WM_BBD_Q26_UGD_ Wireless CPU Quik Q26 series. Development Kit Q2686 and Q2687 User Guide

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1 WM_BBD_Q6_UGD_ Wireless CPU Quik Q6 series Development Kit Q686 and Q687 User Guide Revision: 004 Date: September 006

2 Development Kit Q686 and Q687 User Guide Reference: Revision: Date: WM_BBD_Q6_UGD_ September, 006 Powered by the Wavecom Operating System and Open AT Confidential Page: / 6 WM_BBD_Q6_UGD_ September, 006

3 Development Kit Q686 and Q687 Cautions This Development Kit Q6 series integrates kind of Wireless CPU transmitter. These devices are to be used only for mobile and fixed applications. They are Q686 and Q687 Wireless CPU transmitters, with pin to pin compatibility: Q686 Wireless CPU is a hardware GSM/GPRS class 0 capable. Q687 Wireless CPU is a hardware GSM/GPRS class 0 and EDGE/GPRS class 0 capable. The antenna(s) used for this transmitter must be installed at a distance of at least 0 cm from all persons and must not be co-located or used in conjunction with any other antenna or transmitter. The antenna(s) used for this transmitter must not exceed a gain of dbi for mobile operation and 7 dbi for fixed operation. Users and OEM integrators must be provided with antenna installation instructions and transmitter operating conditions for satisfying RF exposure compliance. OEM must also be provided with labeling instructions. These devices contain EGSM/GPRS and EDGE functions (EDGE functions, only for Q687 Wireless CPU). This filing is applicable for GSM850 MHz, E-GSM900 MHz, DCS800 MHz and PCS900 MHz operations. Information provided herein by Wavecom in this document is accurate and reliable at the time of writing. However, no responsibility can be assumed for its use. General information about Wavecom and its range of products is available at the following internet address: No patent liability is assumed with respect to the use of the information contained in this document. Confidential Page: / 6 WM_BBD_Q6_UGD_ September, 006

4 Development Kit Q686 and Q687 Trademarks, WAVECOM, WISMO, Open AT and certain other trademarks and logos appearing in this document, are filed or registered trademarks of Wavecom S.A. in France or in other countries. All other company and/or product names mentioned may be filed or registered trademarks of their respective owners. Copyright This manual is copyrighted by WAVECOM with all rights reserved. No part of this manual may be reproduced in any form without the prior written permission of WAVECOM. No patent liability is assumed with respect to the use of their respective owners. Confidential Page: / 6 WM_BBD_Q6_UGD_ September, 006

5 Development Kit Q686 and Q687 Overview This document is a description of the Development Kit for Quik Q6 Series Wireless CPU based on a motherboard V (Refer to WM ). This Development Kit is an equipment, which may be used to start software and hardware development based on Q686 and Q687 Wireless CPU. Refer to the documentation on Q686 and Q687 Wireless CPU, for further information. Confidential Page: 4/ 6 WM_BBD_Q6_UGD_ September, 006

6 Development Kit Q686 and Q687 Document History Revision Date List of revisions 00 June 005 Creation (Preliminary version) 00 Sept 005 Update for the development kit Q6 version 00 May 006 Update for the development kit Q6 version - Add new for the parallel bus interface (for Wireless CPU Q687 only) - New GPIO for CHARGER LED - New values around the AUDIO filters - Measure of current simplified - New schematics 004 Sept Update the document references - Add new for the auxiliary DAC function - Update the Measures of current Confidential Page: 5/ 6 WM_BBD_Q6_UGD_ September, 006

7 Development Kit Q686 and Q687 Contents Development Kit Q686 and Q User Guide... Cautions... Trademarks... Copyright... Overview...4 Document History...5 Contents...6 Table of figures...9 References...0. Reference Documents Wavecom Reference Documents List of Abbreviations... Development Kit Q6 Description... General Description...4. Development Kit Q Special Solder RoHS Compliance External Board Connector (J0) Description Wireless CPU Quik Q686 and Q687 Signals External Board Connector (J0) Power Supply LED Signalization ("VBAT") External Supply BAT-TEMP Main Supply Adapter... 6 Charger Supply & LED...4 Confidential Page: 6/ 6 WM_BBD_Q6_UGD_ September, 006

8 Development Kit Q686 and Q Charger Supply LED Signalization ("CHARGER") Flash LED ("FLASH-LED") Buzzer LED ("BUZZ-OUT") Control Functions ON/~OFF ~RESET BOOT Keypad Function...9 UART Function...0. UART Connector (J400) Configuration of the UART.... Enable UART ("EN/GPIO9")....4 LED Signalization LED "RING INDICATOR" LED "EN"... UART Function.... UART Connector (J500).... Configuration of the UART Enable UART ("EN/GPIO") LED Signalization ("EN")... 5 SIM Function...6. SIM Connector (J700) USB Function USB Connector (J800) LED Signalization ("VPAD-USB") AUDIO Functions AUDIO Connector (J60) AUDIO Connector (J600) AUDIO Functions Description Parallel Bus Interface (with the Wireless CPU Quik Q687 only)4 7 DAC Function...45 Confidential Page: 7/ 6 WM_BBD_Q6_UGD_ September, 006

9 Development Kit Q686 and Q687 8 Antenna Function RF Connectors (P00+J0) ESD Functions Measures of Current...48 Starting Procedure Unpacking the Development Kit Q686 or Q687 components Setting the Accessories Power Supply Communication Test... 5 Appendix...54 Confidential Page: 8/ 64 WM_BBD_Q6_UGD_ September, 006

10 Development Kit Q686 and Q687 Table of figures Figure : Development Kit Q6 - equipped board... Figure : Power supply voltage (J0 and J0)... Figure : Zoom on "J0"... Figure 4: Power supply voltage... Figure 5: Main supply adapter... Figure 6: Charger supply...4 Figure 7: Switches configuration...8 Figure 8: Keypad configuration...9 Figure 9: UART connector...0 Figure 0: RS main serial link... Figure : Enable UART configuration... Figure : RS auxiliary serial link...4 Figure : SIM connector...6 Figure 4: Schematic of switch "SIMPRES"...7 Figure 5: USB connector...8 Figure 6: USB electrical diagram...9 Figure 7: AUDIO connectorj60 is a RJ9 4-pin connector...40 Figure 8: AUDIO connector...4 Figure 9: RF connectors...46 Figure 0: Configuration for the measure of current...49 Confidential Page: 9/ 64 WM_BBD_Q6_UGD_ September, 006

11 Development Kit Q686 and Q687 References References. Reference Documents For more details, several reference documents may be consulted. The Wavecom reference documents are provided in the Wavecom document package, contrary to the general reference documents which are not authored by Wavecom... Wavecom Reference Documents [] MOTHERBOARD Development Kit Schematics and PCB, Release.0 Reference: WM [] Q686 Wireless CPU Product Technical Specification Reference: WM_PRJ_Q686_PTS_00. [] Q686 Wireless CPU Customer Design Guideline Reference: WM_PRJ_Q686_PTS_00. [4] Title AT Commands Interface Guide for revision OS 6.60 Reference: WM_DEV_OAT_UGD_00. [5] Wireless CPU Quik Q687 Product Technical Specification Reference: WA_ENG_Q687_PTS_00. [6] Wireless CPU Quik Q687 Customer Design Guideline Reference: WA_DEV_Q687_PTS_007. [7] Title AT Commands Interface Guide for revision OS 6.6 Reference: WM_DEV_OAT_UGD_04. Confidential Page: 0/ 64 WM_BBD_Q6_UGD_ September, 006

