ZigBee PRO Democase Getting Started. 1vv Rev

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1 ZigBee PRO Democase Getting Started

2 APPLICABILITY TABLE ZigBee PRO Democase Getting Started PRODUCT ZE ZE Reproduction forbidden without written authorization from Telit Communications S.p.A. - All Rights Reserved. Page 2 of 39

3 SPECIFICATIONS SUBJECT TO CHANGE WITHOUT NOTICE Notice While reasonable efforts have been made to assure the accuracy of this document, Telit assumes no liability resulting from any inaccuracies or omissions in this document, or from use of the information obtained herein. The information in this document has been carefully checked and is believed to be entirely reliable. However, no responsibility is assumed for inaccuracies or omissions. Telit reserves the right to make changes to any products described herein and reserves the right to revise this document and to make changes from time to time in content hereof with no obligation to notify any person of revisions or changes. Telit does not assume any liability arising out of the application or use of any product, software, or circuit described herein; neither does it convey license under its patent rights or the rights of others. It is possible that this publication may contain references to, or information about Telit products (machines and programs), programming, or services that are not announced in your country. Such references or information must not be construed to mean that Telit intends to announce such Telit products, programming, or services in your country. Copyrights This instruction manual and the Telit products described in this instruction manual may be, include or describe copyrighted Telit material, such as computer programs stored in semiconductor memories or other media. Laws in the Italy and other countries preserve for Telit and its licensors certain exclusive rights for copyrighted material, including the exclusive right to copy, reproduce in any form, distribute and make derivative works of the copyrighted material. Accordingly, any copyrighted material of Telit and its licensors contained herein or in the Telit products described in this instruction manual may not be copied, reproduced, distributed, merged or modified in any manner without the express written permission of Telit. Furthermore, the purchase of Telit products shall not be deemed to grant either directly or by implication, estoppel, or otherwise, any license under the copyrights, patents or patent applications of Telit, as arises by operation of law in the sale of a product. Computer Software Copyrights The Telit and 3rd Party supplied Software (SW) products described in this instruction manual may include copyrighted Telit and other 3rd Party supplied computer programs stored in semiconductor memories or other media. Laws in the Italy and other countries preserve for Telit and other 3rd Party supplied SW certain exclusive rights for copyrighted computer programs, including the exclusive right to copy or reproduce in any form the copyrighted computer program. Accordingly, any copyrighted Telit or other 3rd Party supplied SW computer programs contained in the Telit products described in this instruction manual may not be copied (reverse engineered) or reproduced in any manner without the express written permission of Telit or the 3rd Party SW supplier. Furthermore, the purchase of Telit products shall not be deemed to grant either directly or by implication, estoppel, or otherwise, any license under the copyrights, patents or patent applications of Telit or other 3rd Party supplied SW, except for the normal non-exclusive, royalty free license to use that arises by operation of law in the sale of a product. Reproduction forbidden without written authorization from Telit Communications S.p.A. - All Rights Reserved. Page 3 of 39

4 Usage and Disclosure Restrictions License Agreements The software described in this document is the property of Telit and its licensors. It is furnished by express license agreement only and may be used only in accordance with the terms of such an agreement. Copyrighted Materials Software and documentation are copyrighted materials. Making unauthorized copies is prohibited by law. No part of the software or documentation may be reproduced, transmitted, transcribed, stored in a retrieval system, or translated into any language or computer language, in any form or by any means, without prior written permission of Telit High Risk Materials Components, units, or third-party products used in the product described herein are NOT fault-tolerant and are NOT designed, manufactured, or intended for use as on-line control equipment in the following hazardous environments requiring fail-safe controls: the operation of Nuclear Facilities, Aircraft Navigation or Aircraft Communication Systems, Air Traffic Control, Life Support, or Weapons Systems (High Risk Activities"). Telit and its supplier(s) specifically disclaim any expressed or implied warranty of fitness for such High Risk Activities. Trademarks TELIT and the Stylized T Logo are registered in Trademark Office. All other product or service names are the property of their respective owners. Copyright Telit Communications S.p.A Reproduction forbidden without written authorization from Telit Communications S.p.A. - All Rights Reserved. Page 4 of 39

