VND830MSP13TR
- Mfr.Part #
- VND830MSP13TR
- Manufacturer
- STMicroelectronics
- Package / Case
- PowerSO-10 Exposed Bottom Pad
- Datasheet
- Download
- Description
- IC PWR DRIVER N-CHAN 1:1 PWRSO10
- Stock
- 635
- In Stock :
- 635
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- Manufacturer :
- STMicroelectronics
- Product Category :
- Power Distribution Switches, Load Drivers
- Number of Functions :
- 1
- Operating Temperature :
- -40°C~150°C TJ
- Series :
- VIPower™
- Output Peak Current Limit-Nom :
- 9A
- Peak Reflow Temperature (Cel) :
- 250
- Output Type :
- N-Channel
- Height Seated (Max) :
- 3.75mm
- Package / Case :
- PowerSO-10 Exposed Bottom Pad
- Resistance :
- 60mOhm
- Power Supplies :
- 13V
- Base Part Number :
- VND830
- Operating Supply Voltage :
- 41V
- Number of Terminations :
- 10
- Voltage - Load :
- 5.5V~36V
- Supply Voltage :
- 13V
- Output Configuration :
- High Side
- Moisture Sensitivity Level (MSL) :
- 3 (168 Hours)
- Driver Number of Bits :
- 2
- Terminal Form :
- Gull wing
- Built-in Protections :
- TRANSIENT; OVER CURRENT; OVER VOLTAGE; THERMAL; UNDER VOLTAGE
- Length :
- 9.4mm
- Mounting Type :
- Surface Mount
- Terminal Finish :
- Matte Tin (Sn) - annealed
- Fault Protection :
- Current Limiting (Fixed), Open Load Detect, Over Temperature, Over Voltage
- Voltage - Supply (Vcc/Vdd) :
- Not Required
- Power Dissipation :
- 73.5W
- Max Output Current :
- 9A
- Nominal Supply Current :
- 5mA
- Width :
- 7.5mm
- Terminal Position :
- Dual
- Packaging :
- Tape and Reel (TR)
- Mount :
- Surface Mount
- Number of Outputs :
- 2
- Time@Peak Reflow Temperature-Max (s) :
- 30
- JESD-609 Code :
- e3
- Radiation Hardening :
- No
- Feature :
- Auto Restart
- Input Type :
- Non-Inverting
- ECCN Code :
- EAR99
- Interface :
- On/Off
- Rds On (Typ) :
- 60m Ω (Max)
- Supply Voltage-Max (Vsup) :
- 36V
- Ratio - Input:Output :
- 1:1
- Output Current :
- 6A
- Max Power Dissipation :
- 73.5W
- Number of Pins :
- 10
- Switch Type :
- GENERAL PURPOSE
- RoHS Status :
- ROHS3 Compliant
- Pin Count :
- 10
- Datasheets
- VND830MSP13TR

Power Distribution Switches, Load Drivers STMicroelectronics VND830MSP13TR Overview
The VND830MSP13TR, crafted by STMicroelectronics, is a high-performance integrated circuit specifically engineered for power management applications. This power distribution switch excels in delivering efficient, reliable performance in managing loads with N-channel power MOSFETs. Designed for robustness and precision, the VND830MSP13TR makes use of advanced technology to ensure optimal functioning in demanding environments. With its compact PWRSO10 package, it offers a space-efficient solution for sophisticated power management systems, making it a preferred choice for developers aiming to enhance system reliability and efficiency. This product stands out in the Power Distribution Switches, Load Drivers category and is tailored to meet the demands of modern electronic applications.
VND830MSP13TR Features
The VND830MSP13TR by STMicroelectronics includes multiple features designed to enhance its performance and usability in power distribution systems. These features include robust thermal protection, overvoltage protection, and diagnostics for feedback on operational status. Additionally, its low on-resistance ensures high efficiency while minimizing power dissipation and heat generation. The integration of advanced protection mechanisms makes this driver a reliable component in protecting the system against various electrical hazards.
VND830MSP13TR Applications
- Automotive Applications: Utilized in controlling power distribution to various vehicular subsystems, improving performance and safety in automotive electronics.
- Industrial Automation: Supports automation equipment by managing power efficiently, ensuring reliable operations and energy efficiency in industrial settings.
- Home Appliance Control: Drives load switches in major appliances, enhancing the control and safety features of modern household devices.
- Power Management Systems: Critical in developing advanced power management strategies for commercial and consumer electronics, ensuring optimal power utilization and longevity of devices.
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