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DIGITAL HD VIDEO CAMERA RECORDER.
SERVICE MANUAL VERSION 1.0 2006.10
PART#(9-852-154-31)
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HDR-FX7/FX7E RMT-831
SERVICE MANUAL LEVEL 2
US Model
Ver. 1.0 2006.10 Canadian Model
Revision History AEP Model
UK Model
How to use
E Model
Acrobat Reader Australian Model
Chinese Model
Hong Kong Model
Korea Model
Japanese Model
N MECHANISM (MDX-N110) Photo: HDR-FX7
Link
SPECIFICATIONS DISASSEMBLY SCHEMATIC DIAGRAMS
MODEL INFORMATION TABLE BLOCK DIAGRAMS PRINTED WIRING BOARDS
SERVICE NOTE FRAME SCHEMATIC DIAGRAMS REPAIR PARTS LIST
The components identified by Les composants identifiés par une
mark 0 or dotted line with marque 0 sont critiques pour la
mark 0 are critical for safety. sécurité.
Replace only with part num- Ne les remplacer que par une pièce
ber specified. portant le numéro spécifié.
DIGITAL HD VIDEO CAMERA RECORDER
2006J0500-1
HDR-FX7/FX7E_L2 © 2006.10
9-852-154-31 Sony EMCS Co. Published by Kohda TEC
These specifications are extracted
from instruction manual of HDR-FX7.
ENGLISH JAPANESE
SPECIFICATIONS
System Minimum illumination Storage temperature
Video recording system (HDV) 4 lx (lux) (F 1.6) -20 °C to + 60 °C (-4 °F to + 140 °F)
*1 "Exif" is a file format for still images, Dimensions (approx.)
2 rotary heads, Helical scanning system
established by the JEITA (Japan Electronics 145 × 156 × 322 mm
Video recording system (DV)
and Information Technology Industries (5 3/4 × 6 1/4 × 12 3/4 in.) (w/h/d)
2 rotary heads, Helical scanning system
Association). Files in this format can have including the projecting parts
Still image recording system
additional information such as your 145 × 156 × 322 mm
Exif Ver. 2.2*1
camcorder's setting information at the time (5 3/4 × 6 1/4 × 12 3/4 in.) (w/h/d)
Audio recording system (HDV)
of recording. including the projecting parts with
Rotary heads, MPEG-1 Audio Layer -2,
*2 The unique pixel array of Sony's ClearVid batterypack NP-F570
Quantization: 16 bits (Fs 48 kHz, stereo)
CMOS Sensor and image processing system Mass (approx.)
transfer rate: 384 kbps
(new Enhanced Imaging Processor) allows 1.4 kg (3 lb 2 oz) main unit only 1.6 kg
Audio recording system (DV)
for still image resolution equivalent to twice (3 lb 10 oz) including the NP-F570
Rotary heads, PCM system
that of the image sensor's effective pixel rechargeable battery pack, cassette, and
Quantization: 12 bits (Fs 32 kHz, stereo 1, count. lens hood with lens cover
stereo 2), 16 bits (Fs 48 kHz, stereo) *3 The focal length figures are actual figures
Supplied accessories
Video signal resulting from wide angle pixel read out.
NTSC color, EIA standards AC Adaptor (1)
Output connectors Power cord (1)
1080/60i specification
Wireless Remote Commander (1)
Usable cassette AUDIO/VIDEO output A/V connecting cable (1)
Mini DV cassette with the mark 10-pin connector Component video cable (1)
printed Video signal: 1 Vp-p, 75 (ohms), USB cable (1)
Tape speed (HDV) unbalanced Large eyecup(1)
Approx. 18.81 mm/s Luminance signal: 1 Vp-p, 75 (ohms), Rechargeable battery pack NP-F570 (1)
Tape speed (DV) Lens hood with lens cover (1)
unbalanced
Operating Guide (1)
SP: Approx. 18.81 mm/s Chrominance signal: 0.286 Vp-p, 75
See page 5-41.
