• Part: MX5014D22
  • Description: 4 to 40V Low-Cost High Side Gate Driver
  • Manufacturer: MAXINMICRO
  • Size: 818.67 KB
Download MX5014D22 Datasheet PDF
MAXINMICRO
MX5014D22
MX5014D22 is 4 to 40V Low-Cost High Side Gate Driver manufactured by MAXINMICRO.
DESCRIPTION APPLICATIONS MX5014D22 Gate driver is designed for gate control of Nchannel, enhancement mode, power MOSFETs used as high side switches. The MX5014D22 can sustain an on-state output indefinitely. The MX5014D22 operates from 4V to 40V supply. An internal circuit will off the external FET to protect overvoltage. In high side configurations, the driver can control MOSFETs that switch loads of up to 40V. The MX5014D22 has a TTL patible control input. The MX5014D22 features an internal charge pump that can sustain a gate voltage greater than the available supply voltage. The driver can turn on a logic level MOSFET from 3V supply or a standard MOSFET from a 5V supply. The gate to source output voltage is internally limited to approximately 12V. The MX5014D22 is available in plastic 6 pin DFN2- 2 package. FEATURES - 4V to 40V operation supply voltage - 240u A typical supply current (24V supply) - 38u A typical off-state current (24V supply) - Internal charge pump - TTL patible input - Withstands 60V transient (load dump) - Internal 12Vgate clamp protection - Minimum external parts - Operates in high side or low side configurations - 1u A control EN input pull off - Noninverting configuration - Adjustable overvoltage protection Battery Management System Lamp Control Heater Control Power Bus Switching Motor control GENERAL INFORMATION Ordering information Part Number MX5014D22 Description DFN2- 2-6L Package dissipation rating Package DFN2- 2-6L RθJA(℃/W) 60 Absolute maximum ratings Parameter Supply voltage EN, Source voltage OVP voltage Source current Gate voltage Junction temperature Storage temperature, Tstg Leading temperature (soldering, 10secs) ESD Susceptibility HBM Value -0.7 to 60V -0.7 to VIN -0.7 to 6.5V 10m A -0.7 to 55V 150℃ -55 to 150℃ 260℃ ±2000V 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....