TELINK SEMICONDUCTOR TLSR8267 User Manual

Debugging dongle

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Application Note:
User Guide for Telink
TLSR8267 Debugging
Dongle
AN-BLE-16090500-E2
Brief:
This document is the user guide for Telink TLSR8267
debugging dongle board.
Ver 1.1.0
2016/10/8

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Summary of Contents for TELINK SEMICONDUCTOR TLSR8267

  • Page 1 Application Note: User Guide for Telink TLSR8267 Debugging Dongle AN-BLE-16090500-E2 Ver 1.1.0 2016/10/8 Brief: This document is the user guide for Telink TLSR8267 debugging dongle board.
  • Page 2 Telink Semiconductor does not assume any liability arising out of the application or use of any product or circuit described herein; neither does it convey any license...
  • Page 3 User Guide for Telink TLSR8267 Debugging Dongle Revision History Major Changes Date Author Version 1.0.0 Initial release 2016/9 W.W.X., L.X., Cynthia Updated silkscreen, pin description table and pin chart for GPIO test: PIN4 1.1.0 2016/10 W.W.X., Cynthia and PIN6 of J18;...
  • Page 4: Table Of Contents

    User Guide for Telink TLSR8267 Debugging Dongle Table of contents Function Brief ......................4 Pin Description ......................6 Pin Connection Guide ..................... 7 Supply power for 8267 Dongle ................ 7 Download Firmware into 8267 Dongle ............8 Measure power-saving mode current for 8267 Dongle ........9 Test RF signal for 8267 Dongle ...............
  • Page 5: Function Brief

    This document presents guide on how to use Telink TLSR8267 debugging dongle board. The debugging dongle which is included in the TLSR8267 development kit can be used for SDK development along with the TLSR8267 debugging EVK board. The debugging dongle also supports independent development. Figure 1...
  • Page 6: Figure 2 Dongle Photo

    User Guide for Telink TLSR8267 Debugging Dongle Not soldered by default. Not soldered by default. Not soldered by default. 4 3 2 1 Figure 2 Dongle photo For schematic (C1T82A3_V1.3) of TLSR8267 debugging dongle board, please refer to Appendix. AN-BLE-16090500-E2 Ver 1.1.0...
  • Page 7: Pin Description

    User Guide for Telink TLSR8267 Debugging Dongle 2 Pin Description Table 1 Pin description VBUS DM (PE2) DP (PE3) TL_SWS (PB0) TL_PD3 TL_PE0 TL_PE1 TL_PA3 TL_PA0 TL_PA4 TL_PA1 TL_PA7 VDDO3 TL_PB7 TL_PWM2 (PC2) TL_PB5 TL_PWM5 (PB6) TL_PB1 TL_PWM4 (PB4) TL_PWM3 (PC3)
  • Page 8: Pin Connection Guide

    User Guide for Telink TLSR8267 Debugging Dongle 3 Pin Connection Guide 3.1 Supply power for 8267 Dongle There are two connection methods to supply power for Telink TLSR8267 debugging dongle board. 1. Method 1: Make sure a jumper cap is connected on J20 of 8267 Dongle.
  • Page 9: Download Firmware Into 8267 Dongle

    User Guide for Telink TLSR8267 Debugging Dongle 3.2 Download Firmware into 8267 Dongle There are two connection methods to download firmware into Telink TLSR8267 debugging dongle board. 1. Method 1: Connect via USB Make sure a jumper cap is connected on J20 of 8267 Dongle.
  • Page 10: Measure Power-Saving Mode Current For 8267 Dongle

    User Guide for Telink TLSR8267 Debugging Dongle 3.3 Measure power-saving mode current for 8267 Dongle To measure current consumption of Telink TLSR8267 debugging dongle board in deep sleep or suspend mode, please follow the connection steps below: 1) Remove jumper cap from J20 of 8267 dongle, as shown in Figure 5.
  • Page 11: Test Rf Signal For 8267 Dongle

    User Guide for Telink TLSR8267 Debugging Dongle 3.4 Test RF signal for 8267 Dongle To test RF signal for Telink TLSR8267 debugging dongle board, the J5 should be connected with a spectrum analyzer via a RF cable (supplied by Telink).
  • Page 12: Test Gpios For 8267 Dongle

    User Guide for Telink TLSR8267 Debugging Dongle 3.5 Test GPIOs for 8267 Dongle Since all GPIOs of Telink TLSR8267 debugging dongle board are already connected to corresponding pins of headers including J4, J18, J21 and J22, user can directly test GPIO signals on header pins.
  • Page 13: Appendix

    User Guide for Telink TLSR8267 Debugging Dongle FCC COMPLIANCE STATEMENT: This device complies with part 15 of the FCC Rules. Operation is subject to the following two conditions: (1) This device may not cause harmful interference, and (2) this device must accept any interference received, including interference that may cause undesired operation.

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