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LT1352 Datasheet(PDF) 5 Page - Linear Technology

Part No. LT1352
Description  Dual and Quad 250uA, 3MHz, 200V/us Operational Amplifiers
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Maker  LINER [Linear Technology]
Homepage  http://www.linear.com
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5
LT1352/LT1353
ELECTRICAL CHARACTERISTICS –40°C ≤ T
A ≤ 85°C, VCM = 0V unless otherwise noted (Note 4).
SYMBOL
PARAMETER
CONDITIONS
VSUPPLY
MIN
TYP
MAX
UNITS
VOUT
Output Swing
RL = 5k, VIN = ±10mV
±15V
13.3
±V
RL = 2k, VIN = ±10mV
±15V
13.2
±V
RL = 1k, VIN = ±10mV
±15V
10.0
±V
RL = 1k, VIN = ±10mV
±5V
3.3
±V
RL= 500Ω, VIN = ±10mV
±5V
3.2
±V
RL = 5k, VIN = ±10mV
±2.5V
1.1
±V
IOUT
Output Current
VOUT = ±10V
±15V
10.0
mA
VOUT = ±3.2V
±5V
6.4
mA
ISC
Short-Circuit Current
VOUT = 0V, VIN = ±3V
±15V
20
mA
SR
Slew Rate
AV = – 1, RL = 5k (Note 2)
±15V
50
V/
µs
±5V
15
V/
µs
GBW
Gain Bandwidth
f = 200kHz, RL = 10k
±15V
1.6
MHz
± 5V
1.4
MHz
Channel Separation
VOUT = ±10V, RL = 2k
±15V
99
dB
IS
Supply Current
Each Amplifier
±15V
380
µA
Each Amplifier
±5V
350
µA
Note 1: A heat sink may be required to keep the junction temperature
below absolute maximum when the output is shorted indefinitely.
Note 2: Slew rate is measured between
±8V on the output with ±12V
input for
±15V supplies and ±2V on the output with ±3V input for ±5V
supplies.
Note 3: Full-power bandwidth is calculated from the slew rate
measurement: FPBW = (Slew Rate)/2
πVP.
Note 4: This parameter is not 100% tested.
Note 5: The LT1352/LT1353 are designed, characterized and expected to
meet these extended temperature limits, but are not tested at – 40
°C and
85
°C. Guaranteed I grade parts are available, consult factory.
TYPICAL PERFORMANCE CHARACTERISTICS
SUPPLY VOLTAGE (
±V)
0
200
250
125
°C
25
°C
–55
°C
20
1352/53 G01
150
100
5
10
15
350
300
Supply Current vs Supply Voltage
and Temperature
SUPPLY VOLTAGE (
±V)
0
V
0.5
1.5
2.0
V +
–1.5
10
20
1352/53 G02
1.0
–1.0
– 0.5
–2.0
5
15
TA = 25°C
∆VOS = 1mV
Input Common Mode Range
vs Supply Voltage
INPUT COMMON MODE VOLTAGE (V)
–15
–20
–10
0
10
20
30
–10
–5
0
5
1352/53 G03
10
15
TA = 25°C
VS = ±15V
IB =
IB
+ + I
B
2
Input Bias Current
vs Input Common Mode Voltage




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