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M74VHC1GT08DFT2G Logic Level Shifter for Iceriver KS1 Crypto Miner Hash Board Repair

11.00 ฿ THB
11.00 ฿ THB
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About the Product

M74VHC1GT08DFT2G Logic Level Shifter for Iceriver KS1 Hash Board

Enhance the performance and reliability of your Iceriver KS1 hash board with the M74VHC1GT08DFT2G Logic Level Shifter. This advanced high-speed CMOS 2-input AND gate is specifically designed to replace defective components on the Iceriver KS1 hash board, ensuring your mining operations run smoothly and efficiently.

High-Speed CMOS Logic Level Shifter for Iceriver KS1 Repairs

The M74VHC1GT08DFT2G offers high-speed performance with a typical propagation delay (tPD) of 3.5ns at VCC = 5V, making it an ideal choice for high-frequency applications. Its low power consumption (ICC = 1μA max at TA = 25°C) ensures minimal energy usage, contributing to a more efficient mining setup.

5V CMOS Logic Level Shifter with Low Power Consumption for Iceriver KS1

This device is compatible with TTL-type input thresholds and provides a full 5V CMOS level output swing, making it versatile for various logic-level translations. The input protection circuitry allows for input overvoltages, enabling the device to function as a logic-level translator from 3V CMOS logic to 5V CMOS logic or 1.8V CMOS logic to 3V CMOS logic when operating from a high voltage supply.

With features such as power-off protection for inputs and outputs, balanced propagation delays, and compatibility with other standard logic families, the M74VHC1GT08DFT2G ensures reliable and efficient performance. This makes it an essential component for maintaining and repairing your Iceriver KS1 hash boards.

Technical Features Table

Feature Specification
High Speed tPD = 3.5ns (typ), VCC = 5V
Low Power Consumption ICC = 1μA (max), TA = 25°C
TTL Compatible Input VIL = 0.8V; VIH = 2V
CMOS Compatible Output VOH > 0.8VCC; VOL < 0.1VCC @Load
Input Protection Circuitry Allows for input overvoltages
Power-Off Protection For inputs and outputs
Balanced Propagation Delays Ensures consistent performance
Pin and Function Compatibility With other standard logic families
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