5 Contents 1. Introduction Scope Audience Contact Information, Support Document Organization Text Conventions Related Documents Glossary General Product Description Preparation of equipment Demo mother board DemoBoard Connection I/O report board Startup procedure Pin-out correspondence table Software installation Description of the application Assign your network channel, Extended PAN ID and start a Network Start your Network Analyser session Create bindings Use security Serial Management with Security Step 1 : Build the Network (Physical Links) Configuration of the coordinator and router Start the network Step 2.a : Make Bindings (Virtual Links) using IO board Step 2.b : Make Bindings (Virtual Links) using SRManagerTool Use Serial Interface to receive values of a Remote Analog Input Reproduction forbidden without written authorization from Telit Communications S.p.A. - All Rights Reserved. Page 5 of 39

6 5.1. Start the network Ask the value of a remote analog input Serial Reflashing Reflashing by serial link Safety Recommendations Document History Reproduction forbidden without written authorization from Telit Communications S.p.A. - All Rights Reserved. Page 6 of 39

7 1. Introduction 1.1. Scope Scope of this document is to show the customers how to use ZigBee Democase starting with hardware installation and describing an example of application using Telit SRManagerTool software tool Audience This document is intended for Telit customers, who are integrators, about to implement their applications using our ZE and ZE modules Contact Information, Support For general contact, technical support, to report documentation errors and to order manuals, contact Telit Technical Support Center (TTSC) at: Alternatively, use: For detailed information about where you can buy the Telit modules or for recommendations on accessories and components visit: To register for product news and announcements or for product questions contact Telit Technical Support Center (TTSC). Our aim is to make this guide as helpful as possible. Keep us informed of your comments and suggestions for improvements. Telit appreciates feedback from the users of our information. Reproduction forbidden without written authorization from Telit Communications S.p.A. - All Rights Reserved. Page 7 of 39

8 1.4. Document Organization This document contains the following chapters: Chapter 1: Introduction. Chapter 2: Quick installation Chapter 3: Description of the application. Chapter 4: Serial Management with Security Chapter 5: Use Serial Interface to receive value of a remote analog input Chapter 6: Serial Reflashing 1.5. Text Conventions Danger This information MUST be followed or catastrophic equipment failure or bodily injury may occur. Caution or Warning Alerts the user to important points about integrating the module, if these points are not followed, the module and end user equipment may fail or malfunction. Tip or Information Provides advice and suggestions that may be useful when integrating the module. All dates are in ISO 8601 format, i.e. YYYY-MM-DD Related Documents [1] ZE51/ RF module User Guide - 1vv [2] SR Manager Tool User Guide - 1vv [3] ZigBee PRO Democase User Guide - 1vv [4] Z-ONE PRO Protocol Stack User Guide - 1vv Reproduction forbidden without written authorization from Telit Communications S.p.A. - All Rights Reserved. Page 8 of 39

9 1.7. Glossary ARIB BER Bits/s CER CEPT CFR Chips dbm EMC DSSS EPROM ERC ESR ETR ETSI FCC IEEE ISM KB kbps LBT LNA MAC MHz Mchip/s PCB PROM PER PHY NRZ RF RoHS RSSI Rx SRAM SRD SMD Tx Via WPANs Association of Radio Industries and Businesses Bit Error Rate Bits per second (1000 bits/s = 1Kbps = 1Kbaud) Character Error Rate European Conference of Postal and Telecommunications Administrations Code of Federal Regulations Chip or chip sequence refers to a spreading-code used to transform the original data to DSSS Power level in decibel milliwatt (10 log (P/1mW)) Electro Magnetic Compatibility Direct Sequence Spread Spectrum Electrical Programmable Read Only Memory European Radiocommunications Committee Equivalent Series Resistance ETSI Technical Report European Telecommunication Standard Institute Federal Communications Commission Institute of Electrical and Electronics Engineers Industrial, Scientific and Medical 1024 bytes (1 byte = 8 bits) kilobits/s Listen Before Talk Low Noise Amplifier Medium Access Control Mega Hertz (1 MHz = 1000 khz) Mega chips per second (A measure of the speed with which chips are generated in DSSS) Printed Circuit Board Programmable Read Only Memory Packet Error Rate Physical Layer Non return to Zero Radio Frequency Restriction of Hazardous Substances Receive Strength Signal Indicator Reception Static Random Access Memory Short Range Device Surface Mounted Device Transmission Metal Hole on a printed circuit board Wireless Personal Area Networks Reproduction forbidden without written authorization from Telit Communications S.p.A. - All Rights Reserved. Page 9 of 39

