RF2369
Absolute Maximum Ratings
Caution! ESD sensitive device.
Parameter
Rating
Unit
Exceeding any one or a combination of the Absolute Maximum Rating conditions may
cause permanent damage to the device. Extended application of Absolute Maximum
Rating conditions to the device may reduce device reliability. Specified typical perfor-
mance or functional operation of the device under Absolute Maximum Rating condi-
tions is not implied.
Supply Voltage
-0.5 to +8.0
V
DC
Input RF Level
+10
dBm
°C
Operating Ambient Temperature
Storage Temperature
-40 to +85
-40 to +150
RoHS status based on EUDirective2002/95/EC (at time of this document revision).
°C
The information in this publication is believed to be accurate and reliable. However, no
responsibility is assumed by RF Micro Devices, Inc. ("RFMD") for its use, nor for any
infringement of patents, or other rights of third parties, resulting from its use. No
license is granted by implication or otherwise under any patent or patent rights of
RFMD. RFMD reserves the right to change component circuitry, recommended appli-
cation circuitry and specifications at any time without prior notice.
Specification
Parameter
Unit
Condition
Min.
150
Typ.
Max.
2500
894
T
=25°C, V =3.0V
CC
Overall
AMB
Frequency Range
Cellular Low Noise Amplifier
Frequency
824 to 894
MHz
MHz
869
HIGH GAIN MODE
Gain Select<0.8V, V /V =3V
PD REF
Gain
14.0
9.0
15.5
1.6
17.0
2.0
dB
dB
Noise Figure
Input IP3
11.5
dBm
Input VSWR
Output VSWR
Current Drain
BYPASS MODE
2:1
2:1
7.5
10.0
mA
Gain Select>1.8V, V /V =0V
PD REF
Gain
-3
-2
-1
dB
Input IP3
+10
+24
dBm
Input VSWR
2:1
2:1
4.0
Output VSWR
Current Drain
Cellular CDMA Driver
Frequency
2.0
mA
824
849
MHz
HIGH GAIN MODE
Gain Select<0.8V, V /V =3V
PD REF
Gain
14.0
4
15.5
2.0
17.0
2.5
dB
dB
Noise Figure
Output Power
ACPR1
dBm
-65
-70
dBc/30kHz
P
P
=+4dBm, +885kHz offset
=+4dBm, +1.98MHz offset
OUT
OUT
ACPR2
dBc/30kHz
mA
Input VSWR
2:1
2:1
Output VSWR
Current Drain
BYPASS MODE
8.5
Gain Select>1.8V, V /V =0V
PD REF
Gain
-3.0
+10
-2.0
+24
-1.0
dB
Input IP3
dBm
Input VSWR
Output VSWR
Current Drain
2:1
2:1
4.0
2.0
mA
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