12 Development Kit Q686 and Q687 References. List of Abbreviations Abbreviations Definition ADC Analog to Digital Converter AUX AUXiliary CLK CLocK CPU Central Process Unit CTS Clear To Send DAC Digital to Analog Converter DAI Digital Audio Interface DC Direct Current DCD Data Carrier Detect DCE Data Communication Equipment DSR Data Set Ready DTE Data Terminal Equipment DTR Data Terminal Ready ESD ElectroStatic Discharges GrouND GPI General Purpose Input GPIO General Purpose Input Output GPO General Purpose Output I/O Input / Output MIC MICrophone PC Personal Computer PCB Printed Circuit Board. PCM Pulse Code Modulation PWM Pulse Width Modulation RF Radio Frequency RI Ring Indicator RTC Real Time Clock RTS Request To Send RXD Receive Data SCI Smart Card Interface SIM Subscriber Identity Module SPI Serial Peripheral Interface SPK SPeaKer TP Test Point TXD Transmit Data USB Universal Serial Bus Confidential Page: / 64 WM_BBD_Q6_UGD_ September, 006

13 Development Kit Q686 and Q687 Development Kit Q6 Description Development Kit Q6 Description A description of the Q6 Development Kit is described in Figure. For further information on this component design, please refer to the Implementation.pdf file. Confidential Page: / 64 WM_BBD_Q6_UGD_ September, 006

14 Development Kit Q686 and Q687 Developmen t Kit Q6 Description KEYPAD J700 SIM Connector J800 USB connector J60 Audio connector J600 Audio connector J500 UART connector J0 External connector board J400 UART connector J0 DC Adapter Place for Wireless CPU Quik Q6 Series J00 External Supply VBATT +BAT-TEMP J0 CHARGER SW00 ON/ OFF SW0 BOOT BP00 RESET Figure : Development Kit Q6 - equipped board J0 (SMA) Antenna connection Confidential Page: / 64 WM_BBD_Q6_UGD_ September, 006

15 Development Kit Q686 and Q687 General Description General Description. Development Kit Q6 All functions of the Development Kit Q6 are provided either by the Wireless CPU Q686 or Q687. Interfaces on board: External board-to-board connector and TP to access all signals of the Wireless CPU. o Parallel bus (only for the Wireless CPU Quik Q687) o Main serial link RS, UART(*) with full signals o Ring Indicator o Auxiliary serial link RS, UART* with 4 signals o Slave USB*, compliant USB.0. o SIM*.8/v with management of SIM presence o 6-button Keypad AUDIO* connectors (AUDIO, AUDIO ) o LEDs for several indications o RESET Pushbutton o Power supply connectors o ON/OFF switch o BOOT switch o Buzzer LED o Flash LED o Charger LED (*): A unique feature of the Development Kit Q6 is that each signals peripherals may be electrically removed independently via special solder. (for further details, refer to section.).. Special Solder The PCB print is used for the peripherals that are electrically removable. To connect signals between the Wireless CPU and the dedicated connector on the Development Kit Q6, solder these PCB print. To connect signals between the Wireless CPU and the external board connector (J0), it is recommended to avoid solder these PCB print (i.e. prototype of daughterboard). These interfaces are electrically removable via the "special solder": Confidential Page: 4/ 64 WM_BBD_Q6_UGD_ September, 006

16 Development Kit Q686 and Q687 General Description UART (from J40 to J409) UART (from J50 to J504) AUDIO (from J60 to J605) AUDIO (from J606 to J609) SIM (from J70 to J705) USB (from J80 to J80,signals plus power) Power supply of Development Kit (from J0, all components except the Wireless CPU (for further information see section 4).. RoHS Compliance The Wireless CPU Quik Q6 Series and the Development Kit Q6 board are compliant with RoHS (Restriction of Hazardous Substances in Electrical and Electronic Equipment) Directive 00/95/EC, which set limits for the use of certain restricted hazardous substances. This directive states that "from st July 006, new electrical and electronic equipment put on the market does not contain lead, mercury, cadmium, hexavalent chromium, polybrominated biphenyls (PBB) and polybrominated diphenyl ethers (PBDE)". Wireless CPUs which are compliant with this directive are identified by the RoHS logo on their label. Confidential Page: 5/ 64 WM_BBD_Q6_UGD_ September, 006

17 Development Kit Q686 and Q687 External Board Connector (J0) Description 4 External Board Connector (J0) Description 4. Wireless CPU Quik Q686 and Q687 Signals All signals of the Wireless CPU Quik Q686 and Q687 are connected to the external board connector (J0) and are available via TP on the center of Development Kit Q6. The pinouts of J0 connector are listed below: For further information about the Wireless CPU Quik Q686 signals and multiplexing, refer to document []. For further information about the Wireless CPU Quik Q687 signals and multiplexing, refer to document [5]. 4. External Board Connector (J0) Pin # Name I/O(*) I/O type Description VBATT I Supply Battery Input VBATT I Supply Battery Input CHG-IN I Supply Current source input 4 CHG-IN I Supply Current source input 5 VCC_V8 O Supply.8V digital supply output 6 VCC_V8 O Supply.8V digital supply output 7 8 BAT-RTC I/O Supply RTC back-up supply 9 SIM-VCC O Supply SIM card supply 0 SIMPRES/ I V8 SIM card detect GPIO8 SIM-CLK O V8 / V9 SIM clock SIM-IO I/O V8 / V9 SIM data ~SIM-RST O V8 / V9 SIM reset 4 5 BUZZ-OUT O Open drain PWM / Buzzer output 6 FLASH-LED O Open Drain Charging indicator 7 ON/ ~OFF I VBATT Wireless CPU Power ON 8 AUX-ADC I Analog Auxiliary ADC 9 ~RESET I/O V8 Wireless CPU Reset 0 BOOT I V8 SW download (with a Wavecom software "DWLwin") BAT-TEMP I Analog ADC input for battery temperature measurement Confidential Page: 6/ 64 WM_BBD_Q6_UGD_ September, 006

18 Pin # Name I/O(*) I/O type Description SPI-I / GPIO0 4 ~SPI-CS / GPIO 5 SPI-IO / GPIO9 6 SPI-CLK / GPIO8 7 SPI-CLK / GPIO 8 SPI-CS / GPIO5 9 SPI-I / GPIO4 0 SPI-IO / GPIO CT04-RXD / GPIO5 Development Kit Q686 and Q687 External Board Connector (J0) Description I V8 SPI Serial input (Multiplexed) O V8 SPI Enable (Multiplexed) I/O V8 SPI Serial input/output (Multiplexed) O V8 SPI Serial Clock (Multiplexed) O V8 SPI Serial Clock (Multiplexed) O V8 SPI Enable (Multiplexed) I V8 SPI Serial input (Multiplexed) I/O V8 SPI Serial input/output (Multiplexed) O V8 Auxiliary RS Receive Serial Data (According to PC view and Multiplexed) ~CT06-CTS / GPIO6 O V8 Auxiliary RS Clear To Send (According to PC view and Multiplexed) 4 CT0-TXD / I V8 Auxiliary RS GPIO4 Transmit Serial Data (According to PC view and Multiplexed) 5 6 ~CT05-RTS / GPIO7 I V8 Auxiliary RS Request To Send (According to PC view and Multiplexed) 7 USB-DP I/O V Differential data interface positive 8 VPAD-USB I V USB power supply 9 USB-DM I/O V Differential data interface negative 40 4 ROW0 / GPIO9 I/O V8 Row scan (Multiplexed) 4 COL / GPIO5 I/O V8 Column scan (Multiplexed) 4 ROW4 / I/O V8 Row scan (Multiplexed) GPIO Confidential Page: 7/ 64 WM_BBD_Q6_UGD_ September, 006

