ZIC2410 User Guide Device-Programmer Software Manual

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1 ZIC2410 Series ZIC2410 User Guide Device-Programmer Software Manual (Rev B)

2 Table of Contents 1 INTRODUCTION & PURPOSE DEFINITIONS REFERENCED DOCUMENTS PREREQUISITES EVALUATION BOARDS, ZIC2410-EVB1 (OR ZICM2410-EVB2) INSTALLATION Software Installation USB Driver Download Hardware Connections STARTING THE DEVICE-PROGRAMMER Menu Items & Descriptions, Toolbar Icons Connecting a Device to the Device-Programmer DIRECT-DOWNLOAD TO A ZIC2410-EVB1/ZICM2410-EVB SERIAL CONNECTION (USB) ETHERNET CONNECTION (TCP/IP) DOWNLOADING FIRMWARE Additional Information Setting Read/Write Hardware Information Reading a Hex Code HEX Editor Initialization OVER-THE-AIR (OTA) DEVICE PROGRAMMING HARDWARE REQUIRED OTA FUNCTIONAL PROCEDURE OTA OPERATIONAL PROCEDURE DEVICE SET-UP IDENTIFYING THE TARGET DEVICE The Ping Function The Loop-Back Function DOWNLOADING THE FIRMWARE WIRELESSLY Error Recovery REVISION HISTORY Rev B Document No Page 2 of 31

3 1 Introduction & Purpose This is the user manual for the CEL Device-Programmer software. The Device-Programmer is used for upgrading the firmware in the external serial ROM of the evaluation board, and the FLASH code area of the ZIC2410 ZigBee Device. Device-Programmer supports two firmware download modes, as follows: Direct-DownLoad mode Download the firmware to the ZIC2410 in ISP mode connected directly to the PC through a Serial interface. OTA-Programmer mode Download the firmware using wireless communication with the evaluation board through the Over-the-Air (OTA) software provided by CEL. The Device-Programmer can communicate with the ZIC2410 using the UART1 interface. On the ZIC2410-EVB1 evaluation board, the UART1 interface can be configured to connect to either a USB port or an Ethernet (TCP/IP) socket. On the ZICM2410-EVB2 evaluation board the UART1 interface is connected to the USB port. Finally, the Device-Programmer can Read/Write hardware information directly to a board-mounted device either through a USB cable or connected wirelessly. 1.1 DEFINITIONS ZIC2410QN48: CEL s single chip /ZigBee compliant transceiver (in a QFN-48 package) ZICM2410Px-1: CEL s /ZigBee compliant transceiver module solution (containing the ZIC2410QN48) ZIC2410 daughter board: CEL s /ZigBee compliant evaluation module (containing the ZIC2410QN48) ZIC2410-EVB1: a PC evaluation board containing a ZIC2410QN48 daughter board, to connect to host programs on a PC system. Using CEL software tools makes it possible to download user programs to the ZIC2410 for demonstration and customer application prototype development. ZICM2410-EVB2: a PC evaluation board containing a ZICM2410Px-1 Module, to connect to host programs on a PC system. Using CEL software tools makes it possible to download user programs to the ZIC2410 for demonstration and customer application prototype development. ZICM2410Px-KIT1: a ZigBee 2006 compliant ZigBee Engineering Development Kit 1.2 REFERENCED DOCUMENTS Category filename [.pdf] Document Name zic05_codebank_ug ZIC2410 User Guide Code Banking w Keil µvision User s Guides zic11_getstrt_sm ZIC2410 Getting Started Software Installation Manual 1.3 PREREQUISITES Prior to running the Device-Programmer software the following should be performed: Software Downloads: the Device-Programmer program and the CP2101 USB Driver should be loaded to the user s PC Hardware: at least one ZIC2410-EVB1 or ZICM2410-EVB2 Evaluation Board should be available to connect to the user s PC through a USB cable (Ethernet connection optional on EVB1 board) Rev B Document No Page 3 of 31