LP: Approx. 12.56 mm/s (ohms), unbalanced
Recording/playback time (HDV) Audio signal: 327 mV (at load impedance AC Adaptor AC-L15A
60 min (using a DVM60 cassette) 47 k (kilohms)), Output impedance with Power requirements
Recording/playback time (DV) less than 2.2 k (kilohms) AC 100 - 240 V, 50/60 Hz
SP: 60 min (using a DVM60 cassette) COMPONENT OUT jack Current consumption
LP: 90 min (using a DVM60 cassette) Y: 1 Vp-p, 75 (ohms), unbalanced PB/ 0.35 - 0.18 A
Fast forward/rewind time PR, CB/CR: +/- 350 mVp-p Power consumption
Approx. 2 min 40 s (using a DVM60 HDMI OUT jack 18 W
cassette and rechargeable battery pack) TypeA (19-pin) Output voltage
Approx. 1 min 45 s (using a DVM60
DC 8.4 V*
cassette and AC Adaptor) Input/Output connectors Operating temperature
Viewfinder LANC jack 0 °C to 40 °C (32 °F to 104 °F)
Electric viewfinder (color) Stereo mini-minijack (Ø 2.5 mm)
Image device Storage temperature
4.5 mm (1/4 type) 3CMOS sensor
USB jack -20 °C to + 60 °C (-4 °F to + 140 °F)
mini-B Dimensions (approx.)
Recording Pixels (HDV/DV16:9 still
recording):
HDV/DV jack 56 × 31 × 100 mm
Max. 1.20 Mega (1 440 × 810) pixels *2
i.LINK interface (IEEE 1394, 4-pin (2 1/4 × 1 1/4 × 4 in.) (w/h/d)
connector S100) excluding the projecting parts
Gross: Approx. 1 120 000 pixels
Effective (movie, 4:3): Mass (approx.)
LCD screen 190 g (6.7 oz) excluding the power cord
778 000 pixels
Picture * See the label on the AC Adaptor for other
Effective (movie, 16:9):
8.8 cm (3.5 type, aspect ratio 16:9) specifications.
1 037 000 pixels
Total dot number
Effective (still, 4:3): Rechargeable batterypack NP-F570
211 200 (960 × 220)
778 000 pixels
Maximum output voltage
Effective (still, 16:9):
1 037 000 pixels
General DC 8.4 V
Power requirements Output voltage
Lens
DC 7.2 V (battery pack) DC 7.2 V
Carl Zeiss Vario-Sonnar T
Capacity
20 × (Optical), Approx. 30 × (Digital, when DC 8.4 V (AC Adaptor)
Average power consumption 15.8 Wh (2 200 mAh)
[D.EXTENDER] is set to [ON])
During camera recording using the Dimensions (approx.)
Focal length
viewfinder with normal brightness: 38.4 × 20.6 × 70.8mm
f=3.9 ~ 78 mm (5/32 ~ 3 1/8 in.)
HDV recording 5.9 W (1 9/16 × 13/16 × 2 7/8in.) (w/h/d)
When converted to a 35 mm still camera *3
DV recording 5.7 W Mass (approx.)
37.4 ~ 748mm (1 1/2 ~ 29 1/2 in.) (16:9), 100 g (3.5 oz)
During camera recording using the
45.7 ~ 914 mm (1 13/16 ~ 36 in.) (4:3) Operating temperature
LCD with normal brightness:
F1.6 ~ 2.8 0 °C to 40 °C (32 °F to 104 °F)
HDV recording 5.9 W
Filter diameter: 62 mm (2 1/2 in.) Type
DV recording 5.7 W
Color temperature Lithium ion
Operating temperature
[INDOOR] (3 200 K),
0 °C to + 40 °C (32 °F to 104 °F) Design and specifications are subject to change without
[OUTDOOR] (5 800 K) notice.