19 Pin # Name I/O(*) I/O type Description Development Kit Q686 and Q687 External Board Connector (J0) Description 44 COL0 / GPIO4 I/O V8 Column scan (Multiplexed) 45 COL / GPIO7 I/O V8 Column scan (Multiplexed) 46 COL / GPIO6 I/O V8 Column scan (Multiplexed) 47 COL4 / GPIO8 I/O V8 Column scan (Multiplexed) 48 ROW / I/O V8 Row scan (Multiplexed) GPIO 49 ROW / I/O V8 Row scan (Multiplexed) GPIO 50 ROW / I/O V8 Row scan (Multiplexed) GPIO MICP I Analog Microphone positive input 54 SPKP O Analog Speaker positive output 55 MICN I Analog Microphone negative input 56 SPKN O Analog Speaker negative output 57 MICP I Analog Microphone positive input 58 SPKP O Analog Speaker positive output 59 MICN I Analog Microphone negative input 60 SPKN O Analog Speaker negative output 6 NC Not connected 6 NC Not connected 6 NC Not connected 64 NC Not connected 65 NC Not connected 66 VBATT I Supply Battery Input 67 VBATT I Supply Battery Input 68 CT0-TXD / I V8 Main RS Transmit Serial Data GPIO6 (According to PC view and Multiplexed) 69 ~CT5-RI / GPIO4 70 ~CT06-CTS / GPIO9 7 CT04-RXD / GPIO7 7 ~CT05-RTS / GPIO8 O V8 Main RS Ring indicator (According to PC view and Multiplexed) O V8 Main RS Clear To Send (According to PC view and Multiplexed) O V8 Main RS Receive Serial Data (According to PC view and Multiplexed) I V8 Main RS Request To Send (According to PC view and Multiplexed) Confidential Page: 8/ 64 WM_BBD_Q6_UGD_ September, 006

20 Pin # Name I/O(*) I/O type Description 7 ~CT09-DCD / GPIO4 74 ~CT08-- DTR / GPIO4 75 ~CT07-DSR / GPIO40 Development Kit Q686 and Q687 External Board Connector (J0) Description O V8 Main RS Data Carrier Detect (According to PC view and Multiplexed) I V8 Main RS Data Terminal Ready (According to PC view and Multiplexed) O V8 Main RS Data Set Ready (According to PC view and Multiplexed) EP7 (**)Depend on the Quik Q6 series 79 EP0 (**)Depend on the Quik Q6 series 80 EP (**)Depend on the Quik Q6 series 8 EP4 (**)Depend on the Quik Q6 series 8 EP (**)Depend on the Quik Q6 series 8 EP6 (**)Depend on the Quik Q6 series 84 EP (**)Depend on the Quik Q6 series 85 EP5 (**)Depend on the Quik Q6 series 86 EP7 (**)Depend on the Quik Q6 series 87 EP8 (**)Depend on the Quik Q6 series 88 AUX-DAC O V (***)Depend on the software version 89 EP5 (**)Depend on the Quik Q6 series 90 EP (**)Depend on the Quik Q6 series 9 EP (**)Depend on the Quik Q6 series 9 EP9 (**)Depend on the Quik Q6 series 9 EP (**)Depend on the Quik Q6 series 94 EP0 (**)Depend on the Quik Q6 series 95 EP8 (**)Depend on the Quik Q6 series 96 EP4 (**)Depend on the Quik Q6 series 97 EP6 (**)Depend on the Quik Q6 series SCL / GPIO6 I/O Open drain Serial Clock / General purpose inputoutput 0 SDA / GPIO7 I/O Open drain Serial Data / General purpose inputoutput PCM-CLK O V8 Data clock Confidential Page: 9/ 64 WM_BBD_Q6_UGD_ September, 006

21 Pin # Name I/O(*) I/O type Description Development Kit Q686 and Q687 External Board Connector (J0) Description 05 PCM-SYNC O V8 Frame synchronization 8Khz 06 PCM-OUT O V8 Data output 07 PCM-IN I V8 Data input 08 GPIO4 I/O V8 General purpose input / output 09 0 INT0/ GPIO I/O V8 Interruption 0 / General purpose inputoutput GPIO0 I/O V8 General purpose input / output GPIO I/O V8 General purpose input / output GPIO I/O V8 General purpose input / output 4 (**)Depend on the Wireless CPU Quik EP0 I/O V8 Q6 series 5 EP (**)Depend on the Wireless CPU Quik I/O V8 Q6 series 6 GPIO I/O V8 General purpose input / output 7 INT/ GPIO5 I/O V8 Interruption / General purpose inputoutput 8 GPIO44 I/O V8 General purpose input / output 9 GPIO9 I/O V8 General purpose input / output 0 NC Not connected EP9 I/O V8 (**)Depend on the Quik Q6 series NC Not connected NC Not connected 4 NC Not connected 5 NC Not connected 6 NC Not connected 7 NC Not connected 8 NC Not connected 9 NC Not connected 0 NC Not connected (*): According to Wireless CPU view. (**): Refer to Table 9 and Figure. (***): Refer to document [7] Table : Pin out of the external board connector (J0) Confidential Page: 0/ 64 WM_BBD_Q6_UGD_ September, 006

22 Development Kit Q686 and Q687 Power Supply 5 Power Supply Two power supply sources are available to start the Development Kit Q6: DC external supply (via J00) AC/DC adapter (via J0) These power supplies are protected by a transient voltage suppressor. Figure : Power supply voltage (J0 and J0) Each of these power supplies is used for both the Wireless CPU and the peripherals on the Development Kit Q6. It is possible to disconnect the power supply for the Wireless CPU ("VBATT", measurable via the TP5) and for the peripherals ("VBAT", measurable via the TP57). Figure : Zoom on "J0" Current measurement is possible between the VBATT and VBAT via J0 (refer to section 0). 5. LED Signalization ("VBAT") "VBAT" indicator is a green LED. It indicates the external power supply presence. In other words, peripherals and Wireless CPU are respectively powered via VBAT and VBATT. Hence, the Development Kit Q6 is operational. Confidential Page: / 64 WM_BBD_Q6_UGD_ September, 006

23 Development Kit Q686 and Q687 Power Supply LED VBATT VBAT Light ON ON ON Light OFF* Can be ON OFF Table : LED of "VBAT" * If the special solder, J0, is not soldered, an external power supply must be used. It is recommended to use both VBATT and VBAT always together. 5. External Supply The J00 connector has three contacts: J00:-: for the power supply. J00:-: refer to section 5. BAT-TEMP VBATT Figure 4: Power supply voltage V min V nom V max VBATT,.v.6v (*) (*) Refer to doc [] or doc [5] Table : Electrical Characteristics (): This value has to be maintained during the burst (with.0a Peak in GSM, GPRS, and EDGE mode) (): Maximum operating Voltage Stationary Wave Ratio (VSWR) is :. 5. BAT-TEMP This signal acts as an input (ADC) in the Wireless CPU. J00:- also allows simulation of the temperature level by a sensor inside the battery. V min V nom V max BAT-TEMP 0 - v Table 4: Electrical Characteristics For more information, refer to either document [] or [6]. Confidential Page: / 64 WM_BBD_Q6_UGD_ September, 006

24 Development Kit Q686 and Q687 Power Supply 5.4 Main Supply Adapter The J0 connector powers the Development Kit Q6 using the AC power supply cable. Figure 5: Main supply adapter The only approved reference is: Manufacturer Reference Characteristics SINPRO SPUC-0 4v DC /.5 A. Table 5: Main supply adapter reference Confidential Page: / 64 WM_BBD_Q6_UGD_ September, 006

25 Development Kit Q686 and Q687 Charger Supply & LED 6 Charger Supply & LED 6. Charger Supply The J0 is used to simulate a charger. This power supply is protected by a transient voltage suppressor. When the charger is used, the battery must be connected. (-) CHG-IN(+) Figure 6: Charger supply CHG-IN Voltage (for I=Imax) V min V nom V max 4.6(*)v 6v (*) Parameters are set as per battery manufacturer. Table 6: Power supply voltage 6. LED Signalization ("CHARGER") The "CHARGER" LED location is shown in the following figure: Confidential Page: 4/ 64 WM_BBD_Q6_UGD_ September, 006

