UMTS TELEPHONE
CONTENTS 1.
Specification
2.
Circuit Description
3.
Exploded Views and Parts List
4.
Electrical Parts List
5.
Block Diagrams
6.
PCB Diagrams
7.
Flow Chart of Troubleshooting
This Service Manual is a property of Samsung Electronics Co.,Ltd. Any unauthorized use of Manual can be punished under applicable International and/or domestic law.
Samsung Electronics Co.,Ltd. Nov. 2004 Printed in South Korea. Code No.: GH68-05795A BASIC.
1. GSM General Specification G SM 9 00 Ph a s e 1
E G S M 9 00 Ph a s e 2
DCS 1 80 0 P ha s e 1
Fr e q. B an d[ M Hz ] U pl i nk / Do wn li n k
8 9 0~ 9 15 9 3 5~ 9 60
8 8 0~ 9 15 9 2 5~ 9 60
1 71 0 ~ 17 85 1 80 5 ~ 18 80
A RFC N ra ng e
1 ~ 12 4
0 ~ 12 4 & 9 75 ~ 10 2 3
51 2 ~ 88 5
Tx/ Rx s pa c i ng
4 5M Hz
4 5M Hz
9 5 M Hz
M od . B i t r at e / B it P er io d
2 70 . 83 3k b p s 3 . 69 2u s
2 7 0. 83 3 k bp s 3 . 69 2u s
2 70 . 83 3k b p s 3. 6 92 us
Ti m e S l ot P e ri od /F ram e P e rio d
5 7 6. 9u s 4. 6 15 m s
5 7 6. 9u s 4. 6 15 m s
57 6 .9 us 4 .6 1 5m s
M o du l at io n
0. 3 G M S K
0 .3 G M S K
0 . 3G MS K
M S P o we r
33 dB m ~ 1 3d B m
33 d Bm ~ 5 d Bm
30 dB m ~ 0 dB m
P ow er C la s s
5p c l ~ 15 pc l
5pcl ~ 19pcl
0pcl ~ 15pcl
S e ns i t iv i t y
- 10 2 dB m
-10 2 dB m
-1 00 d Bm
TDM A M ux
8
8
8
Ce ll Ra di u s
3 5K m
3 5K m
2 Km
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2. GSM TX power class TX Power control level
GSM900
TX Power control level
DCS1800
5
33 2 dBm
0
30 3 dBm
6
31 2 dBm
1
28 3 dBm
7
29 2 dBm
2
26 3 dBm
8
27 2 dBm
3
24 3 dBm
9
25 2 dBm
4
22 3 dBm
10
23 2 dBm
5
20 3 dBm
11
21 2 dBm
6
18 3 dBm
12
19 2 dBm
7
16 3 dBm
13
17 2 dBm
8
14 3 dBm
14
15 2 dBm
9
12 4 dBm
15
13 2 dBm
10
10 4 dBm
16
11 3 dBm
11
8 4dBm
17
9 3dBm
12
6 4 dBm
18
7 3 dBm
13
4 4 dBm
19
5 3 dBm
14
2 5 dBm
15
0 5 dBm
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1. SGH-Z110V RF Circuit Description 1. Antenna Switch Module (U100) The antenna switch module allows multiple operating bands and modes to share the same antenna. A common antenna connects to one of five paths: 1) UMTS-2100 Rx/Tx, 2) EGSM-900 Rx, 3) EGSM-900 Tx, 4) DCS-1800 Rx, and 5) DCS-1800 Tx. UMTS operation requires simultaneous reception and transmission. 2. Filter To convert Electromagnetic Field Wave to Acoustic Wave and then pass the specific frequency band. - GSM Rx FILTER (F100)
For filtering the frequency band between 925 ~ 960 MHz.
- DCS Rx FILTER (F101)
For filtering the frequency band 1805 and 1880 MHz.
- WCDMA Rx FILTER (F200)
For filtering the frequency band 2110 and 2170 MHz.
- WCDMA Tx FILTER (F201)
For filtering the frequency band 1920 and 1980 MHz.
