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LTC6605IDJC-10-PBF Datasheet(PDF) 5 Page - Linear Technology

Part # LTC6605IDJC-10-PBF
Description  Dual Matched 10MHz Filter with Low Noise, Low Distortion Differential Amplifi er
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Manufacturer  LINER [Linear Technology]
Direct Link  http://www.linear.com
Logo LINER - Linear Technology

LTC6605IDJC-10-PBF Datasheet(HTML) 5 Page - Linear Technology

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LTC6605-10
5
660510f
ELECTRICAL CHARACTERISTICS
Supply Current vs Temperature
Filter Gain vs Temperature
–3dB Frequency vs Temperature
Filter Frequency Response
TYPICAL PERFORMANCE CHARACTERISTICS
Note 8: See the Applications Information section for a detailed
discussion of input and output common mode range. Input common
mode range is tested by measuring the differential DC gain with VINCM
= mid-supply, and again with VINCM at the input common mode range
limits listed in the Electrical Characteristics table, with ΔVIN = ±0.25V,
verifying that the differential gain has not deviated from the mid-supply
common mode input case by more than 0.5%, and that the common
mode offset (VOSCM) has not deviated from the mid-supply common
mode offset by more than ±10mV.
Output common mode range is tested by measuring the differential
DC gain with VOCM = mid-supply, and again with voltage set on the
VOCM pin at the output common range limits listed in the Electrical
Characteristics table verifying that the differential gain has not
deviated from the mid-supply common mode input case by more than
0.5%, and that the common mode offset (VOSCM) has not deviated by
more than ±10mV from the mid-supply case.
Note 9: CMRR is defined as the ratio of the change in the input common
mode voltage at the internal amplifier inputs to the change in differential
input referred voltage offset (VOS).
Note 10: Power supply rejection ratio (PSRR) is defined as the ratio of
the change in supply voltage to the change in differential input referred
voltage offset (VOS).
TEMPERATURE (°C)
–60
–2.5
–2.0
–1.0
–1.5
0
2.5
2.0
1.5
1.0
0.5
–20
20
40
660510 G03
–0.5
–40
0
60
80
100
BIAS = FLOAT
BIAS = V+
VS = 3V
VINCM = VOCM = 1.5V
FREQUENCY (MHz)
0.1
–50
–40
–30
–20
–10
0
10
1.0
100
1000
660514 G04
VS = 3V
VINCM = VOCM = MID SUPPLY
BIAS = V+
BIAS PIN FLOATING
TEMPERATURE (°C)
–60
0.990
0.995
1.005
1.010
–20
20
40
660510 G02
1.000
–40
0
60
80
100
VS = 3V, BIAS = V
+
VINCM = VOCM = MID-SUPPLY
5 RANDOM UNITS
TEMPERATURE (°C)
–60
15.0
12.5
17.5
22.5
25.0
27.5
32.5
–20
20
40
660510 G01
20.0
35.0
37.5
30.0
–40
0
60
80
100
VS = 2.7V, BIAS = FLOAT
VS = 3V, BIAS = FLOAT
VS = 5V, BIAS = FLOAT
VS = 2.7V, BIAS = V
+
VS = 3V, BIAS = V
+
VS = 5V, BIAS = V
+
VINCM = VOCM = MID-SUPPLY


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