26 Development Kit Q686 and Q687 Charger Supply & LED The "CHARGER" indicator is a red LED wired on the GPIO. Wavecom software allows the customer to manage the charging with the Open AT application. This LED represents the logic level of GPIO. Confidential Page: 5/ 64 WM_BBD_Q6_UGD_ September, 006

27 7 Flash LED ("FLASH-LED") Development Kit Q686 and Q687 Flash LED ("FLASH-LED") The "FLASH-LED " location is shown in the following figure: This LED works in two modes: Wireless CPU is in OFF state: "FLASH-LED" blinks in pre-charging mode (via J0 connector). Wireless CPU is in ON state: "FLASH-LED" indicates the network status. For more information, refer to documents [] or [5] and [] or [6]. Confidential Page: 6/ 64 WM_BBD_Q6_UGD_ September, 006

28 8 Buzzer LED ("BUZZ-OUT") Development Kit Q686 and Q687 Control Functions The "BUZZ-OUT" LED location is shown in the following figure: "BUZZ-OUT" indicator is a yellow LED controlled by the signal, with the same name provided by the Wireless CPU. It is driven by a "PWM" signal (open drain). Confidential Page: 7/ 64 WM_BBD_Q6_UGD_ September, 006

29 Development Kit Q686 and Q687 Control Functions 9 Control Functions 9. ON/~OFF Figure 7: Switches configuration Once the Development Kit Q6 is connected to the external source (via J00 or J0), the ON/~OFF switch can provide the VBATT to the Wireless CPU when it is "ON". After second, it can be switched off. (refer to document. [] or [5] and [] or [6]). 9. ~RESET The pushbutton ~RESET starts a general reset when it is pushed. An Operating System reset is preferred to a HW reset. 9. BOOT The BOOT switch is only used to download a new software to the Wireless CPU via UART, with the specific download software provided by Wavecom. Under normal conditions, it must be on "OFF" position. Mode BOOT ON/~OFF Normal OFF ON Back-up download With the specific download software ON ON Table 7: BOOT configuration Confidential Page: 8/ 64 WM_BBD_Q6_UGD_ September, 006

30 Development Kit Q686 and Q687 Keypad Function 0 Keypad Function Only 6 keypads are connected on the Development Kit Q6, as shown in the figure below. Figure 8: Keypad configuration The following table shows the matrix of the keyboard: COL0 COL COL COL COL4 ROW0 SW ROW - SW ROW - - SW0 - - ROW SW0 SW04 ROW SW05 Table 8: Matrix of the keyboard Example: If the key SW00 is pressed, an electric detection will be made on ROW0 and COL0. Confidential Page: 9/ 64 WM_BBD_Q6_UGD_ September, 006

31 Development Kit Q686 and Q687 UART Function UART Function The UART function is the main RS serial link of Wireless CPU in.0v on the Development Kit Q6. This function may be electrically detached with special solder (not as soldered from J40 to J409). For example, UART allows undisturbed signals transmission via the external connector (J0). By default, the UART is available on its dedicated connector J400 (J40 to J409 soldered).. UART Connector (J400) Figure 9: UART connector J400 is a SUB-D 9-pin female connector. The table below describes the signals and relative pins for the connector. Confidential Page: 0/ 64 WM_BBD_Q6_UGD_ September, 006

32 Pin Number Signal Name CT09 DCD CT04 RXD CT0 TXD 4 CT08- DTR O O I I Development Kit Q686 and Q687 I/O I/O Type Description RS (V4/V8) RS (V4/V8) RS (V4/V8) RS (V4/V8) Data Carrier Detect Receive serial data Transmit data Data Ready 5 Ground 6 CT07 DSR 7 CT05 RTS 8 CT06 CTS 9 CT5 RI O I O O RS (V4/V8) RS (V4/V8) RS (V4/V8) RS (V4/V8) Table 9: Pin out of the UART connector UART Function serial Terminal Data Set Ready Request To Send Clear To Send Ring Indicator. Configuration of the UART The Development Kit Q6 acts as DCE and is connected to a DTE (PC or terminal) with a "straight cable". This is a full UART. DTE CT0 / TX CT04 / RX CT05 / RTS CT06 / CTS CT07 / DSR CT08- / DTR CT09 / DCD CT5 / RI Development Kit Q6 (DCE) Figure 0: RS main serial link. Enable UART ("EN/GPIO9") A switch "EN/GPIO9" may enable the shutdown mode of the RS transceiver. By default, the RS transceiver is in active mode (switch to "EN"). Confidential Page: / 64 WM_BBD_Q6_UGD_ September, 006

33 Development Kit Q686 and Q687 UART Function For other cases, Wavecom software allows customer to enable the shutdown mode by using the GPIO9. Switch "EN/GPIO9" UART LED "EN" EN ON (in hardware) LIGHTS GPIO9 0L ON LIGHTS L OFF EXTINCT.4 LED Signalization Table 0: Enable UART configuration.4. LED "RING INDICATOR" The "RING INDICATOR" is a yellow LED controlled by the ~CT5-RI/GPIO4 signal provided by the Wireless CPU. It is possible to activate a «visual» mode with AT command: AT+WRIM=0, (refer to document [4] or [7]). When there is an incoming call, this signal becomes low and high each 0.5sec. The "RING INDICATOR" LED indicates with blinking..4. LED "EN" The "EN" indicator is a green LED controlled by the EN or GPIO9 signals provided by the Wireless CPU. The LED "EN" lights when the RS transceiver is operational (see the configuration in Table 0). Confidential Page: / 64 WM_BBD_Q6_UGD_ September, 006

34 Development Kit Q686 and Q687 UART Function UART Function The UART function is an auxiliary RS serial link of the Wireless CPU in.8v. This function may be electrically detached with special solder (J50 to J504 not soldered). For example, UART allows transmitting undisturbed signals via the external connector (J0). By default, the UART is available on its dedicated connector J500 (J50 to J504 soldered).. UART Connector (J500) Figure : Enable UART configuration The J500 is a SUB-D 9-pin female connector. Table describes the signals and relative pins for the connector. Confidential Page: / 64 WM_BBD_Q6_UGD_ September, 006

35 Development Kit Q686 and Q687 Pin Number Signal Name I/O I/O Type Description Not used(*) CT04 RXD O RS (V4/V8) CT0 TXD I RS (V4/V8) 4 Not used(*) Ground 6 Not used(*) CT05 RTS I RS (V4/V8) 8 CT06CTS O RS (V4/V8) 9 Not used(*) (*)Only 4 signals are used. Table : Pin out of the UART connector UART Function Receive serial data Transmit serial data Request To Send Clear To Send. Configuration of the UART The Development Kit Q6 acts as a DCE and is connected to a DTE (PC or terminal) with a "straight cable". There are only 4 signals on the UART. CT0 / TX DTE CT04 / RX CT05 / RTS CT06 / CTS Development Kit Q6 (DCE) Figure : RS auxiliary serial link. Enable UART ("EN/GPIO") A switch "EN/GPIO" may enable the shutdown mode of the RS transceiver. By default, the RS transceiver is in active mode (switch to "EN"). For other cases, Wavecom software allows customer to enable the shutdown mode by using the GPIO. Confidential Page: 4/ 64 WM_BBD_Q6_UGD_ September, 006

36 Development Kit Q686 and Q687 Switch "EN/GPIO" UART LED "EN" EN ON (in hardware) LIGHTS GPIO L ON LIGHTS 0L OFF EXTINCT Table : Enable UART configuration UART Function.4 LED Signalization ("EN") The "EN" indicator is a green LED controlled either by the EN or GPIO signals provided by the Wireless CPU. The LED "EN" lights when the RS transceiver is operational (see the configuration in Table ). Confidential Page: 5/ 64 WM_BBD_Q6_UGD_ September, 006

