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RF5602 Datasheet, PDF (4/27 Pages) RF Micro Devices – 3.0V TO 5.0V, 2.3GHz TO 2.7GHz LINEAR POWER AMPLIFIER
RF5602
Parameter
WiMax IEEE 802.16e
Frequency Range
Compliance
Output Power
EVM
Output Power
EVM
Output Power
EVM
Gain
Gain variation over temperature
Power Detector
Low Gain Mode (Gain Reduction)
Input Impedance
Output P1dB
Power Down
PA is “OFF”
PA is “ON”
Power Supply
Operating Voltage
Current Consumption
Specification
Min. Typ. Max.
2500
26
25
23.5
31
31
31
-2
+10
26.5
2.5
25.5
2
24
3
32
32
32
33
2700
3
3.0
4
2
+29
50
33
32
30.5
Unit
Condition
MHz
dBm
%
dBm
%
dBm
%
dB
dB
dB
dB
dB
dB

dBm
dBm
dBm
Nominal Condition T = 25°C, VCC = 3.3V, 4.2V, 5V, VREG
= 2.9V, Freq = 2600MHz, Duty Cycle 1 to 100% unless
otherwise noted
IEEE 802.16e
Measured standard IEEE 802.16e waveform (16QAM,
10MHz BW), VCC = 5.0V
RMS, Mean
Measured standard IEEE 802.16e waveform (16QAM,
10MHz BW), VCC = 4.2V
RMS, Mean
Measured standard IEEE 802.16e waveform (16QAM,
10MHz BW), VCC = 3.3V
RMS, Mean
At nominal condition and VCC = 5.0V (Over VREG and fre-
quency)
At nominal condition and VCC = 4.2V (Over VREG and fre-
quency)
At nominal condition and VCC = 3.3V (Over VREG and fre-
quency)
-40°C to +85°C
Power detector usable range
At VCC = 5.0V, VREG 1 and 3 = 2.9V,
VREG 2 = Low, and Temp = 25°C (In this mode, the gain
of the power amplifier drops by 33dB typical from its orig-
inal gain)
Input matched to 50
At nominal conditions with CW Signal and VCC = 5.0V
At nominal conditions with CW Signal and VCC = 4.2V
At nominal conditions with CW Signal and VCC = 3.3V
1.75
2.9
0.6
VCC
5.0
VDC
3 to 5
500
600
175
225
400
475
160
210
350
400
150
180
V
mA RF POUT = +26dBm and VCC = 5.0V (Over VREG and fre-
quency)
mA Idle current, No RF and VCC = 5.0V (Over VREG and fre-
quency)
mA RF POUT = +25dBm and VCC = 4.2V (Over VREG and fre-
quency)
mA Idle current, No RF and VCC = 4.2V (Over VREG and fre-
quency)
mA RF POUT = +23.5dBm and VCC = 3.3V (Over VREG and fre-
quency)
mA Idle current, No RF and VCC = 3.3V (Over VREG and fre-
quency)
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DS120213