Vishay: Reliable and Low maintenance electronic components for renewable energy systems
Vishay offers a comprehensive and innovative portfolio for renewable energy systems. The reliability and efficiency of components are paramount to the modernization of energy sources.
The electronic components are designed to seamlessly integrate within renewable energy setups, optimizing energy capture, conversion, storage, and distribution. Whether it's solar, wind, hydro, or other renewable sources, Vishay's components are engineered to withstand the rigors of such demanding environments leading to cost savings related to low maintenance.
MKP1848H THB DC-Link Film Capacitor
Features
High robustness under high humidity
THB 85 °C, 85 % RH, 1000 h at rated UNDC
AEC-Q200 qualified, revision D at Tmax. = 85 °C (Tmax. = 105 °C available on request)
Applications
Ideal for out-of-doors applications or in other harsh environments
Renewable energies inverters
UPS
IHDM Series Inductors
Features
Powdered iron core technology that is superior to ferrite for Isat
Performance to 180 °C continuous
Edge-wound, flat wire coil provides low DCR to minimize losses and reduce temperature rise
Easily customizable for mounting orientation, termination type, SMD, nominal L, voltage rating
Applications
High current and high temperature applications
DC/DC converters
Inverters
High current filters for motor and switching noise suppression
PowerPAK® SO-8, N-Channel MOSFETs
Features
TrenchFET® Gen V power MOSFET
Very low RDS x Qg figure-of-merit (FOM)
Tuned for the lowest RDS x Qoss FOM
Applications
Synchronous rectification
Primary side switch
DC/DC converters
Power supplies
Motor drive control
WSLF Power Metal Strip® Resistors
Features
Power Metal Strip® all-welded construction is ideal for all types of current sensing, voltage division, and pulse applications
Solid metal nickel-chrome, manganese-copper, or manganese-copper-tin alloy resistive element with low TCR (< 20 ppm/°C)
Proprietary processing technique produces extremely low resistance values, down to 0.0003 Ω