37 Development Kit Q686 and Q687 SIM Function SIM Function. SIM Connector (J700) The J700 is a standard either V8 or V SIM socket. Figure : SIM connector Table describes the the signals and relative pins for the connector. Pin Number Signal Name I/O I/O Type Description Comment SIM-VCC O V8 or V9 SIM Power Supply SIM-RST O V8 or V9 SIM Reset SIM-CLK O V8 or V9 SIM Clock 4 SIMPRES I V8 max(*) SIM Card Detect Multiplexed with GPIO8 5 Ground 6 VPP Not connected 7 SIM_DATA I/O V8 or V9 SIM Data 8 CC8 V8 SIMPRES signal supply (*) Either for V8 or V SIM cards. Table : Pin out of the SIM connector Confidential Page: 6/ 64 WM_BBD_Q6_UGD_ September, 006

38 The SIM interface controls both the.9v and.8v SIM cards. ESD protections are used on the 5 SIM signals Development Kit Q686 and Q687 SIM Function This function may be electrically detached with special solder (J70 to J705 not soldered). For example, SIM allows transmitting undisturbed signals via the external connector (J0). By default, the SIM signals are available on its dedicated connector J700 (J70 to J705 soldered). SIMPRES presents the following options: If the SIMPRES signal is used by the application (detection of SIM card presence by the SIM socket), the "SIMPRES" switch must be moved to "SIMPRES" (contact - used). Otherwise, to simulate all the time the SIM card presence (without the SIM socket), the "SIMPRES" switch must be moved to other side (contact - used). Switch "SIMPRES" SIMPRES SIM card presence Depend of the real SIM presence Other side Simulate a SIM presence Table 4: SIMPRES configuration VCC_V8 SIM socket J700 SIMPRES SIM- IO SIM-VCC ~SIM-RST SIM-CLK Wireless CPU Quik Q6 Series J00 Figure 4: Schematic of switch "SIMPRES" Confidential Page: 7/ 64 WM_BBD_Q6_UGD_ September, 006

39 Development Kit Q686 and Q687 USB Function 4 USB Function ESD protections are used on the USB signals. This function may be electrically removed with special solder (J80 to J80 not soldered). For example, USB allows transmitting undisturbed signals via the external connector (J0). By default, the USB signals are available on its dedicated connector J800 (J80 to J80 soldered). 4. USB Connector (J800) J800 is a USB Series type B receptacle. 4 Figure 5: USB connector Pin Number Signal Name I/O I/O Type Description VBUS I Power supply + 5 VDC DM I/O Digital USB negative line DP I/O Digital USB positive line 4 Power supply Ground Shell Shielding Table 5: Pin out of the USB connector Confidential Page: 8/ 64 WM_BBD_Q6_UGD_ September, 006

40 4. LED Signalization ("VPAD-USB") Development Kit Q686 and Q687 USB Function The "VPAD-USB" indicator is a green LED controlled by the presence of VBUS (when the plug is in the USB connector). The power supply for the USB interface in the Wireless CPU is provided by the USB connector. A USB cable is plugged the LED light and VPAD-USB (the output of a regulator - LDO) at.v. But a special solder (J80) must be soldered to power the USB interface in the Wireless CPU. Hence, by default J80 is soldered. USB socket VBU S LDO J80 VPAD - USB Wireless CPU Quik Q6 Series J800 ESD protections J80 J80 USB-DP USB -DM J00 Figure 6: USB electrical diagram Confidential Page: 9/ 64 WM_BBD_Q6_UGD_ September, 006

41 Development Kit Q686 and Q687 AUDIO Functions 5 AUDIO Functions There are AUDIO interfaces in the Wireless CPU. 5. AUDIO Connector (J60) 4 Figure 7: AUDIO connectorj60 is a RJ9 4-pin connector. Table 6 describes the signals and relative pins for the connector. Pin Number Signal Name I/O I/O Type Description MICN I Analog Auxiliary microphone negative input SPKN O Analog Auxiliary speaker negative output SPKP O Analog Auxiliary speaker positive output 4 MICP I Analog Auxiliary microphone positive input Table 6: Pin-out of the AUDIO connector Confidential Page: 40/ 64 WM_BBD_Q6_UGD_ September, 006

42 Development Kit Q686 and Q687 AUDIO Functions 5. AUDIO Connector (J600) The J600 is a RJ9 4-pin connector. 4 Figure 8: AUDIO connector Table 7 describes the signals and relative pins for the connector. Pin Number Signal Name I/O I/O Type Description MICN I Analog Main microphone negative input SPKN O Analog Main speaker negative output SPKP O Analog Main speaker positive output 4 MICP I Analog Main microphone positive input Table 7: Pin out of the AUDIO connector 5. AUDIO Functions Description The AUDIO functions may be electrically removed with special solder (J60 to J609 not soldered). For example, AUDIO allows transmitting undisturbed signals via the external connector (J0). By default, AUDIO signals are available on its dedicated connector J60 (for AUDIO), and J600 (for AUDIO) (J60 to J609 soldered). The main audio is named "AUDIO". The auxiliary audio is named "AUDIO". Confidential Page: 4/ 64 WM_BBD_Q6_UGD_ September, 006

43 Development Kit Q686 and Q687 AUDIO Functions Mode Single-ended Differential AUDIO NO YES AUDIO YES NO Table 8: AUDIO configuration Confidential Page: 4/ 64 WM_BBD_Q6_UGD_ September, 006

44 Development Kit Q686 and Q687 Parallel Bus Interface (with the Wireless CPU Quik Q687 only) 6 Parallel Bus Interface (with the Wireless CPU Quik Q687 only) With the Wireless CPU Quik Q687 (not with Wireless CPU Quik Q686), it is possible to interface applications with a 6-bit parallel bus with few addresses and chip select signals (LCD, NAND FLASH, µp). All signals are in.8v. These signals are available on the TP (with their names) and the external board connector (J0). J0 pins Names on signals For Wireless CPU For Wireless CPU Quik Q686 Quik Q687 J0-78 EP-7 NC READ(*) J0-79 EP-0 NC DATA_0 J0-80 EP- NC DATA_ J0-8 EP-4 NC DATA_4 J0-8 EP- NC DATA_ J0-8 EP-6 NC DATA_6 J0-84 EP- NC DATA_ J0-85 EP-5 NC DATA_5 J0-86 EP-7 NC DATA_7 J0-87 EP-8 NC CS(*) J0-89 EP-5 NC DATA_5 J0-90 EP- NC DATA_ J0-9 EP- NC DATA_ J0-9 EP-9 NC DATA_9 J0-9 EP- NC DATA_ J0-94 EP-0 NC DATA_0 J0-95 EP-8 NC DATA_8 J0-96 EP-4 NC DATA_4 J0-97 EP-6 NC WRITE(*) J0-4 EP-0 GPIO Configurable signal GPIO/CS(*)/A5 J0-5 EP- GPIO Configurable signal GPIO/A4 J0- EP-9 RESERVED A (*): Signal is active at low level. Table 9: Signal names according to the Wireless CPU. Confidential Page: 4/ 64 WM_BBD_Q6_UGD_ September, 006

45 Development Kit Q686 and Q687 Parallel Bus Interface (with the Wireless CPU Quik Q687 only) The possible configurations with signals multiplexed are: CS*, A, GPIO, GPIO CS*, A, A4, GPIO CS*, A, A4, A5 CS*, CS*, A, GPIO CS*, CS*, A, A4 (*): Signal is active at low level. Confidential Page: 44/ 64 WM_BBD_Q6_UGD_ September, 006

