if he power supplies V CC and V IO are acive (see Chaper 8). The INH oupu is acive and se o V S. Through he inernal resisors R I (see Figure 1), he pins CANH and CANL are conneced o GND. If he power supplies V CC and V IO are acive, he RxD pin indicaes he Wake-Up evens. The TxD pin is disabled The failure diagnosic is disabled. The under-volage deecion on he all 3 power supplies V CC, V IO and V S is acive. The TLE6251-2G deecs a Power-Up even and indicaes i a he NERR pin (see Chaper 8). There are several ways o ener he Sand-By mode (see Figure 4): Afer he sar-up sequence he device eners per defaul Sand-By mode. Mode changes are only possible if V CC and V IO are presen. The device is in Sleep mode and a Wake-Up even occurs. The device is in he Go-To-Sleep command and he EN pin goes low before he ime < hslp has expired. The device is in Normal Operaion Mode or Receive-Only mode and he EN pin and NSTB pin are se o logical Low. An under-volage even occurs on he power supply V S. In case of an under-volage even, he TLE6251-2G device always changes o Sand-By mode regardless in which mode he device currenly operaes. Daa Shee 11 Rev. 1.1,

12 Operaion Modes 5.4 Go-To-Sleep Command The Go-To-Sleep command is a ransiion mode allowing exernal circuiry like a microconroller o prepare he ECU for he Sleep mode. The TLE6251-2G says in he Go-To-Sleep command for he maximum ime = hslp, afer exceeding he ime hslp he device changes ino Sleep mode. A mode change ino Sleep mode is only possible via he Go-To-Sleep command. During he Go-To-Sleep command he following funcions on he TLE6251-2G are available: The oupu sage is disabled. The normal receiver uni is disabled. The low power receiver is acive and moniors he CAN bus. In case of a message on he CAN bus he TLE6251-2G ses an inernal Wake-Up flag. The local Wake-Up pin is acive and can deec a local Wake-Up even. The INH oupu is acive and se o V S. Through he inernal resisors R I (see Figure 1), he pins CANH and CANL are conneced o GND. The TxD pin is disabled. The failure diagnosic is disabled. The under-volage deecion on all 3 power supplies V CC, V IO and V S is acive. Seing he NSTB pin o logical Low, while he EN signal remains a logical High, acivaes he Go-To-Sleep command. The Go-To-Sleep command can be enered from Normal Operaion mode, Receive-Only mode and from Sand-By mode. 5.5 Sleep Mode The Sleep mode is a power save mode. In Sleep mode he curren consumpion of he TLE6251-2G is reduced o a minimum while he device is sill able o Wake-Up by a message on he CAN bus or a local Wake-Up even on he pin WK. Mos of he funcions of he TLE6251-2G are disabled: The oupu sage is disabled. The normal receiver uni is disabled. The low power receiver is acive and moniors he CAN bus. In case of a message on he CAN bus he TLE6251-2G changes from Sleep mode o Sand-By mode and ses an inernal Wake-Up flag. The local Wake-Up pin is acive and in case of a signal change on he WK pin he operaion mode changes o Sand-By mode. The INH oupu is floaing. Through he inernal resisors R I (see Figure 1), he pins CANH and CANL are conneced o GND. If he power supplies V CC and V IO are presen, he RxD pin indicaes he Wake-Up even. The TxD pin is disabled. The under-volage deecion on he power supply V S is acive and sends he device ino Sand-By mode in case of an under-volage even. There are only wo ways o ener Sleep Mode: The device can acivae he Sleep Mode via he mode conrol pins EN and NSTB. An under-volage even on he power supplies V CC and V IO changes he operaion mode o Sleep mode. Daa Shee 12 Rev. 1.1,

13 Operaion Modes 5.6 Ener Sleep Mode In order o ener he Sand-By mode or he Sleep mode, he EN signal needs o be se o logical Low a defined ime afer he NSTB pin was se o logical Low. Imporan for he mode selecion is he iming beween he falling edge of he NSTB signal and he EN signal. If he logical signal on he EN pin goes low before he ransiion ime < hslp has been reached, he TLE6251-2G eners ino Sand-By mode and he INH pin remains conneced o he V S supply. In he case he logical signal on he EN pin goes low afer he ransiion ime > hslp, he TLE6251-2G eners ino Sleep mode simulaneous wih he expiraion of he ime window hslp and he INH becomes disconneced from he V S supply and is floaing. (see Figure 5). NSTB hslp EN INH Normal Operaion mode < hslp Go-To Sleep command Sand-By mode NSTB hslp EN > hslp INH Normal Operaion mode Go-To Sleep command Sleep mode Figure 5 Enering Sleep Mode or Sand-By Mode The signal on he CAN bus has no impac o mode changes. The operaion mode can be changed regardless if he CAN bus is Dominan or Recessive. Daa Shee 13 Rev. 1.1,

14 Wake-Up Funcions 6 Wake-Up Funcions There are several possibiliies for a mode change from Sleep mode o anoher operaion mode. Remoe Wake-Up via a message on he CAN bus. Local Wake-Up via a signal change on he pin WK. A saus change of he logical signals applied o he mode conrol pins EN and NSTB. An under-volage deecion on he V S power supply. In ypical applicaions he power supplies V CC and V IO are urned off in Sleep mode, meaning a mode change can only be caused by an exernal even, also called Wake-Up. In case he V CC and V IO power supplies are available, a mode change can be simple caused by changing he saus on he mode conrol pins EN and NSTB. 6.1 Remoe Wake-Up A remoe Wake-Up or also called bus Wake-Up occurs via a CAN bus message and changes he operaion mode from Sleep mode o Sand-By mode. A signal change from Recessive o Dominan, followed by a Dominan signal for he ime > Wake iniiaes a bus Wake-Up (see Figure 6). CANH CANL < Wake Recessive o Dominan change = Wake Wake-Up No Wake-Up INH Normal Operaion mode Go-To Sleep command Sleep mode Sand-By mode Figure 6 Remoe Wake-Up In case he ime of he Dominan signal on he CAN bus is shorer han he filering ime Wake, no bus Wake-Up occurs. The filer ime is implemened o proec he HS CAN ransceiver TLE6251-2G agains uninended bus Wake-Up s, riggered by spikes on he CAN bus. The signal change on he CAN bus from Recessive o Dominan is mandaory, a permanen Dominan signal would no acivae any bus Wake-Up. In Sand-By Mode he RxD oupu pin and he NERR oupu pin display he CAN bus Wake-Up even by a logical Low signal (deails see Chaper 8). Once he HS CAN Transceiver TLE6251-2G has recognized he Wake-Up even and has changed o Sand-By mode, he INH oupu pin becomes acive and provides he volage V S o he exernal circuiry. Daa Shee 14 Rev. 1.1,

15 Wake-Up Funcions 6.2 Local Wake-Up The TLE6251-2G can be acivaed from Sleep mode by a signal change on he WK pin, also called local Wake- Up. Designed o wihsand volages up o 40V he WK pin can be direcly conneced o V S. The inernal logic on he WK pin works bi-sensiive, meaning he Wake-Up logic on he pin WK riggers on a boh signal changes, from High o Low and from Low o High (see Figure 7). V WK < Wk(local) No Wake-Up = Wk(local) Wake-Up V WK,H INH Sleep mode Sand-By mode < Wk(local) = Wk(local) V WK V WK,L No Wake-Up Wake-Up INH Sleep mode Sleep Mode Sand-By mode Sand-By Mode Figure 7 Local Wake-Up A filer ime WK(local) is implemened o proec he TLE6251-2G agains uninended Wake-Up s, caused by spikes on he pin WK. The hreshold values V WK,H and V WK,L depend on he level of he V S power supply. In Sand-By mode he RxD oupu pin and he NERR oupu pin display he CAN bus Wake-Up even by a logical Low signal (deails see Chaper 8). Once he HS CAN Transceiver TLE6251-2G has recognized he Wake-Up even and has changed o Sand-By mode, he INH oupu pin becomes acive and provides he volage V S o he exernal circuiry. Daa Shee 15 Rev. 1.1,

16 Wake-Up Funcions 6.3 Mode Change via he EN and NSTB pin Besides a mode change issued by a Wake-Up even, he operaion mode on he TLE6251-2G can be changed by changing he signals on he EN and NSTB pins. Therefore he power supplies V CC and V IO have o be acive. According o he mode diagram in Figure 4 he operaion mode can be changed direcly from Sleep mode o he Receive-Only mode and o he Normal Operaion mode. A change from Sleep mode direc o Sand-By mode is only possible via a Wake-Up even. For example by seing he NSTB pin and he EN pin o logical High he TLE6251-2G changes from Sleep mode o Normal Operaion mode (see Figure 8). The pins EN and NSTB have a hyseresis beween he logical Low and he logical High signal in order o avoid any oggling during he operaion mode change. NSTB V M,H hslp V M,L EN V M,H V M,L Mode Mode INH Sleep mode Normal Operaion mode Go-To-Sleep command Sleep mode Figure 8 Wake-Up via Mode Change Daa Shee 16 Rev. 1.1,