HDR-FX7/FX7E_L2
--2--
ENGLISH JAPANESE
T
2 20 30 8.8cm 3.5
HDV [ ] 16:9
2 f=3.9 78mm 211 200
DV 35mm *3 960 220
37.4 748mm 16:9
Exif Ver.2.2*1 4:3 45.7 914mm
F1.6 2.8
62mm
7.2V
HDV MPEG-1 Audio Layer2 3 200K DC 8.4V
16 Fs48kHz 5 800K
384kbps
8 lx F1.6
PCM HDV 5.9W
DV 12 Fs32kHz DV 5.7W
1 2 1
* JEITA
16 Fs48kHz HDV 5.9W
NTSC EIA DV 5.7W
1080/60i 0 +40
DV *2 CMOS 20 +60
145 156 322mm
18.81mm/
HDV 2
SP 18.81mm/ 145 156 322mm
DV LP 12.56mm/ *3
NP-F570
/ 60 DVM60
HDV
A/V OUT 10 1.4kg
/ SP 60 DVM60
DV LP 90 DVM60 1 Vp-p 75 1.6kg NP-F570
Y 1Vp-p 75
C 0.286Vp-p
2 40 DVM60 75
AC 1
327mV 47k
1 45 DVM60 2.2 k AV 1
COMPONE D1/D3 D
4.5mm 1/4 3CMOS NT OUT 1
Y 1Vp-p 75 USB 1
112 PB/PR. CB/CR 350mV 75 1
120
1
*2 1440 810 HDV/ HDMI OUT A 19
DV 16 9 1
4 3 1
78
16 9 /
104
4 3 LANC
78 ø 2.5
16 9 USB mini-B
104 HDV/DV i.LINK IEEE1394 4
S100
HDR-FX7/FX7E_L2
--3--
Model information table
Model HDR-FX7 HDR-FX7E
AEP, UK, E, AUS,
Destination US, CND, E, KR, J
CH, HK
Color system NTSC PAL
· Abbreviation
AR : Argentine model
AUS : Australian model
BR : Brazilian model
CH : Chinese model
CND : Canadian model
EE : East European model
HK : Hong Kong model
J : Japanese model
JE : Tourist model
KR : Korea model
NE : North European model
HDR-FX7/FX7E_L2
--4--
ENGLISH JAPANESE
CAUTION
Danger of explosion if battery is incorrectly replaced.
Replace only with the same or equivalent type.
SAFETY-RELATED COMPONENT WARNING!! ATTENTION AU COMPOSANT AYANT RAPPORT
À LA SÉCURITÉ!
COMPONENTS IDENTIFIED BY MARK 0 OR DOTTED LINE WITH LES COMPOSANTS IDENTIFÉS PAR UNE MARQUE 0 SUR LES
MARK 0 ON THE SCHEMATIC DIAGRAMS AND IN THE PARTS DIAGRAMMES SCHÉMATIQUES ET LA LISTE DES PIÈCES SONT
LIST ARE CRITICAL TO SAFE OPERATION. REPLACE THESE CRITIQUES POUR LA SÉCURITÉ DE FONCTIONNEMENT. NE
COMPONENTS WITH SONY PARTS WHOSE PART NUMBERS REMPLACER CES COMPOSANTS QUE PAR DES PIÈSES SONY
APPEAR AS SHOWN IN THIS MANUAL OR IN SUPPLEMENTS DONT LES NUMÉROS SONT DONNÉS DANS CE MANUEL OU
PUBLISHED BY SONY. DANS LES SUPPÉMENTS PUBLIÉS PAR SONY.
SAFETY CHECK-OUT
After correcting the original service problem, perform the following
safety checks before releasing the set to the customer.
1. Check the area of your repair for unsoldered or poorly-soldered Unleaded solder
connections. Check the entire board surface for solder splashes Boards requiring use of unleaded solder are printed with the lead-
and bridges. free mark (LF) indicating the solder contains no lead.
2. Check the interboard wiring to ensure that no wires are (Caution: Some printed circuit boards may not come printed with
the lead free mark due to their particular size.)
"pinched" or contact high-wattage resistors.
3. Look for unauthorized replacement parts, particularly
: LEAD FREE MARK
transistors, that were installed during a previous repair. Point
Unleaded solder has the following characteristics.
them out to the customer and recommend their replacement.
· Unleaded solder melts at a temperature about 40°C higher than
4. Look for parts which, through functioning, show obvious signs ordinary solder.
of deterioration. Point them out to the customer and Ordinary soldering irons can be used but the iron tip has to be
recommend their replacement. applied to the solder joint for a slightly longer time.
5. Check the B+ voltage to see it is at the values specified. Soldering irons using a temperature regulator should be set to
6. Flexible Circuit Board Repairing about 350°C.
· Keep the temperature of the soldering iron around 270°C Caution: The printed pattern (copper foil) may peel away if the
during repairing. heated tip is applied for too long, so be careful!
· Do not touch the soldering iron on the same conductor of the · Strong viscosity
Unleaded solder is more viscous (sticky, less prone to flow) than
circuit board (within 3 times).
ordinary solder so use caution not to let solder bridges occur such
· Be careful not to apply force on the conductor when soldering as on IC pins, etc.
or unsoldering. · Usable with ordinary solder
It is best to use only unleaded solder but unleaded solder may
also be added to ordinary solder.
