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74LVC1G06GV
+Lista de MateriaisInverters HEX INVERTER/BUF DRV
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FabricanteNexperia
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Peça do Fabricante #74LVC1G06GV
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Especificações
| Atributo | Valor |
| Standard Pack Qty | 3000 |
| Packaging | Cut Tape |
Visão Geral
Description
The device is designed to handle low power consumption while maintaining high performance, with a maximum output current capability of ±32 mA at 4.5 V to 5.5 V. The 74LVC1G06GV is packaged in a small SOT-23 or SC-70 package, making it ideal for space-constrained designs.
Typical applications include interfacing between different logic levels, driving LEDs, or handling signal buffering in digital circuits. Its Schmitt-trigger action at the input ensures good noise immunity and stable operation across a range of input conditions. Overall, the 74LVC1G06GV is a reliable choice for modern electronic designs requiring compact and efficient logic components.
Equivalent
1. Nexperia 74LVC1G06GW
2. Texas Instruments SN74LVC1G06
3. ON Semiconductor NC7WZ06
4. Fairchild Semiconductor NC7SZ06
5. Microchip Technology 74LVC1G06
When selecting an equivalent, ensure the package, voltage range, and other electrical characteristics match your application requirements.
Features
Key features include high-speed operation with typical propagation delay, and the ability to drive heavier loads due to the open-drain configuration, which allows for greater versatility in driving and interfacing with other logic levels. The 74LVC1G06GV operates over a wide temperature range and is available in multiple compact package options, such as the SOT666, making it ideal for space-constrained designs.
Its robust design also offers protection against electrostatic discharge, ensuring reliability in harsh operating conditions. The device is commonly used in applications requiring level shifting, signal inversion, and logic interfacing.
Pinout
Here's a brief overview of its pin functions:
1. Pin 1 (A): Input pin for the inverter. The signal applied here will be inverted and output through the open-drain pin.
2. Pin 2 (GND): Ground pin. It should be connected to the system ground.
3. Pin 3 (Y): Open-drain output. The output will be the inverted signal of Pin 1. It can sink current and is typically used for applications requiring a wired logic or level-shifting.
4. Pin 4 (VCC): Positive supply voltage. It should be connected to the system's power supply.
5. Pin 5 (NC or not connected): Usually not connected or used in typical applications.
This device is typically utilized in applications requiring low-power systems and level-shifting due to its open-drain configuration.