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74LVC32APW
+物料清單Logic Gates
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製造商Nexperia
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製造商部分 #74LVC32APW
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有存貨29051
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概述
Description
Housed in a TSSOP (Thin Shrink Small Outline Package), the 74LVC32APW is ideal for use in space-constrained designs. It features Schmitt-trigger action at its inputs, providing better noise immunity and cleaner signal transitions. Additionally, the device is tolerant to input voltages up to 5.5V, making it compatible with higher voltage levels in mixed-voltage environments. Its typical applications include data processing systems, telecommunications, and other digital logic circuits where efficient logic gate operations are required.
Equivalent
1. SN74LVC32APWR by Texas Instruments
2. MC74VHC32 by ON Semiconductor
3. TC74VHC32 by Toshiba
4. Nexperia's own 74LVC32A series
5. HCF4032 by STMicroelectronics (a different family but similar functionality)
Ensure compatibility by checking the datasheets for electrical characteristics and package types.
Features
Key features include:
- High-speed operation with balanced propagation delay for consistent performance.
- Low power consumption due to its CMOS technology.
- Inputs are tolerant of voltages up to 5.5V, allowing for flexible integration with other components.
- The device is available in a TSSOP (Thin Shrink Small Outline Package) for space-efficient designs.
- It is designed for use in environments with a temperature range of -40°C to +85°C.
- Schmitt-trigger action inputs accept slow input edges to improve noise immunity.
The 74LVC32APW is well-suited for portable and battery-powered devices due to its low power and wide voltage range.
Pinout
1. Pin 1, 4, 9, 12: A inputs for the four OR gates.
2. Pin 2, 5, 10, 13: B inputs for the four OR gates.
3. Pin 3, 6, 8, 11: Y outputs for the four OR gates.
4. Pin 7: GND (Ground) - connected to the reference ground.
5. Pin 14: VCC (Power Supply) - connected to the supply voltage.
The IC operates over a wide voltage range, making it suitable for a variety of applications in digital circuits where OR logic is required.
Manufacturer
Application
1. Digital Logic Systems: Utilized in building complex logic circuits for computing and processing applications.
2. Signal Processing: Used in systems requiring logical OR operations for signal manipulation and decision-making processes.
3. Interface Logic: Facilitates signal interfacing between different components or systems with varying logic levels.
4. Data Routing and Control: Employed in multiplexers, demultiplexers, and control systems for routing data efficiently.
5. Embedded Systems: Integrated into microcontroller-based designs for executing specific logical operations.
These applications leverage its low voltage, high-speed operation, and compact form factor suitable for modern electronics.