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SA90-0001 Datasheet, PDF (1/5 Pages) Tyco Electronics – Vector Modulator, 1.94 to 2.24 GHz
Vector Modulator, 1.94 to 2.24 GHz
V 4.00
Features
n Operates 1.94 to 2.24 GHz
n Chip Scale Package.
n Low Amplitude Ripple
n Linear Phase
n 50 Ohm nominal impedance
n Continuously Variable Across a Full 360 degree range
n Test Boards to be Available
Description
M/A-COM's SA90-0001 is a Vector Modulator that signifi-
cantly reduces the required board space compared to hybrid
solutions. The monolithic passive elements will lead to
greater repeatability lot-to-lot. Low amplitude ripple will
provide superior performance. High intercept and compres-
sion points will contribute to more linear system perform-
ance. SA90-0001 is ideally suited for wireless infrastruc-
ture applications.
M/A-COM’s MADRCC0002 Dual Linearizer is designed
to simplify the control of Vector Modulators. See
Figure 1 and App Note AN3001.
CSP-6
Electrical Specifications TA = +25°
Parameter
Impedance
Reference Loss
Attenuation Range
Phase Shift Range
Amplitude Ripple
Deviation from Lin-
ear Phase
Return Loss
Input IP3
Input P1dB
Noise Figure
Switching Speed
I Supply
Test Conditions
—
Z = 50O
Z = 50O
Above Reference Loss
Z = 50O, Over minimum
Attenuation Range
Z = 50O, Ref Loss
Z = 50O, 5 dB above Ref Loss
Z = 50O, 10 dB above Ref Loss
Z = 50O, Ref Loss
Z = 50O, 5 dB above Ref Loss
Z = 50O, 10 dB above Ref Loss
Z = 50O, Ref Loss
Z = 50O, 5 dB above Ref Loss
Z = 50O, 10 dB above Ref Loss
Z = 50O, Ref Loss
Z = 50O, 5 dB above Ref Loss
Z = 50O, 10 dB above Ref Loss
Over 10 dB Attenuation Range
Over 10 dB Attenuation Range
Over 10 dB Attenuation Range
Over 10 dB Attenuation Range
50% Control to 10%/90% RF
—
Frequency
—
1.94—2.34 GHz
Units
O
dB
1.94—2.34 GHz dB
1.94—2.34 GHz
2.08—2.20 GHz
2.08—2.20 GHz
2.08—2.20 GHz
2.04—2.24 GHz
2.04—2.24 GHz
2.04—2.24 GHz
2.08—2.20 GHz
2.08—2.20 GHz
2.08—2.20 GHz
2.04—2.24 GHz
2.04—2.24 GHz
2.04—2.24 GHz
2.04—2.24 GHz
2.04—2.24 GHz
2.04—2.24 GHz
2.04—2.24 GHz
—
—
deg
dB
dB
dB
dB
dB
dB
deg
deg
deg
deg
deg
deg
dB
dBm
dBm
dB
ns
mA
1. Noise figure is approximately equal to the absolute attenuation.
Min
—
-13.5
10
0
—
—
—
—
—
—
—
—
—
—
—
—
15
—
—
—
—
—
Typical
50
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
+41
+29
—
500
—
Max
—
-10.0
—
360
±0.2
±0.25
±0.3
±0.35
±0.4
±0.5
±0.5
±1.0
±1.5
±1.0
±1.5
±2.0
—
—
—
Note 1
—
100