Overview
The 1N4007-13 is a standard recovery rectifier diode produced by Diotec Semiconductor. This diode is part of the 1N4007 series and is known for its high voltage and current handling capabilities, making it suitable for various industrial and commercial applications. It is packaged in a DO-41 case and is characterized by its axial leaded configuration. The 1N4007-13 is designed to operate in a wide temperature range and is compliant with RoHS and REACH regulations, ensuring environmental sustainability and safety.
Key Specifications
Parameter | Value |
---|---|
Repetitive Peak Reverse Voltage (VRRM) | 1300 V |
Maximum Average Forward Rectified Current (IFAV) | 1 A |
Forward Voltage Drop (VF) | < 1.1 V at IF = 1 A |
Peak Forward Surge Current (IFSM) | 27 A (half sine-wave, 10 ms) |
Operating Temperature Range | -65°C to +150°C |
Junction Temperature (Tj) | -50°C to +175°C |
Reverse Recovery Time (trr) | ~1500 ns |
Diode Case Style | DO-41 |
No. of Pins | 2 Pins |
Termination Type | Axial Leaded |
Key Features
- High repetitive peak reverse voltage of 1300 V, providing robust protection against voltage surges.
- Maximum average forward rectified current of 1 A, suitable for standard rectification and protection circuits.
- Low forward voltage drop of less than 1.1 V at 1 A, minimizing energy loss.
- Wide operating temperature range from -65°C to +150°C, ensuring reliability in various environments.
- Compliance with RoHS and REACH regulations, ensuring environmental sustainability.
- Axial leaded configuration in a DO-41 package, facilitating easy integration into various circuits.
Applications
- Power Supply Rectification: Used in AC to DC power supply circuits to convert alternating current into direct current.
- Flyback Diode in Inductive Loads: Protects circuits against voltage spikes in inductive loads such as solenoids or motors.
- Reverse Polarity Protection: Blocks current in case of reverse polarity, protecting sensitive downstream components.
- Voltage Clamping and Overvoltage Protection: Limits voltage to a safe level, protecting against overvoltage situations.
- Surge Suppression: Suppresses voltage surges and transients, especially in power supply systems.
- DC-DC Converters: Used in step-up or step-down configurations in DC-DC converters for handling moderate voltage levels.
- Inrush Current Limiting: Prevents high inrush currents during startup in circuits with large capacitors or extensive load conditions.
Q & A
- What is the maximum repetitive peak reverse voltage of the 1N4007-13 diode?
The maximum repetitive peak reverse voltage (VRRM) of the 1N4007-13 diode is 1300 V.
- What is the maximum average forward rectified current (IFAV) of the 1N4007-13 diode?
The maximum average forward rectified current (IFAV) of the 1N4007-13 diode is 1 A.
- What is the forward voltage drop (VF) of the 1N4007-13 diode at 1 A current?
The forward voltage drop (VF) of the 1N4007-13 diode is less than 1.1 V at 1 A current.
- What is the operating temperature range of the 1N4007-13 diode?
The operating temperature range of the 1N4007-13 diode is from -65°C to +150°C.
- What is the junction temperature (Tj) range of the 1N4007-13 diode?
The junction temperature (Tj) range of the 1N4007-13 diode is from -50°C to +175°C.
- What are the common applications of the 1N4007-13 diode?
The 1N4007-13 diode is commonly used in power supply rectification, flyback diode in inductive loads, reverse polarity protection, voltage clamping, surge suppression, DC-DC converters, and inrush current limiting.
- Is the 1N4007-13 diode compliant with environmental regulations?
Yes, the 1N4007-13 diode is compliant with RoHS and REACH regulations, ensuring environmental sustainability.
- What is the package type of the 1N4007-13 diode?
The 1N4007-13 diode is packaged in a DO-41 case with axial leads.
- What is the peak forward surge current (IFSM) of the 1N4007-13 diode?
The peak forward surge current (IFSM) of the 1N4007-13 diode is 27 A (half sine-wave, 10 ms).
- How does the 1N4007-13 diode protect against voltage surges?
The 1N4007-13 diode protects against voltage surges by suppressing transients and limiting voltage to a safe level, thus preventing damage to sensitive components.