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Now downloading free:Sony Ericsson T610

Sony Ericsson T610 free download

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File information:
File name:gsm_phone_®_.rar
[preview T610]
Size:1530 kB
Extension:PDF
Mfg:Sony Ericsson
Model:T610 🔎
Original:1/1551-ROA 128 0351/2 🔎
Descr:Service Manual Radiomobile GSM - Tot 5 File PDF + 1 TXT
Group:Electronics > GSM Mobile Phones
Uploaded:16-09-2007
User:salvacolnome
Multipart:No multipart

Information about the files in archive:
Decompress result:OK
Extracted files:7
File name T610.pdf

SEM/GUR/BYD Håkan Bygdö Primary side of TVK 117 3937 R5 Approved according to 00021-LXE 107 42/1 SEM/GUR/BYDC (Ulf Karlsson) 2003-04-16 E Printed Circuit Board 1078-ROA 128 0351/2 Uen 1 (2) SEM/GUR/BYD Håkan Bygdö Secondaryside side of TVK 117 3937 R5 SEM/GUR/BYDC (Ulf Karlsson) 2003-04-16 E Approved according to 00021-LXE 107 42/1 Printed Circuit Board 1078-ROA 128 0351/2 Uen 2 (2)
File name T610.txt

131 32-ROA 128 0351/2 Download XML -------------------------------------------------------------------------------- ITEM/PLACE TITLE/FUNCTION DESIGNATION PRODUCT NO R-STATE MOD QTY UNIT INFORMATION CODE A1 MULTILAYERPRINTBOARD TVK 117 3937 1 /T610/PCB A2 MARKING PLATE2 SVF 930 817 1 /23x7mm B201 QUARTZ CRYSTAL UNIT RTM 501 913 1 S /Fictitious level for T610/T618 B600 QUARTZ CRYSTAL UNIT RTM 501 908/1 1 /Crystal 32768HZ +-20PPM 12.5pF C001 CAPACITOR RJC 463 3020/82 1 /0.82pF +/-0.25pF 0402 50V NP0 C101 CAPACITOR RJC 463 3022/22 1 /22pF 5% 0402 50V NP0 C102 CAPACITOR RJC 463 3022/22 1 /22pF 5% 0402 50V NP0 C103 CAPACITOR RJC 463 3022/22 1 /22pF 5% 0402 50V NP0 C104 CAPACITOR RJC 463 3022/22 1 /22pF 5% 0402 50V NP0 C106 CAPACITOR RJC 463 3022/33 1 /33pF 5% 0402 50V NP0 C107 CAPACITOR RJC 463 3022/33 1 /33pF 5% 0402 50V NP0 C108 CAPACITOR RJC 463 3022/1 1 /10pF 5% 0402 50V NP0 C109 CAPACITOR RJC 463 3022/1 1 /10pF 5% 0402 50V NP0 C110 CAPACITOR RJC 463 3022/1 1 /10pF 5% 0402 50V NP0 C111 CAPACITOR RJC 463 3022/1 1 /10pF 5% 0402 50V NP0 C113 CAPACITOR RJC 463 3022/22 1 /22pF 5% 0402 50V NP0 C114 CAPACITOR RJC 463 3022/22 1 /22pF 5% 0402 50V NP0 C121 CAPACITOR RJC 463 3022/1 1 /10pF 5% 0402 50V NP0 C122 CAPACITOR RJC 463 3021/68 1 /6.8pF +/-0.5pF 0402 50V NP0 C123 CAPACITOR RJC 463 3022/33 1 /33pF 5% 0402 50V NP0 C124 CAPACITOR RJC 463 3021/33 1 /3.3pF +/-0.25pF 0402 50V NP0 C210 CAPACITOR RJC 463 6032/68 1 /68pF 1% 0603 50V NP0 C211 CAPACITOR RJC 463 3023/12 1 /120pF 5% 0402 50V NP0 C212 CAPACITOR RJC 464 3025/1 1 /10nF 10% 0402 16V X7R C213 CAPACITOR RJC 463 0031/33 1 /3.3pF +/-0.1pF 0603 50V NP0 C214 CAPACITOR RJC 464 3025/1 1 /10nF 10% 0402 16V X7R C215 CAPACITOR RJC 464 3024/1 1 /1.0nF 10% 0402 50V X7R C216 CAPACITOR RJC 463 3022/68 1 /68pF 5% 0402 50V NP0 C220 CAPACITOR RJC 464 3023/47 1 /470pF 10% 0402 50V X7R C221 CAPACITOR RJC 464 3023/68 1 /680pF 10% 0402 50V X7R C222 CAPACITOR RJC 464 3025/15 1 /15nF 10% 0402 16V X7R C223 CAPACITOR RJC 464 3023/68 1 /680pF 10% 0402 50V X7R C240 CAPACITOR RJC 464 3025/1 1 /10nF 10% 0402 16V X7R C241 CAPACITOR RJC 463 3022/27 1 /27pF 5% 0402 50V NP0 C250 CAPACITOR RJC 516 4047/47 1 /4.7uF 20% 0805 6.3V X5R C251 CAPACITOR RJC 516 4047/47 1 /4.7uF 20% 0805 6.3V X5R C252 CAPACITOR RJC 464 3025/1 1
File name T610_1.pdf

