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Solenoid Driver, Switches, Telephony, Automotive, Circuit Diagram, Power Supply, Semiconductors, TTL

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Advance Information Integrated Relay / Solenoid Driver


MDC3205

ON Semiconductort
Advance Information Integrated Relay / Solenoid Driver
Than Back to Supply Guaranteed Off State with No Input Connection Supports Large Systems with Minimal Off-State Leakage ESD Resistant in Accordance with the 2000 V Human Body Model Provides a Robust Driver Interface Between Relay Coil and Sensitive Logic Circuits Telecom Line Cards and Telephony Industrial Controls Security Systems Appliances and White Goods Automated Test Equipment Automotive Controls 625 mW at 3 V to 5 V
MDC3205
RELAY / SOLENOID DRIVER SILICON MONOLITHIC CIRCUIT BLOCK
CASE 29-11, STYLE 14 TO-92
Applications include:
INTERNAL CIRCUIT DIAGRAM
Vout Vin 1.0 k (3) 33 k GND
This device is intended to replace an array of three to six discrete components with an integrated part. It can be used to switch other 3 to 5 Vdc Inductive Loads such as solenoids and small DC motors. MAXIMUM RATINGS
Rating Power Supply Voltage Recommended Operating Supply Voltage Input Voltage Reverse Input Voltage Output Sink Current Continuous Junction Temperature Operating Ambient Temperature Range Storage Temperature Range Symbol VCC VCC Vin(fwd) Vin(rev) IO TJ TA Tstg
Value 6.0 2.0-5.5 6.0 -0.5 300 150 -40 to +85 -65 to +150
Unit Vdc Vdc Vdc Vdc mA °C °C °C
THERMAL CHARACTERISTICS
This document contains information on a new product. Specifications and information herein are subject to change without notice.
Symbol PD RqJA
Max 625 200
August, 2001 - Rev. 2
Publication Order Number: MDC3205 / D
MDC3205
Characteristic Symbol Min Typ Max Unit
OFF CHARACTERISTICS
ON CHARACTERISTICS
TYPICAL APPLICATION-DEPENDENT SWITCHING PERFORMANCE SWITCHING CHARACTERISTICS
Characteristic Propagation Delay Times: High to Low Propagation Delay Figures 1, 2 (5.0 V 74HC04) Low to High Propagation Delay Figures 1, 2 (5.0 V 74HC04) High to Low Propagation Delay Figures 1, 3 (3.0 V 74HC04) Low to High Propagation Delay Figures 1, 3 (3.0 V 74HC04) High to Low Propagation Delay Figures 1, 4 (5.0 V 74LS04) Low to High Propagation Delay Figures 1, 4 (5.0 V 74LS04) Transition Times: Fall Time Figures 1, 2 (5.0 V 74HC04) Rise Time Figures 1, 2 (5.0 V 74HC04) Fall Time Figures 1, 3 (3.0 V 74HC04) Rise Time Figures 1, 3 (3.0 V 74HC04) Fall Time Figures 1, 4 (5.0 V 74LS04) Rise Time Figures 1, 4 (5.0 V 74LS04) Input Slew Rate(1) Symbol tPHL tPLH tPHL tPLH tPHL tPLH tf tr tf tr tf tr V / t in VCC 5.5 5.5 5.5 5.5 5.5 5.5 5.5 5.5 5.5 5.5 5.5 5.5 5.5 Min - - - - - - - - - - - - TBD Typ 55 430 85 315 55 2385 45 160 70 195 45 2400 - Max - - - - - - ns - - - - - - - V / ms Units ns
1. Minimum input slew rate must be followed to avoid overdissipating the device.
VCC GND VZ VCC GND
Figure 1. Switching Waveforms
