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CD4077BE
+BOMIC GATE XNOR 4CH 2-INP 14DIP
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제조업체텍사스 인스트루먼트(주)
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제조업체 부품 #CD4077BE
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사양
| 속성 | 가치 |
| Series | 4000B |
| PartStatus | Active |
| LogicType | XNOR (Exclusive NOR) |
| NumberofCircuits | 4 |
| NumberofInputs | 2 |
| Voltage-Supply | 3V ~ 18V |
| Current-Quiescent(Max) | 1 µA |
| Current-OutputHigh,Low | 3.4mA, 3.4mA |
| InputLogicLevel-Low | 1.5V ~ 4V |
| InputLogicLevel-High | 3.5V ~ 11V |
| MaxPropagationDelay@V,MaxCL | 100ns @ 15V, 50pF |
| OperatingTemperature | -55°C ~ 125°C |
| MountingType | Through Hole |
| SupplierDevicePackage | 14-PDIP |
| Package/Case | 14-DIP (0.300", 7.62mm) |
| BaseProductNumber | CD4077 |
개요
Description
Key features include wide operating voltage ranges (typically 3V to 15V), low power consumption, and high noise immunity. The CD4077BE can be used in arithmetic circuits, digital signal processing, and as part of more complex logic systems. It is packaged in various forms, including DIP (Dual In-line Package) and SOIC (Small Outline IC), making it versatile for different circuit designs.
When using the CD4077BE, ensure proper logic level compatibility and follow datasheet guidelines for pin configuration and electrical characteristics for optimal performance.
Equivalent
1. 74HC86 - High-speed CMOS version
2. 74HCT86 - TTL-compatible version
3. 74LS86 - Low-power Schottky TTL version
4. CD4011 - Quad 2-input NAND gate may serve similar functions in some applications, though it's not a direct equivalent.
Always verify compatibility with your specific application requirements.
Features
1. Dual Functionality: Contains two independent 4-input NAND gates.
2. Wide Supply Voltage Range: Operates typically from 3V to 15V, allowing flexibility in various applications.
3. Low Power Consumption: Designed for low static power dissipation, making it suitable for battery-powered devices.
4. High Noise Immunity: Offers improved noise margins, enhancing reliability in digital circuits.
5. Voltage Compatibility: Can interface with TTL (Transistor-Transistor Logic) levels, facilitating integration into mixed logic systems.
6. High Speed: Provides fast switching times, suitable for high-performance applications.
7. Multiple Package Options: Available in various packages (DIP, SOIC, etc.) for easy integration.
These features make the CD4077BE ideal for digital logic applications, including combinational logic circuits and signal processing.
Pinout
### Pin Configuration:
1. Pin 1: A1 - Input for the first NAND gate
2. Pin 2: B1 - Input for the first NAND gate
3. Pin 3: C1 - Input for the first NAND gate
4. Pin 4: D1 - Input for the first NAND gate
5. Pin 5: Y1 - Output for the first NAND gate
6. Pin 6: NC - No connection
7. Pin 7: VSS - Ground (0V)
8. Pin 8: NC - No connection
9. Pin 9: Y2 - Output for the second NAND gate
10. Pin 10: D2 - Input for the second NAND gate
11. Pin 11: C2 - Input for the second NAND gate
12. Pin 12: B2 - Input for the second NAND gate
13. Pin 13: A2 - Input for the second NAND gate
14. Pin 14: VDD - Positive supply voltage
The IC operates with a wide supply voltage range and is used in various digital circuits.
Manufacturer
The company serves numerous sectors, including automotive, industrial, consumer electronics, and communication. Texas Instruments is recognized for its innovation in technology and its commitment to quality, making it a trusted name in the semiconductor industry. The CD4077BE, part of the 4000 series of CMOS logic ICs, is commonly used in digital circuits for implementing logic functions, making it a popular choice among electronics engineers and hobbyists.
Application
1. Digital Logic Circuits: It facilitates the design of complex logic systems.
2. Signal Processing: Functions in signal manipulation and conditioning.
3. Control Systems: Utilized in automation and control applications for decision-making processes.
4. Computational Circuits: Serves as building blocks in arithmetic and computational logic.
5. Timing and Oscillation: Can be part of timing circuits and oscillators in clock generation.
6. Interface Circuits: Used to interface different logic levels in mixed-signal environments.
Its versatility makes it suitable for both educational and practical electronic designs.