I will send out a mail to see what has happened with the PCB design files.
But if you plan to make this board, I would look into http://www.ti.com/tool/BOOSTXL-ULPSENSE where the schematic for the flow sensing looks similar and could probably be used instead…
Hi Jeff,
The application report is focused more on the actual flow sensing. Any RF protocol of your choice can be combined with this solution.
There is an updated flow sensing application included in Sensor Controller Studio which leverages the newer…
Note that the number of possible buttons is 7 if external reference is used, 8 with internal.
The cap touch solution we have suggested using Sensor Controller is primary for the consumer market where cost is very important and where few buttons are needed…
Part Number: SIMPLELINK-CC2640R2-SDK Other Parts Discussed in Thread: BOOSTXL-ULPSENSE , CC2640R2F , TIDA-01228 Hi,
I would like to try doing the Single Chip Flow Metering Solution . I have CC2640R2F LP and BOOSTXL-ULPSENSE. I read the document and it seems…
Hi,
1) In the Capacitive Touch example in SCS the threshold values are dynamically changed:
- While touch is not detected, a baseline value is updated slowly. While touch is detected, a high value is updated.
- The touch detection threshold is in the middle…
Hi Aurelio,
I would think the closest thing is the CC2650 SensorTag code which you can fin in the BLE-Stack ( www.ti.com/.../ble-stack ).
I would recommend you switch to using a newer development board, e.g. CC2640R2 LaunchPad or CC26X2R LaunchPad,…
Our main power is CR2032 cell battery,if voltage below 2.8V,CC2652R could rejoin zigbee network successful power up again,but capacitive touch could not work,if voltage above 3V or 3.3V with new cell battery,cap touch work well.
Our design reference…
The cap sense example in Sensor Controller Studio has been tested with up to 3 mm plexiglass using this boosterpack: www.ti.com/.../BOOSTXL-ULPSENSE
Have you done any tests with the product shell you are using? Also it's important not having air pockets…