17 Fail Safe Feaures 7 Fail Safe Feaures 7.1 CAN Bus Failure Deecion The High Speed CAN Transceiver TLE6251-2G is equipped wih a bus failure deecion uni. In Normal Operaion mode he TLE6251-2G can deec he following bus failures: CANH shored o GND CANL shored o GND CANH shored o V CC CANL shored o V CC CANH shored o V S CANL shored o V S The TLE6251-2G can no deec he bus failures: CANH open CANL open CANH shor o CANL The TLE6251-2G deecs he bus failures while sending a Dominan signal o he CAN bus. Afer sending four Dominan bis o he CAN bus, a logical Low on he NERR pins indicaes he CAN bus failure. For he failure indicaion he Dominan bis require a minimum pulse widh of 4 μs. In case he TLE6251-2G deecs an CAN bus failure, he failure is only indicaed by he NERR pin, he ransceiver doesn sop or block he communicaion, by disabling he oupu sage for example. CANH CANL Shor o V CC TxD RxD NERR Four Dominan Bis Figure 9 CAN Bus Failure CANH shor o V CC 1) 1) The communicaion on he CAN bus could sill be possible even wih a shor CANH o V CC or CANH o V S. If he CAN bus communicaion is possible or no, depends on parameers like he number of paricipans inside he CAN nework, he nework erminaion, ec. This figure shows a working CAN bus communicaion as an example and i shall no be considered as a liabiliy ha on HS CAN neworks he CAN bus communicaion coninues in every CAN bus failure case. Daa Shee 17 Rev. 1.1,

18 Fail Safe Feaures 7.2 Local Failures If a local failure occurs during he operaion of he TLE6251-2G, he devices ses an inernal local failure flag. The local failure flag can be displayed o he microconroller during he Receive-Only Mode and he failures are indicaed by a logical Low signal on he NERR pin. The following local failures can be deeced: TxD ime-ou TxD o RxD Shor RxD permanen Recessive Clamping Bus Dominan Clamping Over-Temperaure Deecion TxD Time-Ou Feaure The TxD ime-ou feaure proecs he CAN bus agains permanen blocking in case he logical signal on he TxD pin is coninuously Low. In Normal Operaion mode, a logical Low signal on he TxD inpu pin for he ime > TXD enables he TxD imeou feaure and he TLE6251-2G disables he oupu sage. In Receive-Only mode he TLE6251-2G indicaes he TxD ime-ou by a logical Low signal on he NERR pin (see Figure 10). To release he oupu sage afer he permanen Low signal on he TxD inpu pin disappears, a mode change from Receive-Only mode o Normal Operaion mode is required. CANH CANL = TXD TxD ime ou released Oupu sage released TxD TxD ime-ou RxD EN NSTB NERR Normal Operaion mode Receive-Only mode Normal Operaion mode Figure 10 TxD Time-Ou Feaure Daa Shee 18 Rev. 1.1,

19 Fail Safe Feaures TxD o RxD Shor Circui Feaure A shor beween he pins TxD and RxD causes permanen blocking of he CAN bus. In he case, ha he low side driver capabiliy of he RxD oupu pin is sronger as he high side driver capabiliy of he exernal microconroller oupu, which is conneced o he TxD pin of he TLE6251-2G, he RxD oupu signal overrides he TxD signal provided by he microconroller. In his case a coninuous Dominan signal blocks he CAN bus. The TLE6251-2G deecs he shor beween he TxD and he RxD pin, disables he oupu driver sage and ses he inernal local failure flag. In Receive-Only mode he TLE6251-2G indicaes he TxD o RxD shor by a logical Low signal on he NERR pin. The TLE6251-2G releases he failure flag and he oupu driver sage by an operaion mode change from Receive-Only mode o Normal Operaion mode RxD Permanen Recessive Clamping A logical High signal on he RxD pin indicaes he exernal microconroller, ha here is no CAN message on he CAN bus. The microconroller can ransmi a message o he CAN bus only if he bus is Recessive. In case he logical High signal on he RxD pin is caused by a failure, like a shor from RxD o V IO, he RxD signal doesn mirror he signal on he CAN bus. This allows he microconroller o place a message o he CAN bus a any ime and corrups CAN bus messages on he bus. The TLE6251-2G deecs a permanen logical High signal on he RxD pin and se he local error flag. In order o avoid any daa collisions on he CAN bus he oupu sage ges disabled. In Receive-Only Mode he TLE6251-2G indicaes he RxD clamping by a logical Low signal on he NERR pin. The TLE6251-2G releases he failure flag and he oupu driver sage by a operaion mode change or if he RxD clamping failure disappears Bus Dominan Clamping Due o a fail funcion on one of he CAN bus paricipans, he CAN bus could be permanen in Dominan sae. The exernal microconroller doesn ransmi any daa o he CAN bus as long as he CAN bus remains Dominan. Even if he permanen Dominan sae on he CAN bus is caused by a shor from CANH o V CC, or similar, he ransceiver can no deec he failure, because he CAN bus failure deecion works only when he ransceiver is acive sending daa o he bus. Therefore he TLE6251-2G has a bus dominan clamping deecion uni insalled. In case he bus signal is Dominan for he ime > Bus, he TLE6251-2G deecs he bus clamping and ses he local failure flag. The oupu driver sage remains acive. In Receive-Only mode he TLE6251-2G indicaes he bus dominan clamping by a logical Low signal on he NERR pin. Daa Shee 19 Rev. 1.1,

20 Fail Safe Feaures Over-Temperaure Deecion The oupu sage is proeced agains over emperaure. Exceeding he shudown emperaure resuls in deacivaion of he oupu sage. To avoid any oggling afer he device cools down, he oupu sage is enabled again only afer a Recessive o Dominan signal change on he TxD pin (see Figure 11). An Over-Temperaure even only deacivaes he oupu driver sage, he TLE6251-2G doesn change is operaion mode in his failure case. The Over-Temperaure even is indicaed by a logical Low signal on he NERR pin in Receive-Only mode. Temp. Thermal Shudown Temp. T JSD Cool Down Thermal Shudown Hyseresis ΔT J Oupu-Sage Release CANH CANL TxD RxD Normal Operaion mode Figure 11 Release of he Transmission afer an Over-Temperaure even 7.3 Under-Volage Deecion The TLE6251-2G provides a power supply monioring on all hree power supply pins: V CC, V IO and V S. In case of an under-volage even on any of his hree power supplies, he TLE6251-2G changes he operaion mode and ses an inernal failure flag. The inernal failure flag is no indicaed by he NERR oupu pin Under-Volage even on V CC and V IO An under-volage even on he power supply V CC or he power supply V IO causes he change of he operaion mode o Sleep mode, regardless of he operaion mode in which he TLE6251-2G migh currenly operae. The logical signals on he digial inpu pins EN and NSTB are also disregarded. Afer he power supplies V CC and V IO are acivaed again, he operaion mode can be changed he usual way. From Sleep mode o Sand-By mode by a Wake-Up even or from Sleep mode direc o Normal Operaion mode, Receive-Only mode by he digial inpu pins EN and NSTB. Daa Shee 20 Rev. 1.1,

21 Fail Safe Feaures The under-volage monioring on he power supply V CC and V IO is combined wih an inernal filer ime. Only if he volage drop on each of hese wo power supplies is longer presen as he ime Drop > UV(VIO) ( Drop > UV(VCC) ) he operaion mode change will be acivaed (see Figure 12). Under-volage evens on he power supplies V CC or V IO are no indicaed by he NERR pin nor by he RxD pin. V CC < UV(VCC) > UV(VCC) V CC,UV INH Normal Operaion mode / Receive Only mode / Sand By mode or Go-To Sleep command Sleep mode V IO < UV(VIO) > UV(VIO) V IO,UV INH Normal Operaion mode / Receive Only mode / Sand By mode or Go-To Sleep command Sleep mode Figure 12 Under-Volage on V IO or V CC Daa Shee 21 Rev. 1.1,

22 Fail Safe Feaures Under-Volage Even on V S If an under-volage even is deeced a he power supply V S, he TLE6251-2G immediaely ransfers ino he Sand-By mode, regardless of he operaion mode in which he TLE6251-2G migh currenly operae. Afer he power supply V S has been reesablished, he operaion mode can be changed by applying a logical High signal o he EN pin or he NSTB pin. In he case he TLE6251-2G deecs an under-volage even on he V CC or V IO power supply, he TLE6251-2G changes o Sleep mode. If he TLE6251-2G deecs in Sleep mode an under-volage even on he V S power supply, he device changes o he Sand-By mode, even if he under-volage even on he V CC or V IO power supply is sill presen. V S V S,Pon V S,Poff any mode Power Down Sand-By mode Figure 13 Under-Volage on V S 7.4 Volage Adapaion The advanage of he adapive microconroller logic is he raio merical scaling of he I/O levels depending on he inpu volage a he V IO pin. Connecing he V IO inpu o he I/O supply of he microconroller ensures, ha he I/O volage of he microconroller fis o he inernal logic levels of he TLE6251-2G. 7.5 Spli Circui The SPLIT oupu pin is acivaed during Normal Operaion mode and Receive-Only mode and deacivaed (SPLIT pin high ohmic) during Sleep mode and Sand-By mode. The SPLIT pin is used o sabilize he Recessive common mode signal in Normal Operaion mode and Receive-Only mode. This is realized wih a sabilized volage of 0.5 x V CC a SPLIT pin. Daa Shee 22 Rev. 1.1,

