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TTP223 Touch Sensor: Datasheet, Circuit, Pinout [Video&FAQ]

  • Contents

Product Overview

TTP223 is a single channel touch detector IC that could be used as a 1 touch key driver. It is a useful interface when replaced with a traditional button key. It has a low power consumption with a wide range of operating voltage. It has an auto calibration feature for life and it has a re-calibration period of about 4.0 seconds. The sensitivity can be adjusted using an external capacitor of 0 to 50 pF.

 

This blog will introduce TTP223 systematically from its features, pinout to its specifications, applications, also including TTP223 datasheet and so much more.

 

Catalog

Product Overview

Related Video Introduction

TTP223 Features

TTP223 Pinout

TTP223 Applications

TTP223 Equivalents

TTP223 Circuit Diagram

TTP223 Block Diagram

TTP223 Package

TTP223 Specification

TTP223 Manufacturer

TTP223 Datasheet

Using Warnings

TTP223 FAQ

 

 

Video: TTP223 Capacitive Touch Switches 

 

TTP223 Video Description: These premade modules have some great advantages over diy solutions and even physical switches, such as pre-debouncing, mode switching and logic low and high toggling.

 

TTP223 Features

  • Operating voltage 2.0V~5.5V
  • Operating current @VDD=3V, no load, SLRFTB=1

At low power mode typical 1.5uA, maximum 3.0uA

At fast mode typical 3.5uA, maximum 7.0uA

@VDD=3V, no load, SLRFTB=0

At low power mode typical 2.0uA, maximum 4.0uA

At fast mode typical 6.5uA, maximum 13.0uA

  • The response time max about 60mS at fast mode, 220mS at low power mode @VDD=3V
  • Sensitivity can adjust by the capacitance(0~50pF) outside
  • Have two kinds of sampling length by pad option(SLRFTB pin)
  • Stable touching detection of human body for replacing traditional direct switch key
  • Provides Fast mode and Low Power mode selection by pad option(LPMB pin)
  • Provides direct mode、toggle mode by pad option(TOG pin)

Open drain mode by bonding option, OPDO pin is open drain output,

Q pin is CMOS output 

  • All output modes can be selected active high or active low by pad option(AHLB pin)
  • Have the maximum on time 100sec by pad option(MOTB pin)
  • Have external power on reset pin(RST pin)
  • After power-on have about 0.5sec stable-time, during the time do not touch the key pad,and the function is disabled
  • Auto calibration for life

And the re-calibration period is about 4.0sec, when key has not be touched

 

TTP223 Pinout

The following figure is the diagram of TTP223 pinout.

 

TTP223 Pinout

TTP223 Pinout

 

TTP223 Applications

  • Wide consumer products
  • Water proofed electric products
  • Button key replacement

 

TTP223 Equivalents

  • CAP1203
  • TTP226
  • TTP229

 

Note: Please check their parameters and pin configuration before replacing them in your circuit. More technical information can be found in the TTP223 Datasheet linked at the bottom of this page.

 

TTP223 Circuit Diagram

The following is the circuit diagram of TTP223.

 

TTP223 Circuit Diagram

TTP223 Circuit Diagram

 

PS:1. On PCB, the length of lines from touch pad to IC pin shorter is better. And the lines do not parallel and cross with other lines.

  1. The power supply must be stable. If the supply voltage drift or shift quickly, maybe causingsensitivity anomalies or false detections.
  2. The material of panel covering on the PCB can not include the metal or the electric element.The paints on the surfaces are the same.
  3. The capacitance Cs can be used to adjust the sensitivity. The value of Cs use smaller, thenthe sensitivity will be better. The sensitivity adjustment must according to the practical application on PCB. The range of Cs value is 0~50pF.

 

TTP223 Block Diagram

The following figure shows the block diagram of TTP223.

 

TTP223 Block Diagram

TTP223 Block Diagram

 

TTP223 Package

The following diagram shows the TTP223 package.

 

TTP223 Package

TTP223 Package

 

TTP223 Specification

Parameter

Symbol

Test Condition

Min.

Typ.

Max.

Unit

Operating Voltage

VDD

 

2.0

3

5.5

V

System oscillator

FFAST

VDD=3V

-

512K

-

 

Hz

FLOW

 

16K

 

Sensor oscillator

FSEN

VDD=3V no load

-

1M

-

Hz

Operating Current

IOP

VDD=3V

at low power mode and output no load

SLRFTB

=1

-

1.5

3.0

 

 

 

uA

SLRFTB

=0

-

2.0

4.0

VDD=3V

at fast mode

and output no load

SLRFTB

=1

-

3.5

7.0

SLRFTB

=0

 

6.5

13.0

Input Ports

VIL

Input Low Voltage

0

-

0.2

VDD

Input Ports

VIH

Input High Voltage

0.8

-

1.0

VDD

Output Port Sink Current

IOL

VDD=3V, VOL=0.6V

-

8

-

mA

Output Port Source Current

IOH

VDD=3V, VOH=2.4V

-

-4

-

mA

Output Response Time

TR

VDD=3V, At fast mode

 

 

60

 

mS

VDD=3V, At low power mode

 

 

220

Input Pin Pull-high Resistor

RPH

VDD=3V,

(LPMB, MOTB, SLRFTB)

 

35K

 

ohm

Input Pin Pull-low Resistor

RPL

VDD=3V,

(TOG, AHLB)

 

28K

 

 

 

ohm

VDD=3V, (RST)

 

200K

 

 

 

TTP223 Manufacturer

Tontek Design Technology Ltd. is located in New Taipei City, Taiwan and is part of the Semiconductor and Other Electronic Component Manufacturing Industry. Tontek Design Technology Ltd. has 72 total employees across all of its locations and generates $16.36 million in sales (USD).

 

TTP223 Datasheet

You can download TTP223 datasheet from the link given below:

TTP223 Datasheet

 

Using Warnings

Note: Please check their parameters and pin configuration before replacing them in your circuit.

 

TTP223 FAQ

What is TTP223 a useful interface when replaced with?

Button key.

 

What is the re-calibration period of TTP223?

4.0 seconds.

 

What is the sensitivity of TTP223?

0 to 50 pF.

 

How does a TTP223 work?

The TTP223 is a touch pad detector IC replicating a single tactile button. This touch detection IC is designed for replacing traditional direct button key with diverse pad size. 3. Stable touching detection of human body for replacing traditional direct switch key.

 

How do I increase the sensitivity of my TTP223?

The TTP223 offers some methods for adjusting the sensitivity outside. 1-1 by the electrode size Under other conditions are fixed. Using a larger electrode size can increase sensitivity. Otherwise it can decrease sensitivity.

PCB Symbol, Footprint & 3D Model

 

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