1 (16) DESCRIPTION Prepared (also subject responsible if other) No. SEM/GUR/BRR Pontus Nelderup Approved Checked 1/1551 - ROA 128 0351/2 Date Rev Reference SEM/GUR/BRRC Mikael Nilsson 2003-02-28 B Technical Description: T610 Radio on the Tranceiver Board Contents: 1 GENERAL...2 1.1 CROSS REFERENCES ... 2 1.1.1 Names...2 1.1.2 Abbreviations...3 2 OVERVIEW ...4 2.1 2.2 3 4 THE TX PATH ... 4 THE RX PATH ... 5 FREQUENCY PLAN ...6 THE RADIO BLOCKS ...7 4.1 4.2 4.2.1 4.2.2 4.2.3 4.2.4 4.2.5 4.3 4.3.1 4.3.2 4.3.3 4.3.4 4.3.5 4.3.6 4.4 4.5 4.6 4.7 THE ANTENNA SWITCH... 7 THE RECEIVER... 8 RF filter and balun...8 Receiver front-end...8 VCO ...
File name T610_2.pdf

DESCRIPTION Uppgjord (även faktaansvarig om annan) - Prepared (also subject responsible if other) Nr - No. 1 (13) Rev File LD/SEMC/GUR/BDG Bengt Hedbjork Dokansv/Godk - Doc respons/Approved Kontr - Checked 2/1551 ­ ROA 128 0351/2 Uen Datum ­ Date GUR/BDGC (Johan Mercke) 2003-03-06 A Approved according to 000 21-LXE 107 42/1 TECHNICAL DESCRIPTION: BASEBAND AND AUDIO CIRCUITS ON THE TRANSCEIVER BOARD CONTENTS 1 1.1 1.1.1 1.1.2 2 3 3.1 3.2 3.3 4 4.1 4.1.1 4.1.2 4.1.3 4.1.4 4.2 4.3 4.4 4.5 4.6 4.7 4.8 4.9 4.10 4.11 4.11.1 4.11.2 5 5.1 5.1.1 5.1.2 5.1.3 6 GENERAL Cross References Names Abbreviations CHANGES BETWEEN REVISIONS DATA FLOW TX path RX path TAE circuits DESCRIPTION OF VARIOUS FUNCTIONS ON/OFF circuitry ON/OFF button ONSRQ signal Auto Turn On Alarm POWER SUPPLY AUDIO Polyphonic ring signals TOP INDICATOR KEYBOARD SCANNING KEYBOARD AND DISPLAY ILLUMINATION LCD CONTROLLER AMR processor REAL TIME CLOCK IrDA-MODULE Block diagram Power supply MEMORIES Memory configuration MARTHA memory IRMA FLASH Programming PRINTED CIRCUIT BOARD 2 2 2 3 3 4 4 5 5 6 6 6 7 7 7 7 8 9 9 9 9 10 10 10 10 10 11 11 11 11 12 12 12 DESCRIPTION Uppgjord (även faktaansvarig om annan) - Prepared (also subject responsible if other) Nr - No. 2 (13) Rev File LD/SEMC/GUR/BDG Bengt Hedbjork Dokansv/Godk - Doc respons/Approved Kontr - Checked 2/1551 ­ ROA 128 0351/2 Uen Datum ­ Date GUR/BDGC (Johan Mercke) 2003-03-06 A 1 GENERAL This document describes the baseband and the audio processing circuits, which are part of the transceiver board mounted in different digital pocket phones of GSM type. The other part of the transceiver board that carries the radio circuits is described in the corresponding document starting with 1/1551 -. One purpose of the baseband part is to control and monitor transmission and reception, to co-operate