4 2 EVALUATION BOARDS, ZIC2410-EVB1 (or ZICM2410-EVB2) 2.1 INSTALLATION Software Installation This installation manual assumes that the user s PC is running Windows XP. If the user is running Windows Vista, see Appendix 1 of ZIC2410 Getting Started Software Installation Manual (CEL Doc # ) [filename: zic11_getstrt_sm.pdf] after loading the program to set the Compatibility Installing the Device-Programmer The Setup.exe program for the Device-Programmer software is located on the CD in the directory \ZIC2410\Tools\CEL Device-Programmer 3.50\. The following is a simplified procedure for installing the program. For a detailed procedure, please refer to ZIC2410 Getting Started Software Installation Manual (CEL Doc # ) [filename: zic11_getstrt_sm.pdf] Double click Setup.exe. The screen in Figure 1 will be displayed. Figure 1 Screen, Device-Programmer (Welcome) Figure 2 Screen, Device-Programmer (Complete) Click Next and follow the procedure given in the InstallShield Wizard until the screen in Error! Reference source not found. is displayed. Click Finish. The Device-Programmer software has been successfully installed. The icon displayed on your desktop. should now be USB Driver Download In order to connect an evaluation board to a PC through the USB Port, it is necessary to install the CP2101 USB Driver software (if it has not already been installed). Please refer to the ZIC2410 Getting Started Software Installation Manual (CEL Doc # ) [filename: zic11_getstrt_sm.pdf] for complete download instructions. If multiple evaluation boards are to be connected to a single PC through their USB ports, please refer to APPENDIX-3: DEALING WITH COM PORT CONFLICTS in the ZIC2410 Getting Started Software Installation Manual (CEL Doc # ) [filename: zic11_getstrt_sm.pdf] Rev B Document No Page 4 of 31

5 ZIC2410 Device-Prog grammer Software Manual Hardware Connections Figure 3 Photo, ZIC2410-EVB1 Evaluation Board (Top View) Figure 4 Photo, ZIC2410-EVB1 Evaluation Board (Edge View) Figure 5 Photo, ZIC2410-EVB1 Evaluation Board (Bottom View)

6 Figure 6 Photo, ZICM2410-EVB2 Evaluation Board Figure 3, Figure 4, and Figure 5 show the ZIC2410-EVB1 Evaluation Board with its major components labeled. Figure 6 is a photo of the ZICM2410-EVB2 Evaluation Board with its major components labeled. The EVB2 board has a single USB port to download user application files. For the EVB1 board, there are two methods to download user application hex file using either of the UART1 inputs: the USB1 Port (standard) or the TCP/IP Ethernet Port (optional). The EVB1 board is also capable of being connected through the USB0 or DB9 Port to the UART0 input for general communication. However, this latter connection method is NOT designed for downloading application firmware. The procedures for connecting using the two UART1 ports of the EVB1 or the USB port for the EVB2 are described below: Table 1 Communication Settings for the ZIC2410-EVB1 CPU Serial I/O UART1 Usage Direct Downloading application firmware Standard Optional PC Connection USB cable Ethernet cable USB1 TCP/IP port Input Connector Power Supply Through USB 5V Adaptor two 1.5V Type AA Batteries Rev B Document No Page 6 of 31

7 ZIC2410 Device-Prog grammer Software Manual POWER SWITCH (SW1) EXT/ /USB (POWER OFF/ON) USB/EXT (POWER OFF/ON) either position ISP SWITCH (SW3) ISP ISP ISP ISP SELECT SWITCH (SW10) DIP SWITCHES (J4) 5,7: ON 6,8: ON 6,8: ON 3V BAT SWITCH (SW12) BAT OFF BAT OFF BAT OFF/ON (POWER OFF/ON) (1) ZIC2410-EVB1: Using the USB1 Port (Standard for downloading an application file) Please connect USB1 (UART1) Port on ZIC2410-EVB1 Evaluation Board to a PC using a USB cable. As indicat ed in Table 1 above, the J4 DIP SWITCHES, ISP SELECT SWITCH, 3V BAT SWITCH and ISP SWITCH should be set as shown. The POWER SWITCH operates as the ON/OFF switch, with ON being the USB position. (2) ZIC2410-EVB1: Using the TCP/IP Ethernet Port (Optional) A standardd ZIC2410-EVB1 evaluation board is not equipped for Ethernet connection. It is also necessary to install XPort software drivers on the PC running the Device-Programmer software. Please refer to ZIC2410 Getting Started Softwa are Installation Manual (CEL Doc # ) [filename: zic11_getstrt_sm.pdf] for instructions s on the preparation of an evaluation board for Ethernet connection prior to continuing. Please connect the TCP/IP Ethernet t Port on ZIC2410-EVB1 Evaluation Board to the PC using an Ethernet cable and set the J4 DIP SWITCHES, ISP SELECT SWITCH, and ISP SWITCH as shown in Table 1. There are two methods to power the ZIC2410-EVB1 when using an Ethernet connection: (1) using a 5V DC adaptor connected to the DC JACK on the evaluation board or (2) using two AA batteries inserted into the holder on the bottom of board. For the first method (1), the 3V BAT SWITCH should be set to BAT_OF FF as shown in (a) of Figure 7, and the POWER SWITCH operates as the ON/OFF switch, with ON being the EXT position. (a) (b) Figure 7 Photo, Battery and Power Switches For the second method (2), insert two 1.5V Type AA batteries into the holder on the bottom of the