23 Diagnosis-Flags a NERR and RxD 8 Diagnosis-Flags a NERR and RxD Table 3 Truh Table NSTB EN INH Mode Even NERR RxD SPLIT 1 1 HIGH NORMAL No CAN bus failure 1) 1 LOW: bus ON CAN bus failure 1) 0 dominan, HIGH: bus Wake-up via CAN bus/no wakeup reques deeced 1 recessive Wake-up via pin WK 2) HIGH RECEIVE ONLY No V S fail deeced 3) 1 LOW: bus V S fail deeced 3) 0 dominan, HIGH: bus No TxD ime-ou, 1 recessive Over - Temperaure even, RxD recessive clamping or bus dominan ime ou deeced 4) TxD ime-ou, 0 Over - Temperaure even, RxD recessive clamping or bus dominan ime ou deeced 4) 0 0 HIGH STAND BY Wake-up reques deeced 5) 0 0 OFF No Wake up reques deeced 5) Floaing SLEEP Wake-up reques deeced 5) 0 0 OFF No wake-up reques deeced 5) 1 1 1) Only valid afer a leas four recessive o dominan edges a TxD when enering he Normal Operaion Mode. 2) Only valid before four recessive o dominan edges a TxD when enering he Normal Operaion Mode. 3) Power - On flag only available, if V CC and V IO are acive. Power - On flag will be cleared when enering Normal Operaion Mode. 4) Valid afer a ransiion from Normal Operaion Mode. 5) Only valid if V CC and V IO are acive. ON Daa Shee 23 Rev. 1.1,

24 General Produc Characerisics 9 General Produc Characerisics 9.1 Absolue Maximum Raings Table 4 Absolue Maximum Raings 1) All volages wih respec o ground, posiive curren flowing ino pin (unless oherwise specified) Pos. Parameer Symbol Limi Values Uni Condiions Min. Max. Volages Supply volage V S V Transceiver supply volage V CC V Logic supply volage V IO V CANH DC volage versus GND V CANH V CANL DC volage versus GND V CANL V Spli DC volage versus GND V SPLIT V Inpu volage a WK V WK V Inpu volage a INH V INH -0.3 V S V Differenial volage CANH o CANL Differenial volage SPlIT o CANH and CANL Differenial volage WK o SPLIT, CANH and CANL Logic volages a EN, NSTB, NERR, TxD, RxD Currens V Diff,CAN V Max. differenial volage beween CAN and CANL V Diff,SPLIT V Max. differenial volage beween SPLIT and CAN V Diff,WK V Max. differenial volage beween WK and SPLIT, CAN V Logic -0.3 V IO V 0 V < V IO < 6.0 V Maximum Oupu Curren INH I INH(max) -5 0 ma Temperaures Juncion Temperaure T j C Sorage Temperaure T sg C ESD Suscepibiliy ESD Resisiviy a CANH, CANL, SPLIT and WK versus GND V ESD -8 8 kv HBM 2) (100 pf / 1.5 kω) ESD Resisiviy all oher pins V ESD -2 2 kv HBM 2) (100 pf / 1.5 kω) 1) No subjec o producion es, specified by design. 2) ESD suscepibiliy, HBM according o AEC-Q D. Noe: Sresses above he ones lised here may cause permanen damage o he device. Exposure o absolue maximum raing condiions for exended periods may affec device reliabiliy. Noe: Inegraed proecion funcions are designed o preven IC desrucion under faul condiions described in he daa shee. Faul condiions are considered as ouside normal operaing range. Proecion funcions are no designed for coninuous repeiive operaion. Daa Shee 24 Rev. 1.1,

25 General Produc Characerisics 9.2 Funcional Range Table 5 Operaing Range Pos. Parameer Symbol Limi Values Uni Condiions Min. Max. Supply Volages Supply Volage Range for Normal Operaion V S(nom) V Exended Supply Volage Range for Operaion V S(ex) 5 40 V Parameer Deviaions possible Transceiver Supply Volage V CC V Logic Supply Volage V IO V Thermal Parameers Juncion emperaure T J C 1) 1) No subjec o producion es, specified by design Noe: Wihin he funcional range he IC operaes as described in he circui descripion. The elecrical characerisics are specified wihin he condiions given in he relaed elecrical characerisics able. 9.3 Thermal Resisance Table 6 Thermal Characerisics 1) Pos. Parameer Symbol Limi Values Uni Condiions Min. Typ. Max. Thermal Resisance Juncion o Soldering Poin 1) R hjsp 25 K/W measured o pin Juncion o Ambien 1) R hja 130 K/W 2) Thermal Shudown Juncion Temperaure Thermal shudown emp. T JSD C Thermal shudown hyseresis ΔT 10 K 1) No subjec o producion es, specified by design 2) EIA/JESD 52_2, FR4, mm; 35μ Cu, 5μ Sn; 300 mm 2 Daa Shee 25 Rev. 1.1,

26 Elecrical Characerisics 10 Elecrical Characerisics 10.1 Funcional Device Characerisics Table 7 Elecrical Characerisics 4.75 V < V CC < 5.25 V; 3.0 V < V IO < 5.25 V; 5.5 V < V S <18V; R L = 60 Ω; normal mode; -40 C < T j < 150 C; all volages wih respec o ground; posiive curren flowing ino pin; unless oherwise specified. Pos. Parameer Symbol Limi Values Uni Condiions Min. Typ. Max. Curren Consumpion Curren consumpion in Normal Operaion mode on V CC and V IO Curren consumpion in Receive-Only mode on V CC and V IO I CC+VIO 6 10 ma Recessive sae; TxD = High I CC+VIO ma Dominan sae; TxD = Low I CC+VIO 6 10 ma Curren consumpion in Sand- By mode on V S I VS μa V S = WK = 12 V V CC = V IO = 5V Curren consumpion in Sand- By mode on V CC and V IO I CC+VIO μa V S = V WK = 12 V V CC = V IO = 5V Curren consumpion in Sleep mode on V S I VS μa V S = 12 V, T j < 85 C, V CC = V IO = 0 V Curren consumpion in Sleep mode on V CC and V IO I CC+VIO μa V S = 12 V, T j < 85 C, V CC = V µc = 5V Supply Reses V CC under-volage deecion V CC,UV V V IO under-volage deecion V IO,UV V V S power ON deecion level V S,Pon V V S power OFF deecion level V S,Poff V Receiver Oupu RxD HIGH level oupu curren I RD,H -4-2 ma V RD = 0.8 V IO LOW level oupu curren I RD,L 2 4 ma V RD = 0.2 V IO Daa Shee 26 Rev. 1.1,

27 Elecrical Characerisics Table 7 Elecrical Characerisics (con d) 4.75 V < V CC < 5.25 V; 3.0 V < V IO < 5.25 V; 5.5 V < V S <18V; R L = 60 Ω; normal mode; -40 C < T j < 150 C; all volages wih respec o ground; posiive curren flowing ino pin; unless oherwise specified. Pos. Parameer Symbol Limi Values Uni Condiions Min. Typ. Max. Transmission Inpu TxD High level inpu range V TD,H 0.7 V Recessive sae V IO IO 0.3 V Low level inpu range V TD,L V IO HIGH level inpu curren I TD μa V TxD = V IO TxD pull-up resisance R TD kω Mode Conrol Inpus EN, NSTB High level inpu range V M,H 0.7 V IO V IO V V Recessive sae V Dominan sae Low level inpu range V M,L V IO LOW level inpu curren I MD μa V EN and V NSTB = 0V Pull-down resisance R M kω Diagnosic Oupu NERR HIGH level oupu volage V NERR,H 0.8 V I NERR = -100 μa V IO LOW level oupu volage V NERR,L 0.2 V I NERR = 1.25 ma V IO Terminaion Oupu SPLIT Spli oupu volage V SPLIT 0.3 V CC 0.5 V CC 0.7 V CC V Normal Operaion mode; -500 μa < I SPLIT < 500 μa Spli oupu volage no load V SPLIT V Normal Operaion mode; V CC V CC V CC no load Leakage curren I SPLIT μa Sleep mode V CC = V IO = 0 V Oupu resisance R SPLIT 600 Ω R SPLIT = (V SPLIT (500 μa) - V SPLIT (-500 μa)) / 1mA Daa Shee 27 Rev. 1.1,

28 Elecrical Characerisics Table 7 Elecrical Characerisics (con d) 4.75 V < V CC < 5.25 V; 3.0 V < V IO < 5.25 V; 5.5 V < V S <18V; R L = 60 Ω; normal mode; -40 C < T j < 150 C; all volages wih respec o ground; posiive curren flowing ino pin; unless oherwise specified. Pos. Parameer Symbol Limi Values Uni Condiions Min. Typ. Max. Wake Inpu WK High Level volage range a V WK,H V S - V S + V V EN =V NSTB = 0 V, rising edge WK 2 V 3V Low Level volage range a WK V WK,L - 27 V S - V V EN =V NSTB = 0 V, falling edge 4V HIGH level inpu curren I WKH μa V WK = V s - 2 V LOW level curren I WKL 5 10 μa V WK = V s - 4 V Inhibi Oupu INH HIGH level volage drop ΔV H V I INH = -1 ma ΔV H = V S - V INH ) I INH = -5 ma Leakage curren I INH,lk 5 μa Sleep mode; V INH = 0 V Bus Transmier CANL and CANH recessive oupu volage CANL and CANH recessive oupu volage CANH o CANL recessive oupu volage difference V CANL/H V Normal Operaion mode no load V CANL/H V Sleep or Sand-By mode no load V diff mv V TxD = V IO ; no load CANL dominan oupu volage V CANL V V TxD = 0 V; 50 Ω < R L < 65 Ω CANH dominan oupu volage CANH, CANL dominan oupu volage difference V CANH V V TxD = 0 V; 50 Ω < R L < 65 Ω V diff V V TxD = 0 V; 50 Ω < R L < CANL shor circui curren I CANLsc ma V CANLshor = 18 V CANH shor circui curren I CANHsc ma V CANHshor = 0 V Leakage curren I CANHL,lk μa V S = V µc = V CC = 0 V; 0 V < V CANH,L < 5 V Daa Shee 28 Rev. 1.1,