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MDC3205
+4.5 VCC +5.5 Vdc
+ + AROMAT TX2-L2-3 V
Vout (3) MDC3205 74HC04 OR EQUIVALENT Vin (1) 1k 33 k
Vout (3) MDC3205 1k 33 k Vin (1) 74HC04 OR EQUIVALENT
GND (2)
Figure 2. A 3.0-V, 200-mW Dual Coil Latching Relay Application with 5.0 V-HCMOS Interface
+3.0 VDD +3.75 Vdc +4.5 VCC +5.5 Vdc
+ + AROMAT TX2-L2-3 V
Vout (3) MDC3205 74HC04 OR EQUIVALENT Vin (1) 1k 33 k
Vout (3) MDC3205 1k 33 k Vin (1) 74HC04 OR EQUIVALENT
GND (2)
Figure 3. A 3.0-V, 200-mW Dual Coil Latching Relay Application with 3.0 V-HCMOS Interface http://onsemi.com
MDC3205
+4.5 VCC +5.5 Vdc
+ + AROMAT TX2-L2-3 V
Vout (3) MDC3205 74LS04 BAL99LT 1 Vin (1) GND (2) 1k 33 k
Vout (3) MDC3205 1k 33 k Vin (1) GND (2) BAL99LT 1 74LS04
Figure 4. A 3.0-V, 200-mW Dual Coil Latching Relay Application with TTL Interface
+4.5 TO +5.5 Vdc
+ AROMAT R1 TX2-5 V R2
+ AROMAT TX2-5 V -
Figure 5. Typical 5.0 V, 140 mW Coil Dual Relay Application http://onsemi.com
MDC3205
TYPICAL OPERATING WAVEFORMS
(Circuit of Figure 5)
3.5 V in (VOLTS) IC (mA) 10 30 50 TIME (ms) 70 90
25 10 30 50 TIME (ms) 70 90
Figure 6. 20 Hz Square Wave Input
Figure 7. 20 Hz Square Wave Response
7 Vout (VOLTS) IZ (mA) 10 30 50 TIME (ms) 70 90
12 10 30 50 TIME (ms) 70 90
Figure 8. 20 Hz Square Wave Response
Figure 9. 20 Hz Square Wave Response
10 100 Io, OUTPUT SINK CURRENT (mA)
1E-4 1E-3 INPUT CURRENT
Figure 10. Pulsed Current Gain
Figure 11. Collector Saturation Region
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MDC3205
PACKAGE DIMENSIONS
TO-92 (TO-226) CASE 29-11 ISSUE AL
SEATING PLANE
NOTES: 1. DIMENSIONING AND TOLERANCING PER ANSI Y14.5M, 1982. 2. CONTROLLING DIMENSION: INCH. 3. CONTOUR OF PACKAGE BEYOND DIMENSION R IS UNCONTROLLED. 4. LEAD DIMENSION IS UNCONTROLLED IN P AND BEYOND DIMENSION K MINIMUM. STYLE 14: PIN 1. EMITTER 2. COLLECTOR 3. BASE INCHES MIN MAX 0.175 0.205 0.170 0.210 0.125 0.165 0.016 0.021 0.045 0.055 0.095 0.105 0.015 0.020 0.500 -0.250 -0.080 0.105 -0.100 0.115 -0.135 -MILLIMETERS MIN MAX 4.45 5.20 4.32 5.33 3.18 4.19 0.407 0.533 1.15 1.39 2.42 2.66 0.39 0.50 12.70 -6.35 -2.04 2.66 -2.54 2.93 -3.43 --
D J C SECTION X-X N N
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MDC3205
Notes
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MDC3205
PUBLICATION ORDERING INFORMATION
Literature Fulfillment: Literature Distribution Center for ON Semiconductor P.O. Box 5163, Denver, Colorado 80217 USA Phone: 303-675-2175 or 800-344-3860 Toll Free USA / Canada Fax: 303-675-2176 or 800-344-3867 Toll Free USA / Canada Email: ONlit@hibbertco.com N. American Technical Support: 800-282-9855 Toll Free USA / Canada JAPAN: ON Semiconductor, Japan Customer Focus Center 4-32-1 Nishi-Gotanda, Shinagawa-ku, Tokyo, Japan 141-0031 Phone: 81-3-5740-2700 Email: r14525@onsemi.com ON Semiconductor Website: http://onsemi.com For additional information, please contact your local Sales Representative.
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MDC3205 / D