8 ZIC2410-EVB1 Evaluation Board, and set the 3V_BAT_SWITCH to BAT_ON to provide power to the Board. The position of the POWER SWITCH is irrelevant when operating in this method. Note: When downloading an application hex file using the Direct Download method, the ISP mode must be selected to connect to the Device-Programmer or the following error message will be displayed. In this case, ensure that the EVB is powered (the POWER LED is lit), and that the board is in the ISP mode ( ISP SWITCH to ISP, four LEDs lit). Press the RESET button whenever the ISP SWITCH is changed with power on to change the mode. Table 2 Communication Settings for the ZICM2410-EVB2 CPU Serial I/O UART1 Usage Direct Downloading application firmware PC Connection USB cable Input Connector USB Power Supply Through USB 5V Adaptor two 1.5V Type AA Batteries POWER SWITCH (SW6) VREG VREG VBAT ISP SWITCH (SW7) Jumpers ISP ISP ISP Default Settings (3) ZICM2410-EVB2: Using the USB Port Please connect the USB (UART1) Port on ZICM2410-EVB2 Evaluation Board to a PC using a USB cable. As indicated in Table 2 above, the ISP SWITCH should be set to ISP. The POWER Switch operates as the ON/OFF switch, with ON being either the VREG or the VBAT position, depending on the powering method chosen. Rev B Document No Page 8 of 31

9 2.2 STARTING THE DEVICE-PROGRAMMER Menu Items & Descriptions, Toolbar Icons Figure 8 shows the GUI Header of the Device-Programmer upon opening the program. Coloring of the icon indicates when a tool is active. Table 3 describes each of the basic menu items. Figure 8 Screen, Device-Programmer (GUI Header) Table 3 Device-Programmer Toolbar Icons Icon Menu Description Setup- Connection Connects the Evaluation Board. Setup- Disconnection Disconnects the Evaluation Board. Download Mode Selects the download mode. Chip Type Check Reset HexEditor About Select the chip type (only one type available) Checks if the Evaluation Board is functioning correctly. When connecting using Ethernet (TCP/IP), resets the Evaluation Board. Use Hex Editor. Information about Device-Programmer. Figure 9 shows the header information for the OTA-DownLoad mode of Device-Programmer. Table 4 describes each of the menu items in the header. Figure 9 Screen, Device-Programmer (OTA Download Menu) Table 4 OTA mode Menu Icons Tool Bar Menu Description A Destination The Destination Address (8Byte IEEE Address) of the module being Address programmed (TARGET device). Ping Function used to search for a TARGET device wirelessly. Loop Back Function used to test the communication between INSTALLER and TARGET devices RF Channel Sets the communication channel (default in Channel 11) Transmit Power Level Sets the Transmit Power strength of the INSTALLER device. Get Module Read the information (RF Channel, TX Power Level) of the INSTALLER Information Set Module Information device (the module connected to the Device-Programmer). Write the information (RF Channel, TX Power Level) of the INSTALLER device (the module connected to the Device-Programmer). Rev B Document No Page 9 of 31

