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74VHCT541AMTCX - 8mA 1 Buffer/Driver/Transceiver IC TSSOP-20

onsemi

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SKU:
042-74VHCT541AMTCX
MPN:
74VHCT541AMTCX
Quantity
Unit Price (ex. GST)
1 - 9
₹ 157.27
10 - 99
₹ 141.54
100 or above
₹ 125.82
The 74VHCT541AMTCX by onsemi is an 8-bit non-inverting buffer/line driver in a TSSOP-20 package, featuring 3-state outputs, 8mA drive, 4.5V–5.5V supply. Ideal for bus interfacing, memory address driving, and high-speed digital circuits View full description
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₹185.58 inc. GST
₹157.27 ex. GST
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Technical Specifications

Brand:
onsemi
Case/Package:
TSSOP
Contact Plating:
Gold
Mount:
Surface Mount
Number of Pins:
20
Load Capacitance:
50 pF
Logic Function:
Buffer, Inverting
Max Operating Temperature:
85 °C
Max Supply Voltage:
5.5 V
Min Operating Temperature:
-40 °C
Min Supply Voltage:
4.5 V
Number of Bits:
8
Number of Channels:
8
Number of Circuits:
1
Number of Input Lines:
8
Number of Output Lines:
8
Operating Supply Voltage:
5 V
Number of Ports:
2

Warranty Information

All the products supplied by Evelta are genuine and original. We offer 14 days replacement warranty in case of manufacturing defects. For more details, please visit our cancellation and returns page.

Description

The VHCT541A is a high-speed CMOS device using silicon gate technology. It achieves high-speed operation akin to Bipolar Schottky TTL while keeping CMOS's low power dissipation. The VHCT541A is an octal buffer/line driver suitable for memory and address drivers, clock drivers, and bus-oriented transmitters and receivers. This device functions similarly to the VHCT244A, but has a flow-through architecture with inputs on the opposite side of outputs. This device's pinout configuration makes it ideal as an output port for microprocessors, resulting in easier layout and increased PC board density. Protection circuits ensure that 0V to 7V can be supplied to the input and output (Note 1) pins regardless of the supply voltage. This device is capable of interfacing 3V to 5V systems as well as two supply systems, such as battery backup. This circuit prevents device breakage caused by mismatched supply and input voltages.

Datasheet