Ordering number : ENA0896A
LV7150V
Bi-CMOS IC
Switch for the Wideband Video Signal
(with LPF)
Overview
http://onsemi.com
The LV7150V is switch for the wideband video signal. It has the two input switches by three channels.
It built in the 6MHz/12MHz/30MHz-LPF. It is the best for the filter to remove the digital clock noise of the Y/Pb/Pr
or RGB Analog video signal before the A/D converter.
It can correspond to the full HD signal because it provides the flat frequency response to 60MHz.
Functions
•
Two input switches
×
three channels
•
Y/Pb/Pr and RGB signal inputs
•
Flat frequency response to 60MHz (Bypass filter)
•
6MHz/12MHz/30MHz-LPF
Specifications
Maximum Ratings
at Ta = 25°C
Parameter
Maximum supply voltage
Allowable power dissipation
Operating temperature
Storage temperature
Symbol
VCC max
Pd max
Topr
Tstg
Ta≤75°C Mounted on a specified board *
Conditions
Ratings
6
300
-20 to +75
-40 to +125
Unit
V
mW
°C
°C
Note *: Mounted on a specified board: 114.3mm×76.1mm×1.6mm glass epoxy
Stresses exceeding Maximum Ratings may damage the device. Maximum Ratings are stress ratings only. Functional operation above the Recommended Operating
Conditions is not implied. Extended exposure to stresses above the Recommended Operating Conditions may affect device reliability.
Semiconductor Components Industries, LLC, 2013
July, 2013
D1907 TI IM 20071127-S00006 / 72507 TI IM No.A0896-1/7
LV7150V
Recommended Operating Conditions
at Ta = 25°C
Parameter
Recommended supply voltage
Operating supply voltage Range
Symbol
VCC
VCC opg
Conditions
Ratings
5
4.75 to 5.25
Unit
V
V
Electrical Characteristics
at Ta = 25°C, VCC = 5.0V
Parameter
Input
Point
Input signal
Signal
Freq
Mag
Out
Point
Test Condition
min
Ratings
typ
max
unit
VCC supply current & Internal reference regulator
VCC supply
current
Internal reference
regulator voltage
Voltage gain
Voltage gain
Py/Pb/Pr
R/G/B
Frequency response
Frequency
response
at LPF_Through
Frequency
response 1
at 6MHz_LPF
Frequency
response 2
at 6MHz _LPF
Frequency
response 1
at 12MHz_LPF
Frequency
response 2
at 12MHz_LPF
Frequency
response 1
at 30MHz_LPF
Frequency
response 2
at 30MHz_LPF
Frequency
response 3
at 30MHz_LPF
S/N
S/N ratio
at 30MHz_LPF
Py
R
G
B
Crosstalk
Crosstalk
Py/Pb/Pr
R/G/B
T1A T2A
T4A T5A
T7A T8A
SIG2
5M
700mVpp
T15
T13
T11
The ratio of the output leak of
the non-selection input
-60.0
-55.0
dB
T1A T2A
T4A T5A
T7A T8A
SIG1
T15
650mVpp
T13
T11
30MHz_LPF is selected,
The S/N ratio from 100kHz to
30MHz
-60.0
-50.0
dB
Py/Pb/Pr
R/G/B
Py/Pb/Pr
R/G/B
Py/Pb/Pr
R/G/B
T1A T2A
T4A T5A
T7A T8A
T1A T2A
T4A T5A
T7A T8A
T1A T2A
T4A T5A
T7A T8A
T1A T2A
T4A T5A
T7A T8A
T1A T2A
T4A T5A
T7A T8A
T1A T2A
T4A T5A
T7A T8A
T1A T2A
T4A T5A
T7A T8A
T1A T2A
T4A T5A
T7A T8A
SIG2
SIG2
SIG2
SIG2
SIG2
SIG2
SIG2
SIG2
60M
100k
6M
100k
T15
300mVpp
T13
T11
T15
300mVpp
T13
T11
T15
300mVpp
T13
T11
T15
300mVpp
T13
T11
T15
300mVpp
T13
T11
T15
300mVpp
T13
T11
T15
300mVpp
T13
T11
T15
300mVpp
T13
T11
LPF_Through is selected,
Output gain difference
between 100kHz and 60MHz
6MHz_LPF is selected,
Output gain difference
between 100kHz and 6MHz
6MHz_LPF is selected,
Output gain difference
between 100kHz and
13.5MHz
12MHz_LPF is selected,
Output gain difference
between 100kHz and 12MHz
12MHz_LPF is selected,
Output gain difference
between 100kHz and 27MHz
30MHz_LPF is selected,
Output gain difference
between 100kHz and 20MHz
30MHz_LPF is selected,
Output gain difference
between 100kHz and 30MHz
30MHz_LPF is selected,
Output gain difference
between 100kHz and 74MHz
-45.0
-33.0
dB
-3.5
-1.0
1.5
dB
-1.0
0.0
1.0
dB
-30.0
-20.0
dB
-3.0
0.0
1.0
dB
-30.0
-20.0
dB
-3.0
0.0
1.0
dB
-3.0
-1.0
1.0
dB
T1A T2A
T4A T5A
T7A T8A
SIG2
100k 300mVpp
T15
T13
T11
Output gain for input
-0.5
-0.2
0.0
dB
V3
T16
At non-signal, The current
flows to 3pin
The voltage of 16pin
2.8
3.0
3.2
V
26
34
42
mA
13.5M
100k
Py/Pb/Pr
R/G/B
Py/Pb/Pr
R/G/B
Py/Pb/Pr
R/G/B
Py/Pb/Pr
R/G/B
Py/Pb/Pr
R/G/B
12M
100k
27M
100k
20M
100k
30M
100k
74M
100k
30M
100k
Continued on next page.
No.A0896-2/7