10 2.2.2 Connecting a Device to the Device-Programmer A. Identifying the COM port for the Evaluation Board You can use Windows Device Manager on your PC to check that the hardware and associated drivers have been properly installed and to determine the COM port through which the Evaluation Board is attached. The Windows Device Manager can be accessed by right clicking the mouse on My Computer either on the desktop or in the Start Menu and choosing Properties. You will find Device Manager under the Hardware Tab. Double-click on Ports (COM & LPT)'. The port CP2101 USB to UART Bridge Controller (COM#) should be on the list. It is important to note the COM port number (#) that has been assigned to the evaluation board for setting up communication with the Device-Programmer software. For more details, please refer to Appendix-2 of ZIC2410 Getting Started Software Installation Manual (CEL Doc # ) [filename: zic11_getstrt_sm.pdf]. The two methods for downloading application firmware file to the ZIC2410 are Direct-DownLoad and OTA-DownLoad. 3 DIRECT-DOWNLOAD TO A ZIC2410-EVB1/ZICM2410-EVB2 Figure 10 shows the Opening screen of the Device-Programmer. Figure 10 Screen, Device-Programmer (Making the Connection) Rev B Document No Page 10 of 31

11 3.1 SERIAL CONNECTION (USB) Open Device-Programmer, select the Direct-DownLoad Method, and click the Setup-Connection icon ( ). The Communication Window in Figure 11 below is displayed. Select RS232 (Serial) and set each parameter value in the Select Communication Mode window; the port setting from the procedure (A) in Section above. Port: Input the COM port of the PC used to connect to the Evaluation Board, EVB1 or EVB2 (noted in the Section A above). Once the PORT is set, ensure that the rest of the parameters are set as follows. Rate (Baud Rate): Set to Data (Data Bit): Set to 8. Parity (Error check bit): Set to None. Stop (Stop Bit): Set to 1. Please note that the radio button RS232 (Serial) is used for connections to the USB1 UART1 port, and does NOT refer to the DB9 (RS232) connector on the EVB1. Figure 11 Screen, Device-Programmer (USB COM Mode) Click Connect. The screen in Figure 14 below should be displayed. If the wrong port has been selected, the error message in Figure 12 will be displayed. Figure 12 Screen, Device-Programmer (Error Message) If you receive this error, click OK, ensure that the position of the ISP SWITCH is ISP, and that the board is powered up. Press the RESET Switch, select the appropriate port and click Connect again. Note: for both the EVB1 and EVB2 boards, ISP mode is indicated by the illumination of all four General Purpose LEDs (numbered 1 ~ 4 on the EVB2 board and 8 ~ 11 on the EVB1). Rev B Document No Page 11 of 31

12 3.2 ETHERNET CONNECTION (TCP/IP) This section applies only to the ZIC2410-EVB1 evaluation board. Note: A standard ZIC2410-EVB1 evaluation board is not equipped for Ethernet connection. An XPort Embedded Device Server must be purchased and installed on the bottom of the board to implement Ethernet connectivity. For the procedure for modifying the EVB for Ethernet connection, please refer to the ZIC2410 Getting Started Software Installation Manual (CEL Doc # ) [filename: zic11_getstrt_sm.pdf]. When connecting through an Ethernet cable, power to the board must be supplied either through the DC Jack or by Two Type AA batteries. Please refer to the ZIC2410 Getting Started Software Installation Manual (CEL Doc # ) [filename: zic11_getstrt_sm.pdf] for detailed information on powering the EVB. Connect Ethernet (TCP/IP) port on ZIC2410-EVB1 Evaluation Board to the PC or the network using a LAN cable. Open Device-Programmer and click the Setup-Connection icon ( ). After that, you will see the Select Communication Mode Window as in Figure 13 below. Select the Ethernet (TCP/IP) radio button and set each parameter value in the window. IP Address: Type the IP Address of ZIC2410- EVB1 Evaluation Board to be connected to Device-Programmer. Port: Type the Ethernet Port of ZIC2410-EVB1 Evaluation Board to be connected to Device- Programmer. The default value is the port. Figure 13 Screen, Device-Programmer (Ethernet (TCP/IP) COM Mode) After selecting Ethernet (TCP/IP), click Connect in the Communication window. When connection is established, the window in Figure 14 will be displayed. After successful connection, all screens will be the same, regardless of connection method, except for the line at the bottom of the screen that displays the communication mode [COM Port #] or [IP Address]. Rev B Document No Page 12 of 31

