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HEF4011BP
+BOM-
ManufacturerJLCPCB Assembly
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Mfr. Part #HEF4011BP
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In Stock9790
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Specifications
| Attribute | Value |
| Manufacturer | JLCPCB Assembly |
| Package / Case | DIP14 |
Overview
Description
The HEF4011BP is known for its low power consumption and high noise immunity, which are typical characteristics of CMOS technology. It is commonly used in combinational logic circuits, where it can perform logical operations, data manipulation, and signal processing tasks. The IC can also be used to implement more complex logic functions by combining multiple gates.
Due to its popularity and reliability, the HEF4011BP finds applications in consumer electronics, automotive systems, and industrial equipment. Users can easily interface it with other CMOS or TTL logic families, ensuring compatibility in diverse electronic designs.
Equivalent
- CD4011
- MC14011
- TC4011
- 74HC20 (High-speed CMOS)
- 74HCT20 (TTL compatible)
These chips serve similar functions in digital circuits, providing four NAND gates in a single package. Always verify specific characteristics before substitution.
Features
1. Quad Configuration: Contains four independent NAND gates, allowing for versatile circuit design.
2. Wide Voltage Range: Operates with supply voltages from 3V to 15V, making it suitable for various applications.
3. Low Power Consumption: Consumes minimal power, ideal for battery-operated devices.
4. High Noise Immunity: Offers excellent noise margins, ensuring reliable performance in noisy environments.
5. Propagation Delay: Fast switching times, typically around 50 ns at 5V, facilitating high-speed applications.
6. TTL Compatibility: Compatible with TTL logic levels, enabling easy integration with existing TTL systems.
7. Temperature Range: Operates reliably within a temperature range of -55°C to +125°C for industrial applications.
These features make the HEF4011BP suitable for digital logic applications, signal processing, and various other electronic designs.
Pinout
1. Pin 1 (A1): Input A of the first NAND gate.
2. Pin 2 (B1): Input B of the first NAND gate.
3. Pin 3 (Y1): Output of the first NAND gate.
4. Pin 4 (GND): Ground connection.
5. Pin 5 (A2): Input A of the second NAND gate.
6. Pin 6 (B2): Input B of the second NAND gate.
7. Pin 7 (Y2): Output of the second NAND gate.
8. Pin 8 (VDD): Supply voltage (positive).
9. Pin 9 (A3): Input A of the third NAND gate.
10. Pin 10 (B3): Input B of the third NAND gate.
11. Pin 11 (Y3): Output of the third NAND gate.
12. Pin 12 (A4): Input A of the fourth NAND gate.
13. Pin 13 (B4): Input B of the fourth NAND gate.
14. Pin 14 (Y4): Output of the fourth NAND gate.
This IC operates with a voltage range from 3V to 15V.
Manufacturer
Application
1. Logic Functions: Implementing NAND logic in digital circuits.
2. Signal Processing: Used in combinational and sequential logic circuits.
3. Data Processing: Serving in arithmetic operations and data manipulation.
4. Control Systems: Functioning in control logic and state machines.
5. Timing Applications: Creating oscillators and timing circuits.
6. Signal Conditioning: Used for noise filtering and signal shaping.
Its versatility makes it suitable for both educational and industrial electronics projects.