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AN3341SC Datasheet(PDF) 3 Page - Panasonic Semiconductor

Part No. AN3341SC
Description  6-Head VCR Recording/Playback Amplifier IC
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Manufacturer  PANASONIC [Panasonic Semiconductor]
Direct Link  http://www.panasonic.com/industrial/
Logo PANASONIC - Panasonic Semiconductor

AN3341SC Datasheet(HTML) 3 Page - Panasonic Semiconductor

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ICs for VCR
AN3341SC
33 *
50
mA
I1
PB VCC = 5V
PB circuit current
Parameter
min
Condition
typ
max
Unit
Symbol
0.65 *
1.0
µVrms
N17–34
N15–34
N12–34
N10–34
N7–34
N5–34
V25
PB VCC = 5V
Input conversion noise CH1
Input conversion noise CH2
Input conversion noise CH3
Input conversion noise CH4
Input conversion noise CH5
Input conversion noise CH6
Envelope comparison output amplitude
52
56 *
60
dB
G17–34
PB VCC = 5V
CH1 gain
52
56 *
60
dB
G15–34
PB VCC = 5V
CH2 gain
52
56 *
60
dB
G12–34
PB VCC = 5V
CH3 gain
52
56 *
60
dB
G10–34
PB VCC = 5V
CH4 gain
52
56 *
60
dB
G7–34
PB VCC = 5V
CH5 gain
52
56 *
60
dB
G5–34
PB VCC = 5V
CH6 gain
1.5
2.5 *
3.5
V
S2
PB VCC = 5V
HSW threshold level
1.5
2.5 *
3.5
V
S42
PB VCC = 5V
HASW threshold level
1.5
2.5 *
3.5
V
S41
PB VCC = 5V
1.5
2.5 *
3.5
V
S38
PB VCC = 5V
Trick SW threshold level
130
200 *
270
mVP – P
V17–39
PB VCC = 5V
AGC output amplitude
3.0
dB
∆V
17–39
PB VCC = 5V
AGC control sensitivity
100
mVP – P
HSW2
(I)
PB VCC = 5V
HSW DC unbalance (I)
Normal EP/other threshold level
100
mVP – P
HSW2
(II)
PB VCC = 5V
HSW DC unbalance (II)
100
mVP – P
HSW2
(III)
PB VCC = 5V
HSW DC unbalance (III)
100
mVP – P
HASW42
(I)
PB VCC = 5V
HASW DC unbalance (I)
100
mVP – P
HASW42
(II)
PB VCC = 5V
HASW DC unbalance (II)
Auto tracking max. output
Auto tracking output at no-input
CH2/CH1 gain ratio
CH3/CH1 gain ratio
CH4/CH1 gain ratio
CH5/CH1 gain ratio
CH6/CH1 gain ratio
Rec. circuit current
SP Y Rec. current output
Normal EP Y Rec. current output ratio
Rec. chroma output ratio
Head Short ON-resistance
HSW crosstalk
PB VCC = 5V
PB VCC = 5V
PB VCC = 5V
PB VCC = 5V
PB VCC = 5V
PB VCC = 5V
PB VCC = 5V
PB VCC = 5V
PB VCC = 5V
PB VCC = 5V
PB VCC = 5V
PB VCC = 5V
PB VCC = 5V
Rec. VCC = 12V
Rec. VCC = 12V
Rec. VCC = 12V
Rec. VCC = 12V
PB VCC = 5V
PB VCC = 5V
G15–34
G17–34
G12–34
G17–34
G10–34
G17–34
G7–34
G17–34
G5–34
G17–34
V28min.
V28max.
I22
I19
I21/I19
I19C/I19
7ON–R
CTH17–34
4.0
3.8
– 2
– 2
– 2
– 2
– 2
17
– 5.5
–16
0.65 *
0.65 *
0.65 *
0.65 *
0.65 *
0.3 *
4.2 *
0 *
0 *
0 *
0 *
0 *
35 *
24.5 *
– 3 *
–12 *
1.0
1.0
1.0
1.0
1.0
1.0
2
2
2
2
2
48
32
– 0.5
– 8
(7)
(– 40)
µVrms
µVrms
µVrms
µVrms
µVrms
VP – P
V
V
dB
dB
dB
dB
dB
mA
mAP – P
dB
dB
dB
(5.5)
Note) Values with an asterisk are typical ones and not guaranteed.
The characteristics value in parentheses is not a guaranteed value, but reference one on design.
s Electrical Characteristics (Ta = 25
±2˚C )


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