HDR-FX7/FX7E_L2
--5--
ENGLISH JAPANESE
·
·
·
0
·
·
·
· ·
HDR-FX7/FX7E_L2
--6--
TABLE OF CONTENTS
Section Title Page
1. SERVICE NOTE
1-1. Power Supply During Repairs ········································· 1-1
1-2. To Take Out a Cassette when not Eject (Force Eject) ····· 1-1
1-3. Setting the "Forced Power On" Mode ····························· 1-1
1-4. Using Service Jig ····························································· 1-2
1-5. Self-diagnosis Function ··················································· 1-2
1-6. Method of Coping with Shift Lens Error ························ 1-4
2. DISASSEMBLY
2-1. Disassembly ····································································· 2-2
2-2. Method of Lens Unit Disassembly ·································· 2-9
3. BLOCK DIAGRAMS
3-1. Overall Block Diagram (1/8) ··········································· 3-1
3-2. Overall Block Diagram (2/8) ··········································· 3-2
3-3. Overall Block Diagram (3/8) ··········································· 3-3
3-4. Overall Block Diagram (4/8) ··········································· 3-4
3-5. Overall Block Diagram (5/8) ··········································· 3-5
3-6. Overall Block Diagram (6/8) ··········································· 3-6
3-7. Overall Block Diagram (7/8) ··········································· 3-7
3-8. Overall Block Diagram (8/8) ··········································· 3-8
3-9. Power Block Diagram (1/4) ············································· 3-9
3-10. Power Block Diagram (2/4) ··········································· 3-10
3-11. Power Block Diagram (3/4) ··········································· 3-11
3-12. Power Block Diagram (4/4) ··········································· 3-12
4. PRINTED WIRING BOARDS AND
SCHEMATIC DIAGRAMS
4-1. Frame Schematic Diagrams ············································· 4-1
4-2. Schematic Diagrams ························································ 4-3
4-3. Printed Wiring Boards ··················································· 4-43
4-4. Mounted Parts Location ················································ 4-65
5. REPAIR PARTS LIST
5-1. Exploded Views ······························································· 5-2
5-2. Electrical Parts List ······················································· 5-17
HDR-FX7/FX7E_L2
--7--
1. SERVICE NOTE ENGLISH JAPANESE
1-1. POWER SUPPLY DURING REPAIRS
In this unit, about 10 seconds after power is supplied to the battery terminal using the regulated power supply (8.4V), the power is shut off so
that the unit cannot operate.
These following method is available to prevent this.
Method:
Use the AC power adaptor (AC-L15A).
1-2. TO TAKE OUT A CASSETTE WHEN NOT EJECT (FORCE EJECT)
1 Refer to "2. DISASSEMBLY" to remove the mechanism deck block.
2 Supply +4.5V from the DC power supply to the loading motor and unload with a pressing the cassette compartment.
Loading motor
DC power supply
(+ 4.5Vdc)
1-3. SETTING THE "FORCED POWER ON" MODE
It is possible to turn on power by adjustment remote commander (RM-95 or NEW LANC JIG).
Operate the VTR function using the adjustment remote commander.
1-3-1. Setting the "Forced Camera Power ON" Mode
1) Select page: 0, address: 01, and set data:01.
2) Select page: A, address: 10, set data:01 and press the "PAUSE (Write) " button of the adjustment remote commander.
1-3-2. Setting the "Forced VTR Power ON" Mode
1) Select page: 0, address: 01, and set data:01.
2) Select page: A, address: 10, set data:02 and press the "PAUSE (Write) " button of the adjustment remote commander.
1-3-3. Exiting the "Forced Power ON" Mode
1) Select page: 0, address: 01, and set data:01.
2) Select page: A, address: 10, set data:00 and press the "PAUSE (Write) " button of the adjustment remote commander.
3) Select page: 0, address: 01, and set data: 00.
HDR-FX7/FX7E_L2
1-1
ENGLISH JAPANESE
1-4. USING SERVICE JIG
Connect the CPC-7 jig connector (J-6082-382-A) to the CN1014 on the TT-003 board.
CPC-7
(J-6082-382-A)
16
9
16
TT-003 BOARD
CN1014
(SIDE B)
1
8
1
1-5. SELF-DIAGNOSIS FUNCTION
1-5-1. Self-diagnosis Function 1-5-2. Self-diagnosis Display
When problems occur while the unit is operating, the self-diagnosis When problems occur while the unit is operating, the counter of the
function starts working, and displays on the viewfinder or LCD viewfinder or LCD screen shows a 4-digit display consisting of an
screen what to do. alphabet and numbers, which blinks at 3.2 Hz. This 5-character
Details of the self-diagnosis functions are provided in the Instruction display indicates the "repaired by:", "block" in which the problem
manual. occurred, and "detailed code" of the problem.