with the telephone exchanges of the mobile telephone system and to do the processing of audio signals to and from the mobile phone. Chapter 2 contains information about document revisions. In chapter 3 the data flow through the phone is described in both TX and RX direction. In chapter 4 are several of the electrical functions and circuits described more in detail. Chapter 5 describes the different memory types used in the phone. In chapter 6 the layer structure of the PCB is briefly described. 1.1 1.1.1 Cross References Names In most cases the different circuits in the phone are given names which are used during the development phase. These names are also used in this description. The following list shows the used circuit names and the corresponding position numbers used in the schematics. HERTA IRMA B IRMA FLASH MARTHA MARTHA FLASH VICTORIA 2+ N660 D900 D910 D600 D610 N800 DESCRIPTION Uppgjord (även faktaansvarig om annan) - Prepared (also subject responsible if other) Nr - No. 3 (13) Rev File LD/SEMC/GUR/BDG Bengt Hedbjork Dokansv/Godk - Doc respons/Approved Kontr - Checked 2/1551 ­ ROA 128 0351/2 Uen Datum ­ Date GUR/BDGC (Johan
File name T610_3.pdf

PULSESKIP MCLK QRB QRA IRB S1 1 Clamp GND Will be connected to GND in PCB IRA VLOOP SHEILDCAN_TOVA_BBR_PA2 SXA1093061 CLAMP E;SHIELDCAN_TOVA_BBR;BYX10156_C S2 1 Clamp GND VLOOP Will be connected to GND in PCB IRA IRB SHEILDCAN_TOVA_PA_PA1 SXA1093051 CLAMP E;SHIELDCAN_TOVA_PA;BYX10157_D QRA QRB MCLK S3 1 Clamp GND Will be connected to GND in PCB PULSESKIP ANTSW_3 PCTL BSEL0 MODA MODB MODC MODD SHEILDCAN_TOVA_INGELA_PA1 SXA1093052 CLAMP E;SHIELDCAN_TOVA_INGELA;BYX10158_C VCXOCONT SYNSTR SYNCLK SYNDAT TXON RXON ANTSW_1 ANTSW_2 SYNSTR SYNCLK SYNDAT TXON RXON ANTSW_1 ANTSW_2 ANTSW_3 PCTL BSEL0 MODA MODB MODC MODD VCXOCONT SYNSTR SYNCLK SYNDAT TXON RXON RadioTop VLOOP IRA IRB QRA QRB MCLK ANTSW_1 ANTSW_2 ANTSW_3 PCTL BSEL0 MODA MODB MODC MODD VCXOCONT PULSESKIP VBTON RTCCLK S4 1 Clamp GND POWLEV Will be connected to GND in PCB MCL_RST MCLCLK VBTON RTCCLK VBTON RTCCLK POWLEV POWLEV MCL_RST MCL_RST SYSCLKEN MCLCLK MCLCLK SHEILDCAN_TOVA_MEM_PA3 SXA1093053 CLAMP E;SHIELDCAN_TOVA_MEM;BYX10159_C S5 1 Clamp GND Will be connected to GND in PCB SYSCLKEN SHEILDCAN_TOVA_BBL_PA2 SXA1093054 CLAMP E;SHIELDCAN_TOVA_BBL;BYX10160_C SYSCLKEN S6 1 Clamp GND Will be connected to GND in PCB BasebandTop SHEILDCAN_TOVA_AMR_PA4 SXA1093055 CLAMP E;SHIELDCAN_TOVA_AMR;BYX10161_C GND Sony Ericsson
File name T610_4.pdf