13 Figure 14 Screen, Device-Programmer (Connected in Direct-DownLoad Mode) 3.3 DOWNLOADING FIRMWARE Once Device-Programmer is open, select Bank On (1.), and Bank-0 (2.), and click on the File Open ( ) symbol (3.) as shown in Figure 15. Figure 15 Screen, Device-Programmer (Bank Select) CAUTION: The source libraries included in this version of the CD cannot be used without Code Banking (Bank Off) because of code size and are ONLY supported with Code Banking enabled (Bank On). The example application hex files are located on the CD in the directory \ZIC2410\Application Source Files\. For each of the applications there is a separate directory as shown in Figure 16. The description of each of the applications is as given in Table 5. Within each directory, the application Hex files are contained in the HEX sub-directory. Double-click on the.h00 file in the appropriate Rev B Document No Page 13 of 31

14 sub-directory to load all three banks. Table 5 Application Examples on the CEL CD File Directory Application Description A design example for configuring the CEL ZIC2410 using Profile-Builder for a \ZigBee2006_DK_ADC\ sensor network application. When the ZIC2410 receives a command to start sensing, it periodically transmits sensed data to the coordinator A design example for configuring the CEL ZIC2410 using Profile-Builder for a battery-powered device application. The ZIC2410 periodically awakens from \ZigBee2006_DK_BAT\ power-down mode and checks whether data is in need of transmission, if transmission is needed it begins, otherwise it returns to power-down mode. A design example for configuring the CEL ZIC2410 using Profile-Builder for a serial \ZigBee2006_DK_COM\ communication application. When the ZIC2410 receives data via the serial interface it is then transmitted to the coordinator. A design example for configuring the CEL ZIC2410 using Profile-Builder for a light \ZigBee2006_DK_LIGHT\ switch application. When the ZIC2410 receives a command from the coordinator, it controls a light ON/Off as directed. A design example for configuring the CEL ZIC2410 using Profile-Builder for a serial coordinator. When the ZIC2410 receives a data packet via the UART from Profile- \ZigBee2006_DK_SCOR\ Simulator, the packet is analyzed and the requested command(s) executed. Upon execution completion a confirmation packet is sent to Profile-Simulator. The hex files for the Coordinator in a simple three node demonstration network. The EVB1 board labeled COORDINATOR in the kit is initially flashed with this firmware. See ZigBee2006_DK-COOR.H00 file highlighted in Figure 16. The hex files for the Router in a simple three node demonstration network; it contains a Light ON/OFF application. The EVB2 board labeled ROUTER in the kit \ZICM Nwk Demo\Hex\ is initially flashed with this firmware. See ZigBee2006_DK-ROUTER.H00 file highlighted in Figure 16. The hex files for the End Device in a simple three node demonstration network; it contains two Endpoints, one a Light ON/OFF and the other an ADC sensor application. The EVB2 board labeled END DEVICE in the kit is initially flashed with this firmware. See ZigBee2006_DK-ED.H00 file highlighted in Figure 16. The hex files for Point-to-Point Demonstrations using the ZICM2410-EVB2 \ZICM Pt2Pt Demo\HEX evaluation board Figure 16 Screen, Windows Explorer (Finding Application Hex files) Rev B Document No Page 14 of 31

15 When choosing Bank-0 and double-clicking an.h00 file, all three Banks (Bank-0, Bank-1, and Bank-3) will be filled as shown in Figure 17. If either Bank-1 or Bank-3 is selected, only that Bank will be filled. Clicking the File Delete ( ) button will empty all three Banks. Figure 17 Screen, Device-Programmer (File Details) After checking the information of the loaded application file, refer to the Section in this document to set appropriate additional information. Note: Please refer to ZIC2410 User Guide Code Banking w Keil uvision (CEL Doc # ) [filename: zic05_codebank_ug.pdf] for additional information on settings of a Keil Project when using Code Banking Additional Information Setting After selecting the desired firmware in Section 3, scroll the screen to reveal the ROM Operation and Select Modem Configuration Type sections. Select the Program Hex Code radio button in the ROM Operation section. Figure 18 Screen, Device-Programmer (Hex Code Select) Code protection: To prevent the read back of the Flash memory contents, download the firmware by enabling code protection as shown in Figure 19. Rev B Document No Page 15 of 31

