ILN2003A HIGH-VOLTAGE HIGH-CURRENT DARLINGTON TRANSISTOR ARRAYS TECHNICAL DATA. SCHEMATICS (each Darlington Pair)
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1 TECHNICAL DATA HIGH-VOLTAGE HIGH-CURRENT DARLINGTON TRANSISTOR ARRAYS The ILN2003A are monolithic high-voltage, high-current Darlington transistor arrays. Each consists of seven n-p-n Darlington pairs that feature high-voltage outputs with commoncathode clamp diodes for switching inductive loads. The collectorcurrent rating of a single Darlington pair is 500 ma. The Darlington pairs may be paralleled for higher current capability. Applications include relay drivers, hammer drivers, lamp drivers, display drivers (LED and gas discharge), line drivers, and logic buffers. The ILN2003A has a 2.7-kΩ each Darlington pair for operation directly with TTL or 5-V CMOS devices. 500-mA Rated Collector Current (Single Output) High-Voltage Outputs V Output Clamp Diodes Inputs Compatible With Various Types of Logic Relay Driver Applications ILN2003A ORDERING INFORMATION ILN2003AN DIP ILN2003ADT SOP T A = -40C to 85 C for all packages LOGIC SYMBOL LOGIC DIAGRAM SCHEMATICS (each Darlington Pair) All resistor values shown are nominal. ILN2003A: R B = 2.7 kω
2 Absolute Maximum Ratings (Ta =25 C) Parameter Symbol Limit Values min. max. Output Sustaining Voltage V CE(SUS) V Output Current I OUT 500 ma/ch Input Voltage V IN V Clamp Diode Reverse Voltage V R 50 V Clamp Diode Forward Current I F 500 ma Power Dissipation DIP P D 1.15 SOP 0.95 Operating Temperature T opr C Storage Temperature T stg C * Stresses beyond those listed under absolute maximum ratings may cause permanent damage to the device. These are stress ratings only and functional operation of the device at these or any other conditions beyond those indicated under recommended operating conditions is not implied. Exposure to absolute-maximum-rated conditions for extended periods may affect device reliability. Unit W Recommended Operating Conditions (Ta=-40~85 C) Parameter Symbol Test Condition Limit Value Min Typ Max Output Sustaining Voltage V CE(SUS) 0-50 V Output Current DIP SOP I OUT T pw =25ms,Duty=10%, 7 Circuits T pw =25ms,Duty=30%, 7 Circuits T pw =25ms,Duty=10%, 7 Circuits T pw =25ms,Duty=30%, 7 Circuits Input Voltage V IN 0-30 V Clamp Diode Reverse Voltage V R V Clamp Diode Forward Current I F ma Power Dissipation DIP P D SOP Unit ma/ch W
3 Electrical characteristics, T A = 25 C (unless otherwise noted) Parameter Test Fig. Test Conditions Min Typ Max Unit I C =125mA I C =200mA 2.4 I V I(on) On-state Input Voltage 6 V CE =2V C =250mA 2.7 I C =275mA I C =300mA 3 I C =350mA I Collector-emitter I =250uA I C =100mA V CE(sat) 5 I saturation voltage I =350uA I C =200mA I I =500uA I C =350mA V CE =50V I I =0 50 I CEX Collector outoff current V 2 CE =50V, I I =0 100 T A =85ºC V I =1V h FE DC Current Transfer Ratio 5 V CE =2V, I OUT =350mA V F Clamp forward voltage 8 I F =350mA V I I(off) Off-state input current 3 V CE =50V T A =85ºC I C =500uA ua V I =2.4V I I Input current 4 V I =5V V I =12V ma I R Clamp reverse current 7 V R =50V 50 V R =50V T A =85ºC 100 ua C I Input capacitance V I =0 f=1mhz pf V V ua Switching Characteristics, T A =25ºC Parameter Test Conditions Min Typ Max Unit t PLH Propagation delay time, low-to-high-level output t PHL Propagation delay time, high -to- low -level output V OH High-level output voltage after switching See Figure us V S =50V, I O =300mA, See Figure 10 V S us mv
4 PARAMETER MEASUREMENT INFORMATION
5 Figure 9. Propagation Delay-Time Waveforms NOTES: A. The pulse generator has the following characteristics: PRR = 12.5 khz, Z O B. C L includes probe and jig capacitance. C. V IH = 3 V; Figure 10. Latch-Up Test Circuit and Voltage Waveforms
6 TYPICAL CHARACTERISTICS COLLECTOR-EMITTER SATURATION VOLTAGE vs COLLECTOR CURRENT (ONE DARLINGTON) COLLECTOR-EMITTER SATURATION VOLTAGE vs TOTAL COLLECTOR CURRENT TWO DARLINGTONS PARALLELED) COLLECTOR CURRENT vs INPUT CURRENT
7 THERMAL INFORMATION D PACKAGE MAXIMUM COLLECTOR CURRENT Vs DUTY CYCLE N PACKAGE MAXIMUM COLLECTOR CURRENT vs DUTY CYCLE Figure 14 Figure 15 POWER DISSIPATION VS. AMBIENT TEMPERATURE
8 APPLICATION INFORMATION
9 DIP-16 SOP-16
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