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MC74VHC4053DTR2G
- Manufacturer's Part No.:MC74VHC4053DTR2G
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- Description:IC MUX/DEMUX TRIPLE 2X1 16TSSOP
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- In Stock: 437219
- Available: 16
Reference Price(In US Dollars)
Qty | Unit Price | Ext.Price |
---|---|---|
1+ | US $0.52992 | US $0.53 |
10+ | US $0.35328 | US $3.53 |
30+ | US $0.26496 | US $7.95 |
100+ | US $0.21197 | US $21.20 |
500+ | US $0.19430 | US $97.15 |
1000+ | US $0.17664 | US $176.64 |
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- Description
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The MC74VHCT574A is an advanced high speed CMOS octal flip−flop with 3−state output fabricated with silicon gate CMOS technology. It achieves high speed operation similar to equivalent Bipolar Schottky TTL while maintaining CMOS low power dissipation.This 8−bit D−type flip−flop is controlled by a clock input and an output enable input. When the output enable input is high, the eight outputs are in a high impedance state.
The VHCT inputs are compatible with TTL levels. This device can be used as a level converter for interfacing 3.3 V to 5.0 V, because it has full 5.0 V CMOS level output swings.
The VHCT574A input and output (when disabled) structures provide protection when voltages between 0 V and 5.5 V are applied, regardless of the supply voltage.
These input and output structures help prevent device destruction caused by supply voltage−input/output voltage mismatch, battery backup, hot insertion, etc.
Features
• High Speed: fmax = 140 MHz (Typ) at VCC = 5.0 V
• Low Power Dissipation: ICC = 4 μA (Max) at TA = 25°C
• TTL−Compatible Inputs: VIL = 0.8 V; VIH = 2.0 V
• Power Down Protection Provided on Inputs and Outputs
• Balanced Propagation Delays
• Designed for 4.5 V to 5.5 V Operating Range
• Low Noise: VOLP = 1.6 V (Max)
• Pin and Function Compatible with Other Standard Logic Families
• Latchup Performance Exceeds 300 mA
• ESD Performance: Human Body Model > 2000 V; Machine Model > 200 V
• Chip Complexity: 286 FETs or 71.5 Equivalent Gates
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These Devices are Pb−Free and are RoHS Compliant
Functional Equivalent (FE) materials, including Fused Filament Fabrication (FFF) form, assembly, and functionally compatible substitute materials.
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