16 Figure 19 Screen, Device-Programmer (Setting Code Protection) When Code Protection is enabled, the FLASH cannot be read and new programs can be downloaded only after erasing the entire FLASH first. Finally, select the hardware download method in Select Modem Configuration Type section. For more detailed information, refer to the Section (Read/Write Hardware Information) in the next section of this document. When downloading firmware to a ZIC2410-EVB1 for the first time, select Overwrite with hardware information. Figure 20 Screen, Device-Programmer (Modem Configuration Type) Overwrite with hardware information: Download the hardware information defined by a user to the defined flash memory area when downloading a hex file. Retain hardware information in FLASH memory: Retain previous hardware information in flash memory when downloading a hex file. Not including hardware information: Download the selected hex file regardless of hardware information setting Note: To download the firmware and set the hardware information simultaneously, select Overwrite with hardware information radio button in Select Modem Configuration Type area of Device-Programmer. To download the firmware without setting hardware information, select Not including hardware information radio button before downloading the firmware. Rev B Document No Page 16 of 31

17 Figure 21 Screen, Device-Programmer (Defining Hardware Information) If either of the first two cases in the Select Modem Configuration Type are selected, the *Hardware Information* area will appear to the right of the screen. Input a unique number for the last 8 bytes of the IEEE Address (in hexadecimal format) and choose the RF Channel (default is Channel 11). Click on start rom program to start to download the hex files. When complete, the message in Figure 22 will be displayed. Figure 22 Screen, Device-Programmer (Download Complete) Note: After downloading hex files using an Ethernet (TCP/IP) connection, the Reset button ( ) on Device-Programmer must be pressed to run the ZIC2410-EVB1 with the new downloaded hex file Read/Write Hardware Information The Hardware Information is 64 Bytes (0x1000~0x103F) for the ZIC2410. To view or edit the hardware information on a ZIC2410 with the Device-Programmer, select the Overwrite with hardware information or the Retain hardware information in FLASH memory radio button in the Select Modem Configuration Type section. The Hardware Information window in Figure 23 will be displayed. Rev B Document No Page 17 of 31

18 Figure 23 Screen, Device-Programmer (Hardware Information) The Read/Write functions in Hardware Information window are as follows. write-all: Updates all hardware information defined by the user to the flash read-all in FLASH: Displays data read from flash to the hardware information window. In addition, there are 2 hardware information setting method in Detail. Detail: Can read/write each item on the Hardware Information screen. Figure 24 Screen, Device-Programmer (Hardware Information Detail) Rev B Document No Page 18 of 31

19 All Allows the user to read/write all hardware information using the Hex Editor format. When changing the value in Hex editor, double click on the desired address, type in the desired value and press the Enter key. Figure 25 Screen, Device-Programmer (Hardware Information All) Reading a Hex Code Device-Programmer can read a hex code from flash area. As shown in Figure 26, select Read Hex Code radio button. Press start rom program, to start reading a hex code. Figure 26 Screen, Device-Programmer (ROM Operation) When the read function has executed successfully, the Hex Editor tool is automatically opened HEX Editor The Hex Editor is used to create, load, edit, and save HEX files, directly. Figure 27 Screen, Device-Programmer (Hex Editor) The commands for the Hex files are as follows: Goto Address: Moves the cursor to the corresponding address. File to Address: Fills in the area from the starting address to the ending address with a selected hex value. Rev B Document No Page 19 of 31

20 Reset: Initializes using 0xFF. Random: Fills in the entire area using random values Initialization Device-Programmer initializes SRAM area by filling in the entire SRAM area using 0xFF for a normal initialization. To start the initialization process, select the Erase ROM radio button in the ROM Operation area and click on start rom program. Figure 28 Screen, Device-Programmer (Erase ROM) Rev B Document No Page 20 of 31

