Following are definitions for major parameters to consider when selecting a power line polarity protection diode for an automotive application.



Similar documents
SDC15. TVS Diode Array for ESD Protection of 12V Data and Power Lines. PROTECTION PRODUCTS Description. Features. Mechanical Characteristics

Schottky Rectifier, 1.0 A

PDS5100H. Product Summary. Features and Benefits. Mechanical Data. Description and Applications. Ordering Information (Note 5) Marking Information

High Performance Schottky Rectifier, 3.0 A

STPS5L60. Power Schottky rectifier. Description. Features

P6KE6.8A thru P6KE540A. TRANSZORB Transient Voltage Suppressors. Vishay General Semiconductor. FEATURES PRIMARY CHARACTERISTICS

Schottky Rectifier, 1.0 A

Features. Symbol JEDEC TO-220AB

Schottky Rectifier, 1 A

High Performance Schottky Rectifier, 1.0 A

NUP2105L, SZNUP2105L. Dual Line CAN Bus Protector SOT 23 DUAL BIDIRECTIONAL VOLTAGE SUPPRESSOR 350 W PEAK POWER

IEC ESD Immunity and Transient Current Capability for the SP72X Series Protection Arrays

LC05-6. Dual Low Capacitance TVS Array for Telecom Line-Card Applications. PROTECTION PRODUCTS Description. Features. Mechanical Characteristics

SM712 Series 600W Asymmetrical TVS Diode Array

Technical Article MS-2443

Small Signal Fast Switching Diode

1.5KE6.8A thru 1.5KE540A, 1N6267A thru 1N6303A. TRANSZORB Transient Voltage Suppressors. Vishay General Semiconductor.

Three-phase monitoring relay CM-PFE

Dual Common-Cathode Ultrafast Plastic Rectifier

LC03-6. Low Capacitance TVS for High-Speed Data Interfaces. Features. Description. Mechanical Characteristics. Applications

AN1826 APPLICATION NOTE TRANSIENT PROTECTION SOLUTIONS: Transil diode versus Varistor

AN Surging Ideas TVS Diode Application Note PROTECTION PRODUCTS. TRANSIENT IMMUNITY STANDARDS: IEC x

Small Signal Fast Switching Diode FEATURES PART ORDERING CODE INTERNAL CONSTRUCTION TYPE MARKING REMARKS

Solar Cell Bypass Diodes in Silicon Crystalline Photovoltaic Panels

Surface Mount Schottky Barrier

10MQ100N SCHOTTKY RECTIFIER. I F(AV) = 2.1Amp V R = 100V. Bulletin PD rev. M 07/04. Major Ratings and Characteristics. Description/ Features

Blocking Maximum rated values 1) Parameter Symbol Conditions Value Unit. f = 50 Hz, t p = 10 ms, T vj = C f = 5 Hz, t p = 10 ms,

STTH1R04-Y. Automotive ultrafast recovery diode. Features. Description

BAT64... BAT64-02W BAT64-02V BAT64-04 BAT64-04W BAT64-05 BAT64-05W BAT64-06W

AN2689 Application note

1.5SMC6.8AT3G Series, SZ1.5SMC6.8AT3G Series Watt Peak Power Zener Transient Voltage Suppressors. Unidirectional*

SMD version of BUK118-50DL

High Performance Schottky Rectifier, 1 A

STIEC45-xxAS, STIEC45-xxACS

RClamp0821P. Ultra-Low Capacitance 1-Line ESD protection. PROTECTION PRODUCTS - RailClamp Description. Features. Mechanical Characteristics

STPS40L15CW. 2 x 20 Amps SCHOTTKY RECTIFIER. Case Styles. I F(AV) = 40Amp V R = 15V. Bulletin PD rev. B 10/06. Description/ Features

CAN bus ESD protection diode

D-PAK version of BUK117-50DL

Fundamental Characteristics of Thyristors

Cable Discharge Event

SM Series 400W TVS Diode Array

1SMA5.0AT3G Series, SZ1SMA5.0AT3G Series. 400 Watt Peak Power Zener Transient Voltage Suppressors. Unidirectional

Schottky Rectifier, 100 A

VN5R003H-E. 3 mω reverse battery protection switch. Features. Description. Application

1SMB59xxBT3G Series, SZ1SMB59xxT3G Series. 3 Watt Plastic Surface Mount Zener Voltage Regulators

38 Series - Relay interface modules A

Application Note AN-1005

STPS20L15DPbF SCHOTTKY RECTIFIER. Case Styles. I F(AV) = 20Amp V R = 15V. Bulletin PD rev. A 02/07. Major Ratings and Characteristics

Metal-Oxide Varistors (MOVs) Surface Mount Multilayer Varistors (MLVs) > MLN Series. MLN SurgeArray TM Suppressor. Description

Load Dump Pulses According to Various Test Requirements: One Phenomenon Two Methods of Generation A Comparison

N-channel enhancement mode TrenchMOS transistor

HFA08TB60. Ultrafast, Soft Recovery Diode HEXFRED TM TO-220AC. Bulletin PD rev. A 11/00

