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ULN2804 8-Channel Darlington Sink Driver IC
₹34.00 Original price was: ₹34.00.₹30.00Current price is: ₹30.00. inc. GST
- 8-Channel Darlington Sink Driver
- High Sustaining voltage output: 50 V min
- Output Clamp Diodes
- Inputs compatible with various types of logic
- Output sustaining voltage:Â 0 to 50V
- Output Current Max:Â 500mA/ch
- Input Voltage:Â 0 to 30V
- Clamp diode reverse voltage:Â 50V
- Clamp diode forward current:Â 500mA
- Power Dissipation:Â 1.47W
- Eight Darlingtons with common emitters
- TTL, PMOS or CMOS Compatible inputs
- Clamp diodes for transient suppression
- Package:Â DIP18
The ULN2804 designed as a high-voltage, high-current Darlington arrays each containing eight NPN Darlington pairs. The device features open-collector outputs with suppression diodes used for inductive loads and also perfectly suited for interfacing between low-level logic circuitry and high power loads. Basically, load comprises of relays DC motors, filament lamps, LED displays, printer hammers, and high power buffers. Moreover, these devices are perfect for driving a wide range of loads including solenoids, relay DC motors, LED display filament lamps, thermal printheads and high-power buffers.
Each Darlington offers a peak load current rating of 600 mA (500 mA continuous) and can withstand at least 50 V in the OFF state. To acheive higher current capability, Outputs may be paralleled. The inputs made pinned opposite the outputs in the IC package to simplify the application board layout. This IC interface easily with the standard logic level for TTL or CMOS.  Moreover, the ULN2804A manufactured in an 18-pin DIP package with a copper lead frame to reduce thermal resistance. And feature the convenient input-opposite-output pinout to simplify board layout. Meanwhile, the ULN2804A devices have a 10.5-kΩ series base resistor to allow operation directly from CMOS devices that use supply voltages of 6 V to 15 V.
A Darlington pair designed as a multi-transistor configuration circuit. It comprises of two bipolar transistors with the emitter of one transistor connected to the base of the other. Such that the current amplified by the first transistor amplified further by the second one. The collectors of both transistors are connected together. Thus this configuration employs much higher current gain than each transistor taken separately.
Applications
- Relay Drivers
- Stepper and DC Brushed Motor Drivers
- Lamp Drivers
- Â Display Drivers (LED and Gas Discharge)
- Line Drivers
- Â Logic Buffers

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