Automotive high-side switches for higher reliability over temperature
VIPower M0-9 drivers enhance safety with intelligence
The VIPower M0-9 series provides smart power management solutions for 12 V automotive systems, ensuring safety and high performance. These drivers have logic and control sections that can receive microcontroller signals and sensors to detect changes in the car's environment, such as temperature and voltage/current fluctuations. This makes them highly functional, rugged, and reliable in reducing hazards in automobiles, providing an extra layer of protection in challenging environments and ensuring a pleasant driving experience.
| Typ. on-state resistance (per channel) | Current limitation (typ.) | Max. transient supply voltage | Undervoltage shutdown (max.) | Find out more | Ready-to-use boards |
---|---|---|---|---|---|---|
Single channel high-side driver | 4.2 mΩ | 108 A | 36 V | 2.7 V | ||
Single channel high-side driver | 6 mΩ | 82 A | 36 V | 2.7 V | ||
Single channel high-side driver | 8 mΩ | 81.6 A | 36 V | 2.7 V | ||
Single channel high-side driver | 12 mΩ | 63 A | 36 V | 2.7 V | ||
Single channel high-side driver | 16 mΩ | 50.6 A | 36 V | 2.7 V | ||
Double channel high-side driver | 9.4 mΩ | 67 A | 36 V | 2.7 V | ||
Double channel high-side driver | 12 mΩ | 63 A | 36 V | 2.7 V | ||
Double channel high-side driver | 16 mΩ | 50.6 A | 36 V | 2.7 V | ||
Double channel high-side driver | 25 mΩ | 35 A | 36 V | 2.7 V | ||
Quad channel high-side driver | 25 mΩ | 30 A | 36 V | 2.7 V | ||
Quad channel high-side driver | 86 mΩ | 13.6 A | 36 V | 2.7 V |
Discover the key features and advantages of our VIPower M0-9 Standard high-side drivers. As a definitive replacement for electromechanical relays, these HSDs are the ideal solution in harsh automotive environments and applications targeting the ASIL-B standard.
Tailored for automotive manufacturers looking for smart power management solutions, the VIPower M0-9 series offers advanced features that ensure efficient and reliable power management, making them highly efficient and cost-effective. Furthermore, they are designed to minimize battery drain when the vehicle is not in use, making them an eco-friendly choice for automotive manufacturers.
Save time using user-friendly smart selector with accurate simulations.