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Microchip Technology - 3A High-Speed MOSFET Drivers

Numéro de référence TC1413
Description 3A High-Speed MOSFET Drivers
Fabricant Microchip Technology 
Logo Microchip Technology 





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TC1413 fiche technique
TC1413/TC1413N
3A High-Speed MOSFET Drivers
Features
• Latch-Up Protected: Withstands 500 mA Reverse
Current
• Input Withstands Negative Inputs Up to 5V
• Electrostatic Discharge (ESD) Protected: 2.0 kV
(HBM) and 400V (MM)
• High Peak Output Current: 3A
• Wide Input Supply Voltage Operating Range:
- 4.5V to 16V
• High Capacitive Load Drive Capability:
- 1800 pF in 20 ns
• Short Delay Time: 35 ns typical
• Matched Delay Times
• Low Supply Current
- With Logic ‘1’ Input: 500 µA
- With Logic ‘0’ Input: 100 µA
• Low Output Impedance: 2.7
• Available in Space-Saving 8-pin MSOP Package
• Pinout - same as TC1410/TC1411/TC1412
Applications
• Switch Mode Power Supplies
• Line Drivers
• Pulse Transformer Drive
• Relay Driver
General Description
The TC1413/TC1413N are 3A CMOS buffers/drivers.
They do not latch up under any conditions within their
power and voltage ratings. They are not subject to
damage when up to 5V 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 electrostatic
discharge (ESD) up to 2.0 kV (HBM) and 400V (MM).
As MOSFET drivers, the TC1413/TC1413N can easily
charge a 1800 pF gate capacitance in 20 ns with
matched rise and fall times. To ensure the MOSFET’s
intended state will not be affected even by large
transients, low enough impedance in both the ‘On’ and
‘Off’ states are provided. The leading and trailing edge
propagation delay times are also matched to allow
driving short-duration inputs with greater accuracy.
Package Type
8-Pin MSOP/PDIP/SOIC
VDD 1
IN 2 TC1413
NC 3
GND 4
8 VDD
7 OUT
6 OUT
5 GND
VDD 1
8 VDD
IN
NC
2
3
TC1413N
7
6
OUT
OUT
GND 4
5 GND
2 6,7
2 6,7
Inverting
Non-Inverting
NC = No Internal Connection
Note: For proper operation, duplicate pins
must be connected together.
2001-2015 Microchip Technology Inc.
DS20001392E-page 1

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