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TTP223E-HA6 SMD IC SOT-23-6 Touch Screen Controller

Parameter

Value

Manufacturer

Tontek Design Tech

Model Number

TTP223E-HA6

Type

Touch Screen Controller IC – 1 Touch Key Detector

Datasheet

TTP223E-HA6

12.00 EGP

Availability: Out of stock
SKU:300000011255
TTP223E-HA6 SMD IC SOT-23-6 Touch Screen Controller

The TTP223E-HA6 is a highly efficient Touch Pad Detector IC designed for human touch detection with low power consumption. This IC offers a stable and reliable touch sensing method, making it an ideal replacement for traditional mechanical switches. Operating within a voltage range of 2.0V to 5.5V, it supports both DC and AC applications. With its low operating current and fast response time, the TTP223E-HA6 is well-suited for use in consumer products, providing a smooth and sensitive touch interface. It also includes adjustable sensitivity and multiple output modes, ensuring versatile use in various designs and applications.

Features:
  • Single touch key detection for intuitive user interfaces.
  • Operating voltage range: 2.0V to 5.5V.
  • Low power consumption: 2.0μA typical in low power mode.
  • Adjustable sensitivity via external capacitance (1 to 50pF).
  • Supports direct and toggle output modes via TOG pin.
Specifications:
Parameter Value
Operating Voltage 2.0V to 5.5V
Operating Current (Low Power Mode) Typical 2.0μA, Maximum 4.0μA (@VDD>3V, no load)
Response Time (Low Power Mode) Max approximately 220ms (@VDD<3V)
Sensitivity Adjustment By external capacitance (1~50pF)
Maximum On Time Approximately 100 seconds (±50%)
Stable Time After Power-On Approximately 0.5 seconds
Auto Calibration Period 1 second within 8 seconds after power-on; changes to 4 seconds under certain conditions
Operating Temperature -40°C to 85°C
Package SOT-23-6
RoHS Compliance Yes
Datasheet TTP223E-HA6
Applications
  • Consumer electronic devices requiring touch detection.
  • Button key replacement in industrial and consumer applications.
  • Home automation systems.
  • Low-power touch sensing for battery-powered devices.
  • User interfaces in portable electronics.
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