3. VCTCXO (OSC200) To generate the 19.2MHz reference clock to drive the logic and RF. 4. Duplexer (F202) A duplexer splits a single operating band into receive and transmit paths. 5. WCDMA PAM (U201) This is a key component in the transmitter chain and must complement the RTR6200 IC precisely; jointly they dominate the UMTS transmitter performance characteristics. Parameters such as gain, output power level, ACLR, harmonics, Rx-band noise, and power supply current are critical. 6. GSM/DCS PAM (U102) The PAM is a key component in any transmitter chain and must complement the rest of the transmitter precisely. For GSM and DCS operation, the closed-loop transmit power control functions add even more requirements relative to the UMTS PA. In addition to gain control and switching requirements, the usual RF parameters such as gain, output power level, several output spectrum requirements, and power supply current are critical. 7. GSM/DCS Dual Tx VCO (OSC100) The dual Tx VCO outputs, one for EGSM and one for DCS, drive a resistive network that splits the active signal into two signals: 1) the input to the active PAM – this is the low loss path, and 2) the OPLL feedback signal. 8. Dual VCO (OSC201) The dual-band UHF VCO is a key component within its phase-locked loop; VCO performance directly impacts PLL and transceiver performance. GSM/DCS Rx/Tx LO & UMTS Rx LO signal is generated from this dual VCO's output. 9. RFL6200 (U200) The RFL6200 includes an LNA circuit optimized for UMTS-2100 operation. The LNA is separated from all other receive functions contained within the RFR6200 receiver IC to improve mixer LO to RF isolation – a critical parameter in the Zero-IF architecture.
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10. RFR6200 (U203) The RFR6200 provides the Zero-IF receiver signal path, from RF to analog baseband, for UMTS-2100 applications. The RFR6200 accepts its UMTS input signal from the handset RF front-end design. The UMTS input is configured differentially to optimize second-order inter-modulation and common mode rejection performance, and implements MSM-controlled gain adjustments to extend the receiver dynamic range. 11. RTR6200 (U101) The RTR6200 supports multi-band, multi-mode phones with two receiver signal paths and three transmitter signal paths: 1) Receiver paths - EGSM-900 - DCS-1800 2) Transmitter paths - EGSM-900 (using OPLL technique) - DCS-1800 (using OPLL technique) - UMTS-2100 Numerous secondary functions are integrated on-chip as well: 3) Phase-locked loop circuits - PLL#1 and an on-chip VCO supports UMTS Tx - PLL#2 and an external VCO supports EGSM Rx and Tx, DCS Rx and Tx, and UMTS Rx 4) Transceiver LO generation and distribution circuits - EGSM-900 Rx and Tx - DCS-1800 Rx and Tx - UMTS-2100 Tx
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2. Baseband Circuit description of SGH-Z110V 1. PM6050 1.1. Power Management Ten low-dropout regulators designed specifically for GSM applications power the terminal and help ensure optimal system performance and long battery life. It provides seven LDO support for 2.6V, 2.8V while a self-resetting, electronically fused switch supplies power to external accessories. Ancillary support functions, such as RTC module and RTC charger, Clock Buffer, aid in reducing both board area and system complexity. SBI BUS serial interface provides access to control and configuration registers. This interface gives full control of the MSM6200 and enables system designers to maximize both standby and talk times. Supervisory functions. including a reset generator, an input voltage monitor, and a ADC support reliable system design. These functions work together to ensure proper system behavior during start-up or in the event of a fault condition(low microprocessor voltage, insufficient battery energy, or excessive die temperature). 1.2 TCXO Controller and Buffers The PM6050 IC includes circuits for controlling the TCXO warm-up and buffering its signal for distribution throughout the handset. Performance specifications are presented below. 2. Connector 2-1. LCD Connector LCD is consisted of main LCD(color 262K TFT LCD) and small LCD(color 65K TFT LCD). Chip select signals in the MA55141(U501), SLCD_CS can enable small LCD and DEN for main LCD. I2C buses in MSM6200 (U301) control white-LED of LCDs. "SLCD_RESET, MLCD_RESET" signals initiate the Reset process of LCDs. 8-bit data lines(RGB[10:17]) transfers data and commands to Small LCD through bypass capacitor. Data and commands use "SCLD_RS" signal. If this signal is high, Inputs to Small LCD are commands. If it is low, Inputs to Small LCD are data. The signal which informs the input or output state to Small LCD, is required. Main LCD interface is 18bit data lines(RGB[0:17]) CPU Interface. "RGB_VSYNC","RGB_HSYNC","RGB_DE",and,"RGB_CLK" are the signal for transferring data. Power signals for LCD are "2.8VDV" and "VBATT". "SPKR_P","SPKL_P", "SPKR_N" and "SPKL_N" from U602 are used for dual audio speaker. 2-2. Key This is consisted of key interface pins among U301, KEY_0~3 and SCAN_0~6. These signals compose the matrix. Result of the matrix informs the key status to key interface in U301. Power on/off key is seperated from the matrix. So power on/off signal is connected with U301 to enable U400. Eighteen key LED use the "VCC_BK" supply voltage from U304. "HALL_SW" informs the status of folder (open or closed) to modem. This uses the hall effect IC,EM1681. A magnet under main LCD enables EM1681. It has additional two hall-effect ICs, that are needed for camera sensing. One senses the rotation of Z110V camera, and the other senses the Push-pull of the camera.
