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ProxSense

®

 Series 

 

 

Copyright © Azoteq 2013 

IQS229EV01 module user guide  v1.2 

For more information 

visit www.azoteq.com 

 

IQS229EV01 module user guide 

Single Channel Capacitive Proximity/Touch Controller for SAR Applications 

Operation Characteristics 

The  IQS229  will  work  in  standalone  mode 
(STD 

–  LED  outputs)  or  streaming  mode 

(STRM),  depending  on  a  resistor  placement. 
By  default  the  module  will  be  configured  in 
standalone mode. 

 

“OUT”  (BLUE)  LED  will  indicate  an 
activation (crossing of the threshold) 

 

“MOV_OUT”  (GREEN)  LED  will  indicate 
movement in small detectable amounts. 

Integration 

Start  the  integration  of  the  IQS229  by  wiring 
the following into the intended application: 
1.  GND 
2.  CX (Electrode 

– wire or copper pad) 

3.  VDDHI 
On-board LEDs may be used for feedback, or 
the  OUT  and  MOV_OUT  pins  may  be  taken 
to a microcontroller. 

 

 

 

 

 

 

 

 

 

 

 

User Configurable Options 

Four  pins  on  the  IQS229  are  used  for 
external  configuration.  Floating  pins  are  the 
default  configuration.  The  configuration  is 
read  at  power-on  or  reset.  To  see  how 
resistor straps are applied, see the next page. 

Start off by choosing a threshold.  T0 is used 
to  set  a  large  jump  in  threshold  and  T1  is 
used to set smaller offsets. 

Next 

choose 

the 

preferred 

movement 

sensitivity by strapping MT. 

Then  choose  a  no  movement  time-out.  If  no 
movement is detected in this time, the sensor 
will clear the activation. With each movement 
the IQS229 will reset the timer. 

 

 

Threshold Level Selection 

L = LOGIC LOW, H = LOGIC HIGH,F = FLOAT

 

T0, THR0 (pin 8) 

T1, THR1 (pin 6) 

Corresponding Threshold Level 

 

◄More sensitive                   Less sensitive► 

 

MOV_OUT 

OUT 

T0 

MT 

T1 

TIM 

GND 

CX (Electrode) 

VDDHI (1.8 - 3.3V) 

NC 

Summary of Contents for ProxSense Series

Page 1: ...y be used for feedback or the OUT and MOV_OUT pins may be taken to a microcontroller User Configurable Options Four pins on the IQS229 are used for external configuration Floating pins are the default configuration The configuration is read at power on or reset To see how resistor straps are applied see the next page Start off by choosing a threshold T0 is used to set a large jump in threshold and...

Page 2: ...ten with the values that was read This eliminates potential leakage current Less sensitive More sensitive TIM pin 1 No Movement Time out Low 60sec Float 3min High 10min MT MOV_THR pin 7 Movement Threshold Low More sensitive Float Default High Less sensitive More sensitive Less Sensitive Shorter timer Longer timer Less sensitive More sensitive T0 Large steps T1 Small steps Threshold Adjustment TIM ...

Page 3: ..._THR TIMER THR0 THR1 MOV_OUT OUT MOV_OUT DS1 WEJT81HC 23 R2 330R R9 1 0K VDDHI OUT MOV_OUT R3 10K VDDHI GND OUT pin Standalone pull down I2C debug pull up Configuration pins float mid range pull down more sensitive shorter times pull up less sensitive longer times 3 1 2 R4 SOT 3 1 2 R5 SOT 3 1 2 R6 SOT 3 1 2 R7 SOT MOV_THR TIMER THR0 THR1 VDDHI GND 3 1 2 R8 SOT VREG C2 18pF DS2 KPT 2012SRC Default...

Page 4: ...only recommended for larger orders 50k or when in circuit programming is an option after the SMT process Connect the AZP408A05 to the CT210 as shown in Figure 4 Figure 4 AZP408A05 connection to CT210 for IQS229 fuse burn It is important to remove R2 when configuring the IQS229 OTP bits The CT210 will configure the programming via I2 C and the R2 DS1 combination will cause the CLK line to become sl...

Page 5: ... and conditions with regard to these products and information including but not limited to all implied warranties and conditions of merchantability fitness for a particular purpose title and non infringement of any third party intellectual property rights Azoteq assumes no liability for any damages or injury arising from any use of the information or the product or caused by without limitation fai...

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