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NTE1130 Arkusz danych(PDF) 2 Page - NTE Electronics

Numer części NTE1130
Szczegółowy opis  Integrated Circuit Color TV Demodulator
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Producent  NTE [NTE Electronics]
Strona internetowa  http://www.nteinc.com
Logo NTE - NTE Electronics

NTE1130 Arkusz danych(HTML) 2 Page - NTE Electronics

  NTE1130 Datasheet HTML 1Page - NTE Electronics NTE1130 Datasheet HTML 2Page - NTE Electronics NTE1130 Datasheet HTML 3Page - NTE Electronics  
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Electrical Characteristics (Cont’d): (TA = +25°C, VCC = 15V, RL = 5.6kΩ unless otherwise specified)
Parameter
Symbol
Test Conditions
Min
Typ
Max
Unit
Chroma Signal Input Terminal Voltage
V4
RL = 5.6kΩ
3.8
V
Sub–Carrier Signal Input Terminal Voltage
V10
RL = 5.6kΩ
1.35
V
Difference Voltage Between Terminals
RL = 5.6kΩ
0.4
V
Output Voltage Temperature Coefficient
RL = 5.6kΩ
–3.0
+3.0
mV/
°C
Output Difference Voltage Temperature
Coefficient
RL = 5.6kΩ
–2.0
+2.0
mV/
°C
Hue Circuit Output Current
I12
Pin9: Open
2.1
mA
Dynamic Characteristics (f = 3.58MHz)
R–Y Output Voltage
VR–Y
VB–Y = 2.5VP–P, er = 0.5VP–P
1.9
2.1
2.3
VP–P
G–Y Output Voltage
VG–Y
0.5
0.6
0.7
VP–P
Relative Output Phase
R–Y to B–Y Output
qR
110
115
120
deg.
G–Y to B–Y Output
qG
247
255
263
deg.
B–Y Output Voltage
VB–Y
eR = 0.5VP–P, eC = 1.0VP–P
4.5
6.0
VP–P
Chroma Signal Input Voltage
eC
VB–Y = 2.5VP–P, eR = 0.5VP–P
200
300
VP–P
Harmonic Output Voltage
VB–Y = 2.5VP–P
0.6
VP–P
Residual Carrier Level
eC = 0, eR = 0.5VP–P
50
300
VP–P
Hue Output Regulation
Max/Min
1.7
Hue Max. Output Swing
ei = 1.0VP–P
2.0
VP–P
Hue Phase Shift
Pin9: 0 to 15V
70
100
deg.
Sub–Carrier Terminal Input Impedance
Parallel Input Resistance
rip
2.1
k
Parallel Input Capacitance
cip
4.0
pF
Reference Signal Terminal Input Impedance
Parallel Input Resistance
rip
Pin1, Pin2
2.0
k
Parallel Input Capacitance
cip
4.0
pF
Chroma Signal Terminal Input Impedance
Parallel Input Resistance
rip
Pin5, Pin6
2.0
k
Parallel Input Capacitance
cip
4.0
pF
Hue Circuit Terminal Input Impedance
Parallel Input Resistance
rip
Pin12
100
k
Parallel Input Capacitance
cip
6
pF
Hue Circuit Voltage Gain
GVH
RL = 1kΩ
5
9
13
dB


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