Features Benefits Description TO-247AC (Modified) Absolute Maximum Ratings Parameter Max Units

Low forward voltage High breakdown voltage Guard-ring protected Hermetically sealed glass SMD package

STP62NS04Z N-CHANNEL CLAMPED 12.5mΩ - 62A TO-220 FULLY PROTECTED MESH OVERLAY MOSFET

AND8229/D. An Introduction to Transient Voltage Suppression Devices APPLICATION NOTE

SK54B SCHOTTKY RECTIFIER

Solar Mobile charging Solutions

38 SERIES. Relay interface modules A. EMR Electromechanical Relays. Common features. SSR Solid State Relays. 6.

Electronic timer CT-AHD.12 OFF-delayed with 1 c/o (SPDT) contact

38 Series - Relay interface modules A

Silvertel. Ag Features. 2 Description. Power-over-Ethernet Plus Module. IEEE802.3at and IEEE802.3af compliant. Maximum 30W output power

Green. Part Number Qualification Case Packaging B1X0Q-13-F Automotive SMA 5,000/Tape & Reel B1X0BQ-13-F Automotive SMB 3,000/Tape & Reel

LIN-bus ESD protection diode

Surface Mount TRANSZORB Transient Voltage Suppressors

HFA15TB60 HFA15TB60-1

Electronic timer CT-VBS OFF-delayed without auxiliary voltage, for DC contactors Data sheet

RClamp0504P RailClamp Low Capacitance TVS Array

Rated Power(W) 8W 2. EG-LED W 3. EG-LED W

Diode, Schottky SMB/DO-214AA. Page <1> 24/04/08 V1.1. Dimensions Inches (Millimeters)

µclamp3601p TVS Diode for Proximity Switch Input Protection PROTECTION PRODUCTS - MicroClamp Description Features Mechanical Characteristics

30BQ100PbF SCHOTTKY RECTIFIER. 3 Amp. I F(AV) = 3.0Amp V R = 100V. Bulletin PD rev. C 01/07. Major Ratings and Characteristics

uclamp3301h Low Voltage μclamp TM for ESD and CDE Protection PRELIMINARY Features

MBR2045CT SCHOTTKY BARRIER RECTIFIER 20 AMPERES 45 VOLTS

34 Series - Slim electromechanical PCB relays 6 A. Features SERIES 34.51

W- Series. Features: WOB. Mechanical Data Case : Moulded plastic. Lead : Solder plated. Weight : 1.10 grams. Page <1> 15/07/08 V1.

DISCRETE SEMICONDUCTORS DATA SHEET

MasterINTERFACE 39 Series - Relay interface modules

1N5820, 1N5821, 1N5822. Axial Lead Rectifiers SCHOTTKY BARRIER RECTIFIERS 3.0 AMPERES 20, 30, 40 VOLTS

LC01-6. Low Capacitance TVS for High-Speed Telecommunication Systems. PROTECTION PRODUCTS Description. Features. Applications

IRF640, RF1S640, RF1S640SM

ESDLIN1524BJ. Transil, transient voltage surge suppressor diode for ESD protection. Features. Description SOD323

IDB04E120. Fast Switching EmCon Diode. Product Summary V RRM 1200 V I F 4 A V F 1.65 V T jmax 150 C

STP10NK80ZFP STP10NK80Z - STW10NK80Z

LUXEON LEDs. Circuit Design and Layout Practices to Minimize Electrical Stress. Introduction. Scope LED PORTFOLIO

IDB45E60. Fast Switching EmCon Diode. Product Summary V RRM 600 V I F 45 A V F 1.5 V T jmax 175 C

High Voltage Surge Stoppers Ease MIL-STD-1275D Compliance by Replacing Bulky Passive Components

ABB 1. Three-phase monitoring relay CM-PFS. Data sheet. Features. Approvals. Marks. Order data. Order data - Accessories. Application.

Module 11: Conducted Emissions

PESDxU1UT series. 1. Product profile. Ultra low capacitance ESD protection diode in SOT23 package. 1.1 General description. 1.

MCR08B, MCR08M. Sensitive Gate Silicon Controlled Rectifiers. Reverse Blocking Thyristors. SCRs 0.8 AMPERES RMS 200 thru 600 VOLTS

uclamp3301d Low Voltage µclamp TM for ESD and CDE Protection PROTECTION PRODUCTS - MicroClamp TM Description Features Mechanical Characteristics

Product Overview 2Pro AC Devices Provide Overcurrent/ Overvoltage/Overtemperature Protection for AC Industrial and Appliance Applications

PMEG3015EH; PMEG3015EJ

PMEG2020EH; PMEG2020EJ

TOSHIBA Insulated Gate Bipolar Transistor Silicon N Channel IGBT GT60J323

STTH2R06. High efficiency ultrafast diode. Features. Description

Transcription:

