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LT6600CS8-5-PBF Datasheet(PDF) 3 Page - Linear Technology

Part # LT6600CS8-5-PBF
Description  Very Low Noise, Differential Amplifi er and 5MHz Lowpass Filter
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Manufacturer  LINER [Linear Technology]
Direct Link  http://www.linear.com
Logo LINER - Linear Technology

LT6600CS8-5-PBF Datasheet(HTML) 3 Page - Linear Technology

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LT6600-5
3
66005fa
ELECTRICAL CHARACTERISTICS
Note 1: Stresses beyond those listed under Absolute Maximum Ratings
may cause permanent damage to the device. Exposure to any Absolute
Maximum Rating condition for extended periods may affect device
reliability and lifetime.
Note 2: This is the temperature coefficient of the internal feedback
resistors assuming a temperature independent external resistor (RIN).
Note 3: The input common mode voltage is the average of the voltages
applied to the external resistors (RIN). Specification guaranteed for
RIN ≥ 229Ω.
Note 4: Distortion is measured differentially using a differential stimulus.
The input common mode voltage, the voltage at Pin 2, and the voltage at
Pin 7 are equal to one half of the total power supply voltage.
The
l denotes the specifications which apply over the full operating temperature
range, otherwise specifications are at TA = 25°C. Unless otherwise specified VS = 5V (V+ = 5V, V= 0V), RIN = 806Ω, and RLOAD = 1k.
PARAMETER
CONDITIONS
MIN
TYP
MAX
UNITS
Filter Gain, RIN = 229Ω
VIN = 2VP-P, fIN = DC to 260kHz
VS = 3V
VS = 5V
VS = ±5V
10.4
10.3
10.1
10.9
10.8
10.7
11.5
11.4
11.3
dB
dB
dB
Filter Gain Temperature Coefficient (Note 2) fIN = 260kHz, VIN = 2VP-P
780
ppm/C
Noise
Noise BW = 10kHz to 5MHz, RIN = 806Ω
45
μVRMS
Distortion (Note 4)
1MHz, 2VP-P, RL = 800Ω
2nd Harmonic
3rd Harmonic
93
96
dBc
dBc
5MHz, 2VP-P, RL = 800Ω
2nd Harmonic
3rd Harmonic
66
73
dBc
dBc
Differential Output Swing
Measured Between Pins 4 and 5
VS = 5V
Pin 7 Shorted to Pin 2
VS = 3V
l
l
3.85
3.85
4.8
4.8
VP-P DIFF
VP-P DIFF
Input Bias Current
Average of Pin 1 and Pin 8
l
–70
–30
μA
Input Referred Differential Offset
RIN = 806Ω
VS = 3V
VS = 5V
VS = ±5V
l
l
l
5
10
8
25
30
35
mV
mV
mV
RIN = 229Ω
VS = 3V
VS = 5V
VS = ±5V
l
l
l
5
5
5
13
16
20
mV
mV
mV
Differential Offset Drift
10
μV/°C
Input Common Mode Voltage (Note 3)
Differential Input = 500mVP-P,
VS = 3V
RIN = 229Ω
VS = 5V
VS = ±5V
l
l
l
0.0
0.0
–2.5
1.5
3.0
1.0
V
V
V
Output Common Mode Voltage (Note 5)
Differential Output = 2VP-P,
VS = 3V
Pin 7 at Midsupply
VS = 5V
VS = ±5V
l
l
l
1.0
1.5
–2.5
1.5
3.0
2.0
V
V
V
Output Common Mode Offset
(with Respect to Pin 2)
VS = 3V
VS = 5V
VS = ±5V
l
l
l
–25
–30
–55
5
0
–5
50
45
35
mV
mV
mV
Common Mode Rejection Ratio
61
dB
Voltage at VMID (Pin 7)
VS = 5
VS = 3
l
2.46
2.51
1.5
2.55
V
V
VMID Input Resistance
l
4.3
5.5
7.7
VOCM Bias Current
VOCM = VMID = VS/2
VS = 5
VS = 3
l
l
–15
–10
–3
–3
μA
μA
Power Supply Current
VS = 3V, VS = 5
VS = 3V, VS = 5
VS = ±5V
l
l
28
30
31
34
38
mA
mA
mA
Note 5: Output common mode voltage is the average of the voltages at
Pins 4 and 5. The output common mode voltage is equal to the voltage
applied to Pin 2.
Note 6: The LT6600C is guaranteed functional over the operating
temperature range –40°C to 85°C.
Note 7: The LT6600C is guaranteed to meet 0°C to 70°C specifications and
is designed, characterized and expected to meet the extended temperature
limits, but is not tested at –40°C and 85°C. The LT6600I is guaranteed to
meet specified performance from –40°C to 85°C.
Note 8: The inputs are protected by back-to-back diodes. If the differential
input voltage exceeds 1.4V, the input current should be limited to less than
10mA.


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