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SMDA05C-4-2TR
Product Category
SMDA05C-4-2TR belongs to the category of transient voltage suppressor (TVS) diodes.
Basic Information Overview
- Use: SMDA05C-4-2TR is used for protecting sensitive electronic components from voltage transients induced by lightning, ESD, and other transient voltage events.
- Characteristics: It offers low clamping voltage, fast response time, and high surge current capability.
- Package: SMDA05C-4-2TR is typically available in a surface mount package.
- Essence: The essence of SMDA05C-4-2TR lies in its ability to divert excessive current away from sensitive components during transient voltage events.
- Packaging/Quantity: It is commonly packaged in reels with varying quantities depending on the manufacturer's specifications.
Specifications
- Voltage Rating: 5V
- Peak Pulse Current: 30A
- Standoff Voltage: 3.6V
- Breakdown Voltage: 4V
- Operating Temperature Range: -55°C to 150°C
Detailed Pin Configuration
The detailed pin configuration of SMDA05C-4-2TR includes input and output terminals for connection within the circuitry. It is essential to refer to the datasheet for the specific pinout details.
Functional Features
- Transient Voltage Suppression: Effectively clamps transient voltages to protect downstream components.
- Fast Response Time: Rapid reaction to transient events ensures minimal impact on the protected circuitry.
- Low Clamping Voltage: Provides effective protection without imposing excessive voltage drop.
Advantages and Disadvantages
- Advantages:
- Effective protection against transient voltage events.
- Fast response time.
- Low clamping voltage.
- Disadvantages:
- Limited to specific voltage and current ratings.
- Requires careful consideration of placement within the circuit.
Working Principles
SMDA05C-4-2TR operates based on the principle of avalanche breakdown and diode action. When a transient voltage event occurs, the TVS diode conducts and diverts the excess current away from the sensitive components, thereby limiting the voltage across the protected circuit.
Detailed Application Field Plans
SMDA05C-4-2TR finds application in various fields including:
- Telecommunications equipment
- Automotive electronics
- Industrial control systems
- Consumer electronics
Detailed and Complete Alternative Models
- Alternative Model 1: SMDA12C-4-2TR
- Alternative Model 2: SMDJ24A-13-F
- Alternative Model 3: SMAJ5.0A-13-F
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What is the SMDA05C-4-2TR?
- The SMDA05C-4-2TR is a transient voltage suppressor diode designed to protect sensitive electronic components from voltage spikes and transients.
What are the key features of the SMDA05C-4-2TR?
- The key features include low clamping voltage, fast response time, high surge current capability, and compatibility with automated placement equipment.
How is the SMDA05C-4-2TR typically used in technical solutions?
- It is commonly used for overvoltage protection in applications such as data lines, communication ports, and power supply inputs.
What is the maximum clamping voltage of the SMDA05C-4-2TR?
- The maximum clamping voltage is typically around 9 volts at a peak pulse current of 10A.
What is the operating temperature range of the SMDA05C-4-2TR?
- The operating temperature range is usually between -55°C to +125°C, making it suitable for a wide range of environments.
Can the SMDA05C-4-2TR be used for ESD protection?
- Yes, it can provide effective electrostatic discharge (ESD) protection for sensitive components.
Is the SMDA05C-4-2TR RoHS compliant?
- Yes, it is typically RoHS compliant, ensuring environmental friendliness and safety in manufacturing processes.
What are some common applications for the SMDA05C-4-2TR in technical solutions?
- Common applications include protection for USB ports, Ethernet interfaces, audio/video inputs, and other sensitive signal lines.
Does the SMDA05C-4-2TR require any external components for proper operation?
- In most cases, it does not require additional external components, simplifying its integration into technical solutions.
Are there any recommended layout or placement considerations for the SMDA05C-4-2TR?
- It is advisable to minimize trace lengths and keep the device as close as possible to the protected circuitry to optimize its performance.
Feel free to ask if you need further information on any of these questions!