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2-3. EMI ESD Filter This system uses the EMI ESD filter, GMF05LC to protect ESD and Noise from IF CONNECTOR part, LCD, Camra, and KEY PCB. 2-4. IF connetor It is 24-pin connector. They are designed to use VBATT, VF, Q_TXD0, Q_RXD0, JIG_ON, signal(D+,D-,USB_VCC)
M_RXD0, M_TXD0, USB
and GND. They connected to power supply IC, microprocessor and signal processor IC.
3. Audio RCV_P and RCV_N from U601 are connected to the main receiver. EAR10P and EAR10N are connected to the Earphone receiver. MIC1P and MIC1N are connected to the main MIC. And MIC2P and MIC2N are connected to the Earphone. YMU769 has a virtual speaker image function, so that it is the most suitable LSI as a sound source output device which is used in mobile phones for high functional game sounds or high quality ringing melodies, and so on. Synthesizer section in YMU769 adopts the “ Stereophonic Hybrid Synthesizer System” that is given the advantages of both FM Synthesizers and Wave Table Synthesizers, makes it possible to generate up to 32 FM voices and 32 wave table voices simultaneously. YMU769 is a LSI for portable telephone that is capable of playing high quality music by utilizing FM synthesizer and ADPCM decoder that are included in this device. As a synthesis, YMU769 is equipped 32 voices with different tones. Since the device is capable of simultaneously generating up to synchronous with the play of the FM synthesizer, various sampled voices can be used as sound effects. Since the play data of YMU769 is interpreted at anytime through data bus, the length of the data(playing period) is not limited, so the device can flexibly support application such as incoming call melody music distribution service. The hardware sequence built in this device allows playing of the complex music without giving excessive load to the CPU of the portable telephones. Moreover, the registers of the FM synthesizer can be operated directly for real time sound generation, allowing, for example, utilization of various sound effects when using the game software installed in the portable telephone. YMU769 includes a speaker amplifier with high ripple removal rate whose maximum output is 550mW (SPVDD=3.6V). For the headphone, it is provided with a stereophonic output terminal.
4. Memory The signals in the MSM6200 enable two memories. They use only one volt supply voltage, VDD_LP from the PM6050. This system uses SPANSION's memory, S99PL129JCOBAWUC. It is consisted of 128M bits flash NOR memory and 32M bits SRAM memory. It has 16 bit data line, AD[0~15] which is connected to MSM6200. It has 22 bit address lines, A[1~22]. ROM_CS and RAM_CS signals is chip select. In the multi-media processor, it has two type of memories. One is 1GMbit NAND Flash memory and the other is 512Mbit SDRAM memory. Multi-media processor doesn't have a NAND memory interface. But we make a software algorithm use for NAND memory.
