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BSS83P-VB, a P-channel SOT23-3 MOSFET datasheet parameters video explanation
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**Model: BSS83P-VB**.
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**Silk screen: VB264K**.
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**Brand: VBsemi**.
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**Parameters :**.
- Package: SOT23.
- Type: P-Channel channel.
- Rated voltage: -60V.
- Rated current: -0.5A.
- Turn on Resistance (RDS(ON)): 3000mΩ (at VGS=10V, VGS=20V).
- Threshold voltage (Vth): -1.87V.
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**Package:**.
- Package type: SOT23.
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**Detailed parameter description:**.
BSS83P-VB is a P-Channel channel field effect transistor, using SOT23 package, suitable for operating voltages of -60V, current is -0.5A. Its turn-on resistance is 3000mΩ at different gate-source voltages, making it suitable for low-power applications. The threshold voltage is -1.87V, suitable for a variety of circuit design needs. .
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**Application Introduction:**.
This type of transistor is mainly used in various electronic equipment and circuits, especially suitable for low-power applications. Common application areas include power management, signal switching, low-power amplification, etc. .
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**Application field module:**.
1. **Power management module:** In small power power management circuits, the P-Channel channel transistor can be used for power switches and Power supply regulation effectively controls the stability and efficiency of the circuit. .
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2. **Signal switch module:** Due to its low power characteristics, it can be used in signal switch circuits to achieve fast switching and control of signals. .
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3. **Low power amplification module:** Suitable for low power amplification circuits, such as input impedance matching of audio amplifiers, etc. .
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**Usage Precautions:**.
1. **Operating voltage limit:** Do not exceed the specified maximum operating voltage to prevent device damage. .
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2. **Current direction:** Since it is a P-Channel channel, the current direction is opposite to that of the N-Channel, so you need to ensure that the current direction is correct. .
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3. **Threshold voltage adaptation:** When designing the circuit, ensure that the gate-source voltage is within the specified range to ensure normal operation. .
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4. **Avoid static electricity:** Avoid generating static electricity during handling and use, and take anti-static measures to avoid damage to the device. .
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5. **Temperature Control:** Proper heat dissipation measures help maintain the device operating within the appropriate temperature range, especially in high-power applications. .
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The above are some common usage precautions. The specific usage details need to be adjusted according to the specific circuit design and application environment. Always refer to the data sheet and manufacturer's instructions to ensure proper use and application.

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