Viewfinder or LCD screen
C:31:11
Blinks at 3.2Hz
C 31 11
Repaired by: Block Detailed Code
C : Corrected by customer Indicates the appropriate Refer to "1-5-3. Self-diagnosis Code Table".
H : Corrected by dealer step to be taken.
E : Corrected by service E.g.
engineer 31 ....Reload the tape.
32 ....Turn on power again.
HDR-FX7/FX7E_L2
1-2
ENGLISH JAPANESE
1-5-3. Self-diagnosis Code Table
Self-diagnosis Code
Repaired by:
Block Detailed Symptom/State Correction
Function Code
C 0 4 0 0 Non-standard battery is used. Use the InfoLITHIUM battery.
C 2 1 0 0 Condensation. Remove the cassette, and insert it again after one hour.
C 2 2 0 0 Video head is dirty. Clean with the optional cleaning cassette.
LOAD direction. Loading does not
C 3 1 1 0 Load the tape again, and perform operations from the beginning.
complete within specified time
UNLOAD direction. Loading does not
C 3 1 1 1 Load the tape again, and perform operations from the beginning.
complete within specified time
C 3 1 2 0 T reel side tape slacking when unloading. Load the tape again, and perform operations from the beginning.
C 3 1 2 1 S reel side tape slacking when unloading. Load the tape again, and perform operations from the beginning.
C 3 1 2 2 T reel fault. Load the tape again, and perform operations from the beginning.
C 3 1 2 3 S reel fault. Load the tape again, and perform operations from the beginning.
C 3 1 3 0 FG fault when starting capstan. Load the tape again, and perform operations from the beginning.
C 3 1 3 1 FG fault during normal capstan operations. Load the tape again, and perform operations from the beginning.
C 3 1 4 0 FG fault when starting drum. Load the tape again, and perform operations from the beginning.
C 3 1 4 1 PG fault when starting drum. Load the tape again, and perform operations from the beginning.
C 3 1 4 2 FG fault during normal drum operations. Load the tape again, and perform operations from the beginning.
C 3 1 4 3 PG fault during normal drum operations. Load the tape again, and perform operations from the beginning.
C 3 1 4 4 Phase fault during normal drum operations. Load the tape again, and perform operations from the beginning.
LOAD direction loading motor time- Remove the battery or power cable, connect, and perform
C 3 2 1 0
out. operations from the beginning.
UNLOAD direction loading motor Remove the battery or power cable, connect, and perform
C 3 2 1 1
time-out. operations from the beginning.
T reel side tape slacking when Remove the battery or power cable, connect, and perform
C 3 2 2 0
unloading. operations from the beginning.
S reel side tape slacking when Remove the battery or power cable, connect, and perform
C 3 2 2 1
unloading. operations from the beginning.
Remove the battery or power cable, connect, and perform
C 3 2 2 2 T reel fault. operations from the beginning.
Remove the battery or power cable, connect, and perform
C 3 2 2 3 S reel fault. operations from the beginning.
Remove the battery or power cable, connect, and perform
C 3 2 3 0 FG fault when starting capstan.
operations from the beginning.
FG fault during normal capstan Remove the battery or power cable, connect, and perform
C 3 2 3 1
operations. operations from the beginning.
Remove the battery or power cable, connect, and perform
C 3 2 4 0 FG fault when starting drum.
operations from the beginning.
Remove the battery or power cable, connect, and perform
C 3 2 4 1 PG fault when starting drum.
operations from the beginning.
FG fault during normal drum Remove the battery or power cable, connect, and perform
C 3 2 4 2
operations. operations from the beginning.
PG fault during normal drum Remove the battery or power cable, connect, and perform
C 3 2 4 3
operations. operations from the beginning.
Phase fault during normal drum Remove the battery or power cable, connect, and perform
C 3 2 4 4
operations. operations from the beginning.
Remove the battery or power cable, connect, and perform
operations from the beginning.
Difficult to adjust focus If it does not recover, inspect the focus MR sensor of lens block
C 3 2 6 0
(Cannot initialize focus.) (Pin wl, ea of CN5802 on the YY-003 board).
If not faulty, inspect the focus motor drive circuit
(IC6004 on the YY-003 board).
