Part Details for SST5462 by Calogic Inc
Results Overview of SST5462 by Calogic Inc
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- Part Data Attributes: (Available)
- Reference Designs: (Not Available)
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SST5462 Information
SST5462 by Calogic Inc is a Small Signal Field-Effect Transistor.
Small Signal Field-Effect Transistors are under the broader part category of Transistors.
A transistor is a small semiconductor device used to amplify, control, or create electrical signals. When selecting a transistor, factors such as voltage, current rating, gain, and power dissipation must be considered, with common types. Read more about Transistors on our Transistors part category page.
Part Details for SST5462
SST5462 CAD Models
SST5462 Part Data Attributes
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SST5462
Calogic Inc
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Datasheet
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SST5462
Calogic Inc
Small Signal Field-Effect Transistor, P-Channel, Junction FET,
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Rohs Code | No | |
Part Life Cycle Code | Transferred | |
Ihs Manufacturer | CALOGIC LLC | |
Package Description | , | |
Reach Compliance Code | unknown | |
ECCN Code | EAR99 | |
FET Technology | JUNCTION | |
JESD-609 Code | e0 | |
Operating Temperature-Max | 150 °C | |
Polarity/Channel Type | P-CHANNEL | |
Power Dissipation-Max (Abs) | 0.31 W | |
Surface Mount | YES | |
Terminal Finish | Tin/Lead (Sn/Pb) |
SST5462 Frequently Asked Questions (FAQ)
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A good PCB layout for the SST5462 involves keeping the input and output traces short and separate, using a solid ground plane, and placing decoupling capacitors close to the device. A 4-layer PCB with a dedicated power plane and a solid ground plane is recommended.
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To ensure stability, make sure to follow the recommended component values and PCB layout guidelines. Additionally, add a 10nF to 100nF capacitor between the VIN pin and GND to filter out high-frequency noise. Also, ensure that the output capacitor is properly sized and placed close to the device.
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Although the datasheet specifies a maximum input voltage of 12V, it's recommended to limit the input voltage to 10V to ensure reliable operation and prevent damage to the device.
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The SST5462 is rated for operation up to 125°C, but its performance may degrade at high temperatures. It's recommended to derate the output current and ensure proper heat sinking to prevent overheating.
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To troubleshoot issues, check the input voltage, output voltage, and current. Verify that the component values and PCB layout meet the recommended specifications. Use an oscilloscope to check for oscillations or noise on the output. Also, ensure that the device is properly soldered and that there are no manufacturing defects.