LT1193CN8#PBF

4
LT1193
1193fb
LT1193C
SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS
V
OS
Input Offset Voltage N8 Package 214 mV
SO-8 Package 20 mV
V
OS
/T Input V
OS
Drift 20 µV/°C
I
OS
Input Offset Current 0.2 3.5 µA
I
B
Input Bias Current ±0.5 ±4 µA
Input Voltage Range 2.5 3.5 V
CMRR Common Mode Rejection Ratio V
CM
= – 2.5V to 3.5V 55 70 dB
PSRR Power Supply Rejection Ratio V
S
= ±2.375V to ±5V 55 70 dB
V
OUT
Output Voltage Swing R
L
= 1k 3.7 4 V
R
L
= 100 6.2 6.6 V
G
E
Gain Error V
O
= ±3V, R
L
= 1k 0.2 1.2 %
I
S
Supply Current 35 43 mA
Shutdown Supply Current Pin 5 at V
(Note 10) 1.3 2.1 mA
I
SHDN
Shutdown Pin Current Pin 5 at V
20 µA
Note 7: Full-power bandwidth is calculated from the slew rate
measurement:
FPBW = SR/2πV
P
.
Note 8: Settling time measurement techniques are shown in “Take the
Guesswork Out of Settling Time Measurements,” EDN, September 19,
1985.
Note 9: NTSC (3.58MHz).
Note 10: See Applications section for shutdown at elevated temperatures.
Do not operate the shutdown above T
J
> 125°C.
Note 11: AC parameters are 100% tested on the ceramic and plastic DIP
packaged parts (J and N suffix) and are sample tested on every lot of the
SO packaged parts (S suffix).
Note 1: Absolute Maximum Ratings are those values beyond which the
life of a device may be impaired.
Note 2: A heat sink is required to keep the junction temperature below
absolute maximum when the output is shorted.
Note 3: When R
L
= 1k is specified, the load resistor is R
FB1
+ R
FB2
, but
when R
L
= 100 is specified, then an additional 100 is added to the
output.
Note 4: V
OS
measured at the output (Pin 6) is the contribution from both
input pair, and is input referred.
Note 5: V
IN
LIM
is the maximum voltage between –V
IN
and +V
IN
(Pin 2 and
Pin 3) for which the output can respond.
Note 6: Slew rate is measured between ±2V on the output, with a ±1V
input step, A
V
= 3.
ELECTRICAL CHARACTERISTICS
The denotes the specificatons which apply over the full operating temperature range of 0°C T
A
70°C. V
S
= ±5V, V
REF
= 0V,
R
FB1
= 900 from Pins 6 to 8, R
FB2
= 100 from Pin 8 to ground, R
L
= R
FB1
+ R
FB2
= 1k (Note 3), C
L
10pF, Pin 5 open circuit,
unless otherwise noted.
LT1193I
SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS
V
OS
Input Offset Voltage SO-8 Package 220 mV
V
OS
/T Input V
OS
Drift 20 µV/°C
I
OS
Input Offset Current 0.8 5 µA
I
B
Input Bias Current ±1 ±5.5 µA
Input Voltage Range 2.5 3.5 V
CMRR Common Mode Rejection Ratio V
CM
= – 2.5V to 3.5V 53 70 dB
PSRR Power Supply Rejection Ratio V
S
= ±2.375V to ±5V 53 70 dB
V
OUT
Output Voltage Swing R
L
= 1k 3.6 4 V
V
S
= ±8V, R
L
= 100 6 6.5
G
E
Gain Error V
O
= ±3V, R
L
= 1k 0.2 1.2 %
I
S
Supply Current 35 43 mA
Shutdown Supply Current Pin 5 at V
(Note 10) 1.3 2.2 mA
I
SHDN
Shutdown Pin Current Pin 5 at V
20 µA
The denotes the specificatons which apply over the full operating temperature range of –40°C T
A
85°C. V
S
= ±5V,
V
REF
= 0V, R
FB1
= 900 from Pins 6 to 8, R
FB2
= 100 from Pin 8 to ground, R
L
= R
FB2
= 1k (Note 3), C
L
10pF, Pin 5 open circuit,
unless otherwise noted.
5
LT1193
1193fb
TEMPERATURE (°C)
–50
1.0
SHUTDOWN SUPPLY CURRENT (mA)
1.5
2.5
3.0
4.0
4.5
5.0
0 25 75 125
LT1193 • TPC07
3.5
2.0
25 50 100
V
S
= ±5V
V
SHDN
= –V
EE
+ 0.2V
V
SHDN
= –V
EE
+ 0.4V
V
SHDN
= –V
EE
FREQUENCY (Hz)
150
EQUIVALENT INPUT NOISE VOLTAGE (nV/Hz)
300
350
400