29 Elecrical Characerisics Table 7 Elecrical Characerisics (con d) 4.75 V < V CC < 5.25 V; 3.0 V < V IO < 5.25 V; 5.5 V < V S <18V; R L = 60 Ω; normal mode; -40 C < T j < 150 C; all volages wih respec o ground; posiive curren flowing ino pin; unless oherwise specified. Pos. Parameer Symbol Limi Values Uni Condiions Min. Typ. Max. Bus Receiver Differenial receiver inpu range - Dominan V diff,rdn V Normal Operaion mode, In respec o CMR Differenial receiver inpu range - Recessive V diff,drn V Normal Operaion mode, In respec o CMR Differenial receiver inpu range - Dominan V diff,rdl V Sleep mode, Sand-By mode In respec o CMR Differenial receiver inpu range - Recessive V diff,drl V Sleep mode, Sand-By mode In respec o CMR Common Mode Range CMR V V CC = 5 V Differenial receiver hyseresis V diff,hys 100 mv CANH, CANL inpu resisance R i kω Recessive sae Differenial inpu resisance R diff kω Recessive sae Dynamic CAN-Transceiver Characerisics Propagaion delay TxD-o-RxD LOW ( Recessive o Dominan ) Propagaion delay TxD-o-RxD HIGH ( Dominan o Recessive ) Propagaion delay TxD LOW o bus Dominan Propagaion delay TxD HIGH o bus Recessive Propagaion delay bus Dominan o RxD Low Propagaion delay bus Recessive o RxD High Min. hold ime go o sleep command d(l),tr ns C L = 100 pf; V CC = V IO = 5 V; C RxD = 15 pf d(h),tr ns C L = 100 pf; V CC = V IO = 5 V; C RxD = 15 pf d(l),t ns C L = 100 pf; V CC = V IO = 5 V; C RxD = 15 pf d(h),t ns C L = 100 pf; V CC = V IO = 5 V; C RxD = 15 pf d(l),r ns C L = 100 pf; V CC = V IO = 5 V; C RxD = 15 pf d(h),r ns C L = 100 pf; V CC = V IO = 5 V; C RxD = 15 pf hslp μs Min. wake-up ime on pin WK WK(local) μs Min. Dominan ime for bus Wake μs wake-up TxD permanen Dominan TxD ms disable ime Bus permanen ime-ou Bus, ms V CC, V µc undervolage filer ime UV(VIO) ms UV(VCC) Time for mode change Mode 20 μs 1) No subjec o producion es, specified by design. 1) Daa Shee 29 Rev. 1.1,

30 Elecrical Characerisics 10.2 Diagrams nf V S NSTB EN CANH TxD 1 C L R L RxD 4 12 CANL C RxD V IO 5 9 WK GND 2 V CC nf 100 nf = V CC = V IO Figure 14 Tes Circui for Dynamic Characerisics V TxD V IO GND V DIFF d(l),t d(h),t 0.9 V 0.5 V d(l),r d(h),r V RxD V IO GND d(l),tr d(h),tr 0.2 x V IO 0.8 x V IO Figure 15 Timing Diagrams for Dynamic Characerisics Daa Shee 30 Rev. 1.1,

31 Applicaion Informaion 11 Applicaion Informaion Noe: The following informaion is given as a hin for he implemenaion of he device only and shall no be regarded as a descripion or warrany of a cerain funcionaliy, condiion or qualiy of he device Applicaion Example 4.7 nf 1) V S 60 Ω V Ba 60 Ω CAN Bus 51 µh 10 kω 9 1) 100 nf TLE6251-2G WK CANH CANL SPLIT V S INH GND 2 EN NSTB NERR RxD TxD V IO V CC nf 100 nf 100 nf Micro Conroller E.g. XC22xx GND INH V Q µf 100 nf e.g. TLE 4476 (3.3/5 V) or TLE 4471 TLE 4276 TLE V V I1 V Q2 GND + 22 µf + 22 µf ECU 51 µh 1) TLE6251DS CANH CANL SPLIT STB 8 RxD 4 TxD 1 3 Micro Conroller E.g. XC22xx GND 2 V CC 100 nf 100 nf GND 60 Ω 60 Ω 4.7 nf 1) 22 + µf 100 nf e. g. TLE 4270 V I V Q GND + 5 V 22 µf ECU 1) Opional, according o he car manufacurer requiremens Figure 16 Applicaion Circui Example Daa Shee 31 Rev. 1.1,

32 Applicaion Informaion 11.2 ESD Robusness according o IEC Tes for ESD robusness according o IEC Gun es (150 pf, 330 Ω) have been performed. The resuls and es condiions are available in a separae es repor. Table 8 ESD Robusness according o IEC Performed Tes Resul Uni Remarks Elecrosaic discharge volage a pin V S, CANH, CANL and WK versus GND + 9 kv 1) Posiive pulse Elecrosaic discharge volage a pin V S, CANH, CANL and WK versus GND - 9 1) ESD suscepibiliy ESD GUN according o Gif ICT Evaluaion of CAN Transceiver Secion 4.3. (IEC : ) -Tesed by exernal es house (IBEE Zwickau, EMC Tesrepor Nr. 07a-04-09). kv 1) Negaive pulse 11.3 Volage Drop over he INH Oupu 1,00 Volage Drop on he INH oupu pin Volage Drop (V) T J = 150 C T J = 25 C T J = -40 C 0,00 0,00 1,00 2,00 3,00 4,00 5,00 INH Oupu Curren (ma) Figure 17 INH oupu volage drop versus oupu curren (ypical values only!) Daa Shee 32 Rev. 1.1,

33 Applicaion Informaion 11.4 Mode Change o Sleep mode Mode changes are applied eiher by a hos command, an Wake-Up even or by an under-volage even. To rigger a mode change by a hos command or in oher words by a signal change on he digial inpu pins EN and NSTB all power supplies, V S V IO and V CC need o be available.tle6251-2g. By seing he EN pin o logical High and he NSTB pin o logical Low, he TLE6251-2G eners he Go-To-Sleep command and afer he ime = hslp expires, he TLE6251-2G eners ino he Sleep mode (see Chaper 5.5). For any mode change, also for a mode change o Sleep mode he TLE6251-2G disregards he signal on he CAN bus. Therefore he TLE6251-2G can ener Sleep mode and remain in Sleep mode even if here is a shor circui on he CAN bus, for example CANH shored o V S or V CC. In order o recognize a remoe Wake-Up, he TLE6251-2G requires a signal change from Recessive o Dominan before he Wake-Up filer ime sars (see Figure 6 and Figure 18). EN NSTB = hslp Normal Operaion mode Go-To Sleep command Sleep mode Sand-By mode CANH CANL = Wake = Wake no Wake-Up Recessive o Dominan change INH Wake-Up RxD Figure 18 Mode change o Sleep while he CANH bus is Dominan 11.5 Furher Applicaion Informaion Please conac us for informaion regarding he FMEA. Exising App. Noe For furher informaion you may conac hp:// Daa Shee 33 Rev. 1.1,

Data Sheet, Rev. 3.1, Aug. 2007 TLE6251DS. High Speed CAN-Transceiver with Bus wake-up. Automotive Power

Data Sheet, Rev. 3.1, Aug. 2007 TLE6251DS. High Speed CAN-Transceiver with Bus wake-up. Automotive Power Daa Shee, Rev. 3.1, Aug. 2007 TLE6251DS High Speed CAN-Transceiver wih Bus wake-up Auomoive Power Ediion 2007-08-20 Published by Infineon Technologies AG 81726 Munich, Germany 2005 Infineon Technologies

More information

TLE7250GVIO. Data Sheet. Automotive Power. High Speed CAN Transceiver. Rev. 1.1, 2014-05-07

TLE7250GVIO. Data Sheet. Automotive Power. High Speed CAN Transceiver. Rev. 1.1, 2014-05-07 High Speed CAN Transceiver Daa Shee Rev. 1.1, 2014-05-07 Auomoive Power Table of Conens 1 Overview....................................................................... 3 2 Block Diagram...................................................................

More information

TLE7251V. Data Sheet. Automotive Power. High Speed CAN-Transceiver with Bus Wake-up TLE7251VLE TLE7251VSJ. Rev. 1.0, 2015-09-10

TLE7251V. Data Sheet. Automotive Power. High Speed CAN-Transceiver with Bus Wake-up TLE7251VLE TLE7251VSJ. Rev. 1.0, 2015-09-10 TLE7251V High Speed CAN-Transceiver wih Bus Wake-up TLE7251VLE Daa Shee Rev. 1.0, 2015-09-10 Auomoive Power Table of Conens Table of Conens................................................................

More information

TLE7250X. Data Sheet. Automotive Power. High Speed CAN-Transceiver TLE7250XLE TLE7250XSJ. Rev. 1.0, 2015-08-12

TLE7250X. Data Sheet. Automotive Power. High Speed CAN-Transceiver TLE7250XLE TLE7250XSJ. Rev. 1.0, 2015-08-12 TLE7250X High Speed CAN-Transceiver TLE7250XLE Daa Shee Rev. 1.0, 2015-08-12 Auomoive Power Table of Conens Table of Conens................................................................ 2 1 Overview.......................................................................

More information

TLE7250V. Data Sheet. Automotive Power. High Speed CAN-Transceiver TLE7250VLE TLE7250VSJ. Rev. 1.0, 2015-08-12

TLE7250V. Data Sheet. Automotive Power. High Speed CAN-Transceiver TLE7250VLE TLE7250VSJ. Rev. 1.0, 2015-08-12 TLE7250V High Speed CAN-Transceiver TLE7250VLE Daa Shee Rev. 1.0, 2015-08-12 Auomoive Power Table of Conens Table of Conens................................................................ 2 1 Overview.......................................................................

