Details, datasheet, quote on part number: MC141316
PartMC141316
Category
Description
CompanyN.A.
DatasheetDownload MC141316 datasheet
  

 

Features, Applications

MC1416, B High Voltage, High Current Darlington Transistor Arrays

The seven NPN Darlington connected transistors in these arrays are well suited for driving lamps, relays, or printer hammers in a variety of industrial and consumer applications. Their high breakdown voltage and internal suppression diodes insure freedom from problems associated with inductive loads. Peak inrush currents 500 mA permit them to drive incandescent lamps. The MC1413, B with 2.7 k series input resistor is well suited for systems utilizing 5.0 V TTL or CMOS Logic. The MC1416, B uses a series 10.5 k resistor and is useful 18 V MOS systems.

MAXIMUM RATINGS (TA = 25°C, and rating apply to any one device in the package, unless otherwise noted.)

Rating Output Voltage Input Voltage Collector Current ­ Continuous Base Current ­ Continuous Operating Ambient Temperature Range MC1413­16 MC1413B­16B Storage Temperature Range Junction Temperature Thermal Resistance, Junction­to­Ambient Case 648, P Suffix Case 751B, D Suffix

Characteristic Output Leakage Current (VO = +85°C) (VO = +25°C) (VO 1.0 V) Collector­Emitter Saturation Voltage (IC = 350 mA, = 500 µA) (IC = 200 mA, = 350 µA) (IC = 100 mA, = 250 µA) Input Current ­ On Condition (VI 3.85 V) (VI 5.0 V) (VI 12 V) Input Voltage ­ On Condition (VCE = 200 mA) (VCE = 250 mA) (VCE = 300 mA) (VCE = 125 mA) (VCE = 200 mA) (VCE = 275 mA) (VCE = 350 mA) Input Current ­ Off Condition (IC = 500 µA, 85°C) DC Current Gain (VCE = 350 mA) Input Capacitance Turn­On Delay Time to 50% EO) Turn­Off Delay Time to 50% EO) Clamp Diode Leakage Current (VR 50 V) Clamp Diode Forward Voltage (IF = 350 mA) = +85°C All Types All Types MC1416, B VCE(sat) All Types All Types All Types II(on) MC1416, B VI(on) MC1416, B All Types II(off) hFE CI ton toff V mA Symbol ICEX V Min Typ Max Unit µA

TYPICAL PERFORMANCE CURVES = 25°C Figure 1. Output Current versus Input Voltage
O , OUTPUT CURRENT (mA) O , OUTPUT CURRENT (mA) 200 400
Figure 2. Output Current versus Input Current

Figure 6. Maximum Collector Current versus Duty Cycle (and Number of Drivers in Use)

 

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