10 2. General Product Description 2.1. Preparation of equipment The DemoCase includes three ZE61 (one with Integrated antenna, two without) and three ZE51(one with Integrated antenna, two without). One ZE61 without integrated antenna is flashed with Coordinator firmaware. The other modules are flashed with End Device firmware. Telit PC software SRManagerTool can be used to reflash the modules with different firmwares based on customer needs, router, end point or coordinator firmware. The flashing functionality is described in sub-clause 6.1. All materials are packaged separately. In order to have functional demoboards, please mount material as described below : Reproduction forbidden without written authorization from Telit Communications S.p.A. - All Rights Reserved. Page 10 of 39

11 ZigBee PRO Democase Getting Started 2.2. Demo mother board The demo mother board is the main board with user interfaces: Serial link on USB interface LEDs Switches The demo mother board is the platform for the ZE module in DIP Version and can be connected to the PC via standard USB port. Demo mother board Reproduction forbidden without written authorization from Telit Communications S.p.A. - All Rights Reserved. Page 11 of 39

12 Switches, connectors and LEDs placement on the Demo mother board Designation SW1 SW3 SW2 SW4 LD1 LD2 LD3 LD4 Feature Stand-by switch Programming switch Reset push button ON/OFF switch PROG Yellow LED ON/OFF Yellow LED Red LED Green LED 2.3. DemoBoard Connection In order to connect a demoboard : 1. Connect the USB cable to the PC. The Demoboard may be supplied directly through the USB connection. In case of mobility is needed, a +9V battery can be used. When USB is plugged, it has priority on the Battery power supply. The Demoboard may also be supplied through the +12V power supply. The +12V power supply has priority on the USB supply 2. Check that stand-by (STBY, SW1) and programming (PROG, SW3) switches are turned OFF. 3. Switch the DemoBoard ON (SW4). Check that the yellow LED LD2 lights on when power supplying the DemoBoard. Reproduction forbidden without written authorization from Telit Communications S.p.A. - All Rights Reserved. Page 12 of 39

13 O F F O N 4. Red LED LD3 blinks when the module is transmitting/receiving data frames, corresponds to pin J1. Green LED LD4 lights on when the module is in normal mode (not stand-by mode), corresponds to pin J I/O report board The I/O report board is the board which permit to interact easily with ZExx-2.4/DIP Input/Output ports. I/O report board Reproduction forbidden without written authorization from Telit Communications S.p.A. - All Rights Reserved. Page 13 of 39

14 Switches, connectors and LEDs placement on the I/O report board Feature Designation Stand-by pushbutton switch SW1 Programming switch SW2 Tactile switch SW3 2 positions switch SW4 2 positions switch SW5 Red LED LD1 Yellow LED LD2 Blue LED LD3 Green LED LD4 Potentiometer RV1 Reproduction forbidden without written authorization from Telit Communications S.p.A. - All Rights Reserved. Page 14 of 39

15 2.5. Startup procedure Respect the following order to use the ZE democase : 1. Set properly all switch in the desired position. Check that stand-by and programming switches on demo mother board are turned OFF. Feature Stand-by switch Programming switch Designation SW1 SW3 2. Plug the I/O Report Board on the Demo mother board Once the I/O Report Board is plugged on the Demo mother board, the following signals are disconnected from Demo mother board: SW1 (Stand-by switch), SW2 (Reset Push Button), SW3 Programming switch, Led LD1, Led LD2, Led LD4, and signals on J8 connector. All these signals are accessible on the I/O Report Board. Reproduction forbidden without written authorization from Telit Communications S.p.A. - All Rights Reserved. Page 15 of 39

16 3. Plug the ZExx-2.4/DIP module on the I/O Report Board Caution: be careful to correctly plug the rf module on its support Examples of ZExx-2.4/DIP not correctly plug 4. Connect the antenna to RF connector ( For WA version), 5. Connect the USB cable between your PC and USB connector, 6. Plug the external power supply into J7 socket or/and plug the 9 Volt primary battery in BAT1 receptacle or/and plug the USB cable, Reproduction forbidden without written authorization from Telit Communications S.p.A. - All Rights Reserved. Page 16 of 39