X400 1 2 3 X001 GSM_ANT_01 2 4 C001 SP001 0,82pF ANT PCTL PCTL SP004 IRA RXON ANTSW_1 ANTSW_2 ANTSW_3 RXON ANTSW_1 VC1 ANTSW_2 VC2 ANTSW_3 VC3 TXON TXON TXON PCTL BSEL0 PCTL TXLOW BSEL0 POWLEV POWLEV POWLEV PA_PAcontrol BSEL0 TXON TXHIGH TXHIGH TXLOW GSM_TX RX_Antenna Switch D_P_TX RXON IRB QRA QRB IRA IRA IRB IRB QRA QRA QRB QRB ANTENNA_CON RPT79924 OUT GND IN GND 1 3 GSM_ANT_03 SP005 SP006 SP007 SYNSTR SYNDAT SYNCLK MODA MODB MODC MODD VCXOCONT BSEL0 SYNSTR SYNDAT SYNCLK MODA MODB MODC MODD VCXOCONT PULSESKIP VLOOP MCLK PULSESKIP VLOOP MCLK Synthesizer MCL_RST SYSCLKEN MCLCLK VBTON RTCCLK MCL_RST SYSCLKEN MCLCLK VBTON RTCCLK MCL_RST SYSCLKEN MCLCLK VBTON RTCCLK BT_Radio Sony Ericsson C125 3,3pF R105 1Kohms B PCTL NM E NM C124 3,3pF C NM V101 RYN121905/1 R100 1Kohms TXON B C V102 RYN121905/1 E VC1 R101 0ohms Z101 C101 22pF R102 0ohms SAFSD1G84CB_1800MHz C121 10pF 1 2 3 GND_1 IN GND_3 OUT_1 GND_2 OUT_2 C113 22pF 6 5 4 VRAD R104 10ohms VC2 C102 22pF R103 0ohms VC3 C103 22pF 2 4 8 10 GSM_TX D_P_TX 9 11 1 N100 CTRL1 CTRL2 GND CTRL3 TxLOW TxHIGH ANT LMSP65CA-176 RYT901905/2 C123 33pF RxDCS RxPCS RxGSM GND GND 5 3 7 6 12 C122 6,8pF 1 2 3 RTN201924/1 Z102 SAFSD1G96CA_1900MHz GND_1 IN GND_3 OUT_1 GND_2 OUT_2 6 5 4 C114 22pF RTN201923/1 C108 10pF C109 10pF C110 10pF C111 10pF A6 N201 INGELA RX VCCRF VCCLO RFHA RFHB RFHC RFHD RXLO1 RXLO2 A5 A4 0 +90 +90 0 QRA LP RFLA RFLB GNDLO F8 E1 A3 B1 QRB A8 A7 C116 120pF NM QRA LP IRA IRB A10 A9 C115 120pF NM IRA Z103 1 IN OUT OUT 5 GND GND 3 4 2 C106 33pF C107 33pF A2 A1 L102 8,2nH L103 8,2nH D10 C1 D1 22pF C104 ANT L123 18nH C105 0,5pF NM B7820 RTN201936/1_R2A L101 22nH REG724 REG7249342/22 IRB QRB RXON E3 RXON GNDRF GNDRF1 C120 22pF NM INGELA ROP1011101/4C GNDRF2 Approved according to 00021-LXE 107 42/1 Sony Ericsson LD/SEM/BGUR/BRR Pierre Kellner LD/SEM/BGUR/BRRC Mikael Nilsson K RX Antenna Switch Tova 1/1911 - ROA 128 0351/2 Uen 2(5) VBATT N800 N250 POWER SUPPLY RADIO Victoria 2+ B7 VBAT-A LD0 3.8V/2.75V VDD38a B8 VALLL ST251 D5 C3 A8 F7 VBAT-E MOD1 VSS-A VSS-E VALL_N800_C8 LD0 3.8V/2.75V VDD38b C8 1 2 C251 4,7uF Strap_0201 VBATT 4 1 5 ON OFF VRAD_N250_3 [VREG] VRAD R250 0ohms C250 4,7uF VRAD VRAD IN OUT 3 2 GND BYPASS LP298528V RYT113904/2 C257 10uF Victoria2plus ROP1013014/2C C255 10uF NM C256 100pF L240 120R VRAD_N201_K7K10 VRAD VRAD_N201_G10 N201 C253 22pF INGELA SYNTHESISER C252 10nF L260 22nH C240 10nF C261 10nF G10 K7 VCCVCO VCCPHD VCCPRE VCCREF K2 K10 C241 27pF TXLO1 SYNSTR SYNDAT SYNCLK C7 C6 C5 STROBE DATA CLK Bus Inter Face TXLO2 TXLO3 TXLO4 B10 RF_215 L261 33nH C260 4,7nF E10 F10 RESTHB RESTHA RF_216 C10 RESTLB RESTLA DIEPAD C3 BSEL0 F3 BSEL VTUNE GNDVAR H10 G8 C220 470pF RF_210 R220 470ohms RF_211 R200 MODA MODB MODC MODD R201 R202 R203 0ohms 0ohms 0ohms 0ohms MODA_N201_K3 MODB_N201_K4 MODC_N201_K5 MODD_N201_K6 K3 K4 K5 K6 MODA MODB MODC MODD PreScaler PHD Charge Pump PS H5 C223 680pF XOOLA H7 MCLK_N201_H7 PHDOUT J1
File name T610_5.pdf

