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3.6V 1.2A 15mΩ 4-Ch I2C Controllable Load Switch with Quick Output Discharge and Prog. Options


Package | PIN: RLW | 20
Temp: I (-40 to 85)
Carrier: Cut Tape
Qty Price
1-9 $1.40
10-24 $1.25
25-99 $1.16
100-249 $1.01
250-499 $0.93
500-749 $0.78
750-999 $0.64
1000+ $0.59


  • Input Voltage: 1.0V to 3.6V
  • Low ON-State Resistance (VBIAS = 7.2V)
    • RON = 15mΩ at VIN = 3.3V
    • RON = 15mΩ at VIN = 1.8V
    • RON = 15mΩ at VIN = 1.5V
    • RON = 15mΩ at VIN = 1.05V
  • VBIAS voltage range: 4.5V to 17.2V
    • Suitable for 2S/3S/4S Li-ion Battery Topologies
  • 1.2A Max Continuous Current per Channel
  • Quiescent Current
    • Single Channel < 9µA
    • All Four Channels < 17µA
  • Shutdown Current (all four channels) < 6µA
  • Four 1.2V Compatible GPIO Control Inputs
  • I2C Configuration (per channel)
    • On/Off Control
    • Programmable Slew Rate Control (5 options)
    • Programmable ON-delay (4 options)
    • Programmable Output Discharge (4 options)
  • I2C SwitchALL Command for Multi-channel/Multi-chip Control
  • QFN-20 package, 3mm x 3mm, 0.75mm height

Texas Instruments  TPS22993RLWR

The TPS22993 is a multi-channel, low RON load switch with user programmable features. The device contains four N-channel MOSFETs that can operate over an input voltage range of 1.0V to 3.6V. The switch can be controlled by I2C making it ideal for usage with processors that have limited GPIO available. The rise time of the TPS22993 device is internally controlled in order to avoid inrush current. The TPS22993 has five programmable slew rate options, four ON-delay options, and four quick output discharge (QOD) resistance options.

The channels of the device can be controlled via either GPIO or I2C. The default mode of operation is GPIO control through the ONx terminals. The I2C slave address terminals can be tied high or low to assign seven unique device addresses.

The TPS22993 is available in a space-saving RLW package (0.4mm pitch) and is characterized for operation over the free-air temperature range of –40°C to 85°C.