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LTC6410IUD-6-TRPBF Datasheet(PDF) 6 Page - Linear Technology

Part # LTC6410IUD-6-TRPBF
Description  Low Distortion, Low Noise Differential IF Amplifi er with Confi gurable Input Impedance
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Manufacturer  LINER [Linear Technology]
Direct Link  http://www.linear.com
Logo LINER - Linear Technology

LTC6410IUD-6-TRPBF Datasheet(HTML) 6 Page - Linear Technology

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LTC6410-6
6
64106fa
AC ELECTRICAL CHARACTERISTICS The l denotes the specifications which apply over the full operating
temperature range, otherwise specifications are at TA = 25°C. V+ = 3V, V= 0V, SHDN = 2V, +IN is shorted to +TERM, –IN is shorted to
–TERM, VINCM = VBIAS = 1.5V, input source resistance (RS) is 25Ω on each input (50Ω differential), RL = 50Ω from +OUT to –OUT, +IN
and –IN are AC-coupled, unless otherwise noted. VBIAS is defined as the voltage on theVBIAS pin. VOUTCM is defined as
(+OUT + –OUT)/2. VINCM is defined as (+IN + –IN)/2. VINDIFF is defined as (+IN – –IN). VOUTDIFF is defined as (+OUT – –OUT).
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: The LTC6410C-6/LTC6410I-6 is guaranteed functional over the
operating temperature range of –40°C to 85°C.
Note 3: The LTC6410C-6 is guaranteed to meet specified performance
from 0°C to 70°C. It is designed, characterized and expected to meet
specified performance from –40°C and 85°C but is not tested or QA
SYMBOL
PARAMETER
CONDITIONS
MIN
TYP
MAX
UNITS
NF
Noise Figure
ZIN = 50Ω (Note 5)
ZIN = 200Ω
11
7
dB
dB
240MHz Signal
HD2
Second Harmonic Distortion
VOUTDIFF = 0dBm
–66
dBc
HD3
Third Harmonic Distortion
VOUTDIFF = 0dBm
–52
dBc
IM3
Third Order Intermodulated
Distortion
F1 = 239.5MHz, F2 = 240.5MHz, VOUTDIFF = 0dBm/Tone
–54
dBc
F1 = 239.5MHz, F2 = 240.5MHz, VOUTDIFF = –5dBm/Tone
–63
dBc
F1 = 239.5MHz, F2 = 240.5MHz, VOUTDIFF = 0dBm/Tone,
VCC = 5V, VBIAS = 2.5V, SHDN = 3V
–64
dBc
OIP3
Output Third-Order Intercept
F1 = 239.5MHz, F2 = 240.5MHz, VOUTDIFF = 0dBm/Tone
27
dBm
F1 = 239.5MHz, F2 = 240.5MHz, VOUTDIFF = –5dBm/Tone
27
dBm
F1 = 239.5MHz, F2 = 240.5MHz, VOUTDIFF = 0dBm/Tone,
VCC = 5V, VBIAS = 2.5V, SHDN = 3V
32
dBm
P1dB
Output 1dB Compression Point
12.8
dBm
NF
Noise Figure
ZIN = 50Ω (Note 5)
ZIN = 200Ω
11
8
dB
dB
380MHz Signal
HD2
Second Harmonic Distortion
VOUTDIFF = 0dBm
–57
dBc
HD3
Third Harmonic Distortion
VOUTDIFF = 0dBm
–45
dBc
IM3
Third Order Intermodulated
Distortion
F1 = 379.5MHz, F2 = 380.5MHz, VOUTDIFF = 0dBm/Tone
–51
dBc
F1 = 379.5MHz, F2 = 380.5MHz, VOUTDIFF = –5dBm/Tone
–64
dBc
F1 = 379.5MHz, F2 = 380.5MHz, VOUTDIFF = 0dBm/Tone,
VCC = 5V, VBIAS = 2.5V, SHDN = 3V
–60
dBc
OIP3
Output Third-Order Intercept
F1 = 379.5MHz, F2 = 380.5MHz, VOUTDIFF = 0dBm/Tone
26
dBm
F1 = 379.5MHz, F2 = 380.5MHz, VOUTDIFF = –5dBm/Tone
27
dBm
F1 = 379.5MHz, F2 = 380.5MHz, VOUTDIFF = 0dBm/Tone,
VCC = 5V, VBIAS = 2.5V, SHDN = 3V
30
dBm
P1dB
Output 1dB Compression Point
10.8
dBm
NF
Noise Figure
ZIN = 50Ω (Note 5)
ZIN = 200Ω
12
8
dB
dB
sampled at these temperatures. The LT6410I-6 is guaranteed to meet
specified performance from –40°C to 85°C.
Note 4: This parameter is pulse tested.
Note 5: en can be calculated from ZIN = 50Ω NF with the formula:
en = (10
NF
10 –1)4kT50
where
k = Boltzmann’s constant and
T = absolute temperature


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