LT1353CS#PBF Linear Technology, LT1353CS#PBF Datasheet - Page 9

IC OP-AMP HISPD 3MHZ QUAD 14SOIC

LT1353CS#PBF

Manufacturer Part Number
LT1353CS#PBF
Description
IC OP-AMP HISPD 3MHZ QUAD 14SOIC
Manufacturer
Linear Technology
Series
C-Load™r
Type
Current Feedback Amplifierr
Datasheet

Specifications of LT1353CS#PBF

Amplifier Type
Voltage Feedback
Number Of Circuits
4
Slew Rate
200 V/µs
Gain Bandwidth Product
3MHz
Current - Input Bias
20nA
Voltage - Input Offset
200µV
Current - Supply
250µA
Current - Output / Channel
13.4mA
Voltage - Supply, Single/dual (±)
±2.5 V ~ 15 V
Operating Temperature
0°C ~ 70°C
Mounting Type
Surface Mount
Package / Case
14-SOIC (3.9mm Width), 14-SOL
Rail/rail I/o Type
No
Number Of Elements
4
Unity Gain Bandwidth Product
2.7MHz
Common Mode Rejection Ratio
78dB
Input Offset Voltage
600uV
Input Bias Current
50nA
Single Supply Voltage (typ)
Not RequiredV
Voltage Gain In Db
95.56dB
Power Supply Rejection Ratio
90dB
Power Supply Requirement
Dual
Shut Down Feature
No
Single Supply Voltage (min)
Not RequiredV
Single Supply Voltage (max)
Not RequiredV
Dual Supply Voltage (min)
±2.5V
Dual Supply Voltage (max)
±18V
Technology
BiCOM
Operating Temp Range
0C to 70C
Operating Temperature Classification
Commercial
Mounting
Surface Mount
Pin Count
14
Package Type
SOIC N
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Output Type
-
-3db Bandwidth
-
Lead Free Status / Rohs Status
Compliant

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APPLICATIONS
TYPICAL PERFORMANCE CHARACTERISTICS
Layout and Passive Components
The LT1352/LT1353 amplifiers are easy to use and toler-
ant of less than ideal layouts. For maximum performance
(for example, fast 0.01% settling) use a ground plane,
short lead lengths and RF-quality bypass capacitors (0.01 F
to 0.1 F). For high drive current applications use low ESR
bypass capacitors (1 F to 10 F tantalum).
The parallel combination of the feedback resistor and
gain setting resistor on the inverting input can combine
with the input capacitance to form a pole which can cause
peaking or even oscillations. If feedback resistors greater
than 10k are used, a parallel capacitor of value, C
(R
optimize dynamic performance. For applications where
the DC noise gain is one and a large feedback resistor is
used, C
example would be an I-to-V converter as shown in the
Typical Applications section.
G
)(C
Small-Signal Transient
(A
Large-Signal Transient
(A
IN
V
V
F
= 1)
= 1)
/R
should be greater than or equal to C
F
), should be used to cancel the input pole and
U
INFORMATION
U
W
1352/53 G31
1352/53 G34
U
W
Small-Signal Transient
(A
Large-Signal Transient
(A
V
V
U
= – 1)
= – 1)
IN
. An
F
>
Capacitive Loading
The LT1352/LT1353 are stable with any capacitive load.
As the capacitive load increases, both the bandwidth and
phase margin decrease so there will be peaking in the
frequency domain and in the transient response. Graphs
of Frequency Response vs Capacitive Load, Capacitive
Load Handling and the transient response photos clearly
show these effects.
Input Considerations
Each of the LT1352/LT1353 inputs is the base of an NPN
and a PNP transistor whose base currents are of opposite
polarity and provide first-order bias current cancellation.
Because of variation in the matching of NPN and PNP beta,
the polarity of the input bias current can be positive or
negative. The offset current does not depend on NPN/PNP
beta matching and is well controlled. The use of balanced
source resistance at each input is recommended for
1352/53 G32
1352/53 G35
Small-Signal Transient
(A
Large-Signal Transient
(A
V
V
= – 1, C
= 1, C
LT1352/LT1353
L
L
= 10,000pF)
= 1000pF)
1352/53 G33
1352/53 G36
13523fa
9

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