21 4 OVER-THE-AIR (OTA) DEVICE PROGRAMMING OTA-DownLoad mode of Device-Programmer updates an application hex file from one ZIC2410- EVB1 or ZICM2410-EVB2 Evaluation Board connected to Device-Programmer to a Target Device (a ZIC2410-EVB1 or ZICM2410-EVB2 Evaluation Board) through a wireless connection. Figure 29 Diagram, Connection for OTA Download 4.1 HARDWARE REQUIRED Two Evaluation Boards (any combination of ZIC2410-EVB1 s and ZICM2410-EVB2 s) with Firmware Image files already downloaded o One board flashed as a Coordinator with a unique 64-bit IEEE address assigned and a channel frequency defined. This will become the INSTALLER device. o One board flashed as any of the example applications (including as a Coordinator, excluding the BAT application) with a unique 64-bit IEEE address assigned and the same channel frequency as the INSTALLER. This will become the TARGET device. A USB cable to connect the INSTALLER device to a PC (or an Ethernet cable for an EVB1 board). This procedure will assume a USB connection. Powering capabilities for the TARGET device (USB cable, 5V Power Supply, or two 1.5V Type AA Batteries). This procedure will assume Battery powering. 4.2 OTA FUNCTIONAL PROCEDURE The OTA function of the Device-Programmer software operates as follows: 1. The INSTALLER device locates the TARGET device Over-The-Air by using its 64-bit IEEE address. 2. The INSTALLER device sends Firmware Image files to the TARGET device. 3. The TARGET device stores the data in the External Serial FLASH memory (an AT25FS010N, ATMEL SPI Flash memory on the evaluation board). 4. The INSTALLER device checks the data integrity (CRC) of what is written in the External Serial FLASH memory of the TARGET device. 5. When the data integrity check (CRC) is successful, the INSTALLER device sends a RESET command to the TARGET device. 6. When the TARGET device receives the RESET command, the data written in the External Serial FLASH memory is copied to its Internal FLASH memory and the device is re-booted. Figure 30 Diagram, Hardware Interface Rev B Document No Page 21 of 31

22 4.3 OTA OPERATIONAL PROCEDURE The diagram (Figure 31) below is a graphical representation of the OTA Operational Procedure. Figure 31 Diagram, OTA Operational Procedure The INSTALLER configures the RF channel The INSTALLER sends a PING with an IEEE address to search (or search for any) A TARGET responds if it receives an IEEE address equals to its own. If there is no response, the INSTALLER changes its RF channel and repeats the search operation until it is successful. The INSTALLER sends an ERASE COMMAND to erase the external flash of the remote device. The INSTALLER sends a code-image to the TARGET device. The INSTALLER sends a CRC REQUEST to read the CRC value of the TARGET device. If the CRC is equal, the INSTALLER sends a RESET. The TARGET device copies the external flash image to internal flash memory. The TARGET device restarts. Note: OTA is implemented by using a 64-bit IEEE addressing mode and IEEE MAC DATA PACKET FORMAT (uses reserved field of frame-control field in IEEE ). 4.4 DEVICE SET-UP (1) Connect the INSTALLER device to the PC using the USB cable. (2) Set the ISP SWITCH to NORMAL on both the INSTALLER and the TARGET devices. (3) Power up the INSTALLER and the TARGET devices. (4) Open Device-Programmer, select the OTA-DownLoad Method, and click the Setup- Connection icon ( ). The Communication Window in Figure 11 below is displayed. (5) Select RS232 (Serial) and set each parameter value in the Select Communication Mode window; the port setting is from the procedure (A) in Section above. Rev B Document No Page 22 of 31

23 Figure 32 Screen, Device-Programmer (USB COM Mode) (6) Click Connect. The screen in Figure 33 below should be displayed. Figure 33 Screen, OTA DownLoad Header (Connected) 4.5 IDENTIFYING THE TARGET DEVICE Table 6 OTA Menu Items Icon Function Description Dest Addr Destination Address of the TARGET Device. Ping Loop-Back Searches for the TARGET Device Loop Back test of the TARGET Device. Rev B Document No Page 23 of 31

24 4.5.1 The Ping Function Refer to Figure 34 and Figure 35 (1) Input the Channel Frequency on which the INSTALLER and TARGET devices are operating. Set the Transmit power of the INSTALLER device to its highest level (STEP 0) (2) Input the IEEE Address of the Target device in the DestAddr text box of Device-Programmer main menu by Ping. To search for all devices currently operating in the specified Channel Frequency, type FF FF FF FF FF FF FF FF as the DestAddr. (3) Click the Ping icon ( ) to open the Ping window. (4) Click on Ping in the Ping window. (5) When the [Success] window appears, click OK. (6) The result of the search will be displayed. Figure 34 Screens, OTA DownLoad (Using Ping to Search for Devices) Rev B Document No Page 24 of 31