46 Development Kit Q686 and Q687 DAC Function 7 DAC Function The Wireless CPU Quik Q687 provides one Digital to Analog Converter (DAC): AUX- DAC signal. This is an 8-bit resolution DAC ranges from 0V to.v. For further information (refer to document.[5]). The functionality of DAC depends on the embedded software version. Pin # Name I/O(*) I/O type Description 88 AUX-DAC O V (**)Depends on the software version Table 0: Pin description of the Digital to Analog Converter (*): According to Wireless CPU view. (**): Available with the OS 6.6. (Refer to document [7]). Confidential Page: 45/ 64 WM_BBD_Q6_UGD_ September, 006

47 Development Kit Q686 and Q687 Antenna Function 8 Antenna Function The antenna is connected to the board via the SMA connector. The antenna cable is fitted with a FME connector. An SMA/FME adapter is provided, allowing the connection to the board. 8. RF Connectors (P00+J0) SMA (J0) IMP (P00) under Wireless CPU Figure 9: RF connectors Pin Number Signal Name I/O I/O Type Description ANT RF 50 Ω RF signal, Ground Table : Pin-out of the RF connector Warning: Care must be taken with the IMP connector. It is only made to be used (connected/disconnected) for 0 times.. Confidential Page: 46/ 64 WM_BBD_Q6_UGD_ September, 006

48 Development Kit Q686 and Q687 ESD Functions 9 ESD Functions External ESD protections are added on the Development Kit Q6 for the following signals: SIM interface signals: SIMPRES, SIM-VCC, SIM-IO, SIM-CLK, and SIM-RST (±5kV, air discharge). USB interface signals: USB-DP and USB-DM (±5kV, air discharge). The other interface signals are protected on chip: UART signals with the ADM07 transceiver (±5kV, air discharge). UART signals with the LTC804 transceiver (±0kV, air discharge). AUDIO and AUDIO (±5kV, air discharge). Warning: The user must be protected against the ESD discharges, when he uses the TP signal (on the center of Development Kit Q6). Confidential Page: 47/ 64 WM_BBD_Q6_UGD_ September, 006

49 Development Kit Q686 and Q687 Measures of Current 0 Measures of Current To measure the current consumed by the Wireless CPU, use the configuration as shown in Figure 0: Do not solder the "special solder", J0. On UART: - Remove R Place R406=0Ω (like R408). On UART: - Remove R50 and R Place R506=0Ω (like R50). - The UART link is not used, therefore J50, J50, J50, and J504 must be open (by removing the solder). - The switch UART must be switched to "GPIO" position. On BAT-TEMP: - Remove R00. - Plug an external power supply like VCC-EXT on "VBAT"(+), and ( ) on ""(-). This power supply may be set to 4 volts. Thus, peripherals may be used. On USB: The USB link is not used, therefore J80, J80, and J80 must be open (by removing the solder). With this configuration, the consumption current from VBATT is ONLY that of the Wireless CPU plugged in. For further information refer to document.[] or [6]. Note: Before doing any modification, ensure that the Development Kit is disconnected from the power supply during the work. Use pewter and a soldering iron (refer to WS80 from Weller or similar) to solder. Confidential Page: 48/ 64 WM_BBD_Q6_UGD_ September, 006

50 Development Kit Q686 and Q687 Measures of Current VBATT=4v VCC_EXT=4v R00=N J0=NC Figure 0: Configuration for the measure of current Confidential Page: 49/ 64 WM_BBD_Q6_UGD_ September, 006

51 Development Kit Q686 and Q687 Starting Procedure Starting Procedure. Unpacking the Development Kit Q686 or Q687 components The Wireless CPU Quik Q6 series box contains: Development Kit Q6 board. Wireless CPU soldered, and free (Wireless CPU Quik Q686 or Q687). SMA/FME antenna connector. Power supply connector (-pin). AC/DC adapter. RS cable. USB cable. Handset. RJ9 cable (for handset). CDROM with all specifications inside. Confidential Page: 50/ 64 WM_BBD_Q6_UGD_ September, 006

52 Development Kit Q686 and Q687 Starting Procedure. Setting the Accessories Follow the instructions shown below step by step: Insert a SIM card into the SIM card holder, J700 (if communications are required). Make sure that: o The "ON/OFF" switch is in the "ON".position o The "BOOT" switch is in the "OFF".position Also make sure that: o The UART switch is in the "EN" position. o The UART switch is in the "EN" position. o The SIM switch is in the "SIMPRES" position. o All special solders are soldered. Confidential Page: 5/ 64 WM_BBD_Q6_UGD_ September, 006

53 Connect RS cable, provided with the Development Kit Q6, between PC port and J400 of the board. (baud rate, by default to 5. kbps,8n) Development Kit Q686 and Q687 Starting Procedure Connect the antenna to SMA connector (J0), (if communications are required). Connect the handset, provided with the Development Kit Q6, to the Main AUDIO connector J600 (if communications are required). Confidential Page: 5/ 64 WM_BBD_Q6_UGD_ September, 006

54 . Power Supply Development Kit Q686 and Q687 Starting Procedure Plug the power supply (via the adapter (J0) or external power supply, 4V/.5A (J00))..4 Communication Test Using the terminal emulator, send the following command on COM port to communicate with the Wireless CPU Quik Q6 Series: AT. When the communication is established between the PC and the Wireless CPU, the last one sends the message "OK" as a reply. The message is displayed in the terminal emulator window. Refer to document [4] to communicate between the PC and the Q686 Wireless CPU with AT commands. Refer to document [7] to communicate between the PC and the Q687 Wireless CPU with AT commands. Confidential Page: 5/ 64 WM_BBD_Q6_UGD_ September, 006

55 Development Kit Q686 and Q687 Appendix Appendix Confidential Page: 54/ 64 WM_BBD_Q6_UGD_ September, 006

56 TM.P6.5 TM.P6.5 COL0/GPIO4 COL/GPIO5 COL/GPIO6 COL/GPIO7 COL4/GPIO8 ROW0/GPIO9 ROW/GPIO0 ROW/GPIO ROW/GPIO ROW4/GPIO KEYPAD USB-DP USB-DM VPAD-USB USB SIM-CLK SIM-IO SIM-VCC ~SIM-RST SIMPRES/GPIO8 SIM MICN MICP MICN MICP SPKP SPKN SPKP SPKN AUDIO SHD-UART CT04-RXD/GPIO7 CT0-TXD/GPIO6 ~CT05-RTS/GPIO8 ~CT06-CTS/GPIO9 ~CT08--DTR/GPIO4 ~CT07-DSR/GPIO40 ~CT5-RI/GPIO4 ~CT09-DCD/GPIO4 RS (UART) SHD-UART CT0-TXD/GPIO4 CT04-RXD/GPIO5 ~CT05-RTS/GPIO7 ~CT06-CTS/GPIO6 RS (UART) BAT-TEMP BOOT BUZZ-OUT CHARGER-LED CHG-IN FLASH-LED ~RESET POWER & APPLI ON/~OFF TM.P6.5 CONNECTORS BAT-TEMP BOOT BUZZ-OUT CHG-IN COL0/GPIO4 COL/GPIO5 COL/GPIO6 COL/GPIO7 COL4/GPIO8 FLASH-LED MICN MICP MICN MICP ON/~OFF ROW0/GPIO9 ROW/GPIO0 ROW/GPIO ROW/GPIO ROW4/GPIO SIM-CLK SIM-IO SIM-VCC SIMPRES/GPIO8 SPKN SPKP SPKN SPKP USB-DM USB-DP VPAD-USB ~RESET ~SIM-RST GPIO9 ~CT09-DCD/GPIO4 ~CT5-RI/GPIO4 ~CT07-DSR/GPIO40 ~CT08--DTR/GPIO4 ~CT06-CTS/GPIO9 ~CT05-RTS/GPIO8 CT0-TXD/GPIO6 CT04-RXD/GPIO7 ~CT06-CTS/GPIO6 ~CT05-RTS/GPIO7 CT0-TXD/GPIO4 CT04-RXD/GPIO5 GPIO GPIO AUDIO KEYPAD USB UART/IO FULL UART SIM MECHANICS TM.P6.5 FDL DEVELOPMENT KIT Q6 FDL GGI.0 /0/05 Date: Version: Sheet : SCHEMATIC: PROJECT: Made-by: Verify by: Validate by: HIERARCHIC 0/8 TM.P6.5 P6 P5 PCB PCB=V.0 P P7 P4 P ~CT09-DCD/GPIO4 ~CT5-RI/GPIO4 ~CT07-DSR/GPIO40 ~CT08--DTR/GPIO4 ~CT06-CTS/GPIO9 ~CT05-RTS/GPIO8 CT0-TXD/GPIO6 CT04-RXD/GPIO7 CT04-RXD/GPIO5 CT0-TXD/GPIO4 ~CT05-RTS/GPIO7 ~CT06-CTS/GPIO6 CHARGER-LED ~RESET ON/~OFF SHD-UART SHD-UART BUZZ-OUT P9 P P8 MICP MICN MICP MICN SPKP SPKN SPKP SPKN COL0/GPIO4 COL/GPIO5 COL/GPIO6 COL/GPIO7 COL4/GPIO8 ROW0/GPIO9 ROW/GPIO0 ROW/GPIO ROW/GPIO ROW4/GPIO VPAD-USB USB-DP USB-DM SIM-VCC ~SIM-RST SIM-CLK SIM-IO SIMPRES/GPIO8 BAT-TEMP FLASH-LED CHG-IN BOOT