17 Polarity: The positive setting inside the DC Output Plug (Negative polarity outside of plug) Select the proper adaptor plug (3.5x1.35mm) Three kinds of power supply are available on the Demoboard: through the +12V block, through a +9V battery or through the USB cable. When it is connected, the +12V power supply has priority on the USB cable and the USB cable has priority on the battery. The battery takes over when the power supply is disconnected Be careful to check the power connection polarity, even if supply line is protected by a diode against polarity reversing. 7. Select the appropriate Power Supply Voltage between 2.3, 3, 3.3 and 3.6 Volts, Voltage Selection Jumpers Always switch off the demoboard before changing voltage 8. Switch the Demoboard ON (SW4) : Check that the yellow LED (LD2) lights ON when supplying the Demoboard (Power supply status) Reproduction forbidden without written authorization from Telit Communications S.p.A. - All Rights Reserved. Page 17 of 39

18 Feature ON/OFF switch Designation SW4 Yellow LED LD Pin-out correspondence table Pin-Out correspondence between Demo mother board, I/O report board, ZExx-2.4/DIP,and ZExx-2.4/SMD module. Demo mother board B report I/O board ZExx-2.4/DIP ZExx-2.4/SMD Pin-out Name Pin-out Name Pin-out Name Pin-out Name J1 (Pin 1) : VDD J1 (Pin 1) : J1 (Pin 2) : GND J1 (Pin 2) : GND J1 (Pin 3) : SW3 J1 (Pin 3) : P1 Pin J5 : IO5_A J1 (Pin 4) : SW4 J1 (Pin 4) : P2 Pin J9 : IO9_I (ZE51 only) Pin J9 : Reserved (ZE61 only) J1 (Pin 5) : LD1 J1 (Pin 5) : P3 Pin J2 : IO2_P J1 (Pin 6) : LD2 J1 (Pin 6) : P4 Pin J1 : IO1_P J1 (Pin 7) : SW5 J1 (Pin 7) : P5 Pin J4 : IO4_A J1 (Pin 8) : SW6 J1 (Pin 8) : P6 Pin J3 : IO3_A J1 (Pin 9) : J1 (Pin 9) : GND J1 (Pin 10) : VDD J1 (Pin 10) : VDD Pin J25 : VDD J2 (Pin 10) : SW2 J2 (Pin 10) : PROG Pin J16 : PROG J4 (Pin 2) : J2 (Pin 9) : J2 (Pin 9) : RTS Pin J22 : RTS J4 (Pin 1) : J2 (Pin 8) : J2 (Pin 8) : CTS Pin J24 : CTS SW2 J2 (Pin 7) : J2 (Pin 7) : Reset Pin J23 : Reset J4 (Pin 4) : J2 (Pin 6) : J2 (Pin 6) : RxD Pin J21 : RxD J4 (Pin 3) : J2 (Pin 5) : J2 (Pin 5) : TxD Pin J19 : TxD J2 (Pin 4) : SW1 J2 (Pin 4) : STAND_BY Pin J18 : STAND_BY J2 (Pin 3) : LD3 J2 (Pin 3) : P8 Pin J22 : RTS J2 (Pin 2) : LD4 J2 (Pin 2) : P7 Pin J6 : IO6_A J2 (Pin 1) : GND J2 (Pin 1) : GND J4 Connector for debugging and programming J4 (Pin 1) : Debug D Pin J14 : Debug D J4 (Pin 2) : Debug C Pin J10 : Debug C Reproduction forbidden without written authorization from Telit Communications S.p.A. - All Rights Reserved. Page 18 of 39

19 J4 (Pin 3) : Reset Pin J23 : Reset J4 (Pin 4) : VDD Pin J25 : VDD J4 (Pin 5) : GND J1 (Pin 4) : SW4 J1 (Pin 4) : P2 Pin J7 : IO7_A (ZE61 only) RF connection J3 : SMA connector for RF Input/Output Pin J8 : Pin J29: Reserved Ext_Antenna 2.7. Software installation Telit ZigBeeR DemoCase requires that SRManagerTool is installed in the host PC. To have a better overview of the network behaviours and exchange of messages SRManagerTool make use of WireShark Network Analyser. Installing SRManagerTool To install SRManagerTool, download TelitSRToolSetup.exe from Telit official web site under download zone, launch it, and then follow the instruction (for more details see the user guide [2]). To configure, flash devices or show the RF packets exchanged into the network use the SRManagerTool software. Congratulation! Now the host PC is ready to begin the below examples Reproduction forbidden without written authorization from Telit Communications S.p.A. - All Rights Reserved. Page 19 of 39