25 (7) To input the searched address into the DestAddr text box, double click on the desired address in the list with the mouse. The corresponding address will be inserted. Figure 35 Screens, Device-Programmer (Inserting Address from Ping) The Loop-Back Function (1) Click on the Loop-Back icon ( ), to open the Loop-Back window. (2) Type the IEEE Address of the TARGET device to be tested into the DstAddr text box (results from the Ping test will automatically be input). (3) Type a hexadecimal code into the Pattern input box. (4) Click on the Loop-Back button. Figure 36 Screens, Device-Programmer (Loop-Back Test) (5) When completed, the result will appear in the Status box as shown in the right hand screen of Figure 36. Check that the TxPattern and RxPattern are the same. The test was successful. Rev B Document No Page 25 of 31

26 Table 7 INSTALLER device characteristics Icon Function Description RF Channel The RF Channel in which the INSTALLER device operates. Transmit Power The Transmit Power of the INSTALLER device. Check RF Channel and Transmit Power. Used to check the RF Channel and Transmit Power of the current INSTALLER device Change RF Channel and Transmit Power. Used to change the RF Channel and Transmit Power of the current INSTALLER device. The INSTALLER Transmit Power can be selected from STEP 0 to STEP 7 with STEP 0 being the highest power. 4.6 DOWNLOADING THE FIRMWARE WIRELESSLY After identifying the IEEE Address of the TARGET device through the Ping Function and testing its connection with the INSTALLER device through the Loop-Back Function, the procedure for OTA Downloading is nearly the same as that given for the Direct-Downloading in Section 3.3. (1) Select Bank On, and Bank-0, and click on the File Open ( ) icon. From the appropriate \Application Source File\ sub directory locate the.h00 file in the HEX sub-directory and open it. Figure 37 Screens, OTA-DownLoad (Choosing the Hex files) NOTE: A device operating in a network with the Battery Device Application files ( ZigBee2006_DK_BAT.H0x) downloaded cannot be reprogrammed with the OTA function. Rev B Document No Page 26 of 31

27 Figure 38 Screens, OTA DownLoad (Reading the TARGET device H/W Info) (2) A simple way to insure that the hardware information for the Target device will not be changed is to click the Overwrite with hardware information radio button and then click on the read-all in FLASH button in the *Hardware Information* section. This loads all the current hardware settings for the TARGET device. Once done, ensure that the IEEE Address and the RF Channel are correct, and click start rom program to start the OTA Wizard sub routine. Figure 39 Screen, Ready for OTA Download Rev B Document No Page 27 of 31

28 Figure 40 Screen, OTA Wizard Opening Figure 41 Screen, OTA Wizard Screen 2 (3) For the opening screen and the second screen, click Next. Figure 42 Screen, OTA Wizard, In Process Figure 43 Screen, OTA Wizard, Complete (4) The processes of the OTA Wizard take about 1 minute to complete. The TARGET device will make a clicking noise (if it is an EVB1 board) during this process. Once complete, click Finish. (5) Complete the process by clicking on the Remote Re-Boot button, and clicking OK. The [Success] Reset screen will appear immediately, but the unit will click (if it is an EVB1 board; LEDs will blink if it is an EVB2 board) for sec while the reset occurs. The TARGET device has been reprogrammed with the new application files. Rev B Document No Page 28 of 31

29 Figure 44 Screens, Remote Re-boot Procedure Rev B Document No Page 29 of 31

30 ZIC2410 Device-Prog grammer Software Manual Error Recovery (6) In the event of an error, the screen to the left of Figure 45 will appear. Click OK and the screen to the right of Figure 45 will then appear. Engage the Recover radio button and click Next. Figure 45 Screens, OTA Wizard (Failure & Recovery) (7) Once recovery is complete, click on the Retry radio button and click Next. (a) (b) Figure 46 Screens, (a) OTA Wizard (Retry); (b) Command Section Over the Air Programmer window (8) If this method is not successful, exit from the OTA Wizard, click on Erase as shown in Figure 46 (b) and repeat the installation process starting with step (1) in Section 4.6 Note: Bank-3 is used for the OTA function and should not exceed 1000 Bytes in size. CAUTION: Downloading software data to Bank-3 exceeding 1KBytes, will result in the following message.

31 Figure 47 Screen, Device-Programmer (Overflow Message) 5 REVISION HISTORY Revision Date Description A 3Sep08 Released B 13Jan09 Updated Table in Section 1.2; added filenames to document references throughout the document; changed ZIC2410-EVB to -EVB1 and added the ZICM2410-EVB2 to any references to an evaluation board; added photo and connection procedures for EVB2 to Section Rev B Document No Page 31 of 31

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