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5. Multi-media processor MA55141 MA55141 is an LSI, which is designed on 3GPP 3G-324M Standard for a video telephone system. Since protocol software is external, MA55141 can run with another protocol like H.323 by changing its software. MA55141 has ARM9 CPU, so supports more various application. Feature - Based on 3GPP 3G-324M standard - Video MPEG-4 (simple profile level1) or H263 (baseline) - Audio AMR, G723.1, MP3 or AAC (program downloadable) - Multiplexing H.223 (Level 0, 1, 2, processed by CPU with assistant hardware) - Control H.245 (Processed all by CPU) - Built-in 32bit RISC CPU(ARM926EJ) for control. (Max 133MHz, I-cache 16KB, D-cache 8KB, MMU and JAVA accelerator (Jazelle) included.) - Built-in 16bit DSP for audio CODEC - Built-in SD/MMC/Memory Stick I/F - Video input Rec601/656 YUV = 4:2:2, 8 bit I/F - Video output Rec601 YUV = 4:2:2(8bit) / RGB 18bit Built-in Picture-In-Picture Image Displaying Functions Built-in On Screen Display(OSD) Functions with alpha blending - Video CODEC Encoding and decoding : QCIF 40fps, CIF 10fps Encoding only :
QCIF 68fps, CIF 17fps
Decoding only :
QCIF 96fps, CIF 24fps
Deblocking filter is built-in. Max output image size :
2032 2032
- Program on SDRAM is executable without ROM (optional). - Power supply VDDI1=1.425V to 1.65V
(For internal circuit. Please power off during stand-by)
VDDI2=VDDI1
(For internal circuit. Please provide during stand-by)
VDDP0, VDDP1=1.425V to 1.65V
(For internal PLL0 and PLL1)
VDDO, VDDOD=2.7V to 3.0V
(For I/O)
- Max operating frequency
CPU clock = 133MHz DSP clock = 100MHz SDRAM clock = 100MHz Video clock = SDRAM clock/2
6. MIC2211 (U604/U605) This LDO is the voltage source of Multimedia part. The MIC2211 is a dual-output LDO regulator. The one of dual is capable of sourcing 150mA, while the another one can supply up to 300mA. Ideal for battery operated applications, the MIC2211 offers 1% accuracy, extremely low dropout voltage (80mV @ 100mA), and extremely low ground current (only 48mA total). Equipped with TTL logic compatible enable pins, the MIC2211 can be put into a zero-off-mode current state, drawing no current when disabled. Separate enable pins allow individual control of each output voltage.
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7. Camera (HV7151SP) The HV7151SP is a highly integrated single chip CMOS color image sensor implemented by proprietary Hynix 0.35um COMS sensor process realizing high sensitivity and wide dynamic range. Total pixel array size is 1170 x 880 pixels are active. So, It can supports the picture below 1Mega-pixel snap shot. Each active pixel composed of 4 transistors has a micro-lens to enhance sensitivity, and converts photon energy to analog pixel voltage. On-chip 10bit Analog to Digital Converter(ADC) ditgitizes analog pixel voltage, and on-chip Correlated Double Sampling(CDS) scheme reduces Fixed Pattern Noise(FPN) dramatically. The integration of sensor function and image processing functions make HV7151SP especially very suitable for mobile imaging systems such as IMT-2000. 8. Irda This system uses IRDA module, HSDL_3208, Agilent's. This has signals, Input data and output data. These signals are connected to MSN6200.