HDR-FX7/FX7E_L2
1-3
ENGLISH JAPANESE
Self-diagnosis Code
Repaired by:
Block Detailed Symptom/State Correction
Function Code
Inspect the zoom MR sensor of lens block (Pin ed, eg of CN5802
Zoom operations fault on the YY-003 board) when zooming is performed when the zoom
E 6 1 1 0
(Cannot initialize zoom lens.) switch is operated and the zoom motor drive circuit (IC6004 on
the YY-003 board) when zooming is not performed.
Focus lens initializing failure and zoom
E 6 1 1 1 lens initializing failure occur simulta- Check both C: 32: 60 and E: 61: 10 of the self-diagnosis code.
neously.
Steadyshot function does not work well.
Inspect pitch angular velocity sensor (SE8001 on the JJ-004
E 6 2 0 0 (With pitch angular velocity sensor output
board) peripheral circuits.
stopped.)
Steadyshot function does not work well.
Inspect yaw angular velocity sensor (SE8002 on the JJ-004
E 6 2 0 1 (With yaw angular velocity sensor output
board) peripheral circuits.
stopped.)
Refer to [1-6-1. E : 62 : 02 (Abnormality of IC for Steadyshot)
E 6 2 0 2 Abnormality of IC for steadyshot.
Occurred].
IC for steadyshot and micro controller
E 6 2 0 3 Inspect the steadyshot circuit (IC6203 on the YY-003 board).
communication abnormality among.
Refer to [1-6-2. E : 62 : 10 (Shift Lens Initializing Failure)
E 6 2 1 0 Shift lens initializing failure
Occurred].
Refer to [1-6-3. E : 62 : 11 (Shift Lens Overheating (Pitch))
E 6 2 1 1 Shift lens overheating (Pitch)
Occurred].
Refer to [1-6-4. E : 62 : 12 (Shift Lens Overheating (Yaw))
E 6 2 1 2 Shift lens overheating (Yaw)
Occurred].
1-6. METHOD OF COPING WITH SHIFT LENS ERROR
YY-003 BOARD (SIDE A)
about 330 msec
Note: The length of low section will vary a little depending on the
conditions.
Fig. 2
Change in output voltage of R6233
IC6203
R6242 R6244
R6233
Fig. 1
Measurement points on the YY-003 board
HDR-FX7/FX7E_L2
1-4
ENGLISH JAPANESE
1-6-1. E : 62 : 02 [Abnormality of IC for Steadyshot] Occurred
Order Procedure
1 Turn the power OFF.
While measuring with an oscilloscope the output voltage of R6233 in the periphery of IC6203 on the YY-003 board, turn the
2
power ON to check that the output voltage immediately after the power on change as shown in Fig. 2.
If the output voltage change as shown in Fig. 2, replace the lens block (Note). If it does not change as shown in Fig. 2, inspect
3
the camera control circuit (IC4201 of TT-003 board) periphery.
Note: When the lens block was replaced, execute a necessary adjustment items referring to Service Manual, ADJ.
After the adjustment, make sure with the STEADYSHOT turned ON that the steadyshot functions appropriately in the
handheld operation.
1-6-2. E : 62 : 10 [Shift Lens Initializing Failure] Occurred
Connect the adjustment remote commander (RM-95 or NEW LANC JIG) and perform the following process.
Order Page Address Data Procedure
1 0 01 01
2 0 10 07
F
3 04 Read the data value and assume it as D04.
(7F)
F Change the data and check that it has been changed. If no value changes or if value is 00 or FF, inspect
4 04
(7F) the EEPROM (IC4202 of TT-003 board). If value changes, proceed to the order 5.
F
5 04 D04 Press PAUSE (Write) button.
(7F)
F
6 05 Read the data value and assume it as D05.
(7F)
F Change the data and check that it has been changed. If no value changes or if value is 00 or FF, inspect
7 05
(7F) the EEPROM (IC4202 of TT-003 board). If value changes, proceed to the order 8.
F
8 05 D05 Press PAUSE (Write) button.
(7F)
9 0 10 00
10 0 01 00
11 Perform "PSD Sensor Gradient Adjustment". (Note 1)
12 Turn the power OFF and ON again.
13 Check that no error occurs. If an error occurs, replace the lens block (Note 2).
Note 1: Perform adjustment by referring to "SD Sensor Gradient Adjustment" in Service Manual, ADJ. After the adjustment, be
sure to perform "Optical Axis Adjustment" and "Angular Velocity Sensor Sensitivity Adjustment".
Note 2: When the lens block was replaced, execute a necessary adjustment items referring to Service Manual, ADJ.