Diode rectifiers are ideal solutions for automotive electronic power line protection and have several important parameters for these applications, including: Forward current, repetitive reverse voltage, forward surge current, and fusing rate. A major challenge in automotive design is protecting electronics, such as control units, sensors, and entertainment systems, against damaging reverse voltages, voltage transients, electrostatic discharge (ESD, and noise that are present on the power line. Diode rectifiers are ideal solutions for automotive electronic power line protection and have several important parameters for these applications, including: Forward current, repetitive reverse voltage, forward surge current, and fusing rate. Parameters in automotive electronic equipment test conditions and applications Basic circuits for polarity protection are shown below. Circuit (A offers polarity protection only, while Circuit (B features polarity protection with load dump suppression. Following are definitions for major parameters to consider when selecting a power line polarity protection diode for an automotive application. Maximum repetitive reverse voltage (V RRM The maximum repetitive reverse voltage is the maximum voltage that the diode can withstand in reverse bias mode. In reverse bias mode, leakage current through the diode can generate heat in the diode junction and lead to thermal runaway. Tests that simulate this condition include the U.S. s ISO-7637-2 pulse 1 and 3a, and Japan s JASO D001-94, standard type B and E. Each peak voltage for these tests is specified in the following table.

According to the above test conditions, the V RRM of a diode for power line protection should be 300 to 400V for a 12V power train and 600V for a 24V power train. Forward current (I F(AV The specification for forward current in datasheets usually means the maximum average forward current the diode can handle in the forward bias state given the thermal limitations of the package. This parameter is related to the current usage of the circuit in operation. The maximum forward current derating curve of a rectifier on a 5 mm x 5 mm Cu pad with a FR-4 PCB drops off above a given temperature limit. The forward current capability varies by the temperature of the diode s junction, as shown above. Other related parameters include thermal resistance. Forward surge current (I FSM The specified forward surge current in a datasheet is the maximum peak current the diode can handle in the forward bias state within specified time and pulse conditions. This rating is limited by the diode s thermal capacity. The forward surge current specification is related to two major operations and is simulated in the ISO-16750-2 and JASO D001-94 automotive standards. The first operation is protecting circuitry against the

high currents that occur during the load dump condition. The second operation is simulated by ISO-7637-2 test pulse 2a and 3b, consisting of 50 ms and 100 ms pulse widths and 2Ω and 50Ω line impedance, respectively. This is a relatively small amount of energy when compared to the forward surge current at the load dump test condition. Load dump suppression (figure above is simulated by tests such as ISO-16750-2 test A and B, JASO standard type A and D, and others. In this situation, high surge current is passing through the polarity protection diode, and it requires a high enough forward surge capability to avoid failure. Estimating the surge current value in load dump suppression tests can be accomplished with the equation: I peak = ( V peak V F d - V clamping / (R i + R zd V peak : Surge voltage V clamping : Clamping voltage V F d: Forward voltage drop of polarity protection diode R i : Line impedance R zd : Resistance of clamping device

With the applied condition of 101V Us, 12V UB, and 1.5Ω line impedance, as specified by ISO-16750-2 test A, the peak current is 51.3A and the actual clamped current is 50.3A. (For a detailed explanation of load dump protection, please refer to http://www.vishay.com/docs/88490 /tvs.pdf. ESD ESD influences the operating stability and lifetime reliability of electronic modules in vehicles. ISO-10605 and JASO standard 5.8 specify testing conditions for this parameter. Non-repetitive avalanche energy (E AS This non-repetitive avalanche energy of a diode specifies the maximum energy it can absorb in the reverse bias state to protect circuits from inductive kick back transients from motors and solenoids, or induced high reverse voltages. There is no automotive standard for this specification. Temperature conditions for automotive electronics and components The JASO specifies the operating temperature range for automotive electronics as 40 to +100C based on their location, such as the trunk, engine, or other places. Conclusion By attention to diode rectifier characteristics, automotive polarity circuit protection can be ensured. Soo Man (Sweetman Kim is senior application manager at Vishay. References: Fulup, W. Calculation of Avalanche Breakdown of Silicon P-N junctions. Solid-State Electronics 10.1 (1967: 39-43 Hart, Daniel W. Introduction to Power Electronics. Taiwan: Prentice Hall / Pearson Education, 2002

Horowitz, Paul, and Winfield Hill. The Art of Electronics. Cambridge: Cambridge University Press, 1980. ISO-10605: 2001: Road vehicles Test methods for electrical disturbances from electrostatic discharge ISO-16750-2: 2010: Road vehicles Environmental conditions and testing for electrical and electronic equipment ISO-7637-2: 2010: Road vehicles Electrical disturbance by conduction and coupling Part 2: Electrical transient conduction along supply lines only JASO D001-94: Japanese automobile standard General rules of environmental testing methods for automotive electronic equipment IEC 61000-4-2: 1995 Electromagnetic compatibility (EMC Part 4: Testing and measurement techniques Section 2: Electrostatic discharge immunity test If you liked this article, go to the Automotive Designline home page for the latest in automotive electronics design, technology, trends, products, and news. Also, get a weekly highlights update delivered directly to your inbox by signing up for our weekly automotive electronics newsletter here.