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8-PDIP
Integrated Circuits (ICs)

TC1410CPA

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Microchip Technology

MOSFET DRVR 0.5A 2-OUT LO SIDE INV 8-PIN PDIP TUBE

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8-PDIP
Integrated Circuits (ICs)

TC1410CPA

Active
Microchip Technology

MOSFET DRVR 0.5A 2-OUT LO SIDE INV 8-PIN PDIP TUBE

Deep-Dive with AI

Technical Specifications

Parameters and characteristics for this part

SpecificationTC1410CPA
Channel TypeSingle
Current - Peak Output (Source, Sink) [custom]500 mA
Current - Peak Output (Source, Sink) [custom]500 mA
Driven ConfigurationLow-Side
Gate TypeN-Channel, P-Channel MOSFET
Input TypeInverting
Logic Voltage - VIL, VIH0.8 V, 2 V
Mounting TypeThrough Hole
Number of Drivers1
Operating Temperature [Max]150 °C
Operating Temperature [Min]0 °C
Package / Case0.3 in
Package / Case8-DIP
Package / Case7.62 mm
Rise / Fall Time (Typ) [custom]25 ns
Rise / Fall Time (Typ) [custom]25 ns
Supplier Device Package8-PDIP
Voltage - Supply [Max]16 V
Voltage - Supply [Min]4.5 V

Pricing

Prices provided here are for design reference only. For realtime values and availability, please visit the distributors directly

DistributorPackageQuantity$
DigikeyTube 300$ 1.81
Microchip DirectTUBE 1$ 2.38
25$ 2.00
100$ 1.81
1000$ 1.51
5000$ 1.38
10000$ 1.29

Description

General part information

TC1410N Series

The TC1410/1410N are 0.5 A CMOS buffer/gate drivers. They will not latch up under any conditions within their power and voltage ratings. They are not subject to damage when up to 5 V of noise spiking of either polarity occurs on the ground pin. They can accept, without damage or logic upset, up to 500 mA of current of either polarity being forced back into their output. All terminals are fully protected against up to 4 kV of electrostatic discharge. As MOSFET gate drivers, the TC1410/1410N can easily switch 500 pF gate capacitance in 25 ns with matched rise and fall times, and provide low enough impedance in both the ON and the OFF states to ensure the MOSFET’s intended state will not be affected, even by large transients. The rise and fall time edges are matched to allow driving short-duration inputs with greater accuracy.