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QFU01
QCA01
QLC01 QSP02 QFR01
QSP01 QSP03
QCR42 QFL01 QCR20
QCR12
QSC14 QMW01
QKP01
QME01
QSH02
QMI01
QMP01 QCR05
QMO01 QVO02
QAN01 QRE01 QVO01 QCR26 QIF01 QSC13
QCR07
QRF01
QBA32 QBA33
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1. Power On
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Power On
VBATT
VDD_P VDD_C C498 27pF
C404 22UF 6.3V
C407 100nF
VDD_A
VBATT_PMI C
C499 27pF
ON_SW
C418 22UF 6.3V
C419 100nF
C420 2.2UF 6.3V
ZD401 SDB310 Q U400 PM6050-56BCCP-2C
ON_SW_SENSE_N
JIG_ON1 JIG_ON JIG_ON
C429 100nF
ZD402 DAN222TL
R407
2
22K
1
PS_HOLD
3 31 30 29
SBDT SBCK SBST
R408 33K
ADC_BYP PON_RESET/HKADC9 HKADC8 HKADC7 HKADC6 HKADC5
VBATT
SBDT SBCK SBST
VBACKUP
R409 C441 10pF
56 15 CHG_CNTB CHARGER_SEL 47 VDEF 1 VCHARGER 53 SPKR_BYP 50 SPKR_OUT/RINGER_OUT 52 SPKR_OUTB 48 SPKR_IN/RINGER_TONE 49 SPKR_INB 54 ICHARGEOUT 55 2 ICHARGE VBAT 3 BAT_FETB
BAT400 ML-414RM/F9HE
12 4 COIN_CELL N 6 TCXO_I TCXO_EN
0
C442 100PF
C444 NC
C445 100nF
VDD_MSM 36 19 VDD_BT 21 VDD_RF 8 VDD_MAIN VDD_DRV51 REF_BYP25
R405
100K
R406
10K
C426 10NF
C428 1UF
C422 4.7UF 6.3V
C423 10pF
C425 10pF
PMIC2_REF RESET_F RESET_N PM_INT_N C427 1UF VREG_SYNT
VREG_BT
32 KBDPWR_ON 27 PS_HOL D 33 CBLPWRON1 34 CBLPWRON0
C437 22UF 6.3V
C438 100nF
43 40 41 42 44 45
C421 4.7UF 6.3V
C424 10pF
10
C430 100nF 10pF C431
PON_RESETB26 28 MSM_INTERUPTB
C433 2.2UF 6.3V
38 VREG_MSM P VREG_MSM C 37 VREG_MSMA35 18 VREG_BLUET 9 VREG_SYNT 7 VREG_TCXO VREG_RFTX22 VREG_RFRX20
10pF VREG_TCXO
VREG_RFTX
17 KEYBD_DRV 23 GP2_DRV 16 GP1_DRV LCD_DRV 24 39 VIBRATOR_DRV13 XTAL_OUT 14 XTAL_IN 11 SLEEP_CLK
C439 4.7UF 6.3V
C440 10pF
5
TCXO_OUT 46 REF_GND 57 GND
VREG_RFRX
58 59 60 61 62
C446 2.2UF 6.3V
C448 1NF
C447 10pF
TCXO TCXO_EN
6.3V 1UF C432
C434
2
1
OSC400 FC-135 (0.032768MHz )
C450 15pF
R410
R411 NC
SLEEP_XTAL_I N TCXO_OUT
510 C449 NC
C451 15pF
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C435 1UF 6.3V
C436 10pF
2. Initial
Initial ZD700 GMF05LC-HS 3 ZD703 GMF05LC-HS3
ZD704 GMF05LC-HS3 6
1 7 2
1
5
7 2
4
3
8
1
5
6
1 7 2
5
5
8
8 4
3
7 2
ZD702 GMF05LC-HS3 6
1 7 2
5
8 4
3
4
3
5
8
8
3
7 2
6
ZD701 GMF05LC-HS3 6
1
ZD705 GMF05LC-HS3
6
4
4
3
F700
5 OUT
IN 1
R700
100
6 OUT
IN 2
R701
100
7 OUT
IN 3
R702
100
4
R703
100
8 OUT G
IN G 10
RGB(17)
R705
100
1 IN
OUT 5
RGB(16)
R707
100
2 IN
OUT 6
RGB(15)
R709
100
OUT 7
RGB(14)
R711
100
3 IN 4 IN 9
2.8VDV
C700 27pF
10
DEN
9
F704 100
1 IN
OUT 5
100
OUT 6
RGB(11)
R714
100
2 IN OUT 3 IN
RGB(10)
R715
100
IN
OUT 8
CN701 1 2 3 4 5 6 7 8 9
G
10
F706 RGB(9)
R716
100
1 IN
OUT 5
RGB(8)
R717
100
2 IN
OUT 6
RGB(7)
R718
100
OUT 7
RGB(6)
