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74LVC1G79GW
D FLIP-FLOP, LVC/LCX/Z SERIES, 1
- Fabricante
- Mfr. Parte #74LVC1G79GW
- Paquete
- Hoja de datos 74LVC1G79GW DataSheet
- En stock6437
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Especificaciones
| Package | Bulk |
| ProductStatus | Active |
Descripción general
Description
The 74LVC1G79GW comes in a small, space-efficient package, such as the TSSOP or DFN, making it ideal for compact circuit designs. Its low power consumption and high noise immunity make it suitable for battery-powered and portable applications. Additionally, the device supports partial power-down mode, which allows it to be used in systems where power conservation is critical. Its robustness, versatility, and ease of integration make the 74LVC1G79GW a popular choice for implementing synchronous data storage elements in digital electronics.
Features
It supports a clock input that triggers on the rising edge, and it has Schmitt-trigger action inputs which provides better noise immunity. The flip-flop is capable of high-speed operation, with a typical propagation delay time of around 3.2 ns at 5 V. It comes in a leadless package type, such as TSSOP, making it suitable for compact circuit designs. Additionally, the 74LVC1G79GW provides ESD protection, which enhances its robustness in industrial and consumer applications. Overall, its compact size, wide voltage range, and efficient performance make it suitable for portable and battery-powered devices.
Package
Pinout
The pin functions are as follows:
1. Pin 1 (D): Data input. The data on this pin is transferred to the Q output on the rising edge of the clock signal.
2. Pin 2 (GND): Ground. This is the common ground reference for the device.
3. Pin 3 (CP): Clock input. The flip-flop captures the data from the D input on the rising edge of this clock signal.
4. Pin 4 (Q): Data output. This pin reflects the state of the D input after the clock signal has triggered.
5. Pin 5 (Q̅): Inverted data output. This pin provides the inverse of the data present at the Q output.
6. Pin 6 (VCC): Power supply. This pin is connected to the positive supply voltage.
The 74LVC1G79GW is commonly used in digital circuits for data storage and transfer applications.
Manufacturer
Application
Equivalent
1. SN74LVC1G79 from Texas Instruments
2. NXP's 74LVC1G79GV
3. Microchip's 74LVC1G79
4. ON Semiconductor's NL17SZ74
Ensure to compare datasheets for specific operational characteristics and package types.
Envío
Métodos de envíoNosotros
ofrecer servicios de envío globales a través de DHL, FedEx, TNT, UPS, o cualquier otro expediente de su elección.
Referencia de tarifas de envío (DHL/FedEx):
DHL: El costo de envío oscila entre $25-$45 (0.5kg), con un tiempo de entrega estimado de 2-5 días hábiles.
FedEx: El costo de envío oscila entre $25-$40 (0.5kg), con un tiempo de entrega estimado de 3-7 días hábiles.
UPS: El costo de envío oscila entre $25-$45 (0.5kg), con un tiempo de entrega estimado de 3-7 días hábiles.
TNT: El costo de envío oscila entre $25-$65 (0.5kg), con un tiempo de entrega estimado de 3-7 días hábiles.
EMS: El costo de envío oscila entre $30-$50 (0.5kg), con un plazo de entrega estimado de 7-15 días hábiles.
Correo aéreo registrado: El costo de envío es de $2-$4 (0.1kg), con un tiempo de entrega estimado de 5-20 días hábiles.
Pagos
Payment Methods
El plazo de pago es 100% prepagado.
Actualmente, solo aceptamos los siguientes métodos de pago:
1. de PayPal
2. Tarjeta de crédito/débito
3. Transferencia bancaria
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