VLOOP VLOOP IRA IRA IRB IRB QRA QRA QRB QRB VLOOP VCXOCONT ANTSW_1 VCXOCONT VCXOCONT ANTSW_1 ANTSW_1 ANTSW_2 ANTSW_2 ANTSW_3 ANTSW_3 BSEL0 BSEL0 TXON TXON RXON RXON PCTL PCTL SYNDAT SYNDAT SYNSTR SYNSTR SYNCLK SYNCLK MODD MODD MODC MODC MODB MODB MODA MODA IRA IRB QRA QRB ANTSW_2 ANTSW_3 BSEL0 TXON RXON I2CDAT I2CCLK PCTL SYNDAT SYNSTR AFMS_RTS AFMS_RTS SYNCLK MODD ATMS MODC MODB MODA CLKOUT PCMULD RESETOn PCMSYNC STEPUPON DSPINT WLBRGT AMPON PCMDLD POWLEV PCMDLD AFMS_RTS_int analog WLBRGT DSPINT I2CDAT I2CCLK AMPON PCMCLK PCMSYNC ATMS I2CDAT_CAM SDLD I2CCLK_CAM CLKOUT DTMSI LEDPOW RESETOn AFMS_RTS_int DFMSO SULD DFMSO SULD DTMSI SDLD ATMS PULSESKIP LEDPOW AMPON DSPINT I2CDAT_CAM I2CCLK_CAM I2CDAT MCLCLK MCL_RST SERVICEIn PULSESKIP PCMCLK SYNT_IRQn PCMSYNC PCMDLD SDLD SULD DTMSI AFMS_RTS_int BTWAKEUP VPP IRCAM_CTRL BT_Baseband IRCAM_CTRL BTWAKEUP SYSCLKEN VPPFLASHi Ports_extIF_keyb ONSWBn PCMULD SYNT_IRQn DCIOInt DCIO OnSWBn VIBR OnSWAn LED4K STEPUPON IRQGR BTWAKEUP IRCAM_CTRL MCL_RST PWRRSTn IRQn I2CDAT I2CCLK I2CDAT I2CCLK VPP SLEEP CLKOUT OnSWBn VIBR OnSWAn LED4K OnSWAn OnSWC DFMSO SYSCLKEN IRQn AFMS_RTS I2CCLK VPPFLASHi DCIOInt DCIO DCIOInt DCIO OnSWBn MCL_RST REDLED VBTON VBTON VBTON MCL_RST I2CDAT I2CCLK REDLED RESETOn RESETOn REDLED I2CDAT_CAM I2CCLK_CAM LCD_Illum_Vibr LED4K DCIOInt LEDPOW VIBR POWLEV PCMCLK WLBRGT POWLEV PULSESKIP IRQGR VPPFLASHi VPP SLEEP RESETOn VPP SLEEP power_management SYSCLKEN OnSWC IRQn CLKOUT MCLCLK PWRRSTn RTCCLK RTCCLK MCLK MCLK SYSCLKEN MCLK PWRRSTn