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74LVC2G04GV
+BOMInverters
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メーカーNexperia
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メーカー品番 #74LVC2G04GV
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在庫状況12768
365 日間品質保証
7*24 日間の品質保証
90-時間単位のサービス保証
1日間のアフターサービス保証
仕様
| 属性 | 値 |
概要
Description
The device features Schmitt-trigger action at the inputs, ensuring improved noise immunity and stable operation even with slow input rise and fall times. It is built using advanced CMOS technology for low power consumption, making it ideal for battery-operated devices.
Encased in a compact TSSOP8 package, the 74LVC2G04GV is suitable for space-constrained applications. It is characterized by fast switching speeds and can be used in various applications including signal inversion and digital logic circuits. The device is also equipped with overvoltage-tolerant inputs, allowing it to interface with higher-voltage signals without damage.
Equivalent
1. SN74LVC2G04 by Texas Instruments.
2. NC7SZ04 by ON Semiconductor.
3. 74AUP2G04 by Nexperia.
4. 74VHC2G04 by Toshiba.
5. 74AHC2G04 by Diodes Incorporated.
These alternatives offer similar functionality but may have slight differences in specifications or packaging. Always check datasheets to ensure compatibility.
Features
1. Dual Inverter: Contains two independent inverters in a single package.
2. Voltage Range: Operates over a wide voltage range from 1.65V to 5.5V, making it suitable for both low and high-voltage applications.
3. Low Power Consumption: Features low static and dynamic power consumption.
4. High-Speed Operation: Designed for high-speed signal processing.
5. CMOS Technology: Built using advanced CMOS technology for superior performance.
6. Compact Package: Available in space-saving leadless package options like TSSOP8 and XSON6.
7. 5V Tolerant Inputs: Compatible with 5V input levels, regardless of the Vcc supply voltage.
8. Overvoltage Tolerant Inputs: Inputs can tolerate voltages higher than the Vcc level.
9. ESD Protection: Provides Electrostatic Discharge protection up to 2kV as per the human body model.
These features make the 74LVC2G04GV suitable for use in portable and battery-operated devices where space and power efficiency are critical.