20 3. Description of the application This diagram shows the location of the switches and LEDs referred to in the following steps. Inter. IN -EP 4- Digital. IN -EP 3- Digital. IN -EP 2- Analog. In -EP 7- Selector Temp - Pot Interrupt. On Tmp Pot Sticker ZE51/ZE on DIP support TMP On Action Ctrl LED 1 Association Ctrl LED 2 Bindings Action Switch PROG Switch Digital. OUT -EP 5- Config. Digital. OUT -EP 6- Reproduction forbidden without written authorization from Telit Communications S.p.A. - All Rights Reserved. Page 20 of 39

21 3.1. Assign your network channel, Extended PAN ID and start a Network The first step is to assign the channel and the Extended PAN ID on which you want to form the network. 1. If you have not already done so, start the SRManagerTool software. 2. Use a USB cable to connect the Coordinator board to your computer. 3. Using the SRManagerTool software, from the main window select ZigBee Technology and click Management button. Reproduction forbidden without written authorization from Telit Communications S.p.A. - All Rights Reserved. Page 21 of 39

22 4. On the Management window select COM port into Serial Protocol section and click on Connect button. Reproduction forbidden without written authorization from Telit Communications S.p.A. - All Rights Reserved. Page 22 of 39

23 5. One time SRManagerTool is connected click on Configuration Wizard button. Reproduction forbidden without written authorization from Telit Communications S.p.A. - All Rights Reserved. Page 23 of 39

24 6. On the Configuration Wizard window, select one of the channel (for example 15) and the Extended PAN ID (for example 00aa00bb00cc00dd) then click on Apply All button. This will cause all the parameters are set into the module. Reproduction forbidden without written authorization from Telit Communications S.p.A. - All Rights Reserved. Page 24 of 39

25 7. On the Configuration Wizard window click on Start Network button. This will cause the Coordinator starts a network. 8. Disconnect and power off the Coordinator board. Reproduction forbidden without written authorization from Telit Communications S.p.A. - All Rights Reserved. Page 25 of 39

26 3.2. Start your Network Analyser session ZigBee PRO Democase Getting Started To analyze RF packet exchanged into the network you can start Analyzer functionality of SRManagerTool. Please for Analyzer usage follow the instructions provided in SRManagerTool user guide [2] that you can download from Telit official web site Create bindings Bindings are connections between end devices in a ZigBee network. This step creates a binding between a Router board and an End Device board. 1 On the Router board, push the Action switch until the Bindings (amber) LED flashes once and then twice. When you release the Action switch, the Bindings LED will remain lit. 2 On the End Device board, push the Action switch until the Bindings LED flashes five times. When you release the Action switch, the Bindings LED will remain lit. Note that End Point 10 can not be bound using this mechanism. (please refer to the [3] ZigBee PRO Democase User Guide for more details about the end point functionalities) Note that the two boards need to be set within 20 seconds of each other to guarantee that the binding will be successful. Reproduction forbidden without written authorization from Telit Communications S.p.A. - All Rights Reserved. Page 26 of 39

27 Turn the Digital IN switch on the Router board on and off. This will cause the Digital OUT (blue) LED on the (bound) End Device board to turn on and off. Turn off all boards Use security Security is an important part of ZigBee that provides the means to prevent unwanted monitoring of the system. The following steps assign a key to be used to perform Network (NWK) Layer security. 1 To begin reset all devices by turning the PROG switch to On, and then by pushing the Action switch, and Release the two switches. 2 Use a USB cable to connect the Coordinator board to your computer. 3 Using the SRManagerTool software, from the main window select ZigBee Technology and click on Management button. 4 On the Management window select COM port into Serial Protocol section and click on Connect button. 5 One time SRManagerTool is connected click on Configuration Wizard button. 6 Select a Channel and an Extended PAN ID. 7 Select Enable into Use Security section and HasPrecNwkKey section. 8 Enter a Network Key into Nwk Key section (for example all 2s). 9 Click on Apply All button. Reproduction forbidden without written authorization from Telit Communications S.p.A. - All Rights Reserved. Page 27 of 39

