Dual Supply MOSFET Drivers The ICL7667 is a dual monolithic high speed driver designed to convert high current to TTL level signals at the output at voltages up to 15V. Its high speed and current output enable it to drive large capacitive loads with high slew rate and low propagation delay. With the output voltage swinging only millivolts below the supply voltage and a maximum s...
Read moreOverview The ICS8344-01 is a low voltage, low skew fanout buffer and a member of the HiPerClockS™ family of high performance clocking solutions from integrated circuits. The ICS8344-01 is designed to translate any differential signal level to the LVCMOS level. This low impedance LVCMOS output for driving 50Ω Terminate transmission lines in series or parallel. The effe...
Read moreSingle IGBT Gate Driver The IL33153 is specifically designed for high power applications including AC IGBT drivers for induction motor control, DC brushless motor control and uninterruptible power supplies. Although designed for discrete and modular drive IGBTs, this device can be a cost-effective solution for driving power MOSFETs and bipolar transistors. Protection ...
Read moreFeatures Provides constant and proper gate drive power regardless of MOSFET's transformer output Minimizes loss of power MOSFET body-drain diode conduction Operating environment with high current drive capability - 2A type high speed operation - 2MHz to accommodate multiple topologies such as single-ended (future, double-ended) DESCRIPTION The IR1175 is a high-...
Read moreFor the 7V, 17A SynchroFET™ complementary permanent magnet synchronous half-bridge design using P6 and Pentium® Remember, Intersil's SynchroFET™ family provides a new way to implement synchronous rectification step-down switching regulators. The SynchroFET replaces two power DMOSs, Schottky diodes, two gate drivers and a synchronous control circuit. The complementa...
Read moreBuck Driver for Synchronous Rectifier MOSFETs The high frequency, dual MOSFET drivers of the HIP6601 and HIP6603 are specifically designed to drive two power N-channel MOSFETs in synchronous rectified buck converters. Combining these drivers with the HIP630x multiphase buck PWM controller and Intersil UltraFETs™ form a complete core voltage regulator solu...
Read moreDual-Channel Synchronous Rectification Buck MOSFET Driver The HIP6602 is a high frequency, two power channel MOSFET driver specifically designed to drive four power N-channel MOSFETs in a synchronous rectification buck converter. Combined with the HIP63xx these driver families of multiphase buck PWM controllers and Intersil's UltraFETs® form a complete...
Read moreBuck Driver for Synchronous Rectifier MOSFETs The HIP6601 and HIP6603 high frequency, dual MOSFET drivers are specifically designed to drive two power N-channel MOSFETs in synchronous rectified buck converters. Combining these drivers with the HIP630x multiphase buck PWM controller and Intersil UltraFETs™ form a complete core voltage regulator solution fo...
Read moreRadiation Hardened High Frequency Half-Bridge Driver The Radiant 2100RH Hardened HS is a high frequency, half-bridge 100V N-channel MOSFET driver IC, which is a functional, pin-to-pin replacement for Intersil's HIP2500 and industry standard 2110 species. The low-side and high-side gate drivers can be controlled independently. This gives the user maximum flexibilit...
Read moreRadiation Hardened Dual Channel, Inverting Power MOSFET Drivers The radiation hardened Hs4423RH and HS, 4423BRH are inverting, dual channel, monolithic high speed MOSFET drivers designed to convert high current to TTL level signals at voltages up to 18V at the output. The inputs for these devices are TTL compatible and can be driven directly by our HS, 1825AR...
Read moreRadiation Hardened High Frequency Half-Bridge Driver The Radiant 2100RH Hardened HS is a high frequency, half-bridge 100V N-channel MOSFET driver IC, which is a functional, pin-to-pin replacement for Intersil's HIP2500 and industry standard 2110 species. The low-side and high-side gate drivers can be controlled independently. This gives the user maximum flexibilit...
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