After the adjustment, make sure with the STEADYSHOT turned ON that the steadyshot functions appropriately in the
handheld operation.
HDR-FX7/FX7E_L2
1-5
ENGLISH JAPANESE
1-6-3. E : 62 : 11 [Shift Lens Overheating (Pitch)] Occurred
Connect the adjustment remote commander (RM-95 or NEW LANC JIG) and perform the following process.
Order Page Address Data Procedure
1 0 01 01
2 0 10 07
D
3 46 F0 Press PAUSE (Write) button.
(7D)
D
4 48 01 Press PAUSE (Write) button. (Note 1)
(7D)
D
5 48 00 Press PAUSE (Write) button.
(7D)
D
6 46 10 Press PAUSE (Write) button.
(7D)
D
7 48 01 Press PAUSE (Write) button. (Note 1)
(7D)
D
8 48 00 Press PAUSE (Write) button.
(7D)
9 0 10 00
10 0 01 00
Check if the shift lens moves while setting the order 3 to 8. If the shift lens does not move, replace the
11
lens block (Note 2). When the shift lens moved, proceed to the order 12.
While setting the order 3 to 8, measure with an oscilloscope the output voltage of R6242 in the periphery of
12
IC6203 on the YY-003 board to check the output voltage varies.
If the output voltage does not vary, replace the lens block (Note 2). When the output voltage varied,
13
proceed to the order 14.
14 Turn the power OFF.
While measuring with an oscilloscope the output voltage of R6233 in the periphery of IC6203 on the
15
YY-003 board, turn the power ON to check that the output voltage immediately after the power on
change as shown in Fig. 2.
If the output voltage change as shown in Fig. 2, replace the lens block (Note 2). If it does not change as
16
shown in Fig. 2, inspect the camera control circuit (IC4201 of TT-003 board) periphery.
Note 1: Finish this operation within 10 seconds. If it is likely to take more than 10 seconds, set page: D (7D), address: 48, data:
00, and then retry.
Note 2: When the lens block was replaced, execute a necessary adjustment items referring to Service Manual, ADJ.
After the adjustment, make sure with the STEADYSHOT turned ON that the steadyshot functions appropriately in the
handheld operation.
HDR-FX7/FX7E_L2
1-6
ENGLISH JAPANESE
1-6-4. E : 62 : 12 [Shift Lens Overheating (Yaw)] Occurred
Connect the adjustment remote commander (RM-95 or NEW LANC JIG) and perform the following process.
Order Page Address Data Procedure
1 0 01 01
2 0 10 07
D
3 47 F0 Press PAUSE (Write) button.
(7D)
D
4 49 01 Press PAUSE (Write) button. (Note 1)
(7D)
D
5 49 00 Press PAUSE (Write) button.
(7D)
D
6 47 10 Press PAUSE (Write) button.
(7D)
D
7 49 01 Press PAUSE (Write) button. (Note 1)
(7D)
D
8 49 00 Press PAUSE (Write) button.
(7D)
9 0 10 00
10 0 01 00
Check if the shift lens moves while setting the order 3 to 8. If the shift lens does not move, replace the
11
lens block (Note 2). When the shift lens moved, proceed to the order 12.
While setting the order 3 to 8, measure with an oscilloscope the output voltage of R6244 in the periphery of
12
IC6203 on the YY-003 board to check the output voltage varies.
If the output voltage does not vary, replace the lens block (Note 2). When the output voltage varied,
13
proceed to the order 14.
14 Turn the power OFF.
While measuring with an oscilloscope the output voltage of R6233 in the periphery of IC6203 on the
15
YY-003 board, turn the power ON to check that the output voltage immediately after the power on
change as shown in Fig. 2.
If the output voltage change as shown in Fig. 2, replace the lens block (Note 2). If it does not change as
16
shown in Fig. 2, inspect the camera control circuit (IC4201 of TT-003 board) periphery.
Note 1: Finish this operation within 10 seconds. If it is likely to take more than 10 seconds, set page: D (7D), address: 49, data:
00, and then retry.
Note 2: When the lens block was replaced, execute a necessary adjustment items referring to Service Manual, ADJ.
After the adjustment, make sure with the STEADYSHOT turned ON that the steadyshot functions appropriately in the
handheld operation.