28 10 Disconnect and power off the Coordinator board. 11 Repeat steps 1, 2, 3, 4, 5, 6 on Router board. 12 Select Enable into Use Security section. 13 Click on Apply All button. Reproduction forbidden without written authorization from Telit Communications S.p.A. - All Rights Reserved. Page 28 of 39

29 Reproduction forbidden without written authorization from Telit Communications S.p.A. - All Rights Reserved. Page 29 of 39

30 4. Serial Management with Security For this example it is necessary to have: 1 Coordinator 1 Router We want to build the following network: Serial Link ROUTER COOR Physical Link Binding Two ways to make the Binding will be shown (Step2.a and Step2.b). Reproduction forbidden without written authorization from Telit Communications S.p.A. - All Rights Reserved. Page 30 of 39

31 4.1. Step 1 : Build the Network (Physical Links) Connect to a USB port the coordinator and switch on. Connect to a USB port the router and switch on Configuration of the coordinator and router Open two instances of SRManagerTool. From the main window of SRManagerTool select ZigBee Technology and click on Management button.. Select the COM on which the Module is connected (in the former instance for Coordinator and in the latter for the Router) and click on Connect button. Choose a channel on the 2 devices (the same, for example 15). Select Enable into Use Security section on the 2 devices. Select Enable into HasPrecNwkKey section on the Coordinator. Enter a Network Key into Nwk Key section (for example all 2s) on the Coordinator.. Click on Apply All button on the two instances to store the parameters Start the network Push and release the Action button on the coordinator Red Light blinks and switches on when the network is started. Push and release the Action button on the Router. Red Light blinks and switches on when the device is associated. The Router is connected to the coordinator Note: during association or creation of the network, depending on the status of IO board switches or if the demoboard is used without IO Board, from the serial link can be received AF Indirect Confirm (refer to [5] for more details) with status set to 0xA8 (APS_NO_BOUND_DEVICE). Reproduction forbidden without written authorization from Telit Communications S.p.A. - All Rights Reserved. Page 31 of 39

32 4.2. Step 2.a : Make Bindings (Virtual Links) using IO board On coordinator, Push the action button until the Orange Light blinks 1 times corresponding to the EndPoint 1 and release button. On the router, Push the action button until the Orange Light blinks 1 times corresponding to the EndPoint 1 and release button. On the 2 devices the Orange Light is on while the process of the binding is not finished. The serial link is made between the router and the Coordinator. The communication is secured by the Nwk key Step 2.b : Make Bindings (Virtual Links) using SRManagerTool Open two instances of SRManagerTool. From the main window of SRManagerTool select ZigBee Technology and click on Management button.. Select the COM on which the Module is connected (in the former instance for Coordinator and in the latter for the Router) and click on Connect button. In both istances of SRManagerTool insert in the Hex Command section the following command: 0x0A, 0xD6, 0x01, 0x7C, 0xC0, 0x01, 0x60, 0x00, 0x01, 0x60, 0x00 Reproduction forbidden without written authorization from Telit Communications S.p.A. - All Rights Reserved. Page 32 of 39

33 In both istances of SRManagerTool click on Send button. Wait the confirmation on the two istances of SRManagerTool: 0x02, 0xD7, 0x00 Note:the Send button in the second istance of SRmanagerTool shall be clicked within 20 seconds from the click in the first one. The serial link is made between the router and the Coordinator. The communication is secured by the Nwk key. Reproduction forbidden without written authorization from Telit Communications S.p.A. - All Rights Reserved. Page 33 of 39

34 5. Use Serial Interface to receive value alues of a Remote Analog Input For this example it is necessary to have: For this example it is necessary to have: 1 Coordinator connected to a PC by a serial link. 1 Router We want to build the following network: ROUTER COOR Physical Link 5.1. Start the network Switch on the coordinator. Send by the serial link the configuration mode command +++ (for more details see Democase User guide [3] sub-clouse IV.2) and wait the reception: [0x0D]. Send the start network command: [0x01][0x16] and wait the reception: [0x02][0x17][0x00]. Red Light blinks and switches on when the network is started. Reproduction forbidden without written authorization from Telit Communications S.p.A. - All Rights Reserved. Page 34 of 39

