H11L1M, H11L2M, H11L3M 6-Pin DIP Optocoupler
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1 HLM, HLM, HL3M -Pin DIP Optocoupler Features High data rate, MHz typical (NRZ) Free from latch up and oscilliation throughout voltage and temperature ranges. Microprocessor compatible drive Logic compatible output sinks ma at 0.4V maximum Guaranteed on/off threshold hysteresis Wide supply voltage capability, compatible with all popular logic systems Underwriters Laboratory (UL) recognized file #E90700, Volume VDE recognized File#0497 Add option V (e.g., HLIVM) Applications Description December 00 The HLXM series has a high speed integrated circuit detector optically coupled to a gallium-arsenide infrared emitting diode. The output incorporates a Schmitt trigger, which provides hysteresis for noise immunity and pulse shaping. The detector circuit is optimized for simplicity of operation and utilizes an open collector output for maximum application flexibility. tm HLM, HLM, HL3M -Pin DIP Optocoupler Logic to logic isolator Programmable current level sensor Line receiver eliminate noise and transient problems A.C. to TTL conversion square wave shaping Digital programming of power supplies Interfaces computers with peripherals Packages Schematic ANODE V CC CATHODE 5 GND 3 4 V O Truth Table Input H L Output L H 005 Fairchild Semiconductor Corporation HLM, HLM, HL3M Rev..0.0
2 Absolute Maximum Ratings (T A = 5 C Unless otherwise specified.) Symbol Parameters Value Units TOTAL DEVICE T STG Storage Temperature -55 to +50 C T OPR Operating Temperature -40 to +85 C T SOL Lead Solder Temperature 0 for 0 sec C P D Total Device Power 5 C 50 mw Derate Above 5 C.94 mw/ C EMITTER Continuous Forward Current 0 ma V R Reverse Voltage V (pk) Forward Current Peak (µs pulse, 300pps) 3.0 A P D LED Power Dissipation 5 C Ambient 0 mw Derate Linearly From 5 C.4 mw/ C DETECTOR P D Detector Power 5 C 50 mw Derate Linearly from 5 C.0 mw/ C V O V 45 Allowed Range 0 to V V CC V 5 Allowed Range 3 to V I O I 4 Output Current 50 ma HLM, HLM, HL3M -Pin DIP Optocoupler HLM, HLM, HL3M Rev
3 Electrical Characteristics (T A = 5 C Unless otherwise specified.) Individual Component Characteristics Symbol Parameters Test Conditions Device Min. Typ. Max. Units EMITTER V F Input Forward Voltage = 0mA All..5 V = 0.3mA I R Reverse Current V R = 3V All 0 µa C J Capacitance V = 0, f =.0MHz All 00 pf DETECTOR V CC Operating Voltage Range All 3 5 V I CC(off) Supply Current = 0, V CC = 5V All. 5.0 ma I OH Output Current, High = 0, V CC = V O = 5V All 00 µa Transfer Characteristics Symbol Parameter Test Conditions Device Min. Typ. Max. Units DC CHARACTERISTICS I CC(on) Supply Current = 0mA, V CC = 5V All. 5.0 ma V OL Output Voltage, low R L = 70Ω,V CC = 5V, All V = (on) max. (on) Turn-On Threshold Current () R L = 70Ω, V CC = 5V HLM. ma HLM 0.0 HL3M 5.0 (off) Turn-Off Threshold Current R L = 70Ω, V CC = 5V All ma (off) /(on) Hysteresis Ratio R L = 70Ω, V CC = 5V All AC CHARACTERISTICS, Switching Speed t on Turn-On time R L = 70Ω, V CC = 5V, = (on), T A = 5 C t f Fall Time R L = 70Ω, V CC = 5V, = (on), T A = 5 C t off Turn-Off Time R L = 70Ω, V CC = 5V, = (on), T A = 5 C t r Rise time R L = 70Ω, V CC = 5V, = (on), T A = 5 C All.0 4 µs All 0. µs All. 4 µs All 0. µs Data Rate All.0 MHz HLM, HLM, HL3M -Pin DIP Optocoupler Isolation Characteristics Symbol Parameter Test Conditions