R719
100
3 IN 4 IN
10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25
OUT 8 GG 10
F707 RGB(5)
R720
100
1 IN
OUT 5
RGB(4)
R721
100
2 IN
OUT 6
RGB(3)
R722
100
3 IN
OUT 7
RGB(2)
R723
100
4
IN
R704
100
R706
100
IN 3 IN 4
R708
100
R710
100
G
MLCD_RESET RGB_HSYNC RGB_VSYNC RGB_DE
9
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25
50 49 48 47 46 45 44 43 42 41 40 39 38 37 36 35 34 33 32 31 30 29 28 27 26
50 49 48 47 46 45 44 43 42 41 40 39 38 37 36 35 34 33 32 31 30 29 28 27 26
5 OUT
IN 1
SLCD_RS
6 OUT
IN 2
SLCD_CS
7 OUT
IN 3
SLCD_W R
8 OUT G
IN
4
SLCD_RESET
5 OUT
IN 1
7_COLOR_EN
6 OUT
IN 2
G 10
9
F705
7 OUT 8 OUT G
IN 3 IN G 10
4
I2C_SCL I2C_SDA
9
SPKL_P SPKL_N SPKR_P
14-5602-050-000-829
OUT 8 G
IN 1 IN 2
7 OUT
F703
7 G
5 OUT 6 OUT
8 OUT G
C720 33PF
R712
91
C702 47PF
10
R713
9
C701 33PF
OUT 8
RGB(12)
9
VBATT
GG
RGB(13)
4
DSERI
F701
F702
RGB(0:17)
DCLK
RGB_CLK
SPKR_N
C722 33PF
G 0
F708 RGB(1)
R724
100
1 IN
OUT 5
RGB(0)
R725
100
2 IN
OUT 6
3 IN IN 4
OUT 7
9
OUT 8 GG 10
RCV_P RCV_N CAM_FLASH_EN0
ZD708 1 7 2
CAM_FLASH_EN1
6
5
8 3
4
GMF05LC-HS3 ZD709 GMF05LC-HS3
ZD710 GMF05LC-HS3 6
5
1 7 2
6
7 2
4
3
8 4
3
1
5
8
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3. Sim Part
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SIM
VBATT
R354 10K PS_HOLD
USIM_VCC_EN
U310 1 CE 2
GND
Q300 SI1305DL
VDD 4 3 VOUT
2S
1G
3D
U311 PC-D6-A3-H3.0S
R1180Q301B
C351 4.7UF
C352 2.2UF
C336 100nF
C337 10pF
USIM_RESET USIM_CLK
1 1 2 2 3 3
R331 10K
66 5 5 4 4 G G GG 10 9 8 7
ZD307 1
USIM_DATA
5
2
3
4
ESDALC6V1W5 C341 27PF
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4. Speaker Part (Melody)
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Speaker
MEL_VCC
2.8VDV
MEMD(7) MEMD(6) MEMD(5) MEMD(4) MEMD(3) MEMD(2) MEMD(1) MEMD(0)
R601 0
MEMA(0) MELODY_CS MEM_WE
C670 33PF
48 47
1
MEM_OE
D7 36 35 _IRQ 34 PIO0 33 PIO1 32 PIO2 31 LED 30 MTR 29 IOVDD 28
_RD
2 CLKI 3 _RST 4 TESTI
LSI_CLK MELODY_RESET
MEL_VCC
5 6
R606 0
7 R607 3.3K
C612 100nF
8 9 10
C614 1NF
C615 100nF
11 12
PLLC VDD VSS
U602 YMU769
VREF NC SPOUT2-L SPOUT1-L NC
MELODY_IRQ
R632 0 MELODY_LED MEL_VCC MEL_VCC
VDD 27
SPKR_P
SPOUT2-R26
SPKR_N
SPOUT1-R25
C616 100nF
NC 13 14 15 16 17
18 19 20 21 22 23 24 VBATT
SPKL_P SPKL_N
R633 C620 10NF
MEL_R MEL_L AMP2_IN AMP1_IN
C625 C626
220NF 220NF
R615 R616
C621 10NF
0
C622 33UF 6.3V
1K,1% 1K,1%
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C669 33PF
5. Microphone part
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Microphone
MIC_BIAS
MIC_BIAS VBATT C480 33PF
U401 R1180Q181B-TR
1
MIC_BIAS_ON
CE
VDD
C481 15pF
C490 100nF
VDD_LP
4 C452 9pF
C494 27pF
2 GND VOUT3