More information

P r e lim ina r y - S u b j e c t to C h a n g e. Industrial High Speed CAN-FD Transceiver. Preliminary Data Sheet. Standard Power

P r e lim ina r y - S u b j e c t to C h a n g e. Industrial High Speed CAN-FD Transceiver. Preliminary Data Sheet. Standard Power Indusrial High Speed CAN-FD Transceiver CAN wih Flexible Daa-Rae IFX1051LE P r e lim ina r y - S u b j e c o C h a n g e Preliminary Daa Shee Rev. 0.92, 2015-07-28 Sandard Power Table of Conens Table of

More information

PI4ULS5V202 2-Bit Bi-directional Level Shifter with Automatic Sensing & Ultra Tiny Package

PI4ULS5V202 2-Bit Bi-directional Level Shifter with Automatic Sensing & Ultra Tiny Package Feaures can be Less han, Greaer han or Equal o V CCB 1.2V o 5.5V on A Por and 1.2V o 5.5V on B Por High Speed wih 20 Mb/s Daa Rae for push-pull applicaion High Speed wih 2 Mb/s Daa Rae for open-drain applicaion

More information

Smart Highside Power Switch

Smart Highside Power Switch Smar ighside Power Swich Feaures Overload proecion Curren limiaion Shor circui proecion Thermal shudown Overvolage proecion (including load dump) Reverse baery proecion ) Undervolage and overvolage shudown

More information

Gate protection. Current limit. Overvoltage protection. Limit for unclamped ind. loads. Charge pump Level shifter. Rectifier. Open load detection

Gate protection. Current limit. Overvoltage protection. Limit for unclamped ind. loads. Charge pump Level shifter. Rectifier. Open load detection Smar ighside Power Swich for ndusrial Applicaions Feaures Overload proecion Curren limiaion Shor circui proecion Thermal shudown Overvolage proecion (including load dump) Fas demagneizaion of inducive

More information

Datasheet PROFET BTS 723 GW. Smart High-Side Power Switch Two Channels: 2 x 100mΩ Status Feedback Suitable for 42V

Datasheet PROFET BTS 723 GW. Smart High-Side Power Switch Two Channels: 2 x 100mΩ Status Feedback Suitable for 42V Daashee PROFET BTS 723 GW Smar igh-side Power Swich Two Channels: 2 x 100mΩ Saus Feedback Suiable for 42 Produc Summary Operaing olage bb(on) 7.0... 58 Acive channels One wo parallel On-sae Resisance R

More information

Smart Highside Power Switch

Smart Highside Power Switch Smar ighside Power Swich Feaures oad dump and reverse baery proecion 1) Clamp of negaive volage a oupu Shor-circui proecion Curren limiaion Thermal shudown Diagnosic feedback Open load deecion in ON-sae

More information

TSOP48.. IR Receiver Modules for Remote Control Systems VISHAY. Vishay Semiconductors

TSOP48.. IR Receiver Modules for Remote Control Systems VISHAY. Vishay Semiconductors IR Receiver Modules for Remoe Conrol Sysems Descripion The - series are miniaurized receivers for infrared remoe conrol sysems. PIN diode and preamplifier are assembled on lead frame, he epoxy package

More information

Photo Modules for PCM Remote Control Systems

Photo Modules for PCM Remote Control Systems Phoo Modules for PCM Remoe Conrol Sysems Available ypes for differen carrier frequencies Type fo Type fo TSOP173 3 khz TSOP1733 33 khz TSOP1736 36 khz TSOP1737 36.7 khz TSOP1738 38 khz TSOP174 4 khz TSOP1756

More information

IR Receiver Modules for Remote Control Systems

IR Receiver Modules for Remote Control Systems TSOP382.., TSOP384.. IR Receiver Modules for MECHANICAL DATA Pinning: = OUT, 2 =, 3 = V S 926 FEATURES Very low supply curren Phoo deecor and preamplifier in one package Inernal filer for PCM frequency

More information

Smart Highside Power Switch

Smart Highside Power Switch Smar ighside Power Swich Feaures oad dump and reverse baery proecion 1) Clamp of negaive volage a oupu Shor-circui proecion Curren limiaion Thermal shudown Diagnosic feedback Open load deecion in ON-sae

More information

IR Receiver Modules for Remote Control Systems Description

IR Receiver Modules for Remote Control Systems Description TSOP1.. IR Receiver Modules for Remoe Conrol Sysems Descripion The TSOP1.. - series are miniaurized receivers for infrared remoe conrol sysems. PIN diode and preamplifier are assembled on lead frame, he

More information

Photo Modules for PCM Remote Control Systems

Photo Modules for PCM Remote Control Systems Phoo Modules for PCM Remoe Conrol Sysems Available ypes for differen carrier frequencies Type fo Type fo TSOP173 3 khz TSOP1733 33 khz TSOP1736 36 khz TSOP1737 36.7 khz TSOP1738 38 khz TSOP174 4 khz TSOP1756

More information

Product Operation and Setup Instructions

Product Operation and Setup Instructions A9 Please read and save hese insrucions. Read carefully before aemping o assemble, insall, operae, or mainain he produc described. Proec yourself and ohers by observing all safey informaion. Failure o

More information

IR Receiver Module for Light Barrier Systems

IR Receiver Module for Light Barrier Systems IR Receiver Module for Ligh Barrier Sysems MECHANICAL DATA Pinning: 1 = OUT, 2 = GND, 3 = V S 19026 APPLICATIONS Reflecive sensors for hand dryers, owel or soap dispensers, waer fauces, oile flush Vending

More information

Baumer FWL120 NeuroCheck Edition Art. No: OD106434

Baumer FWL120 NeuroCheck Edition Art. No: OD106434 High Sensiive Digial Monochrome (b/w) Line Scan Camera Sysem: IEEE1394a Baumer FWL120 NeuroCheck Ediion Ar. No: OD106434 IEEE1394a (FireWire TM ) Progressive Scan CCD Camera 2048 Pixels Ousanding Image

More information

TSOP7000. IR Receiver for High Data Rate PCM at 455 khz. Vishay Semiconductors

TSOP7000. IR Receiver for High Data Rate PCM at 455 khz. Vishay Semiconductors TSOP7000 IR Receiver for High Daa Rae PCM a 455 khz Descripion The TSOP7000 is a miniaurized receiver for infrared remoe conrol and IR daa ransmission. PIN diode and preamplifier are assembled on lead

More information

SINAMICS S120 drive system

SINAMICS S120 drive system SINAMICS S120 drive sysem Design PM340, frame sizes FSA o FSF The PM340 feaure he following connecions as sandard: DCP/R1 and DCN DC link Terminals DCP/R1 and R2 for connecion of an exernal braking PM-IF

More information

Package SJP. Parameter Symbol Conditions Rating Unit Remarks Transient Peak Reverse Voltage V RSM 30 V Repetitive Peak Reverse Voltage, V RM 30 V

Package SJP. Parameter Symbol Conditions Rating Unit Remarks Transient Peak Reverse Voltage V RSM 30 V Repetitive Peak Reverse Voltage, V RM 30 V V RM = 30 V, I F(AV) = A Schoky Diode Daa Shee Descripion is a Schoky diode ha is low forward volage drop, and achieves high efficiency recificaion circui. Package SJP (2) Feaures Low Sauraion Volage High

More information

DATA SHEET. 1N4148; 1N4446; 1N4448 High-speed diodes DISCRETE SEMICONDUCTORS. 1996 Sep 03

DATA SHEET. 1N4148; 1N4446; 1N4448 High-speed diodes DISCRETE SEMICONDUCTORS. 1996 Sep 03 DISCETE SEMICONDUCTOS DATA SHEET M3D176 Supersedes daa of April 1996 File under Discree Semiconducors, SC01 1996 Sep 03 specificaion Diodes rapides Caracerisiques Encapsulees hermeiquemen dans un boiier

More information

Switching Regulator IC series Capacitor Calculation for Buck converter IC

Switching Regulator IC series Capacitor Calculation for Buck converter IC Swiching Regulaor IC series Capacior Calculaion for Buck converer IC No.14027ECY02 This applicaion noe explains he calculaion of exernal capacior value for buck converer IC circui. Buck converer IIN IDD

More information

IR Receiver Modules for Remote Control Systems

IR Receiver Modules for Remote Control Systems MECHANICAL DATA Pinning for TSOP382.., TSOP384..: 1 = OUT, 2 = GND, 3 = V S Pinning for TSOP392.., TSOP394..: 1 = OUT, 2 = V S, 3 = GND 1926 FEATURES Very low supply curren Phoo deecor and preamplifier

More information

OM02 Optical Mouse Sensor Data Sheet

OM02 Optical Mouse Sensor Data Sheet OM0 Opical Mouse Sensor Daa Shee Index. General descripion Page. Feaures Page. Pin configuraions (package) and descripions Page. Absolue maximum raing Page. Elecrical characerisics Page. Applicaion circui

More information

PSI 9000 2U Series. Programmable DC Power Supplies. 1000 W to 3000 W THE POWER TEST EXPERTS. www.inteproate.com

PSI 9000 2U Series. Programmable DC Power Supplies. 1000 W to 3000 W THE POWER TEST EXPERTS. www.inteproate.com PSI 9000 2U Series 1000 W o 3000 W Programmable DC Power Supplies THE POWER TEST EXPERTS PSI 9000 2U Series 1000 W o 3000 W Produc Overview PSI 9000 2U The PSI 9000 Series of high performance programmable

