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LT6552CS8

Video Amp Single 12.6V Automotive 8-Pin SOIC N

器件类别:视频放大器   

厂商名称:ADI(亚德诺半导体)

厂商官网:https://www.analog.com

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器件参数
参数名称
属性值
欧盟限制某些有害物质的使用
Not Compliant
ECCN (US)
EAR99
Part Status
Unconfirmed
HTS
8542.33.00.01
SVHC
Yes
SVHC Exceeds Threshold
Yes
Number of Circuits
1
Minimum Single Supply Voltage (V)
3
Typical Single Supply Voltage (V)
5|9|12
Maximum Single Supply Voltage (V)
12.6
Power Supply Type
Single
Minimum Operating Temperature (°C)
0
Maximum Operating Temperature (°C)
70
Supplier Temperature Grade
Commercial
Pin Count
8
Standard Package Name
SOP
Supplier Package
SOIC N
Mounting
Surface Mount
Package Height
1.5(Max)
Package Length
5(Max)
Package Width
3.99(Max)
PCB changed
8
Lead Shape
Gull-wing
参考设计
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LT6552
3.3V Single Supply
Video Difference Amplifier
FEATURES
s
s
s
s
s
s
s
s
s
s
s
s
DESCRIPTIO
Differential or Single-Ended Gain Block
Wide Supply Range 3V to 12.6V
Output Swings Rail-to-Rail
Input Common Mode Range Includes Ground
600V/µs Slew Rate
–3dB Bandwidth = 75MHz, A
V
=
±2
CMRR at 10MHz: >60dB
Specified on 3.3V, 5V and
±5V
Supplies
High Output Drive:
±70mA
Power Shutdown to 300µA
Operating Temperature Range: –40°C to 85°C
Available in 8-Lead SO and
Tiny 3mm x 3mm x 0.8mm DFN Packages
The LT
®
6552 is a video difference amplifier optimized for
low voltage single supply operation. This versatile ampli-
fier features uncommitted high input impedance (+) and
(–) inputs and can be used in differential or single-ended
configurations. A second set of inputs gives gain adjust-
ment and DC control to the differential amplifier.
On a single 3.3V supply, the input voltage range extends
from ground to 1.3V and the output swings from ground
to 2.9V while driving a 150Ω load. The LT6552 features
75MHz – 3dB bandwidth, 600V/µs slew rate, and
±70mA
output current making it ideal for driving cables directly.
The LT6552 maintains its performance for supplies from
3V to 12.6V and is fully specified at 3.3V, 5V and
±5V
supplies. The shutdown feature reduces power dissipa-
tion to less than 1mW and allows multiple amplifiers to
drive the same cable.
The LT6552 is available in the 8-lead SO package as well
as a tiny, dual fine pitch leadless package (DFN). The
device is specified over the commercial and industrial
temperature ranges.
, LTC and LT are registered trademarks of Linear Technology Corporation.
APPLICATIO S
s
s
s
s
s
s
Differential to Single-Ended Conversion
Video Line Driver
Automotive Displays
RGB Amplifiers
Coaxial Cable Drivers
Low Voltage High Speed Signal Processing
TYPICAL APPLICATIO
Cable Sense Amplifier for Loop Through
Connections with DC Adjust
COMMON MODE REJECTION RATIO (dB)
Input Referred CMRR vs Frequency
100
90
80
70
60
50
40
30
20
10
100k
1
10
FREQUENCY (MHz)
100
6552 TA01b
V
IN
5V
CABLE
V
DC
3
2
V
S
= 5V, 0V
V
CM
= 0V DC
1
REF
8
FB
+
LT6552
7
4
R
F
500Ω
6
75Ω
V
OUT
75Ω
R
G
500Ω
C
F
8pF
6552 TA01a
U
6552f
U
U
1
LT6552
ABSOLUTE
AXI U RATI GS
(Note 1)
Specified Temperature Range (Note 5) ....–40°C to 85°C
Maximum Junction Temperature .......................... 150°C
(DD Package) ................................................... 125°C
Storage Temperature Range ..................–65°C to 150°C
(DD Package) ....................................–65°C to 125°C
Lead Temperature
(Soldering, 10 sec) ........................................... 300°C
Supply Voltage (V
+
to V
) .................................... 12.6V
Input Current (Note 2) ........................................
±10mA
Input Voltage Range ......................................... V
to V
+
Differential Input Voltage
+Input (Pin 3) to –Input (Pin 2) ................................
