Overview
The BYC10X-600PQ127 is a hyperfast rectifier diode manufactured by NXP USA Inc. This component is designed for high-performance applications requiring fast switching times and high current handling capabilities. The diode is packaged in a TO-220F plastic single-ended package, which is isolated and mounted on a heatsink with a single mounting hole. This configuration enhances thermal dissipation and mechanical stability.
Key Specifications
Parameter | Conditions | Min | Typ | Max | Unit |
---|---|---|---|---|---|
VRRM (Repetitive Peak Reverse Voltage) | - | - | - | 600 | V |
VRWM (Crest Working Reverse Voltage) | - | - | - | 600 | V |
IF(AV) (Average Forward Current) | square waveform; δ = 0.5; Th ≤37 °C | - | - | 10 | A |
IFRM (Repetitive Peak Forward Current) | square waveform; δ = 0.5; Th ≤37 °C | - | - | 20 | A |
IFSM (Non-Repetitive Peak Forward Current) | t = 10 ms; sinusoidal waveform | - | - | 91 | A |
Tstg (Storage Temperature) | - | -40 | - | 150 | °C |
Tj (Junction Temperature) | - | - | - | 150 | °C |
Rth(j-h) (Thermal Resistance from Junction to Heatsink) | with heatsink compound | - | - | 4.8 | K/W |
Rth(j-a) (Thermal Resistance from Junction to Ambient) | in free air | - | - | 60 | K/W |
VF (Forward Voltage) | IF = 10 A; Tj = 150 °C | - | 1.32 | 2.03 | V |
trr (Reverse Recovery Time) | IF = 10 A to VR = 400 V; dIF/dt = 500 A/µs; Tj = 100 °C | - | 19 | - | ns |
Key Features
- Hyperfast Recovery Time: The BYC10X-600PQ127 features a fast reverse recovery time, making it suitable for high-frequency applications.
- High Current Handling: The diode can handle high average and peak forward currents, making it ideal for power conversion and rectification applications.
- Low Forward Voltage Drop: The diode has a low forward voltage drop, which minimizes power losses and improves efficiency in the system.
- High Isolation Voltage: The component offers high isolation voltage from all terminals to the external heatsink, ensuring safe operation in various environments.
- Thermal Stability: The TO-220F package with isolated heatsink mounting enhances thermal dissipation, allowing the diode to operate reliably under high-temperature conditions.
Applications
- Power Supplies: Suitable for use in switching power supplies, DC-DC converters, and AC-DC converters due to its fast switching and high current handling capabilities.
- Motor Control: Used in motor control circuits where fast recovery times and high current handling are essential.
- Renewable Energy Systems: Can be used in solar and wind power systems for efficient power conversion and rectification.
- Industrial Power Systems: Applicable in various industrial power systems requiring reliable and efficient rectification and power conversion.
Q & A
- What is the maximum repetitive peak reverse voltage of the BYC10X-600PQ127?
The maximum repetitive peak reverse voltage is 600 V. - What is the average forward current rating of the diode?
The average forward current rating is 10 A under square waveform conditions with δ = 0.5 and Th ≤37 °C. - What is the thermal resistance from junction to heatsink with heatsink compound?
The thermal resistance from junction to heatsink with heatsink compound is 4.8 K/W. - What is the forward voltage drop at 10 A and Tj = 150 °C?
The forward voltage drop at 10 A and Tj = 150 °C is typically 1.32 V and maximum 2.03 V. - What is the reverse recovery time for the diode?
The reverse recovery time is typically 19 ns for IF = 10 A to VR = 400 V; dIF/dt = 500 A/µs; Tj = 100 °C. - What is the storage temperature range for the BYC10X-600PQ127?
The storage temperature range is from -40 °C to +150 °C. - What is the maximum junction temperature of the diode?
The maximum junction temperature is 150 °C. - What is the isolation voltage from all terminals to the external heatsink?
The isolation voltage from all terminals to the external heatsink is up to 2500 V RMS. - In what package is the BYC10X-600PQ127 available?
The diode is available in a TO-220F plastic single-ended package. - What are some typical applications of the BYC10X-600PQ127?
Typical applications include power supplies, motor control, renewable energy systems, and industrial power systems.