
Electrical Characteristics (Cont’d):
(T
A
= +25
°
C, V
CC
= 15V, R
L
= 5.6k
unless otherwise specified)
Parameter
Symbol
Test Conditions
R
L
= 5.6k
R
L
= 5.6k
R
L
= 5.6k
R
L
= 5.6k
R
L
= 5.6k
Min
Typ
Max
Unit
Chroma Signal Input Terminal Voltage
V
4
V
10
–
3.8
–
V
Sub
–
Carrier Signal Input Terminal Voltage
–
1.35
–
V
Difference Voltage Between Terminals
–
–
0.4
V
Output Voltage Temperature Coefficient
–
3.0
–
+3.0
mV/
°
C
mV/
°
C
Output Difference Voltage Temperature
Coefficient
–
2.0
–
+2.0
Hue Circuit Output Current
I
12
Pin9: Open
–
2.1
–
mA
Dynamic Characteristics
(f = 3.58MHz)
R
–
Y Output Voltage
G
–
Y Output Voltage
V
R
–
Y
V
G
–
Y
V
B
–
Y
= 2.5V
P
–
P
, e
r
= 0.5V
P
–
P
1.9
2.1
2.3
V
P
–
P
V
P
–
P
0.5
0.6
0.7
Relative Output Phase
R
–
Y to B
–
Y Output
G
–
Y to B
–
Y Output
R
110
115
120
deg.
G
247
255
263
deg.
B
–
Y Output Voltage
V
B
–
Y
e
C
e
R
= 0.5V
P
–
P
, e
C
= 1.0V
P
–
P
V
B
–
Y
= 2.5V
P
–
P
, e
R
= 0.5V
P
–
P
V
B
–
Y
= 2.5V
P
–
P
e
C
= 0, e
R
= 0.5V
P
–
P
Max/Min
4.5
6.0
–
V
P
–
P
V
P
–
P
V
P
–
P
V
P
–
P
Chroma Signal Input Voltage
–
200
300
Harmonic Output Voltage
–
–
0.6
Residual Carrier Level
–
50
300
Hue Output Regulation
–
–
1.7
Hue Max. Output Swing
e
i
= 1.0V
P
–
P
Pin9: 0 to 15V
2.0
–
–
V
P
–
P
deg.
Hue Phase Shift
70
100
–
Sub
–
Carrier Terminal Input Impedance
Parallel Input Resistance
Parallel Input Capacitance
r
ip
c
ip
–
2.1
–
k
pF
–
4.0
–
Reference Signal Terminal Input Impedance
Parallel Input Resistance
r
ip
c
ip
Pin1, Pin2
–
2.0
–
k
Parallel Input Capacitance
–
4.0
–
pF
Chroma Signal Terminal Input Impedance
Parallel Input Resistance
Parallel Input Capacitance
r
ip
c
ip
Pin5, Pin6
–
2.0
–
k
pF
–
4.0
–
Hue Circuit Terminal Input Impedance
Parallel Input Resistance
Parallel Input Capacitance
r
ip
c
ip
G
VH
Pin12
–
100
–
k
pF
–
6
–
Hue Circuit Voltage Gain
R
L
= 1k
5
9
13
dB