±V
S
Output Short-Circuit Duration (Note 3) ............ Indefinite
Operating Temperature Range (Note 4) ...–40°C to 85°C
PACKAGE/ORDER I FOR ATIO
TOP VIEW
REF
–IN
+IN
V
ORDER PART
NUMBER
8
7
6
5
FB
V
+
1
2
3
4
OUT
SHDN
LT6552CDD
LT6552IDD
DD PART MARKING*
LADR
DD PACKAGE
8-LEAD (3mm
×
3mm) PLASTIC DFN
T
JMAX
= 125°C,
θ
JA
= 160°C/W
UNDERSIDE METAL CONNECTED TO V
(PCB CONNECTION OPTIONAL)
*The temperature grade is identified by a label on the shipping container. Consult LTC Marketing for parts specified with wider operating temperature ranges.
3.3V ELECTRICAL CHARACTERISTICS
SYMBOL
V
OS
∆V
OS
/∆T
I
B
I
OS
PARAMETER
Input Offset Voltage
Input V
OS
Drift
Input Bias Current
Input Offset Current
Any Input
The
q
denotes the specifications which apply over the full
operating temperature range, otherwise specifications are at T
A
= 25°C. V
S
= 3.3V, 0V. Figure 1 shows the DC test circuit,
V
REF
= V
CM
= 1V, V
DIFF
= 0V, V
SHDN
= V
+
, unless otherwise noted. R
L
= R
F
+ R
G
= 1k. (Note 6)
CONDITIONS
Both Inputs (Note 7)
q
q
q
q
Either Input Pair
2
U
U
W
W W
U
W
TOP VIEW
REF 1
–IN 2
+IN 3
V
4
8
7
6
5
FB
V
+
OUT
SHDN
ORDER PART
NUMBER
LT6552CS8
LT6552IS8
S8 PART MARKING
6552
6552I
S8 PACKAGE
8-LEAD PLASTIC SO
T
JMAX
= 150°C,
θ
JA
= 100°C/W
MIN
TYP
5
40
20
1
MAX
20
25
50
5
UNITS
mV
mV
µV/°C
µA
µA
6552f
LT6552
3.3V ELECTRICAL CHARACTERISTICS
SYMBOL
e
n
i
n
R
IN
CMRR
PSRR
G
E
V
OH
PARAMETER
Input Noise Voltage Density
Input Noise Current Density
Input Resistance
Common Mode Rejection Ratio
Input Range
Power Supply Rejection
Minimum Supply (Note 8)
Gain Error
Swing High
CONDITIONS
f = 10kHz
f = 10kHz
The
q
denotes the specifications which apply over the full
operating temperature range, otherwise specifications are at T
A
= 25°C. V
S
= 3.3V, 0V. Figure 1 shows the DC test circuit,
V
REF
= V
CM
= 1V, V
DIFF
= 0V, V
SHDN
= V
+
, unless otherwise noted. R
L
= R
F
+ R
G
= 1k. (Note 6)
MIN
TYP
55
0.7
300
q
q
MAX
UNITS
nV/√Hz
pA/√Hz
kΩ
dB
Common Mode, V
CM
= 0V to 1.3V
V
CM
= 0V to 1.3V
V
S
= 3V to 12V
V
O
= 0.5V to 2V, R
L
= 1k
R
L
= 150Ω
(V
DIFF
= 0.4V), V
REF
(Pin 1) = 0V, A
V
= 10
R
L
= 1k
R
L
= 150Ω
R
L
= 75Ω
(V
DIFF
= –0.1V), V
REF
(Pin 1) = 0V, A
V
= 10
R
L
= 1k
I
SINK
= 5mA
I
SINK
= 10mA
V
OUT
= 0.5V to 2.5V Measure from 1V to 2V,
R
L
= 150Ω, A
V
= 2
V
O
= 2V
P-P
A
V
= 2, R
L
= 150Ω
A
V
=50, V
O
= 0.5V to 2.5V,
20% to 80%, R
L
= 150Ω
A
V
= 2,
∆V
OUT
= 2V, Positive Step
R
L
= 150Ω
A
V
= 2, R
L
= 150Ω, Output Black Level = 0.6V
A
V
= 2, R
L
= 150Ω, Output Black Level = 0.6V
V
OUT
= 0V, V
DIFF
= 1V
q
58
0
48
3
83
1.3
54
1
1
3
3
V
dB
V
%
%
V
V
V
q
q
q
q
q
q
3.1
2.5
2
3.2
2.9
2.5
8
65
40
350
55
65
125
20
30
0.4
0.15
175
50
120
200
V
OL
Swing Low
q
q
q
mV
mV
mV