10 1k 10k 100k
LT1193 • TPC04
0
100
250
200
50
V
S
= ±5V
T
A
= 25°C
R
S
= 0
100
TEMPERATURE (°C)
–50
0.8
INPUT BIAS CURRENT (µA)
0.7
0.6
0.5
0.4
0.3
0 25 75 125
LT1193 • TPC02
25 50 100
+I
B
–I
B
V
S
= ±5V
I
OS
FREQUENCY (Hz)
20
EQUIVALENT INPUT NOISE CURRENT (pA/Hz)
60
80
10 1k 10k 100k
LT1193 • TPC05
0
100
40
V
S
= ±5V
T
A
= 25°C
R
S
= 100k
±V SUPPLY VOLTAGE (V)
0
–10
COMMON MODE VOLTAGE (V)
–6
–2
0
4
6
10
4810
LT1193 • TPC03
8
2
–4
–8
26
–55°C
25°C
125°C
–55°C
25°C
+V COMMON MODE
V COMMON MODE
125°C
TEMPERATURE (°C)
–50
–2
GAIN ERROR (%)
–1
0
1
2
3
25 0 50 75
LT1193 • TPC08
25 100 125
R
L
= 100
R
L
= 1k
V
S
= ±5V
COMMON MODE VOLTAGE (V)
–4
–2
INPUT BIAS CURRENT (µA)
–1
0
1
2
3
4
–2 0 2 4
LT1193 • TPC01
–3 –1 1 3
125°C
–55°C
25°C
V
S
= ±5V
0
OPEN-LOOP GAIN (V/V)
5k
10k
15k
20k
TEMPERATURE (°C)
50 0 50 100 125
LT1193 • TPC09
–25 25 75
R
L
= 1k
R
L
= 100
V
S
= ±5V
V
O
= ±3V
±SUPPLY VOLTAGE (V)
0
0
SUPPLY CURRENT (mA)
20
30
40
50
246 10
LT1193 • TPC06
8
–55°C
25°C
125°C
10
TYPICAL PERFOR A CE CHARACTERISTICS
UW
Input Bias Current
vs Common Mode Voltage
Input Bias Current
vs Temperature
Common Mode Voltage
vs Supply Voltage
Equivalent Input Noise Voltage
vs Frequency Supply Current vs Supply Voltage
Equivalent Input Noise Current
vs Frequency
Shutdown Supply Current
vs Temperature Open-Loop Gain vs Temperature
Gain Error vs Temperature
6
LT1193
1193fb
TEMPERATURE (°C)
–50
30
GAIN BANDWIDTH PRODUCT (MHz)
35
45
50
55
65
70
0 50 100 125
LT1193 • TPC13
60
40
–25 25 75
30
PHASE MARGIN (DEGREES)
35
45
50
55
65
70
60
40
V
S
= ±5V
R
L
= 1k
GAIN BANDWIDTH PRODUCT
UNITY GAIN
PHASE MARGIN
±V SUPPLY VOLTAGE (V)
0
–10
OUTPUT SWING (V)
–8
–6
–2
10
24 6 10
LT1193 • TPC18
–4
0
2
4
6
8
R
L
= 1k
–V
OUT
, –55°C,
25°C, 125°C
8
+V
OUT
, 25°C,
125°C, –55°C
FREQUENCY (Hz)
0
POWER SUPPLY REJECTION RATIO (dB)
20
40
60
80
1k 100k 10M 100M
LT1193 • TPC16
–20
10k
1M
–PSRR
+PSRR
V
S
= ±5V
T
A
= 25 C
V
RIPPLE
= ±300mV
°
FREQUENCY (Hz)
0.001
OUTPUT IMPEDANCE ( )
0.1
1
10
100
1k
LT1193 • TPC14
10k 100k 1M 10M 100M
V
S
= ±5V
T
A
= 25°C
0.01
A
V
= 10
A
V
= 2
FREQUENCY (Hz)
COMMON MODE REJECTION RATIO (dB)
50
60
70
80
100k 10M 100M
LT1193 • TPC15
30
1M
40
V
S
= ±5V
T
A
= 25°C
R
L
= 1k
TEMPERATURE (°C)
–50
70
OUTPUT SHORT-CIRCUIT CURRENT (mA)
90
100
0 25 75 125
LT1193 • TPC17
25 50 100
V
S
= ±5V
80
FREQUENCY (Hz)
0
VOLTAGE GAIN (dB)
20
60
80
100
100k
LT1193 • TPC11
–20
1M 10M 100M
40
0
PHASE MARGIN (DEGREES)
20
60
80
100
–20
40
V
S
= ±5V
T
A
= 25°C
R
L
= 1k
PHASE
GAIN
LOAD RESISTANCE ()
10
0
OPEN-LOOP VOLTAGE GAIN (V/V)
5k
10k
15k
20k
100 1000
LT1193 • TPC10
V
S
= ±5V
V
O
= ±3V
T
A
= 25°C
±SUPPLY VOLTAGE (V)
0
50
GAIN BANDWIDTH PRODUCT (MHz)
60
70
80
24 810
LT1193 • TPC12
6
T
A
= –55°C, 25°C, 125°C
TYPICAL PERFOR A CE CHARACTERISTICS
UW
Gain, Phase vs Frequency
Open-Loop Voltage Gain
vs Load Resistance
Gain Bandwidth Product
vs Supply Voltage
Gain Bandwidth Product and Unity
Gain Phase Margin vs Temperature Output Impedance vs Frequency
Common Mode Rejection Ratio
vs Frequency
Power Supply Rejection Ratio
vs Frequency
Output Short-Circuit Current
vs Temperature Output Swing vs Supply Voltage

LT1193CN8#PBF

Mfr. #:
Manufacturer:
Analog Devices Inc.
Description:
Video Amplifiers Adj Gain Video Difference Amp
Lifecycle:
New from this manufacturer.
Delivery:
DHL FedEx Ups TNT EMS
Payment:
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