35 Switch on the router. Push and release the Action button on the Router. Red Light blinks and switches on when the device is associated. The Router is connected to the coordinator 5.2. Ask the value of a remote analog input Frame Length com The description device which defines the analogical input is the Analogical Measure in the Telit DemoCase Profile: 0xC07C. This device is in the EndPoint: 0x07. The associated cluster to this device is Analogical cluster: 0x0070. This device uses the Zigbee Cluster Library and to read the analogical input it is necessary to read the Analogical Value attributes: 0x0000. So to ask the value of the remote analogical input, it is necessary to send the frame below: DstAdd (LSB) EP dst EP src ClId Afdu Lenght Frame control Trans. seq numb. afdu txopt Broad Command identifier Payload (attributid) 0F F A yy cast Like defined in the ZCL In the serial link the reception is the following: Frame Length com EP dst SrcAdd (LSB) EP src ClId Afdu Lenght Frame control Trans. seq numb. afdu Com identifier Payload (attributid/status/ DataType/data) Tx Opt Bro ad cast 13 F5 0A yy xx xx Like defined in the ZCL Now it is possible to have the tension of the analogical input by calculation: Vref Value Tension = 0x03FF Reproduction forbidden without written authorization from Telit Communications S.p.A. - All Rights Reserved. Page 35 of 39

36 6. Serial Reflashing For this example it is necessary to have: 6.1. Reflashing by serial link Put the switch PROG at ON (this switch is externally available on the Demoboard). Plug the device which will be reprogrammed by USB link. Launch SRManagerTool, select ZigBee Technologies and click on Flashing button. The Flashing window appears: Select ZE51/ZE61 platforms in the Platforms Info section. Select The COM in the serial Info section. Select the Firmware file with the Browse tool. Click on Flashing button. Reproduction forbidden without written authorization from Telit Communications S.p.A. - All Rights Reserved. Page 36 of 39

37 When the module is correctly reprogrammed, the following window appears : Note:. for OTA (Over the Air reflashing) functionality contact Telit support. Reproduction forbidden without written authorization from Telit Communications S.p.A. - All Rights Reserved. Page 37 of 39

38 7. Safety Recommendations READ CAREFULLY Be sure the use of this product is allowed in the country and in the environment required. The use of this product may be dangerous and has to be avoided in the following areas: Where it can interfere with other electronic devices in environments such as hospitals, airports, aircrafts, etc. Where there is risk of explosion such as gasoline stations, oil refineries, etc. It is responsibility of the user to enforce the country regulation and the specific environment regulation. Do not disassemble the product; any mark of tampering will compromise the warranty validity. We recommend following the instructions of the hardware user guides for a correct wiring of the product. The product has to be supplied with a stabilized voltage source and the wiring has to be conforming to the security and fire prevention regulations. The product has to be handled with care, avoiding any contact with the pins because electrostatic discharges may damage the product itself. Same cautions have to be taken for the SIM, checking carefully the instruction for its use. Do not insert or remove the SIM when the product is in power saving mode. The system integrator is responsible of the functioning of the final product; therefore, care has to be taken to the external components of the module, as well as of any project or installation issue, because the risk of disturbing the GSM network or external devices or having impact on the security. Should there be any doubt, please refer to the technical documentation and the regulations in force. Every module has to be equipped with a proper antenna with specific characteristics. The antenna has to be installed with care in order to avoid any interference with other electronic devices and has to guarantee a minimum distance from the body (20 cm). In case of this requirement cannot be satisfied, the system integrator has to assess the final product against the SAR regulation. The European Community provides some Directives for the electronic equipments introduced on the market. All the relevant information s are available on the European Community website: The text of the Directive 99/05 regarding telecommunication equipments is available, while the applicable Directives (Low Voltage and EMC) are available at: Reproduction forbidden without written authorization from Telit Communications S.p.A. - All Rights Reserved. Page 38 of 39

39 8. Document History Revision Date Changes First issue Added HW description info in Chapter Added how to bind two devices using SRManagerTool in Chapter Update the doc with the USB motherboard Reproduction forbidden without written authorization from Telit Communications S.p.A. - All Rights Reserved. Page 39 of 39

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