Product introduction:
1. Channel Type: P-Channel - This indicates that this is a P-channel MOSFET, which is usually used in applications that need to control negative voltage supplies. 2. Rated Voltage (VDS): -60V - This is the maximum negative voltage that the trench MOSFET can withstand, indicating that it is suitable for circuits that need to handle up to -60V. 3. Rated Current (ID): -0.5A - This is the rated current of the trench MOSFET, indicating the small current load it can handle. 4. Static Drain-Source Resistance (RDS(ON)): - RDS(ON) is the resistance of the trench MOSFET in the on state. In the case of 10V, 4000(mΩ)@VGS=4.5V;, its resistance is 3000mΩ, while in the case of 4.5V, it is 3680mΩ. This shows that in the on state, its resistance is relatively high, suitable for low power applications. 5. Gate-Source Voltage Rating (Vgs): ±20V (±V) - This indicates that the gate-source voltage rating range is plus or minus ±20V. The gate-source voltage is used to control the on and off state of the MOSFET. 6. Threshold Voltage (Vth): -1.7V - This is the threshold voltage of the channel MOSFET, indicating the voltage that needs to be applied to the gate in order for the device to start conducting. This type of P-channel MOSFET is often used in areas that need to handle low power supplies and loads to meet the needs of power switching and power management, especially low power applications that need to handle negative voltage supplies. Due to its lower current and voltage capabilities, it is suitable for low power applications.
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Product parameter:
VB Package |
Configuration |
VDS(V) |
VGS |
Vthyp(V) |
ID(A) |
Rds2.5 |
Rds4.5 |
Rds10 |
Technology |
SOT23-3 |
Single-P-Channel |
-60V |
20(±V) |
-1.7V |
-0.5A |
|
4000(mΩ) |
3000(mΩ) |
|
Model: TP0610K-T1-E3-VB Silkscreen: VB264K Brand: VBsemi Parameters: P-channel, -60V, -0.5A, RDS(ON) 3000mΩ @ 10V,4000(mΩ)@VGS=4.5V; 3680mΩ @ 4.5V, ±20Vgs (±V); -1.7Vth (V) Package: SOT23
Domain and module applications:
1. Power switch: It can be used in low-power power switch modules, such as battery protection circuits, to achieve battery charging and discharging control. 2. Signal switch: In low-power signal switch applications, such as audio signal switch, it can be used to control the signal path. 3. Power inverter: In low-power inverters, it can be used to convert DC power to AC power. 4. Low-power control: In applications that need to control low-power loads, such as LED control and small motor control, it can be used as a load switch.
* Please note: the above is only an example application scenario, the specific application depends on the requirements and conditions of the system design. When using this device, consult its data sheet for detailed technical specifications and features
Technical support:
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