More information

IR Receiver Modules for Remote Control Systems

IR Receiver Modules for Remote Control Systems IR Receiver Modules for Remoe Conrol Sysems 1926 FEATURES Very low supply curren Phoo deecor and preamplifier in one package Inernal filer for PCM frequency Supply volage: 2.5 V o 5.5 V Improved immuniy

More information

Astable multivibrator using the 555 IC.(10)

Astable multivibrator using the 555 IC.(10) Visi hp://elecronicsclub.cjb.ne for more resources THE 555 IC TIMER The 555 IC TIMER.(2) Monosable mulivibraor using he 555 IC imer...() Design Example 1 wih Mulisim 2001 ools and graphs..(8) Lile descripion

More information

Version 2.1, 6 May 2011

Version 2.1, 6 May 2011 Version 2.1, 6 May 2011 Off-Line SMPS Curren Mode Conroller wih inegraed 650V CoolMOS and Sarup cell (frequency jier Mode) in FullPak Power Managemen & Supply N e v e r s o p h i n k i n g. Revision Hisory:

More information

Multiprocessor Systems-on-Chips

Multiprocessor Systems-on-Chips Par of: Muliprocessor Sysems-on-Chips Edied by: Ahmed Amine Jerraya and Wayne Wolf Morgan Kaufmann Publishers, 2005 2 Modeling Shared Resources Conex swiching implies overhead. On a processing elemen,

More information

TDA7377H. 2x30W DUAL/QUAD POWER AMPLIFIER FOR CAR RADIO. HIGH OUTPUT POWER CAPABILITY: 2x35W max./4ω. 4 x 10W/2Ω @14.4V, 1KHz, 10%

TDA7377H. 2x30W DUAL/QUAD POWER AMPLIFIER FOR CAR RADIO. HIGH OUTPUT POWER CAPABILITY: 2x35W max./4ω. 4 x 10W/2Ω @14.4V, 1KHz, 10% TDA7377 2x30W DUAL/QUAD POWER AMPLIFIER FOR CAR RADIO HIGH OUTPUT POWER CAPABILITY: 2x35W max./4ω 2x30W/4Ω EIAJ 2x30W/4Ω EIAJ 2 x 20W/4Ω @14.4V, 1KHz, 10% 4 x 6W/4Ω @14.4V,1KHz, 10% 4 x 10W/2Ω @14.4V,

More information

Silicon Diffused Power Transistor

Silicon Diffused Power Transistor GENERAL DESCRIPTION High volage, high-speed swiching npn ransisors in a fully isolaed SOT99 envelope, primarily for use in horizonal deflecion circuis of colour elevision receivers. QUICK REFERENCE DATA

More information

VIPer12ADIP VIPer12AS

VIPer12ADIP VIPer12AS VIPer12ADIP VIPer12AS LOW POWER OFF LINE SMPS PRIMARY SWITCHER TYPICAL POWER CAPABILITY Mains ype SO-8 DIP8 European (195-265 Vac) 8 W 13 W US / Wide range (85-265 Vac) 5 W 8 W n FIXED 60 KHZ SWITCHING

More information

RC (Resistor-Capacitor) Circuits. AP Physics C

RC (Resistor-Capacitor) Circuits. AP Physics C (Resisor-Capacior Circuis AP Physics C Circui Iniial Condiions An circui is one where you have a capacior and resisor in he same circui. Suppose we have he following circui: Iniially, he capacior is UNCHARGED

More information

OPERATION MANUAL. Indoor unit for air to water heat pump system and options EKHBRD011ABV1 EKHBRD014ABV1 EKHBRD016ABV1

OPERATION MANUAL. Indoor unit for air to water heat pump system and options EKHBRD011ABV1 EKHBRD014ABV1 EKHBRD016ABV1 OPERAION MANUAL Indoor uni for air o waer hea pump sysem and opions EKHBRD011ABV1 EKHBRD014ABV1 EKHBRD016ABV1 EKHBRD011ABY1 EKHBRD014ABY1 EKHBRD016ABY1 EKHBRD011ACV1 EKHBRD014ACV1 EKHBRD016ACV1 EKHBRD011ACY1

More information

F3 PWM controller ICE3BS03LJG. Off-Line SMPS Current Mode Controller with integrated 500V Startup Cell ( Latched and frequency jitter Mode )

F3 PWM controller ICE3BS03LJG. Off-Line SMPS Current Mode Controller with integrated 500V Startup Cell ( Latched and frequency jitter Mode ) Version 2.0, 6 Dec 2007 F3 PWM conroller Off-Line SMPS Curren Conroller wih inegraed 500V Sarup Cell ( Lached and frequency jier ) Power Managemen Supply Never sop hinking. F3 PWM conroller Revision Hisory:

More information

CoolSET -F3R ICE3BR0665J. Off-Line SMPS Current Mode Controller with integrated 650V CoolMOS and Startup cell (frequency jitter Mode) in DIP-8

CoolSET -F3R ICE3BR0665J. Off-Line SMPS Current Mode Controller with integrated 650V CoolMOS and Startup cell (frequency jitter Mode) in DIP-8 Version 2.3, 19 Nov 2012 CoolSET -F3R Off-Line SMPS Curren Mode Conroller wih inegraed 650V CoolMOS and Sarup cell (frequency jier Mode) in DIP-8 Power Managemen Supply Never sop hinking. Revision Hisory:

More information

TSG-RAN Working Group 1 (Radio Layer 1) meeting #3 Nynashamn, Sweden 22 nd 26 th March 1999

TSG-RAN Working Group 1 (Radio Layer 1) meeting #3 Nynashamn, Sweden 22 nd 26 th March 1999 TSG-RAN Working Group 1 (Radio Layer 1) meeing #3 Nynashamn, Sweden 22 nd 26 h March 1999 RAN TSGW1#3(99)196 Agenda Iem: 9.1 Source: Tile: Documen for: Moorola Macro-diversiy for he PRACH Discussion/Decision

More information

Pulse-Width Modulation Inverters

Pulse-Width Modulation Inverters SECTION 3.6 INVERTERS 189 Pulse-Widh Modulaion Inverers Pulse-widh modulaion is he process of modifying he widh of he pulses in a pulse rain in direc proporion o a small conrol signal; he greaer he conrol

More information

Module 4. Single-phase AC circuits. Version 2 EE IIT, Kharagpur

Module 4. Single-phase AC circuits. Version 2 EE IIT, Kharagpur Module 4 Single-phase A circuis ersion EE T, Kharagpur esson 5 Soluion of urren in A Series and Parallel ircuis ersion EE T, Kharagpur n he las lesson, wo poins were described:. How o solve for he impedance,

More information

Chapter 7. Response of First-Order RL and RC Circuits

Chapter 7. Response of First-Order RL and RC Circuits Chaper 7. esponse of Firs-Order L and C Circuis 7.1. The Naural esponse of an L Circui 7.2. The Naural esponse of an C Circui 7.3. The ep esponse of L and C Circuis 7.4. A General oluion for ep and Naural

More information

DC-DC Boost Converter with Constant Output Voltage for Grid Connected Photovoltaic Application System

DC-DC Boost Converter with Constant Output Voltage for Grid Connected Photovoltaic Application System DC-DC Boos Converer wih Consan Oupu Volage for Grid Conneced Phoovolaic Applicaion Sysem Pui-Weng Chan, Syafrudin Masri Universii Sains Malaysia E-mail: edmond_chan85@homail.com, syaf@eng.usm.my Absrac

More information

¼ WARNING. KNX Logic module Basic REG-K. Connections, displays and operating elements. Table of contents. Mounting the module

¼ WARNING. KNX Logic module Basic REG-K. Connections, displays and operating elements. Table of contents. Mounting the module KNX Logic module Basic REG-K Produc descripion Connecions, displays and operaing elemens 3 2 F E 2 A Ar.-Nr. MTN6769 Table of conens Geing o know he module... Connecions, displays and operaing elemens...

More information

Intruder alarm integration 12V 12-24V. DC Only. Set N.C. N.O. COM N.C. N.O. COM. Alarm 12V. Exit. Contact N.C. COM PSU COM N.C. 1 N.C.

Intruder alarm integration 12V 12-24V. DC Only. Set N.C. N.O. COM N.C. N.O. COM. Alarm 12V. Exit. Contact N.C. COM PSU COM N.C. 1 N.C. For DC S Se Se Server Conneced Server Conneced 0 Server Link 00 0/00 Eherne hp://paxon.info/07 LABEL 3456 HERE 00-0-0-03-04-05 0 Server Link 00 ns End of Line Terminaion RS485 Nework CAT5 Cable Coding

More information

CLOCK SKEW CAUSES CLOCK SKEW DUE TO THE DRIVER EROSION OF THE CLOCK PERIOD

CLOCK SKEW CAUSES CLOCK SKEW DUE TO THE DRIVER EROSION OF THE CLOCK PERIOD DESIGNING WITH HIGH SPEED CLOCK DRIERS CONFERENCE PAPER CP-19 Inegraed Device Technology, Inc. By Sanley Hronik ABSTRACT Today s high speed sysems are encounering problems wih clocking ha were no consideraions

More information

Capacitors and inductors

Capacitors and inductors Capaciors and inducors We coninue wih our analysis of linear circuis by inroducing wo new passive and linear elemens: he capacior and he inducor. All he mehods developed so far for he analysis of linear

More information

TN/TS-1500 Inverter Instruction Manual

TN/TS-1500 Inverter Instruction Manual TN/TS-15 Inverer Insrucion Manual TN/TS-15 Inverer Insrucion Manual Index 1. Safey Guidelines... 1 2. Inroducion... 1 2.1 Feaures... 2 2.2 Main Specificaion... 2 2.3 Sysem Block Diagram... 3 3. User Inerface...

