• Part: MX5114
  • Description: Single 7.6-A Peak Current Low-Side Gate Driver
  • Manufacturer: MAXINMICRO
  • Size: 878.58 KB
Download MX5114 Datasheet PDF
MAXINMICRO
MX5114
MX5114 is Single 7.6-A Peak Current Low-Side Gate Driver manufactured by MAXINMICRO.
features necessary to drive low-side - 0.68-V Input Hysteresis - Up to 14-V Logic Inputs (Regardless of VDD Voltage) - Low Input Capacitance: 2.5-p F (Typical) - - 40°C to 125°C Operating Temperature Range - 6-Pin SOT-23 APPLICATIONS enhancement mode Gallium Nitride (Ga N) FETs. The MX5114 provides inverting and noninverting inputs to satisfy requirements for inverting and Noninverting gate drive in a single device type. The inputs of the MX5114 are TTL/CMOS Logic patible and withstand input voltages up to 14 V regardless of the VDD voltage. The MX5114 has split gate Boost Converters Flyback and Forward Converters Secondary Synchronous FETs Drive in Isolated Topologies These are Pb-free device Motor Control GENERAL INFORMATION outputs, providing flexibility to adjust the turnon and turnoff strength independently. The MX5114 has fast switching speed and minimized propagation delays, facilitating high-frequency operation. The MX5114 is available in a 6-pin SOT-23 package and a 6-pin WSON package with an exposed pad to aid thermal dissipation. FEATURES - Independent Source and Sink Outputs for Controllable Rise and Fall Times - 4-V to 12.6-V Single Power Supply - 7.6-A/1.3-A Peak Sink and Source Drive Current - 0.23-Ω Open-drain Pulldown Sink Output - 2-Ω Open-drain Pullup Source Output - 12-ns (Typical) Propagation Delay - Matching Delay Time Between Inverting and Noninverting Inputs - TTL/CMOS Logic Inputs Ordering information Part Number MX5114A MX5114B Description CMOS TTL Package dissipation rating Package RθJA(℃/W) SOT-23 (6) WSON (6) Absolute maximum ratings Parameter VDD to VSS IN, INB to VSS N_OUT to VSS P_OUT to VSS Junction temperature Storage temperature, Tstg Value -0.3 to 14V -0.3 to 14V -0.3 to VCC+0.3V -2.0 to VCC+0.3V 150℃ -55 to 150℃ Stresses beyond those listed in Absolute Maximum Ratings may cause permanent damage to the device. Exposure to absolute maximum rating conditions for extended periods may affect reliability....