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Hello, Please ask a question about SF10SC3L Datasheet
# Example questions:
➢ What is the approximate maximum allowable case temperature (tc) when the average rectified forward current (io) is 5a?
➢ What is the approximate maximum peak surge forward current (if) for a single cycle?
➢ How does increasing the pulse width (tp) affect the repetitive surge reverse power (prrsm) as illustrated in the 'sbd repetitive surge reverse power capability' graph?
## Summary of Provided Data:
The provided text contains technical specifications and graphs for a Schottky Barrier Diode (SBD). Here's a breakdown of the key information, categorized for clarity:
1. Key Characteristics & Ratings:
️· Type: Schottky Barrier Diode (SBD)
️· Maximum Junction Temperature (Tj): 150°C (used in several graphs for derating curves)
2. Performance Graphs & Data:
️· Forward Power Dissipation: Shows how the diode handles forward current at different temperatures. Curves are provided for DC and pulsed (sinusoidal) currents with varying duty cycles.
️· Average Rectified Forward Current (IO): Illustrates the maximum average current the diode can handle as a function of case temperature (Tc).
️· Derating Curve: Displays how the allowable forward current decreases with increasing case temperature.
️· Peak Surge Forward Capability: Shows the maximum peak forward current the diode can withstand for a single pulse, depending on the number of cycles.
️· Reverse Power Dissipation: Shows how the diode handles reverse voltage at different temperatures and duty cycles.
️· SBD Repetitive Surge Reverse Power Derating Curve: Shows how the maximum reverse power dissipation varies with junction temperature.
️· SBD Repetitive Surge Reverse Power Capability: Illustrates the relationship between pulse width and maximum reverse power capability.
3. Key Parameters Illustrated in Graphs:
️· Duty Cycle (D): The proportion of time the current is flowing during a pulse train.
️· Pulse Width (tp): The duration of a single pulse.
️· Case Temperature (Tc): The temperature of the diode's case, important for thermal management.
️· Junction Temperature (Tj): The temperature of the semiconductor junction within the diode.
️· Average Rectified Forward Current (IO): The average current flowing through the diode in the forward direction.
️· Reverse Voltage (VR): The voltage applied to the diode in the reverse direction.
️· Reverse Power Dissipation: The amount of power that the diode can dissipate in the reverse direction.
4. General Information
️· Graphs display data based on a DC signal and a sinusoidal (SIN) signal.
️· The graphs display performance under different duty cycles, with values like 0.05, 0.1, 0.2, 0.3, 0.5 and 0.8.
In essence, this documentation provides a comprehensive set of performance characteristics for the SBD, enabling engineers to select and apply it effectively in various electronic circuits.
## Summary of Provided Data:
The provided text contains technical specifications and graphs for a Schottky Barrier Diode (SBD). Here's a breakdown of the key information, categorized for clarity:
1. Key Characteristics & Ratings:
️· Type: Schottky Barrier Diode (SBD)
️· Maximum Junction Temperature (Tj): 150°C (used in several graphs for derating curves)
2. Performance Graphs & Data:
️· Forward Power Dissipation: Shows how the diode handles forward current at different temperatures. Curves are provided for DC and pulsed (sinusoidal) currents with varying duty cycles.
️· Average Rectified Forward Current (IO): Illustrates the maximum average current the diode can handle as a function of case temperature (Tc).
️· Derating Curve: Displays how the allowable forward current decreases with increasing case temperature.
️· Peak Surge Forward Capability: Shows the maximum peak forward current the diode can withstand for a single pulse, depending on the number of cycles.
️· Reverse Power Dissipation: Shows how the diode handles reverse voltage at different temperatures and duty cycles.
️· SBD Repetitive Surge Reverse Power Derating Curve: Shows how the maximum reverse power dissipation varies with junction temperature.
️· SBD Repetitive Surge Reverse Power Capability: Illustrates the relationship between pulse width and maximum reverse power capability.
3. Key Parameters Illustrated in Graphs:
️· Duty Cycle (D): The proportion of time the current is flowing during a pulse train.
️· Pulse Width (tp): The duration of a single pulse.
️· Case Temperature (Tc): The temperature of the diode's case, important for thermal management.
️· Junction Temperature (Tj): The temperature of the semiconductor junction within the diode.
️· Average Rectified Forward Current (IO): The average current flowing through the diode in the forward direction.
️· Reverse Voltage (VR): The voltage applied to the diode in the reverse direction.
️· Reverse Power Dissipation: The amount of power that the diode can dissipate in the reverse direction.
4. General Information
️· Graphs display data based on a DC signal and a sinusoidal (SIN) signal.
️· The graphs display performance under different duty cycles, with values like 0.05, 0.1, 0.2, 0.3, 0.5 and 0.8.
In essence, this documentation provides a comprehensive set of performance characteristics for the SBD, enabling engineers to select and apply it effectively in various electronic circuits.
| Part No. | SF10SC3L |
| Manufacturer | SHINDENGEN |
| Size | 549 Kbytes |
| Pages | 10 pages |
| Description | Schottky Rectifiers (SBD) (30V 10A) |
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