Product parameter:
| VB Package |
Configuration |
VDS(V) |
VGS |
Vthyp(V) |
ID(A) |
Rds2.5 |
Rds4.5 |
Rds10 |
Technology |
| SC75-6 |
Dual-N+P |
±20V |
|
1.0/-1.2V |
0.6/-0.3A |
410/840mΩ |
|
|
Trench |
| VB Package |
Configuration |
VCE |
VGE |
VGEth(V) |
VCEsat15V |
ICE |
Technology |
| SC75-6 |
Dual-N+P |
|
|
|
|
|
Trench |
| VB Package |
Configuration |
VDS(V) |
VGS |
Vthyp(V) |
ID(A) |
Rds18 |
Technology |
| SC75-6 |
Dual-N+P |
±20V |
|
1.0/-1.2V |
0.6/-0.3A |
|
Trench |
| VB Package |
Configuration |
VDS(V) |
VGS |
Vthyp(V) |
ID(A) |
Rds6 |
Technology |
| SC75-6 |
Dual-N+P |
±20V |
|
1.0/-1.2V |
0.6/-0.3A |
|
Trench |
| VB Package |
Polarity |
Vz / VR |
Pd |
VF |
IF |
IR |
Cd |
Type |
| SC75-6 |
Dual-N+P |
|
|
|
|
|
|
|
Detailed parameter description
| Parameter | Description|
|----------------------|-------------------------------------------|
| **Model** | SSM6L16FE-VB |
| **Package type** | SC75-6 |
| **Configuration** | Dual N-Channel + P-Channel |
| **Drain-source voltage (VDS)** | ±20V |
| **Gate-source voltage (VGS)** | ±12V |
| **Threshold voltage (Vth)** | 1.0V / -1.2V |
| **On-resistance (RDS(ON))** | 410mΩ / 840mΩ @ VGS = 2.5V |
| | 270mΩ / 660mΩ @ VGS = 4.5V |
| **Maximum drain current (ID)** | 0.6A / -0.3A |
| **Technology** | Trench |
| **Operating Temperature Range** | -55°C to +150°C |
Domain and module applications:
Applications and module examples
1. **Bipolar Power Switching**
Since the SSM6L16FE-VB is equipped with N-channel and P-channel MOSFETs, it is particularly suitable for power switching applications that require bipolar control. In battery management systems or power converters, two types of MOSFETs are used in the same package to achieve efficient positive and negative current switching, thereby improving the overall integration and efficiency of the system. Its low on-resistance reduces energy loss during power conversion and increases system efficiency.
2. **Low Power Switching Circuits**
In applications that require low-power operation, such as portable devices, smart sensors, or mobile communication devices, the SSM6L16FE-VB provides stable performance. Due to its low on-resistance and low threshold voltage, the MOSFET can switch reliably at lower operating voltages, reducing power consumption and extending device battery life.
3. **DC-DC Converters**
This MOSFET can be used as a switching element in DC-DC converters, suitable for low-voltage and efficient conversion. Whether it is a buck converter or a boost converter, the SSM6L16FE-VB can provide good conductivity and switching speed, helping to improve conversion efficiency and reduce heat loss. Its dual NP channel design has higher integration and control flexibility in the buck-boost process.
4. **Load Switch**
In load switch applications, the SSM6L16FE-VB can efficiently control the load current. Whether it is switching between positive and negative load currents or current protection in the load, this MOSFET is very suitable for embedded systems, industrial equipment, and consumer electronics due to its small package and low on-resistance. Its dual-channel design enables it to control multiple circuits simultaneously in one package, simplifying system design.
5. **Automated Control Systems**
In intelligent electrical control systems or sensor modules, the SSM6L16FE-VB can be used as a switching element to process the positive and negative poles of the signal. Its compact SC75-6 package and dual MOSFET design are particularly suitable for integrated control systems, providing fast response time and stability to ensure efficient operation of the circuit.
6. **Battery Charging & Management Systems**
In battery management systems, the SSM6L16FE-VB can be used for current switching in the charging path to control the conduction of positive and negative voltages. This MOSFET has low conduction losses when operating at low voltages, and can efficiently control the battery charging and discharging process, making it particularly suitable for portable devices, consumer electronics, and other occasions that require efficient energy management.
* 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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