57 FDL DEVELOPMENT KIT Q6 FDL GGI.0 /0/05 Date: Version: Sheet : SCHEMATIC: PROJECT: Made-by: Verify by: Validate by: BS-00 BS-00 BS-00 BS-00 BS-00 BS-00 ROW/GPIO NC_SW05- NC_SW05-5 NC_SW05- NC_SW04- NC_SW04-5 NC_SW04- NC_SW0- NC_SW0-5 NC_SW0- NC_SW0- NC_SW0-5 NC_SW0- ROW/GPIO NC_SW0- NC_SW0-5 NC_SW0- NC_SW00- NC_SW00-5 NC_SW00- ROW4/GPIO ROW0/GPIO9 COL4/GPIO8 COL/GPIO7 COL/GPIO6 COL/GPIO5 5 4 SW SW SW0 4 5 SW0 5 4 SW0 4 5 SW00 KEYPAD /8 COL0/GPIO4 ROW/GPIO0

58 MLX67068_4 SHIELD DM DP VBUS FDL DEVELOPMENT KIT Q6 FDL GGI.0 /0/05 Date: Version: Sheet : SCHEMATIC: PROJECT: Made-by: Verify by: Validate by: SOT_6.V VOUT NC EN VIN GREEN 5 4 U D800 0V C80 C80 6.V C80 R80 R80 D80 VBUS USB 8/8 R80 R800 VPAD-USB J80 J80 J80 C J800 NC_D00- VBUS D+ D- USB-DM USB-DP

59 VCC_V8 VCC_V8 SIM-VCC J705 SIM-CLK J70 SIMPRES/GPIO8 J70 SIM-IO J70 ~SIM-RST J704 R70 SW700 SIMPRES NC_VPP J700 VCC VPP CC8 CLK CC4 I/O RST CCM0 NC_D70-4 NC_D70-6 C700 R700 C D700 5 D70 4 NC_D PROJECT: SCHEMATIC: DEVELOPMENT KIT Q6 SIM Date: /0/05 Validate by: Verify by: Made-by: FDL FDL GGI Version: Sheet :.0 7/8

60 SUB AUDIO C6 MAIN AUDIO 0V C60 VCC_V8 R60 R606 micp micn micp micn R600 C606 SPKP J60 R60 R60 SPKP J606 SPKN J60 R604 C600 C607 R605 SPKN J607 C608 C60 C609 MICP C60 MICN J604 J605 C604 C605 L600 L60 J60 4 RJ9 MICP MICN J608 J609 C60 C6 L60 L60 J600 4 RJ9 R607 PROJECT: SCHEMATIC: DEVELOPMENT KIT Q6 AUDIO Date: /0/05 Validate by: Verify by: Made-by: FDL FDL GGI Version: Sheet :.0 6/8

61 VBAT VBAT VBAT FDL DEVELOPMENT KIT Q6 FDL GGI.0 /0/05 Date: Version: Sheet : SCHEMATIC: PROJECT: Made-by: Verify by: Validate by: SUBD8.08_9FCH RX DSR CTS DCD RI TX RTS DTR VBAT VBAT VBAT VCC_V8 ;,,, C+ C- RIN ROUT RIN ROUT RIN ROUT TIN TOUT TIN TOUT TIN TOUT T4IN T4OUT T5IN T5OUT C- C+ SD C- C+ V+ VCC V- EN VOUT NC EN VIN EMT EMT NC A VCC Y D CP VCC Q INCOMING CALL YELLOW pin (NC) to ENABLE/DISABLE RS EN GREEN 5 4 U U40 T400 T U U400 R405 5KO 5KO R404 R408 R406 R407 R400 0V C409 C4 C40 C406 0V T_P400 V_UART V_UART V_UART V_UART R40 RI C408 RING NC_U40- D400 CT0-TXD/GPIO6 ~CT08--DTR/GPIO4 ~CT05-RTS/GPIO8 ~CT5-RI/GPIO4 ~CT09-DCD/GPIO4 ~CT06-CTS/GPIO9 ~CT07-DSR/GPIO40 CT04-RXD/GPIO7 R40 C40 C40 C404 CT08-/DTR CT05/RTS J400 J40 SHD-UART RS (UART) 4/8 CT5/RI SW400 J409 J408 J407 J406 J405 J404 J40 C40 C400 C405 CT0/TXD CT09/DCD CT06/CTS CT07/DSR CT04/RXD D40 R40 C407

62 VBAT FDL DEVELOPMENT KIT Q6 FDL GGI.0 /0/05 Date: Version: Sheet : SCHEMATIC: PROJECT: Made-by: Verify by: Validate by: SUBD8.08_9FCH RX DSR CTS DCD RI TX RTS DTR VCC_V8 LQHMCN00K0L VBAT VCC_V8 SSOP6_4.9X6_E0.65 TIN TIN ROUT ROUT VDD RIN RIN TOUT VCC VL SW VEE CAP TOUT ON/OFF~.8V VOUT NC EN VIN EN GREEN 5 4 U U500 T_P500 R506 R50 R50 0V C505 V_UART_V8 C50 L500 ~CT05-RTS/GPIO7 CT0-TXD/GPIO4 ~CT06-CTS/GPIO6 CT04-RXD/GPIO5 D500 V_UART_V8 R504 R505 R50 R500 NCJ500- NCJ500-4 NCJ J500 CT05/RTS SHD-UART RS (UART) 5/8 C506 C508 J504 J50 CT06/CTS J50 J50 C507 0V C504 C50 C50 CT04/RXD CT0/TXD SW500 T500 V_UART_V8 NCJ500-6

63 POWER SUPPLY CONFIG VBATT for the module VCC_V8 VBAT for the peripherals VBATT R00 VBATT T_P5 T_P57 VBAT NC_SW00 SW00 ON/~OFF EXTERNAL SUPPLY J00 WLD8SW_ BAT-TEMP J0 VCC_V8 R0 DO4AA D00 C00 0V R04 NC_SW0 SW0 BOOT D0 GREEN SECTOR ADAPTATOR AC/DC J0 NC_J0-4 ~RESET NC_BP00_4 BP00 DC0 NC_BP00_ CHARGER CHARGER INPUT J0 WLD8SW_ CHG-IN BUZZER VBAT D0 DO4AA YELLOW R0 D05 VBAT BUZZ-OUT VBAT R05 D0 GREEN D04 RED PROJECT: DEVELOPMENT KIT Q6 FLASH-LED R0 CHARGER-LED T00 SCHEMATIC: POWER + CTRL Date: /0/05 Validate by: Verify by: Made-by: FDL FDL GGI Version: Sheet :.0 /8