HDR-FX7/FX7E_L2
1-7
1. SERVICE NOTE ENGLISH JAPANESE
1
2
HDR-FX7/FX7E_L2
1-8
ENGLISH JAPANESE
CPC-7
(J-6082-382-A)
16
9
16
TT-003 BOARD
CN1014
(SIDE B)
1
8
1
C:31:11
C 31 11
HDR-FX7/FX7E_L2
1-9
ENGLISH JAPANESE
C 0 4 0 0
C 2 1 0 0
C 2 2 0 0
C 1 0
C 3 1 1 1
C 3 1 2 0
C 3 1 2 1
C 3 1 2 2
C 3 1 2 3
C 3 1 3 0
C 3 1 3 1
C 3 1 4 0
C 3 1 4 1
C 3 1 4 2
C 3 1 4 3
C 3 1 4 4
C 3 2 1 0
C 3 2 1 1
C 3 2 2 0
C 3 2 2 1
C 3 2 2 2
C 3 2 2 3
C 3 2 3 0
C 3 2 3 1
C 3 2 4 0
C 3 2 4 1
C 3 2 4 2
C 3 2 4 3
C 3 2 4 4
C 3 2 6 0
wl ea
HDR-FX7/FX7E_L2
1-10
ENGLISH JAPANESE
ed eg
YY-003 BOARD (SIDE A)
IC6203
R6242 R6244
R6233
HDR-FX7/FX7E_L2
1-11
ENGLISH JAPANESE
HDR-FX7/FX7E_L2
1-12
ENGLISH JAPANESE
HDR-FX7/FX7E_L2
1-13
ENGLISH JAPANESE
HDR-FX7/FX7E_L2
1-14E
2. DISASSEMBLY
NOTE FOR REPAIR
· Make sure that the flat cable and flexible board are not cracked of bent at the terminal. Cut and remove the part of gilt
Do not insert the cable insufficiently nor crookedly. which comes off at the point.
(Be careful or some
· When remove a connector, don't pull at wire of connector. It is possible that a wire is snapped. pieces of gilt may be left inside)
· When installing a connector, don't press down at wire of connector.
It is possible that a wire is snapped.
NOTE FOR DISCONNECTING THE HARNESS (COAXIAL CABLE)
When disconnecting the harness (coaxial cable), do not pull the
harness part but pull off the connector body with tweezers etc.
Harness (coaxial cable)
Tweezers etc.
HDR-FX7/FX7E_L2
2-1
HELP
2-1. DISASSEMBLY
EXPLODED VIEW HARDWARE LIST
2-1-1. OVERALL SECTION-1
Follow the disassembly in the numerical order given.
1 Handle Section (1-1 to 1-10)
2 Cabinet (L) Section (2-1 to 2-5)
1-9 (#49)
1-8 (#49)
1 Handle Section
2 Cabinet (L) Section
2-1 (#49)
2-2 (#49) 1-1 (#49)
1-7
1-6 1-5
1-10
(Claw)
2-5
2-4 1-4 (Claw)
1-3 (#49)
1-2
2-3 (#49)
(Open the
LCD Panel)
HDR-FX7/FX7E_L2
2-2
2-1-2. OVERALL SECTION-2
Follow the disassembly in the numerical order given. EXPLODED VIEW HARDWARE LIST
1 Cabinet (R) Section (1-1 to 1-16)
2 Mechanism Deck (2-1 to 2-12)
1-9 (#49)
1 Cabinet (R)
1-16
Section
1-15
1-6
1-5
2-3
1-4 1-14
1-3
(#49)
(#49)
2-1 (#50) 1-2
1-1 (#49)
2-12 2-11
(#15)
1-7
2-10 (#49)
1-8
3 1-10 (#49) 1-11 (#49)
-00 2-4
NN
2 Mechanism
Deck 2-8
2-9 (#50)
2-2 (#50) 2-7
2-5
2-6 1-12 (#50) 1-13 (#50)
HDR-FX7/FX7E_L2
2-3
2-1-3. OVERALL SECTION-3
Follow the disassembly in the numerical order given. EXPLODED VIEW HARDWARE LIST
1 BT Block (1-1 to 1-9)
2 OO-003 Board (2-1 to 2-2)
3 TT-003 Board (3-1 to 3-14)
1-5
3-7
2 OO-003 Board
1-2 (#50)
2-2 (#50)
1-3
(Claw)
3TT-003
3-12 (#50) Board 1-4
1-1
2-1
3-1
1-9 (#49)
3-6
3-5 -
YY
(#53) 0 03
3-13
(Claw) 1-8
3-4
1-7 (#49)
(#50)
1-6
3-3
1 BT Block
3-2
3-8
(Note) 3-11 3-14
3-9 3-10