C453 15pF
C454 9pF
C455 15pF
C495 27pF R412 100K,1%
VDD_LP C456 1UF
C462 15pF
C457 2.2UF
2
C460 33UF 4V
R414 1.2K
C461 100nF
C463 9pF
U402 DG2011 1 IN
R413 1K
R415 100K
L402 BLM10B750SBPT
C458
15pF
C459
9pF
C493
3
NO 6
V+
COM
GND
NC
5 4
1 1 22 3 3 44 5 5 66 7 7 88 9 9 10 10 G GG
C464 NC
MIC2N
C466 100nF C491 27pF
C469 15pF
C470 9pF
C467 15pF
C468 9pF
R416 1.2K
L403 BLM10B750SBPT JACK_I N
C492 27pF
R417 1K
EAR_L
17
C471 100UF 6.3V EAR1OP
EAR_R
21 22 1 2 3 4
16
15
14
13
NC NC
ZD403 GMF05LC-HS3
D4
1S2
U404 STG3699AQTR
4S1
1-2IN
3-4IN
2S1
3S2
C476 9pF
12 11 10 9
R420 16
C475 100UF 6.3V EAR1ON
D2 5
6
7
G
11 12 13 14
VBATT
VOICE_AUDIO_MODE
KEY_3 CN400 0-1674432-1
NC
MIC2P C465 33PF
SCAN_5
8
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C477 15pF
ZD404 GMF05LC-HS3 C496 NC
G G G G
15 16 17 18
6. Key Data Input
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7. Receiver Part
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8. Back Light (for Color Main LCD)
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9. Key Back Light
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10. Camera part
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Camera
1.8VDV
2.5VDV
ZD712 GMF05LC-HS3
F709 CAM_DATA(7) CAM_DATA(5) CAM_DATA(3) CAM_DATA(1)
5 OUT
IN 1
6 OUT
1 7 2
IN 2
7 OUT
IN 3
8 OUT
IN 4
G
G 10
6
5
8 3
4
9 F710
F711 CAM_VSYNC
5 OUT
CAM_PCLK
6 OUT
IN 2
R739
7 OUT
IN 3 IN 4
*R739-Close to connecto r M_I2C_SCL
8 OUT
IN 1
G
G 10
9
0
CN704 14-5602-024-000-829 1 3 5 7 9 11 13 15 17 19 21 23
CAM_SLEEP
C723 NC
1 3 5 7 9 11 13 15 17 19 21 23
22 4 4 6 6 8 8 10 10 12 12 14 14 16 16 18 18 20 20 22 22 24 24
1 IN
OUT 5
2 IN
OUT 6
3 IN IN 4
OUT 7
9
CAM_DATA(6) CAM_DATA(4) CAM_DATA(2)
OUT 8
CAM_DATA(0)
GG 10
F712
CAM_CLK
R733
47
*R733-Close to Megachi p CAM_RESET M_I2C_SDA
1 IN
OUT 5
2 IN
OUT 6
3 IN
OUT 7
4
G 91
ZD715 GMF05LC-HS3 6
1 7 2
5
8 4
3
C710 100nF C711 47PF
C708 33PF
C709 27pF
C712 100nF
ZD717 GMF05LC-HS3 1
6
7 2
5
8 3
4
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OUT 8
IN G 0
CAM_HSYNC
11. GSM Receiver
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12. GSM Transmitter
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13. DCS Receiver
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14. DCS Transmitter
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15. WCDMA Receiver
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16. WCDMA Transmitter
SAMSUNG Proprietary-Contents may change without notice
Transmitter
VREG_RTR L100 BLM15HG 102S N1D
C100 C101 100NF 10NF
VREG_RFTX
ANT100
1 1
C105 10pF
C104 15PF
R100 1K
2 2
ANT L117 15nH