Min. Typ. Max. Units V ISO Input-Output Isolation Voltage t = sec V PEAK C ISO Isolation Capacitance V I-O = 0V, f = MHz pf R ISO Isolation Resistance V I-O = ±500 VDC 0 Ω Note:. Maximum (ON) is the maximum current required to trigger the output. For example, a.ma maximum trigger current would require the LED to be driven at a current greater than.ma to guarantee the device will turn on. A 0% guard band is recommended to account for degradation of the LED over its lifetime. The maximum allowable LED drive current is 0mA. HLM, HLM, HL3M Rev
4 I C - SUPPLY CURRENT (ma) (On), (Off) - THRESHOLD CURRENT (NORMALIZED) V OL - OUTPUT VOLTAGE, LOW (V) - THRESHOLD CURRENT (NORMALIZED) Typical Performance Curves O V - OUTPUT VOLTAGE (V) Figure. Transfer Characteristics V OH (OFF) (ON) V OL INPUT CURRENT (ma) VCC = 5V RL = 70Ω T A = 5 C Figure 3. Threshold Current vs. Supply Temperature Figure. Threshold Current vs. Supply Voltage TURN ON THRESHOLD TURN OFF THRESHOLD V CC - SUPPLY VOLTAGE (V) IF NORMALIZED TO : (ON) AT VCC = 5V T A = 5 o C Figure 4. Output Voltage, Low vs. Load Current HLM, HLM, HL3M -Pin DIP Optocoupler NORMALIZED TO : VCC = 5V T A = 5 o C T A - TEMPERATURE ( o C) 0. = (ON) V CC = 5V R L = 70ΩΩ I O - LOAD CURRENT (ma) Figure 5. Supply Current vs. Supply Voltage Figure. LED Forward Voltage vs. Forward Current T A = 0 C = 5mA 5 C 70 C T A = 0 C 5 C 70 C = 0mA VF - FORWARD VOLTAGE (V) T A = 55 C T A = 5 C T A = 00 C V CC - SUPPLY VOLTAGE (V) LED FORWARD CURRENT (ma) HLM, HLM, HL3M Rev
5 t r = tf = 0.0µS Z = 50Ω V IN C R E I HL 5 5V V IN 5V 50% 0 R L 70Ω 4 Figure 7. Switching Test Circuit and Waveforms V O t on t off 0% V O 90% t f t r HLM, HLM, HL3M -Pin DIP Optocoupler HLM, HLM, HL3M Rev
6 Package Dimensions Through Hole (.77) (.0) 0.00 (5.08) 0.5 (.93) 0.00 (.54) 0.05 (0.38) 0.00 (0.50) 0.0 (0.4) (8.89) 0.30 (8.3) 0.04 (0.3) 0.00 (0.5) 0.00 (.54) 0.0 (.0) 0.40 (.0) (8.3) 0.0 (0.30) Surface Mount (.77) (.0) 0.00 (5.08) 0.5 (.93) 0.05 (0.3) 0.00 (0.5) 0.00 (0.50) 0.0 (0.4) (8.89) 0.30 (8.3) 0.04 (0.3) 0.00 (0.5) 0.0 (.0) 0.40 (.0) 0.00 [.54] 0.0 (0.30) (0.0) (9.90) 0.33 (8.43) 0.30 (8.3) (0.88) 0.0 (0.30) HLM, HLM, HL3M -Pin DIP Optocoupler Recommend Pad Layout for 0.4 Lead Spacing Surface Mount Leadform (8.89) 0.30 (8.3) (.78) 0.00 (.5) 0.0 (.0) 0.40 (.0) 0.45 (0.79) 0.00 (.54) (.77) (.0) 0.04 (0.3) 0.00 (0.5) (7.75) (0.7) 0.00 (5.08) 0.5 (.93) 0.00 (.54) 0.05 (0.38) 0.00 (0.50) 0.0 (0.4) 0.00 [.54] 0.0 (0.30) (0.) 0.45 (0.80) (0.) Note: All dimensions are in inches (millimeters). HLM, HLM, HL3M Rev
7 Ordering Information Option/Order Entry Identifier Description S Surface Mount Lead Bend SR Surface Mount; Tape and reel T 0.4" Lead Spacing V VDE 0884 TV VDE 0884, 0.4" Lead Spacing SV VDE 0884, Surface Mount SRV VDE 0884, Surface Mount, Tape & Reel Marking Information HL V X YY Q HLM, HLM, HL3M -Pin DIP Optocoupler Definitions Fairchild logo Device number VDE mark (Note: Only appears on parts ordered with VDE 3 option See order entry table) 4 One digit year code, e.g., 3 5 Two digit work week ranging from 0 to 53 Assembly package code *Note Parts that do not have the V option (see definition 3 above) that are marked with date code 35 or earlier are marked in portrait format. HLM, HLM, HL3M Rev