64 VBATT VCC_V8 VCC_V8 FDL DEVELOPMENT KIT Q6 FDL GGI.0 /0/05 Date: Version: Sheet : SCHEMATIC: PROJECT: Made-by: Verify by: Validate by: VCC_V8 VCC_V8 AXK50045J OUT R07_064_90 ANTENNA CONNECTOR EXTERNAL BOARD CONNECTOR MODULE CONNECTOR NC-5 NC-9 NC- NC-7 NC-7 NC- NC-5 NC-9 NC- NC-8 NC- NC-6 NC-0 NC-4 NC-8 NC-6 NC- GPIO GPIO NC- EP-7 EP-0 EP- EP-9 NC-4 J00-8 J00-85 J00-89 J00-9 J00-87 J00-97 J00-9 J00-95 J00-99 J00-8 J00-86 J00-90 J00-94 J00-98 J00-9 J00-96 J00-88 J00-84 J00-5 J00-5 J00-4 J00-00 D0 D D4 D D6 D D5 D7 D5 D4 D D D D0 D9 D8 ~WE-E A ~CS/A5/GPIO A4/GPIO J0-78 J0-79 J0-90 J0-80 J0-8 J0-8 J0-8 J0-84 J0-85 J0-86 J0-87 J0-89 J0-9 J0-9 J0-9 J0-94 J0-95 J0-96 J0-97 J0-4 J0-5 J0- EP-4 EP- EP-6 EP- EP-5 EP-7 EP-8 EP-5 EP- EP- EP-9 EP- EP-0 EP-8 EP-4 EP-6 EP-0 EP- DETAILS OF THE PINS NAMES ACCORDING TO THE MODULE J0 J00 Q686 NAMES ON BOARD ~OE-R/W ~CS Q687 RESERVED IMP00 T_P60 NC- NC-6 NC-4 NC-0 NC- T_P0 T_P00 T_P0 T_P0 T_P7 T_P66 T_P T_P5 NC-5 RESERVED RESERVED VBATT VBATT ~CT07-DSR/GPIO40 ~CT08--DTR/GPIO4 ~CT09-DCD/GPIO4 ~CT05-RTS/GPIO8 CT04-RXD/GPIO7 ~CT06-CTS/GPIO9 ~CT5-RI/GPIO4 CT0-TXD/GPIO6 NC- NC-5 NC-9 NC- NC-7 NC-7 NC- NC-9 NC- AUX-DAC NC-4 NC-8 NC- NC-6 NC-0 NC-4 NC-8 NC-6 NC- SCL/GPIO6 SDA/GPIO7 PCM-CLK PCM-SYNC PCM-OUT INT/GPIO5 GPIO GPIO0 INT0/GPIO GPIO4 PCM-IN GPIO NC_J0-6 NC_J0-9 BUZZ-OUT AUX-ADC SPI-I/GPIO4 MICN ~CT08--DTR/GPIO4 ~CT05-RTS/GPIO8 AUX-DAC NC_J0- GPIO J0 NC-5 NC-8 NC-6 NC-8 NC-4 NC-9 NC-7 NC-5 NC- NC- NC-9 NC-7 NC- NC- ~CT07-DSR/GPIO40 ~CT06-CTS/GPIO9 CT04-RXD/GPIO7 ~CT09-DCD/GPIO4 CT0-TXD/GPIO6 ~CT5-RI/GPIO4 CT0-TXD/GPIO4 CT04-RXD/GPIO5 ~CT06-CTS/GPIO6 ~CT05-RTS/GPIO7 CT0-TXD/GPIO4 CT04-RXD/GPIO5 ~CT06-CTS/GPIO6 ~CT05-RTS/GPIO7 ~SPI-CS/GPIO ~SPI-CS/GPIO ON/~OFF ON/~OFF T_P5 ROW/GPIO0 ROW/GPIO ROW/GPIO NC_J0-6 NC_J0-6 MICN GPIO J00 FLASH-LED ~SIM-RST AUX-ADC NC_J0-0 SPI-I/GPIO0 BOOT BAT-TEMP NC_J0-8 NC_J0-7 NC_J0-5 NC_J0-4 NC_J0- NC_J0-0 GPIO9 GPIO GPIO NC_J0-65 NC_J0-64 NC_J0-6 SPKN SPKP MICP SPKN MICN SPKP COL4/GPIO8 COL/GPIO6 COL/GPIO7 COL0/GPIO4 ROW4/GPIO COL/GPIO5 ROW0/GPIO9 USB-DM VPAD-USB USB-DP SPI-IO/GPIO SPI-CS/GPIO5 SPI-CLK/GPIO SPI-CLK/GPIO8 SPI-IO/GPIO9 ~RESET FLASH-LED ~SIM-RST SIM-IO SIM-CLK SIMPRES/GPIO8 SIM-VCC BAT-RTC CHG-IN CHG-IN VBATT VBATT T_P88 T_P87 T_P00 T_P0 T_P T_P T_P98 T_P0 T_P06 T_P7 T_P7 T_P07 T_P74 T_P T_P0 T_P09 T_P6 T_P49 T_P50 T_P45 T_P7 T_P8 T_P5 T_P T_P T_P8 T_P7 T_P6 T_P T_P4 T_P T_P0 T_P T_P9 T_P8 T_P T_P T_P4 T_P4 T_P4 T_P4 T_P4 T_P9 T_P4 T_P T_P0 T_P9 T_P97 T_P89 T_P96 T_P90 T_P9 T_P9 T_P94 T_P9 T_P95 T_P76 T_P8 T_P6 T_P7 T_P4 T_P5 T_P T_P T_P05 T_P04 T_P0 T_P99 T_P79 T_P8 T_P80 T_P84 T_P8 T_P85 T_P8 T_P86 T_P78 T_P77 T_P69 T_P68 T_P70 T_P T_P0 T_P57 T_P59 T_P55 T_P5 T_P40 T_P5 T_P47 T_P46 T_P44 T_P T_P48 T_P5 T_P6 T_P7 T_P4 T_P6 T_P0 T_P9 T_P54 T_P56 T_P58 T_P T_P T_P9 T_P5 T_P8 T_P7 SPI-CLK/GPIO8 SPI-IO/GPIO9 SPI-IO/GPIO SPI-I/GPIO4 SPI-I/GPIO0 SPI-CLK/GPIO SPI-CS/GPIO5 PCM-SYNC PCM-CLK PCM-IN PCM-OUT INT0/GPIO INT/GPIO5 CONNECTORS /8 VBATT R0 R0 BUZZ-OUT SIM-IO SIM-VCC BAT-RTC ROW/GPIO0 GPIO0 J0 ROW/GPIO ROW4/GPIO COL/GPIO5 COL0/GPIO4 COL4/GPIO8 GPIO4 GPIO GPIO VPAD-USB USB-DP USB-DM GPIO GPIO GPIO GPIO44 SDA/GPIO7 SCL/GPIO6 SPKP MICP SPKP MICN MICP ~RESET SIMPRES/GPIO8 BAT-TEMP BOOT SIM-CLK VBATT CHG-IN VBATT VBATT CHG-IN ROW/GPIO COL/GPIO6 COL/GPIO7 ROW0/GPIO9 SPKN SPKN GPIO9 T_P5 T_P08 T_P75 T_P67 MICP

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