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SI7913DN-VB Product details

Product introduction:

Product Introduction - SI7913DN-VB

**SI7913DN-VB** is a dual P+P MOSFET using Trench technology, packaged in DFN8(3x3)-B package, suitable for applications requiring efficient switching and low power consumption. The device has a maximum drain-source voltage (VDS) of -30V and can carry a maximum drain current (ID) of -6.4A. Its on-resistance (RDS(ON)) is 60mΩ at VGS=4.5V and 38mΩ at VGS=10V. As a dual P+P design, SI7913DN-VB provides more flexible power switching capabilities, can effectively achieve load current regulation, and is suitable for applications requiring a dual MOSFET solution. Low on-resistance and high current capability enable it to provide efficient performance in power conversion and power management systems.

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Product parameter:

VB Package Configuration VDS(V) VGS Vthyp(V) ID(A) Rds2.5 Rds4.5 Rds10 Technology
DFN8(3X3)-B Dual-P+P -30V -1.7V -6.4A 38mΩ Trench
VB Package Configuration VCE VGE VGEth(V) VCEsat15V ICE Technology
DFN8(3X3)-B Dual-P+P Trench
VB Package Configuration VDS(V) VGS Vthyp(V) ID(A) Rds18 Technology
DFN8(3X3)-B Dual-P+P -30V -1.7V -6.4A Trench
VB Package Configuration VDS(V) VGS Vthyp(V) ID(A) Rds6 Technology
DFN8(3X3)-B Dual-P+P -30V -1.7V -6.4A Trench
VB Package Polarity Vz / VR Pd VF IF IR Cd Type
DFN8(3X3)-B Dual-P+P
Detailed parameter description

- **Package type**: DFN8(3x3)-B
- **Configuration**: Dual P+P type MOSFET
- **Drain-source voltage (VDS)**: -30V
- **Gate-source voltage (VGS)**: 20V (±V)
- **Threshold voltage (Vth)**: -1.7V
- **On-resistance (RDS(ON))**:
- 60mΩ @ VGS = 4.5V
- 38mΩ @ VGS = 10V
- **Maximum drain current (ID)**: -6.4A
- **Technology**: Trench

Domain and module applications:

Application fields and module examples

1. **Battery Management System (BMS)**
SI7913DN-VB is suitable for battery management systems, especially for applications that require efficient power control during battery charging and discharging. As a dual P+P type MOSFET, it can provide precise switching operation in battery charging and discharging current control, effectively reduce battery loss, and optimize power transmission during charging. The low RDS(ON) characteristic reduces heat generation in the battery management system and improves the overall efficiency of the system.

2. **Electric Vehicle (EV) Power Management**
In the power management system of electric vehicles, SI7913DN-VB can be used in battery protection circuits, battery balancing and charging modules. Its dual P+P configuration is suitable for battery voltage conversion and power management circuits, and can provide reliable load switching and efficient power control. This MOSFET can handle high current applications, and due to its low on-resistance characteristics, it reduces the power loss that may be generated during battery charging and discharging, extending battery life.

3. **DC-DC Converter**
As an efficient power switch, SI7913DN-VB is suitable for various DC-DC converters, especially in situations where positive and negative power supplies are required. The dual P+P configuration of this MOSFET provides better switching performance for current management, which can effectively reduce power loss during the conversion process and improve the conversion efficiency of the power supply. Especially in high-frequency, high-power DC-DC conversion applications, it can operate stably and reduce heat.

4. **Load Switch and Current Regulation**
In load switch applications, SI7913DN-VB is suitable for situations that require dual MOSFET solutions, such as current regulators and load protection circuits. This MOSFET can efficiently control the current flow direction and reverse current, and is widely used in battery-driven devices, mobile power supplies, LED driver power supplies, etc. Due to its low on-resistance, it can reduce the heat generated during load switching and improve system stability and response speed.

5. **Inverter and battery conversion applications**
In inverter and battery power conversion systems, SI7913DN-VB can be used for switching and controlling positive and negative power supplies, providing precise current regulation. In solar inverters, UPS power systems, and battery drive systems, it can ensure efficient current conversion and battery protection, helping to improve the overall performance and stability of the system. Its low RDS(ON) characteristics make it an ideal choice for high-efficiency applications.

6. **High-efficiency battery charger**
In high-efficiency battery chargers, SI7913DN-VB, with its low on-resistance and high current capability, can help reduce power loss during charging, optimize charging efficiency, and is suitable for fast charging applications. It can withstand higher currents and provide stable current control under large load changes to ensure reliability and safety during the charging process.

* 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

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