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MAX2016_06 Datasheet(Fiches technique) 5 Page - Maxim Integrated Products

Numéro de pièce MAX2016_06
Description  LF-to-2.5GHz Dual Logarithmic Detector/ Controller for Power, Gain, and VSWR Measurements
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Fabricant  MAXIM [Maxim Integrated Products]
Site Internet  http://www.maxim-ic.com
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 5 page
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LF-to-2.5GHz Dual Logarithmic Detector/
Controller for Power, Gain, and VSWR Measurements
_______________________________________________________________________________________
5
PARAMETER
SYMBOL
CONDITIONS
MIN
TYP
MAX
UNITS
Large-Signal Rise and Fall Time
Any 30dB step, no external capacitor on
pins FV1 and FV2
35
ns
0.1GHz
PRFINB = -32dBm
80
0.9GHz
PRFINB = -30dBm
75
1.9GHz
PRFINB = -27dBm
60
2.17GHz
PRFINB = -25dBm
55
±1dB Dynamic Range
2.5GHz
PRFINB = -23dBm
50
dB
Slope
fRF = 0.1GHz to 2.5GHz (A-B)
-25
mV/dB
OUTD Voltage Deviation
PRFINA = PRFINB = -30dBm, TA =
-20°C to +85°C
±0.25
dB
0.1GHz, PRFINB =
-32dBm
80
0.9GHz, PRFINB =
-30dBm
70
1.9GHz, PRFINB =
-27dBm
55
2.17GHz, PRFINB =
-25dBm
50
±1dB Dynamic Range over
Temperature Relative to Best-Fit
Curve at +25
°C
PRFINA is swept ;
TA = -20°C to
+85°C
2.5GHz, PRFINB =
-23dBm
45
dB
Gain Measurement Balance
PRFINB = PRFINB = -50dBm to -5dBm, fRF =
1.9GHz
0.2
dB
0.9GHz
90
1.9GHz
65
Channel Isolation
2.5GHz
55
dB
AC ELECTRICAL CHARACTERISTICS—OUTD (continued)
(Typical Application Circuit, VCC = +2.7V to +3.3V, R1 = R2 = R3 = 0
Ω, TA = -40°C to +85°C, unless otherwise noted. Typical values
are at VCC = 3.3V, CSETL = CSETH = VCC, TA = +25°C, unless otherwise noted.) (Note 1)
Note 1: The MAX2016 is tested at TA = +25°C and is guaranteed by design for TA = -40°C to +85°C.
Note 2: Typical minimum and maximum range of the detector at the stated frequency.
Note 3: Dynamic range refers to the range over which the error remains within the ±3dB range.
Note 4: The slope is the variation of the output voltage per change in input power. It is calculated by fitting a root-mean-square
straight line to the data indicated by the RF input power range.
Note 5: The intercept is an extrapolated value that corresponds to the output power for which the output voltage is zero. It is calcu-
lated by fitting a root-mean-square straight line to the data.




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