DOWNLOAD Sony DCR-TRV900 Service Manual ↓ Size: 1.18 MB | Pages: 34 in PDF or view online for FREE

Model
DCR-TRV900
Pages
34
Size
1.18 MB
Type
PDF
Document
Service Manual
Brand
Device
Movie / OM
File
dcr-trv900.pdf
Date

Sony DCR-TRV900 Service Manual ▷ View online

9
4.6
2.8
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1.9
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4.6
4.6
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4.6
2.8
2.8
1.9
2.8
2.8
4.6
2.8
4.6
2.8
12, -6.5
2.8
2.8
12
-6.5
2.8
Birds
EEPR 
OM
Lens Driver
IRIS
TG
GCAM
CCD
2.8
2.8
2.8
2.8
4.6
4.6
2.8
4.6
2.8
4.6
2.8
4.6
2.8
2.8
OSD
LCD DAC
EVF DAC
IR
BBI
EVF
LCD
SIRCS
CHIME
2.8
2.8
CAM DDON
LANC
VTRDDON
EVFDDON
LCDDDON
Chime Power Cont
System reset
BACK UP
EVER
LANC DC OUT
5.2V
UNREG
Camera 
reset
Independent reset 
is used
VTR reset
LIP reset
ADA reset
EEP reset
Reset
IC
Battery
LCD driver
CAP DRV
DRM DRV
DRM PREDRV
TRF
TRW
TRX
TFD
SFD
VFD
DAC
LIP
MIC AMP
ABC
ADA
AOI
EEPROM
EEPROM
IC759
HONEY
JPFG
DRAM(16M)
DRAM(4M)
PC card I/F
20MHz CLK
Lithium battery
HI controller
Mechanism controller
Switching
power supply
for VTR block
DD converter
Switching
power supply
for camera block
Camera controller
DS converter
Angular 
velocity sensor
Power Reset Description Diagram
10
2. CAMERA CIRCUIT
2-1. Record Mode
Dichroic Prism
The incident light that is introduced from the lens block, is adjusted of its amount
by iris and enters the dichroic prism.
The incident light is separated into the three primary spectrum of R, G and B.
CCD Imager (IC100, IC101, IC102)
The CCD imager is driven by the pulses (V1 to V3, H1, H2 and PG) that are
supplied from the timing generator.
The incident light to the CCD imager is converted to the electrical signals of R,
G and B.
Sample-and-hold, AGC (IC203)
The output signal from the CCD imager is sample-and-held by the signals
(XSHIP, XSHD) that are supplied from the timing generator.  The sample-and-
hold is performed in order to ensure operation of the A/D conversion at the latter
circuit.  When the signal amplitude after sample-and-hold is small, the signal is
amplified by the AGC amplifier to obtain the sufficient amplitude.
The right end and the left end of B signal output that is introduced to this IC
from the CCD imager, is horizontally inverted due physical structure of the
dichroic prism.
A/D Converter (IC206, IC205, IC207)
The R. G. B. video signal that are output from the sample-and-hold (IC203) are
converted from analog signal to 10-bit digital signal in accordance with the
sampling frequency which is generated by the timing generator.
Digital Camera Processor (IC300)
The B channel signal is stored in a line-memory in this processor where the
right end and the left end of B signal are inverted to the correct sequence.  Then
the R. G. B. signals receive the white balance adjustment, gamma correction
and are mixed to the Y signal and the color difference signal.
Timing Generator (IC204)
The master frequency of 27 MHz is frequency divided-by-2 and is used as the
timing pulse of the camera system.
AE (Auto Exposure)
Amplitude of the video signal that is input to the digital camera processor (IC300)
is detected.  The output signal of the amplitude detection is sent to the camera
controller (IC302) that controls the iris drive amplifier (IC501) so that the lens
iris is controlled in accordance with the signal amplitude.
ND Filter
The same detection circuit as the AE operation, is used for the ND control.
When an ND filter needs to be inserted in the optical path, the message “ND
ON” is displayed on the LED and LCD screens.
11
Camera Block Diagram
12
2-2. Progressive System
2-2-1. Principle of Progressive System
What is the progressive system?
In the conventional interlaced TV system, a video frame consists of the two fields that are alternately displayed one after another.  It means that
the half the entire picture elements is displayed at a moment.
On the contrary, the progressive system displays all the picture elements (entire frame) at a time.
1: One entire frame (amount of picture elements
that is equivalent to an entire video frame) of
video output signal from the CCD imager is
written in the DRAM (IC752).nventional inter-
laced TV sy
2: The video signat are alternately displayedal that
is written in the DRAM (IC752) takes the two
outputs.  One outpentire picture elements is diut
goes to HONEY (IC756) and the other output
goes to DRAM (IC752).ontrary, the progressive
sy
3: The odd and evame) at a time.en signals that are
read out from the DRAM (IC752) as described
in the previous step 
2, are written and read to
and from the VFD (IC1501) simultaneously.
Functions of the DRAM and HONEY that are shown
on the monitor display. are illustrated in the figure in
the left.
CCD
OUT
VD
HONEY
DRAM
HONEY 
+
 IC752
OUT
VFD
RAM
VFD
OUT
VD
WRITE
READ
1st
2nd
READ
WRITE
A1
B1
A2
B2
IC752
WRITE
READ
WRITE
Write
 2 Read
 1
 3
A1B1A2B2...........
A1A2...
B1B2...
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