V/µs
MHz
MHz
ns
ns
ns
%
Deg
mA
mA
SR
FPBW
BW
t
r
, t
f
t
S
Slew Rate
Full-Power Bandwidth (Note 9)
Small-Signal –3dB Bandwidth
Rise Time, Fall Time (Note 10)
Settling Time to 3%
Settling Time to 1%
Differential Gain
Differential Phase
I
SC
I
S
Short-Circuit Current
Supply Current
35
25
50
12.5
13.5
15
750
0.5
q
mA
mA
µA
V
V
µA
µA
ns
ns
µA
Supply Current, Shutdown
V
L
V
H
Shutdown Pin Input Low Voltage
Shutdown Pin Input High Voltage
Shutdown Pin Current
t
ON
t
OFF
Turn On-Time
Turn Off-Time
Shutdown Output Leakage Current
V
SHDN
= 0.5V
q
q
q
300
3
40
3
250
450
V
SHDN
= 0.5V
V
SHDN
= 3V
V
SHDN
from 0.5V to 3V
V
SHDN
from 3V to 0.5V
V
SHDN
= 0.5V, 0V
V
OUT
V
+
q
q
150
10
q
0.25
6552f
3
LT6552
The
q
denotes the specifications which apply over the full operating
temperature range, otherwise specifications are at T
A
= 25°C. V
S
= 5V, 0V; Figure 1 shows the DC test circuit,
V
REF
= V
CM
= 1V, V
DIFF
= 0V, V
SHDN
= V
+
, unless otherwise noted. R
L
= R
F
+ R
G
= 1k. (Note 6)
SYMBOL
V
OS
∆V
OS
/∆T
I
B
I
OS
e
n
i
n
R
IN
CMRR
PSRR
G
E
V
OH
PARAMETER
Input Offset Voltage
Input V
OS
Drift
Input Bias Current
Input Offset Current
Input Noise Voltage Density
Input Noise Current Density
Input Resistance
Common Mode Rejection Ratio
Input Range
Power Supply Rejection
Minimum Supply (Note 8)
Gain Error
Swing High
V
O
= 0.5V to 3.5V, R
L
= 1k
R
L
= 150Ω
(V
DIFF
= 0.6V), V
REF
(Pin 1) = 0V, A
V
= 10
R
L
= 1k
R
L
= 150Ω
R
L
= 75Ω, 0°C
T
A
70°C (Only)
(V
DIFF
= –0.1V), V
REF
(Pin 1) = 0V, A
V
= 10
R
L
= 1k
I
SINK
= 5mA
I
SINK
= 10mA
V
OUT
= 0.5V to 3.5V
Measure from 1V to 3V, R
L
= 150Ω, A
V
= 2
V
O
= 2V
P-P
A
V
= 2, R
L
= 150Ω
5V, 0V; A
V
= 50, V
O
= 0.5V to 3.5V,
20% to 80%, R
L
= 1k
A
V
= 2,
∆V
OUT
= 2V, Positive Step
R
L
= 150Ω
A
V
= 2, R
L
= 150Ω, Output Black Level = 1V
A
V
= 2, R
L
= 150Ω, Output Black Level = 1V
V
OUT
= 0V, V
DIFF
= 1V
0°C
T
A
70°C
–40°C
T
A
85°C
q
q
q
5V ELECTRICAL CHARACTERISTICS
CONDITIONS
Both Inputs (Note 7)
q
q
MIN
TYP
5
40
20
1
55
0.7
300
MAX
20
25
50
5
UNITS
mV
mV
µV/°C
uA
uA
nV/√Hz
pA/√Hz
kΩ
dB
Any Input
Either Input Pair
f = 10kHz
f = 10kHz
Common Mode, V
CM
= 0V to 3V
V
CM
= 0V to 3V
V
S
= 3V to 12V
q
q
q
q
q
q
q
q
q
q
q
q
q
q
58
0
48
3
83
3
54
1
1
3
3
V
dB
V
%
%
V
V
V
4.8
3.6
2.75
4.875
4.3
3.4
8
65
110
450
70
70
125
20
30
0.25
0.04
175
50
120
200
V
OL
Swing Low
mV
mV
mV
V/µs
MHz
MHz
ns
ns
ns
%
Deg
mA
mA
mA
SR
FPBW
BW
t
r
, t
f
t
S
Slew Rate
Full-Power Bandwidth (Note 9)
Small-Signal –3dB Bandwidth
Rise Time, Fall Time
Settling Time to 3%
Settling Time to 1%
Differential Gain
Differential Phase
I
SC
Short-Circuit Current
50
45
35
70
I
S
Supply Current
Supply Current Shutdown
V
SHDN
= 0.5V
q
q
q
13.5
400
4.7
60
4
14.5
16
900
0.5
200