8 Tape Dimensions 4.5 ± ± 0. Note: All dimensions are in millimeters ± 0.05 User Direction of Feed 4.0 ± MAX 0. ± ± 0..0 ± 0.05 Ø.5 MIN.75 ± ± ± ± 0.0 Ø.5 ± 0./-0 HLM, HLM, HL3M -Pin DIP Optocoupler Reflow Profile C C/Sec Ramp up rate 33 Sec Time (s) 0 C Time above 83 C = 90 Sec >45 C = 4 Sec 30 HLM, HLM, HL3M Rev
9 FAIRCHILD SEMICONDUCTOR TRADEMARKS The following are registered and unregistered trademarks Fairchild Semiconductor owns or is authorized to use and is not intended to be an exhaustive list of all such trademarks. ACEx ActiveArray Bottomless Build it Now CoolFET CROSSVOLT DOME EcoSPARK E CMOS EnSigna FACT FAST FASTr FPS FRFET FACT Quiet Series GlobalOptoisolator GTO HiSeC I C i-lo ImpliedDisconnect IntelliMAX ISOPLANAR LittleFET MICROCOUPLER MicroFET MicroPak MICROWIRE MSX MSXPro Across the board. Around the world. The Power Franchise Programmable Active Droop OCX OCXPro OPTOLOGIC OPTOPLANAR PACMAN POP Power47 PowerEdge PowerSaver PowerTrench QFET QS QT Optoelectronics Quiet Series RapidConfigure RapidConnect µserdes ScalarPump SILENT SWITCHER SMART START SPM Stealth SuperFET SuperSOT -3 SuperSOT - SuperSOT -8 SyncFET TCM TinyBoost TinyBuck TinyPWM TinyPower TinyLogic TINYOPTO TruTranslation UHC UniFET VCX Wire DISCLAIMER FAIRCHILD SEMICONDUCTOR RESERVES THE RIGHT TO MAKE CHANGES WITHOUT FURTHER NOTICE TO ANY PRODUCTS HEREIN TO IMPROVE RELIABILITY, FUNCTION, OR DESIGN. FAIRCHILD DOES NOT ASSUME ANY LIABILITY ARISING OUT OF THE APPLICATION OR USE OF ANY PRODUCT OR CIRCUIT DESCRIBED HEREIN; NEITHER DOES IT CONVEY ANY LICENSE UNDER ITS PATENT RIGHTS, NOR THE RIGHTS OF OTHERS. THESE SPECIFICATIONS DO NOT EXPAND THE TERMS OF FAIRCHILD S WORLDWIDE TERMS AND CONDITIONS, SPECIFICALLY THE WARRANTY THEREIN, WHICH COVERS THESE PRODUCTS. LIFE SUPPORT POLICY FAIRCHILD S PRODUCTS ARE NOT AUTHORIZED FOR USE AS CRITICAL COMPONENTS IN LIFE SUPPORT DEVICES OR SYSTEMS WITHOUT THE EXPRESS WRITTEN APPROVAL OF FAIRCHILD SEMICONDUCTOR CORPORATION. As used herein:. Life support devices or systems are devices or systems which, (a) are intended for surgical implant into the body, or (b) support or sustain life, or (c) whose failure to perform when properly used in accordance with instructions for use provided in the labeling, can be reasonably expected to result in significant injury to the user.. A critical component is any component of a life support device or system whose failure to perform can be reasonably expected to cause the failure of the life support device or system, or to affect its safety or effectiveness. PRODUCT STATUS DEFINITIONS Definition of Terms Datasheet Identification Product Status Definition Advance Information Formative or In Design This datasheet contains the design specifications for product development. Specifications may change in any manner without notice. Preliminary First Production This datasheet contains preliminary data, and supplementary data will be published at a later date. Fairchild Semiconductor reserves the right to make changes at any time without notice to improve design. No Identification Needed Full Production This datasheet contains final specifications. Fairchild Semiconductor reserves the right to make changes at any time without notice to improve design. Obsolete Not In Production This datasheet contains specifications on a product that has been discontinued by Fairchild semiconductor. The datasheet is printed for reference information only. Rev. I
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