More information

Innovation + Quality. Product range Valves and controls for cooling systems

Innovation + Quality. Product range Valves and controls for cooling systems Innovaion + Qualiy Produc range Valves and conrols for cooling sysems Cooling sysems Chilled ceiling sysems make up a growing share in he cooling secor for office buildings. Wih due consideraion o some

More information

Ecodesign Requirements for Electric Motors Towards a System-Approach. Demonstrating the benefits of motor starters for fixed speed applications

Ecodesign Requirements for Electric Motors Towards a System-Approach. Demonstrating the benefits of motor starters for fixed speed applications Ecodesign Requiremens for Elecric Moors Towards a Sysem-Approach Demonsraing he benefis of moor sarers for fixed speed applicaions A message from he CAPIEL Presidens Philippe Sauer CAPIEL Presiden Karlheinz

More information

MCR-S- -DCI. Current Transducer up to 55 A, Programmable and Configurable INTERFACE. Data Sheet. 1 Description

MCR-S- -DCI. Current Transducer up to 55 A, Programmable and Configurable INTERFACE. Data Sheet. 1 Description Curren Transducer up o 55 A, Programmable and Configurable INTERFACE Daa Shee PHOENIX CONTACT - 06/2006 1 Descripion MCR-S- -DCI curren ransducers offer users he opion of ordering a preconfigured device,

More information

Automatic measurement and detection of GSM interferences

Automatic measurement and detection of GSM interferences Auomaic measuremen and deecion of GSM inerferences Poor speech qualiy and dropped calls in GSM neworks may be caused by inerferences as a resul of high raffic load. The radio nework analyzers from Rohde

More information

Electromagnetic Compatibility (EMC)

Electromagnetic Compatibility (EMC) Elecromagneic Compaibiliy (EMC) General The aim of elecromagneic compaibiliy consideraions is o avoid or minimize he influence of elecromagneic phenomena on a device, equipmen or sysem and on living or

More information

9. Capacitor and Resistor Circuits

9. Capacitor and Resistor Circuits ElecronicsLab9.nb 1 9. Capacior and Resisor Circuis Inroducion hus far we have consider resisors in various combinaions wih a power supply or baery which provide a consan volage source or direc curren

More information

ECEN4618: Experiment #1 Timing circuits with the 555 timer

ECEN4618: Experiment #1 Timing circuits with the 555 timer ECEN4618: Experimen #1 Timing circuis wih he 555 imer cæ 1998 Dragan Maksimović Deparmen of Elecrical and Compuer Engineering Universiy of Colorado, Boulder The purpose of his lab assignmen is o examine

More information

CHARGE AND DISCHARGE OF A CAPACITOR

CHARGE AND DISCHARGE OF A CAPACITOR REFERENCES RC Circuis: Elecrical Insrumens: Mos Inroducory Physics exs (e.g. A. Halliday and Resnick, Physics ; M. Sernheim and J. Kane, General Physics.) This Laboraory Manual: Commonly Used Insrumens:

More information

< IGBT MODULES > CM400DY-34A HIGH POWER SWITCHING USE INSULATED TYPE APPLICATION

< IGBT MODULES > CM400DY-34A HIGH POWER SWITCHING USE INSULATED TYPE APPLICATION Dual (Half-Bridge) Collecor curren I C...... 4A Collecor-emier volage CES... 7 Maximum juncion emperaure T jmax... 5 C Fla base Type Copper base plae (non-plaing) RoHS Direcive complian UL Recognized under

More information

The Journey. Roadmaps. 2 Architecture. 3 Innovation. Smart City

The Journey. Roadmaps. 2 Architecture. 3 Innovation. Smart City The Journe 1 Roadmaps 2 Archiecure 3 Innovaion Uili Mobili Living Enr Poins o a Grid Journe Sraeg COMM projec Evoluion no Revoluion IT Concerns Daa Mgm Inegraion Archiecure Analics Regulaor Analics Disribued

More information

ALSO IN THIS ISSUE: For more information contact: Graham Robertson Media Relations, 310-726-8512 FOR DESIGNERS AND SYSTEMS ENGINEERS

ALSO IN THIS ISSUE: For more information contact: Graham Robertson Media Relations, 310-726-8512 FOR DESIGNERS AND SYSTEMS ENGINEERS www.powerelecronics.com JUNE 2009 Vol. 35, No. 6 FOR DESIGNERS AND SYSTEMS ENGINEERS ALSO IN THIS ISSUE: For more informaion conac: Graham Roberson Media Relaions, 310-726-8512 New PWM Slope Compensaion

More information

Fusible, Non-Flammable Resistors

Fusible, Non-Flammable Resistors NFR25/25H Fusible, Non-Flammable Resisors A homogenous film of meal alloy is deposied on a high grade ceramic body. Afer a helical groove has been cu in he resisive layer, inned connecing wires of elecrolyic

More information

Behavior Analysis of a Biscuit Making Plant using Markov Regenerative Modeling

Behavior Analysis of a Biscuit Making Plant using Markov Regenerative Modeling Behavior Analysis of a Biscui Making lan using Markov Regeneraive Modeling arvinder Singh & Aul oyal Deparmen of Mechanical Engineering, Lala Lajpa Rai Insiue of Engineering & Technology, Moga -, India

More information

DILET, ETR Timing Relays, measuring relays and EMR Monitoring relays

DILET, ETR Timing Relays, measuring relays and EMR Monitoring relays DILET, ETR Timing Relays, relays and EMR Monioring relays The of elecronic ime relays comprises hree differen consrucion ypes, adaped for he mos widely varying applicaions. The ime relays are mouned on

More information

LLC Resonant Converter Reference Design using the dspic DSC

LLC Resonant Converter Reference Design using the dspic DSC LLC Resonan Converer Reference Design using he dspic DSC 2010 Microchip Technology Incorporaed. All Righs Reserved. LLC Resonan Converer Webinar Slide 1 Hello, and welcome o his web seminar on Microchip

More information

Monotonic, Inrush Current Limited Start-Up for Linear Regulators

Monotonic, Inrush Current Limited Start-Up for Linear Regulators Applicaion epor SLA156 March 2004 Monoonic, Inrush urren Limied Sar-Up for Linear egulaors Jeff Falin PMP Porable Producs ABSA he oupu volage of a linear regulaor ends o rise quickly afer i is enabled.

More information

WATER MIST FIRE PROTECTION RELIABILITY ANALYSIS

WATER MIST FIRE PROTECTION RELIABILITY ANALYSIS WATER MIST FIRE PROTECTION RELIABILITY ANALYSIS Shuzhen Xu Research Risk and Reliabiliy Area FM Global Norwood, Massachuses 262, USA David Fuller Engineering Sandards FM Global Norwood, Massachuses 262,

More information

Signal Rectification

Signal Rectification 9/3/25 Signal Recificaion.doc / Signal Recificaion n imporan applicaion of juncion diodes is signal recificaion. here are wo ypes of signal recifiers, half-wae and fullwae. Le s firs consider he ideal

More information

Voltage level shifting

Voltage level shifting rek Applicaion Noe Number 1 r. Maciej A. Noras Absrac A brief descripion of volage shifing circuis. 1 Inroducion In applicaions requiring a unipolar A volage signal, he signal may be delivered from a bi-polar

More information

Flash Memory: An Overview

Flash Memory: An Overview : An Overview Applicaion Noe 1. Inroducion 2. Volaile Memory All compuer-based sysems conain memory. Memory is where informaion is sored while waiing o be operaed on by he Cenral Processing Uni (CPU) of

More information

Task is a schedulable entity, i.e., a thread

Task is a schedulable entity, i.e., a thread Real-Time Scheduling Sysem Model Task is a schedulable eniy, i.e., a hread Time consrains of periodic ask T: - s: saring poin - e: processing ime of T - d: deadline of T - p: period of T Periodic ask T

More information

NOTES ON OSCILLOSCOPES

NOTES ON OSCILLOSCOPES NOTES ON OSCILLOSCOPES NOTES ON... OSCILLOSCOPES... Oscilloscope... Analog and Digial... Analog Oscilloscopes... Cahode Ray Oscilloscope Principles... 5 Elecron Gun... 5 The Deflecion Sysem... 6 Displaying

More information

NCV7341. High Speed Low Power CAN Transceiver

NCV7341. High Speed Low Power CAN Transceiver High Speed Low Power CAN Transceiver The NCV731 CAN transceiver is the interface between a controller area network (CAN) protocol controller the physical bus may be used in both 12 V 2 V systems. The transceiver

More information

MICROMASTER 430 7.5 kw - 250 kw

MICROMASTER 430 7.5 kw - 250 kw MICROMASTER 43 7.5 kw - 25 kw Operaing Insrucions (Compac) Issue /6 User Documenaion Warnings, Cauions and Noes Issue /6 Warnings, Cauions and Noes The following Warnings, Cauions and Noes are provided

More information

µ r of the ferrite amounts to 1000...4000. It should be noted that the magnetic length of the + δ

µ r of the ferrite amounts to 1000...4000. It should be noted that the magnetic length of the + δ Page 9 Design of Inducors and High Frequency Transformers Inducors sore energy, ransformers ransfer energy. This is he prime difference. The magneic cores are significanly differen for inducors and high

More information

Inductance and Transient Circuits

Inductance and Transient Circuits Chaper H Inducance and Transien Circuis Blinn College - Physics 2426 - Terry Honan As a consequence of Faraday's law a changing curren hrough one coil induces an EMF in anoher coil; his is known as muual