OnSWC SYNT_IRQn CLKOUT MCLCLK SERVICEIn uP_memory RTCCLK SERVICEIn STEPUPON Sony Ericsson CONFIDENTIAL VCORE A1 K1/K2 VBATT A2 VPP R600 1Kohms B E V601 NM R602 1Kohms NM RTCOSCIN 1 IN C V609 BC808W B600 32.768Hz OUT 4 POSITION B600 CLOSE TO D600. TRACK CGND AWAY FROM NOISE. RTCOSCOUT VCORE C600 c V610 RN1107 22pF 2 VPPFLASHi VPPFLASHi b CGND 3 RTM501908/1 CGND SP620 ADDR(0:22) Metal cap C601 22pF SP619 EROMCS1n EROMCS2n K1 G8 J1 C5 e D6 CE1 CE2 S-CS1 S-CS2 P-CS RST OE1 SP623 OE2 R-OE WE R-WE R-UB R-LB ADV CLK WP P-MODE DATA/ADRESSES A0 A1 A2 A3 A4 A5 A6 A7 DATA A8 A9 A10 A11 A12 A13 A14 A15 A16 A17 A18 A19 A20 A21 A22 A23 A24 A25 RD48F2100W0YTQ0 RYT118913/1 RAMCSn B3 A3 DATA(6) DATA(7) ERAMCS2n ROMCSn EROMCS1n EROMCS2n CLKOUT CLKOUT SP607 SLEEP SLEEP MCLCLK MCLCLK WEn SP604 ML2860CS RYT1166020/1 ADDR D8 D9 D10 D11 D12 D13 D14 D15 D0 D1 D2 D3 D4 D5 D6 D7 DATA(0) DATA(1) DATA(2) DATA(3) DATA(4) DATA(5) DATA(6) DATA(7) H2 H3 G3 H4 J5 G5 J6 H7 G2 J3 DATA(0) DATA(1) DATA(2) DATA(3) DATA(4) DATA(5) C1 DATA(6) G6 DATA(7) DATA(8) G7 DATA(9) A1 G 4 DATA(10) B1 J4 DATA(11) H5 DATA(12) G 6 DATA(13) H6 DATA(14) J7 DATA(15) A6 D7 F6 F1 PTESTIN1 PTESTIN2 TEST ST610 A2 POWER AND GROUND AGND AVDD E7 DGND DVDD GND XTGND DRVGND VDD VDDIO XTVDD 1 2 PTESTO1 PTESTO2 G1 A7 VALLL VCORE RESET CLOCK B6 B5 E6 E5 D6 D5 D4 C6 C7 C5 WAIT G7 SP610 SP611 SP612 RTCCLK RTCCLK RESETOn RESETOn OnSWC OnSWC DATA(0:15) SERVICEIn D610 RD48F2100W0YTQ0_IO D600 MARTHA uP & M



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