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N74F125N,602
Basic Information Overview
- Category: Integrated Circuit (IC)
- Use: Logic Buffer/Driver
- Characteristics:
- High-speed operation
- Wide supply voltage range
- Low power consumption
- Package: DIP-14 (Dual In-line Package with 14 pins)
- Essence: Buffering and driving signals in digital circuits
- Packaging/Quantity: Typically sold in reels of 2,500 units
Specifications
- Supply Voltage Range: 2V to 6V
- Input Voltage Range: 0V to VCC
- Output Voltage Range: 0V to VCC
- Maximum Operating Frequency: 100 MHz
- Propagation Delay Time: 5 ns (typical)
Detailed Pin Configuration
- GND (Ground)
- A1 (Input A1)
- Y1 (Output Y1)
- A2 (Input A2)
- Y2 (Output Y2)
- A3 (Input A3)
- Y3 (Output Y3)
- GND (Ground)
- Y4 (Output Y4)
- A4 (Input A4)
- Y5 (Output Y5)
- A5 (Input A5)
- Y6 (Output Y6)
- VCC (Supply Voltage)
Functional Features
- Non-inverting buffer/driver
- High output current capability
- TTL-compatible inputs
- Schmitt-trigger input for noise immunity
- 3-state outputs for bus-oriented applications
Advantages
- High-speed operation allows for efficient signal buffering
- Wide supply voltage range enables compatibility with various systems
- Low power consumption reduces energy requirements
- Schmitt-trigger input ensures reliable operation in noisy environments
- 3-state outputs facilitate bus sharing and multiplexing
Disadvantages
- Limited number of input/output channels (6 in this case)
- Not suitable for applications requiring higher operating frequencies
- DIP package may not be suitable for space-constrained designs
Working Principles
The N74F125N,602 is a logic buffer/driver IC that amplifies and shapes digital signals. It operates by receiving input signals on the A1 to A5 pins and providing amplified outputs on the corresponding Y1 to Y6 pins. The inputs are TTL-compatible, allowing easy integration with other digital circuits. The Schmitt-trigger input ensures noise immunity, making it suitable for use in environments with electrical interference. The 3-state outputs enable multiple devices to share a common bus, facilitating efficient data transfer.
Detailed Application Field Plans
The N74F125N,602 can be used in various applications, including:
1. Microcontroller interfacing
2. Data communication systems
3. Industrial automation
4. Automotive electronics
5. Consumer electronics
Detailed and Complete Alternative Models
Some alternative models to the N74F125N,602 include:
- SN74LS125
- 74HC125
- CD74HCT125
- MC74ACT125
These alternatives offer similar functionality and can be used as replacements depending on specific requirements.
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What is the N74F125N,602?
- The N74F125N,602 is a quad buffer/line driver IC (integrated circuit) commonly used in technical solutions.
What is the purpose of the N74F125N,602?
- The purpose of this IC is to provide buffering and line driving capabilities for digital signals in various technical applications.
What voltage levels does the N74F125N,602 support?
- The N74F125N,602 supports a wide range of voltage levels, typically ranging from 2V to 6V.
How many buffers/line drivers are there in the N74F125N,602?
- The N74F125N,602 consists of four individual buffers/line drivers, allowing it to handle multiple signals simultaneously.
What is the maximum current output of each buffer/line driver in the N74F125N,602?
- Each buffer/line driver in the N74F125N,602 can provide a maximum current output of around 24mA.
Can the N74F125N,602 be used with both TTL and CMOS logic levels?
- Yes, the N74F125N,602 is compatible with both TTL (Transistor-Transistor Logic) and CMOS (Complementary Metal-Oxide-Semiconductor) logic levels.
What is the input/output voltage compatibility of the N74F125N,602?
- The N74F125N,602 has a wide input/output voltage compatibility, supporting both standard CMOS and TTL voltage levels.
Does the N74F125N,602 have any built-in protection features?
- Yes, the N74F125N,602 includes built-in protection features such as overvoltage and overcurrent protection to safeguard against potential damage.
What is the operating temperature range of the N74F125N,602?
- The N74F125N,602 typically operates within a temperature range of -40°C to +85°C, making it suitable for various environments.
Can the N74F125N,602 be used in both digital and analog applications?
- No, the N74F125N,602 is specifically designed for digital signal buffering and line driving applications and is not suitable for analog applications.