More information

The Application of Multi Shifts and Break Windows in Employees Scheduling

The Application of Multi Shifts and Break Windows in Employees Scheduling The Applicaion of Muli Shifs and Brea Windows in Employees Scheduling Evy Herowai Indusrial Engineering Deparmen, Universiy of Surabaya, Indonesia Absrac. One mehod for increasing company s performance

More information

I C... 1000 A V CES... 1700 V Flat base Type Copper (non-plating) base plate RoHS Directive compliant. UL Recognized under UL1557, File E323585

I C... 1000 A V CES... 1700 V Flat base Type Copper (non-plating) base plate RoHS Directive compliant. UL Recognized under UL1557, File E323585 CMDUC-34NF CMDUC-34NF - MPD series using 5 h Generaion IGBT and FWDi - I C.... A CES....... 17 Fla base Type Copper (non-plaing) base plae RoHS Direcive complian Dual swich (Half-Bridge) UL Recognized

More information

Full-wave rectification, bulk capacitor calculations Chris Basso January 2009

Full-wave rectification, bulk capacitor calculations Chris Basso January 2009 ull-wave recificaion, bulk capacior calculaions Chris Basso January 9 This shor paper shows how o calculae he bulk capacior value based on ripple specificaions and evaluae he rms curren ha crosses i. oal

More information

Differential Equations and Linear Superposition

Differential Equations and Linear Superposition Differenial Equaions and Linear Superposiion Basic Idea: Provide soluion in closed form Like Inegraion, no general soluions in closed form Order of equaion: highes derivaive in equaion e.g. dy d dy 2 y

More information

Photovoltaic Power Control Using MPPT and Boost Converter

Photovoltaic Power Control Using MPPT and Boost Converter 23 Phoovolaic Power Conrol Using MPP and Boos Converer A.Aou, A.Massoum and M.Saidi Absrac he sudies on he phoovolaic sysem are exensively increasing because of a large, secure, essenially exhausible and

More information

GUIDE GOVERNING SMI RISK CONTROL INDICES

GUIDE GOVERNING SMI RISK CONTROL INDICES GUIDE GOVERNING SMI RISK CONTROL IND ICES SIX Swiss Exchange Ld 04/2012 i C O N T E N T S 1. Index srucure... 1 1.1 Concep... 1 1.2 General principles... 1 1.3 Index Commission... 1 1.4 Review of index

More information

High-speed CAN transceiver. 2.1 Optimized for in-vehicle high-speed communication. 2.3 Protection and diagnosis (detection and signalling)

High-speed CAN transceiver. 2.1 Optimized for in-vehicle high-speed communication. 2.3 Protection and diagnosis (detection and signalling) Rev. 04 29 July 2008 Product data sheet 1. General description 2. Features The provides an advanced interface between the protocol controller the physical bus in a Controller Area Network (CAN) node. The

More information

Application of Fast Response Dual-Colour Pyroelectric Detectors with Integrated Op Amp in a Low Power NDIR Gas Monitor

Application of Fast Response Dual-Colour Pyroelectric Detectors with Integrated Op Amp in a Low Power NDIR Gas Monitor Applicaion of Fas Response DualColour Pyroelecric Deecors wih Inegraed Op Amp in a Low Power NDIR Gas Monior Infraec GmbH, Gosrizer Sr. 663, 027 Dresden. Inroducion Monioring he concenraion of carbon dioxide

More information

COMP VFF 9 LOW CLAMP &DISABLE TIME OUT OFF2 LINE VOLTAGE FEEDFORWARD. Reference voltages Internal supply UVLO. Vth UVLO_SHF + 400 ua 5.

COMP VFF 9 LOW CLAMP &DISABLE TIME OUT OFF2 LINE VOLTAGE FEEDFORWARD. Reference voltages Internal supply UVLO. Vth UVLO_SHF + 400 ua 5. Muli-mode conroller for SMPS Feaures Selecable muli-mode operaion: fixed frequency or quasi-resonan On-board 700 V high-volage sar-up Advanced ligh load managemen Low quiescen curren (< 3 ma) Adapive UVLO

More information

TOOL MASTER Quadra. Tool presetting The professional and compact solution for your manufacturing

TOOL MASTER Quadra. Tool presetting The professional and compact solution for your manufacturing TOOL MASTER Quadra PWB ool preseers sand for maximum produciviy wih ulimae user-friendliness. The ooling qualiy and imely deecion of damaged ools boos produciviy and reduce he number of rejecs. You will

More information

RIM AND MORTICE LOCKS

RIM AND MORTICE LOCKS RIM AND MORTICE LOCKS Premium qualiy mechanical locking. True o he superior build principles adhered o for all Abloy locks, our rim and morice range provides robus, funcional securiy where a mechanical

More information

User Manual. Software Revision >V10 RINS1705-1

User Manual. Software Revision >V10 RINS1705-1 User Manual INTERNAL SIREN WARNING The Enforcer 32-WE conrol panel conains a 100dBA siren, please be aware of his when in use Sofware Revision >V10 RINS1705-1 Conens Page A. Inroducion... 3 B. Operaing

More information

Timers + Light Controller Series ENYA

Timers + Light Controller Series ENYA Timers + Ligh Conroller eries EYA Timer series EYA The imers in he EYA series are he culminaion of sysemaic furher developmen of he successful OCTO series. The new imers, in he insallaion design syle,

More information

Statistical Analysis with Little s Law. Supplementary Material: More on the Call Center Data. by Song-Hee Kim and Ward Whitt

Statistical Analysis with Little s Law. Supplementary Material: More on the Call Center Data. by Song-Hee Kim and Ward Whitt Saisical Analysis wih Lile s Law Supplemenary Maerial: More on he Call Cener Daa by Song-Hee Kim and Ward Whi Deparmen of Indusrial Engineering and Operaions Research Columbia Universiy, New York, NY 17-99

More information

Economics Honors Exam 2008 Solutions Question 5

Economics Honors Exam 2008 Solutions Question 5 Economics Honors Exam 2008 Soluions Quesion 5 (a) (2 poins) Oupu can be decomposed as Y = C + I + G. And we can solve for i by subsiuing in equaions given in he quesion, Y = C + I + G = c 0 + c Y D + I

More information

EN Installation and Maintenance guide

EN Installation and Maintenance guide E Insallaion and Mainenance guide V80-3P/V130-3P/V20-3P Rev. 201.1 Preface Congraulaions on your purchase of a pool hea pump from Gullberg & Jansson AB. We hope i mees your expecaions and provides you

More information

Cointegration: The Engle and Granger approach

Cointegration: The Engle and Granger approach Coinegraion: The Engle and Granger approach Inroducion Generally one would find mos of he economic variables o be non-saionary I(1) variables. Hence, any equilibrium heories ha involve hese variables require

More information

Model-Based Monitoring in Large-Scale Distributed Systems

Model-Based Monitoring in Large-Scale Distributed Systems Model-Based Monioring in Large-Scale Disribued Sysems Diploma Thesis Carsen Reimann Chemniz Universiy of Technology Faculy of Compuer Science Operaing Sysem Group Advisors: Prof. Dr. Winfried Kalfa Dr.

More information

Model Number Structure

Model Number Structure Solid-sae Muli-funcional Timers CSM DS_E_6_ Muliple Operaing Modes and Muliple Time Ranges. DIN 48 x 48-mm Mulifuncional Timer wih Wide AC/DC Supply Range for Boh High and Low Volages. A wide AC/DC power

More information

Information Systems for Business Integration: ERP Systems

Information Systems for Business Integration: ERP Systems Informaion Sysems for Business Inegraion: ERP Sysems (December 3, 2012) BUS3500 - Abdou Illia, Fall 2012 1 LEARNING GOALS Explain he difference beween horizonal and verical business inegraion. Describe

More information

I) EQUATION 1: SHUNT-CONTROLLED

I) EQUATION 1: SHUNT-CONTROLLED Swich Mode Power Supply (SMPS) Topologies (Par I) Auhor: Mohammad Kamil Microchip Technology Inc. EQUATION 1: SHUNT-CONTROLLED REGULATOR POWER LOSS INTRODUCTION The indusry drive oward smaller, ligher

More information

11/6/2013. Chapter 14: Dynamic AD-AS. Introduction. Introduction. Keeping track of time. The model s elements

11/6/2013. Chapter 14: Dynamic AD-AS. Introduction. Introduction. Keeping track of time. The model s elements Inroducion Chaper 14: Dynamic D-S dynamic model of aggregae and aggregae supply gives us more insigh ino how he economy works in he shor run. I is a simplified version of a DSGE model, used in cuing-edge

More information

IR21593(S) DIMMING BALLAST CONTROL IC. Features. Packages. Description. Typical Connection ADVANCE DATA. Data Sheet No. PD60194. www.irf.

IR21593(S) DIMMING BALLAST CONTROL IC. Features. Packages. Description. Typical Connection ADVANCE DATA. Data Sheet No. PD60194. www.irf. Feaures Ballas conrol and half-bridge driver in one IC Transformer-less lamp power sensing Closed-loop lamp power conrol Closed-loop prehea curren conrol Programmable prehea ime Programmable prehea curren

More information

SELF-EVALUATION FOR VIDEO TRACKING SYSTEMS

SELF-EVALUATION FOR VIDEO TRACKING SYSTEMS SELF-EVALUATION FOR VIDEO TRACKING SYSTEMS Hao Wu and Qinfen Zheng Cenre for Auomaion Research Dep. of Elecrical and Compuer Engineering Universiy of Maryland, College Park, MD-20742 {wh2003, qinfen}@cfar.umd.edu

More information