10
mA
mA
µA
V
V
µA
µA
V
L
V
H
Shutdown Pin Input Low Voltage
Shutdown Pin Input High Voltage
Shutdown Pin Current
V
SHDN
= 0.5V
V
SHDN
= 4.7V
q
q
6552f
4
LT6552
5V ELECTRICAL CHARACTERISTICS
SYMBOL
t
ON
t
OFF
PARAMETER
Turn-On Time
Turn-Off Time
Shutdown Output Leakage Current
The
q
denotes the specifications which apply over the full operating
temperature range, otherwise specifications are at T
A
= 25°C. V
S
= 5V, 0V. Figure 1 shows the DC test circuit, V
REF
= V
CM
= 1V,
V
DIFF
= 0V, V
SHDN
= V
+
, unless otherwise noted. R
L
= R
F
+ R
G
= 1k. (Note 6)
CONDITIONS
V
SHDN
from 0.5V to 4.7V
V
SHDN
from 4.7V to 0.5V
V
SHDN
= 0.5V, 0V
V
OUT
V
+
q
MIN
TYP
250
450
0.25
MAX
UNITS
ns
ns
µA
±5V
ELECTRICAL CHARACTERISTICS
SYMBOL
V
OS
∆V
OS
/∆T
I
B
I
OS
e
n
i
n
R
IN
CMRR
PSRR
G
E
PARAMETER
Input Offset Voltage
Input V
OS
Drift
Input Bias Current
Input Offset Current
Input Noise Voltage Density
Input Noise Current Density
Input Resistance
Common Mode Rejection Ratio
Input Range
Power Supply Rejection
Gain Error
Output Voltage Swing
Any Input
Either Input Pair
f = 10kHz
f = 10kHz
CONDITIONS
The
q
denotes the specifications which apply over the full operat-
ing temperature range, otherwise specifications are at T
A
= 25°C. V
S
=
±5V.
Figure 2 shows the DC test circuit, V
REF
= V
CM
= 0V,
V
DIFF
= 0V, V
SHDN
= V
+
, unless otherwise noted. R
L
= R
F
+ R
G
= 1k. (Note 6)
MIN
q
q
q
q
TYP
10
50
25
1
55
0.7
300
MAX
25
30
50
5
UNITS
mV
mV
µV/°C
µA
µA
nV/√Hz
pA/√Hz
kΩ
dB
Both Inputs (Note 7)
Common Mode, V
CM
= –5V to 3V
V
CM
= –5V to 3V
V
S
=
±2V
to
±6V,
V
CM
= 0V
V
O
= –3V to 3V, R
L
= 1k
R
L
= 150Ω
(V
DIFF
=
±
0.6V), V
REF
(Pin 1) = 0V, A
V
= 10
R
L
= 1k
R
L
= 150Ω
R
L
= 75Ω, 0°C
T
A
70°C (Only)
V
CM
= 0V, V
DIFF
= –1.5V to +1.5V,
V
O
= –5V to 5V Measure from –2V to 2V, R
L
= 150Ω
V
O
= 6V
P-P
(Note 9)
A
V
= 2, R
L
= 150Ω
A
V
= 50, V
O
= –3V to 3V, 20% to 80%
A
V
= 2,
∆V
OUT
= 6V, Positive Step
R
L
= 150Ω
A
V
= 2, R
L
= 150Ω, Output Black Level = 0V
A
V
= 2, R
L
= 150Ω, Output Black Level = 0V
V
OUT
= 0V, V
DIFF
=
±1V
0°C
T
A
70°C
–40°C
T
A
85°C
V
SHDN
= –4.5V
q
q
q
q
q
q
q
q
q
q
q
q
58
–5
48
75
3
54
1
1
3
3
V
dB
%
%
V
V
V
V/µs
MHz
MHz
±4.8
±3.6
±2.75
400
±4.875
±4.3
±3.4
600
30
75
125
25
35
0.2
0.15
175
SR
FPBW
BW
t
r
, t
f
t
S
Slew Rate
Full-Power Bandwidth
Small-Signal –3dB Bandwidth
Rise Time, Fall Time
Settling Time to 3%
Settling Time to 1%
Differential Gain
Differential Phase
ns
ns
ns
%
Deg
mA
mA
mA
I
SC
Short-Circuit Current
50
45
35
70
Supply Current Shutdown
I
S
V
L
V
H
Supply Current
Shutdown Pin Input Low Voltage
Shutdown Pin Input High Voltage
650
14
1400
16.5
18.5
–4.5
µA
mA
mA
V
V
6552f
q
q
4.7
5
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