C107 150PF
L102 33nH
C111 NC
TX_AGC_AD J
C106 4.7nF
TX_QP C108 33PF
L101 3.3nH C178 1.2PF
C103 1NF
C102 33PF
CN100 KMS-158
C109 150PF
TX_QM TX_IP C112 150PF
R101
VREG_RFRX
U100 GN06011L01SA 3
C116 1NF
TX_IM
ANT 6 VDD GSM-TX 1 9 UM TS 16 IN_A GSM-RX 5 15 IN_B DCS-RX11 14 13 IN_C DCS-TX G GG GG G 24 78 1012
UMTS_ANT
C117 39PF
O UT
1
IN GG 2
C125 33PF
3
L106 18nH
L107 10nH
GSM_RXM
5
O UT IN GG
L112 10nH
2
O UT
DCS_RXP R104 NC
4
L110 5.6nH
L111 2.2nH
C129
8
RX_IM DCS_RXM
5
9
SYNTH_LOCK R105 10K
10
SBCK
VDDA TX_VCO_I N VDDA
RX_QP
DCS_INP DCS_INN
U101 RTR6200-48BCCP
RX_IP
VDDA
12
SBST
13
RF_ON_TX_ON
CP_HOLD2 FAQ2 CP2
RF_ON 14 15 16 17 18 19 20 21
C114 33PF
MOD_CP
35 34
VREG_RTR
33
DCS_RXP
32
DCS_RXM
C120 33PF
C119 1NF
C126 33PF
C127 100nF
GSM_RXP GSM_RXM
28 27
C128
26
10nF
FAQ2
25
C131 27pF
C132 27pF
RX_VCO
22 23 24 R107 100
VDD_P C136 100nF
C138 33PF
C139
C135 1NF
C137 10nF
C134 39PF
C140 33PF
33PF
CP2 R109 3.3K
C144 33PF
R111 10K
R112 10 C149 10UF 6.3V
C152 NC
L116 6.8nH
GSM_BAN D
C148 270PF
L115 8.2nH
C151 2PF
VREG_SYN T C142 33PF
C145 100nF
C146 2PF
C147 0.75PF
L114 BLM15HG 102S N1D
R110 11.3K,1%
C141 2.7NF
VREG_BT
C157 100nF
C159 10nF
C153 33PF
C154 4.7UF
C158 15pF
C155 1NF
C156 10nF
C150 33PF
VREG_RFTX
C160 1NF
OS C100 MQW 510C869M
GSM_PA_PWR_SV C161 10nF
12
R114
30
R115
30
5 1
VBATT C165 100nF
R117 180
C164 100UF 6.3V
C166 47PF
52 51 50 49
48
47
46
45
44
43
42
41
40
39
53 GND 54 GND 1
R126 10K,1%
GSM_PA_PWR_CTL
R125 8.2K C171 180PF
38
C174 1NF
4 5 6 7 8
10
R120 180
VC 10
OUT 2
2
C169 33PF
4
G G G G
14
R113 82
MOD_CP
C163 120PF
R116 39
NC
33 32
GND
R122 68
C167 22NF
R123 100
R124 100
TXVCO R127 82
R128 82
C162 1.5NF
3 6 7 9 1113
GND
NC
DCS_VCO_EN_N
C170 15pF
GND 31 DCS/PCSO UT 30 GND
U102 RF5146
GND GSM850/900O UT GND
NC
29
NC
NC
28
NC
NC
27
NC
26
NC
25
9
11
C168 1NF
8
OUT 1
SW1S W2 G GG
R119 180
R121 120
34
C173 1.2PF
R118 180
37
36 NC 35 VCC2DCS/PCS
NC VCC2GSM
3
C172 330PF
C121 100nF
31
L113 BLM15HG102SN1D R108 1K
GSM_ANT_SEL0_N
NC NC
R129 100
GSM_VCO_EN_N
C175 15pF
12 NC 13
14
15
16
C176
17
18
100PF
19
20
21
22
23
24
C177 10nF
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C115 100nF
TXVCO
EGSM_INN PLL2_VCO_I N
SBST
C133 100PF
37 36
30 EGSM_INP 29
RX_IN LOCK SBCK
11 SBDT
SBDT VDD_P C130 33PF
33PF
7
VREG_RTR
TX_MOD_CP
TX_IN
6 RX_QN
RX_IP
R106 1K
GSM_ANT_SEL1_N
5
RX_QP RX_QM
L109 2.2nH 3
TX_QN
4 VDDA
VREG_RTR C118 100NF
1 C124 33PF
O UT
R102 NC
2 TX_IP
GSM_RXP
3 4
F101 B7844
C123 39PF
C122 39PF
1
L104 10nH
F100 B7837
L105 4.7nH L108 NC
R103 1K
GSM_ANT_SEL2_N
52 515049 48 47 46 45 44 43 42 41 40 39 38 53 NC 54 NC
C113 150PF
10
C143 1NF
VREG_BT