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PDF RF5602 Data sheet ( Hoja de datos )

Número de pieza RF5602
Descripción 3GHz To 2.7GHz Linear Power Amplifier
Fabricantes RF Micro Devices 
Logotipo RF Micro Devices Logotipo



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RF56023.3 V
to 5.0 V,
2.3GHz to
2.7GHz Lin-
ear Power
Amplifier
Proposed
RF5602
3.3V TO 5.0V, 2.3GHz TO 2.7GHz
LINEAR POWER AMPLIFIER
Package Style: QFN, 16-Pin, 3mmx3mmx0.45mm
Features
„ Single 3.3V to 5V Supply
„ 32dB to 34dB Small Signal Gain
(Typ.)
„ 2% EVM (RMS) at 26dBm, 5.0V
„ 2% EVM (RMS) at 25dBm, 4.2V
„ 3% EVM (RMS) at 23.5dBm,
3.3 V
„ Include Power Detector on Die
„ Multiple Frequency Ranges
Applications
„ 802.11b/g/n Access Points
„ PCS Communication Systems
„ 2.4GHz ISM Band Applications
„ Commercial and Consumer Sys-
tems
„ WiBro 2.3GHz to 2.4GHz Band
Applications
„ WLAN 2.4GHz to 2.5GHz Band
Applications
„ WiMAX 2.5GHz to 2.7GHz Band
Applications
16 15 14 13
BIAS VCC 1
12 RF OUT
RF IN 2
1st
Stage
Input
Match
2nd
Stage
Interstage
Match
3rd
Stage
Interstage
Match
11 RF OUT
PDOWN 3
10 RF OUT
Detector
Bias
VREG1 4
9 GND
5678
Functional Block Diagram
Product Description
The RF5602 is a linear power amplifier IC designed specifically for
medium power applications. The device is manufactured on an advanced
InGaP Heterojunction Bipolar Transistor (HBT) process, and has been
designed for use as the final RF amplifier in 802.11b/g/n access point
transmitters. The device is provided in a 3mmx3mmx0.45mm, 16-pin,
leadless chip carrier with a backside ground. The RF5602 is designed to
maintain linearity over a wide range of supply voltages and power outputs.
Ordering Information
RF5602
3.3V to 5.0V, 2.3GHz to 2.7GHz Linear Power Amplifier,
Matte-Sn (Pb-free) Finish
RF5602WLPCK-410 2.4GHz to 2.5GHz WLAN Fully Assembled Eval PCB at 5V
RF5602WBPCK-410 2.3GHz to 2.4GHz WiBro Fully Assembled Eval PCB at 5V
RF5602WMPCK-410 2.5GHz to 2.7GHz WiMAX Fully Assembled Eval PCB at 5V
Optimum Technology Matching® Applied
GaAs HBT
9GaAs MESFET
InGaP HBT
SiGe BiCMOS
Si BiCMOS
SiGe HBT
GaAs pHEMT
Si CMOS
Si BJT
GaN HEMT
RF MEMS
LDMOS
RF MICRO DEVICES®, RFMD®, Optimum Technology Matching®, Enabling Wireless Connectivity™, PowerStar®, POLARIS™ TOTAL RADIO™ and UltimateBlue™ are trademarks of RFMD, LLC. BLUETOOTH is a trade-
mark owned by Bluetooth SIG, Inc., U.S.A. and licensed for use by RFMD. All other trade names, trademarks and registered trademarks are the property of their respective owners. ©2006, RF Micro Devices, Inc.
Prelim DS090427
7628 Thorndike Road, Greensboro, NC 27409-9421 · For sales or technical
support, contact RFMD at (+1) 336-678-5570 or [email protected].
1 of 18

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RF5602 pdf
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Proposed
RF5602
Parameter
WiBro IEEE802.16e
Frequency Range
Compliance
Output Power
EVM
Output Power
EVM
Output Power
EVM
Gain
Gain variation over temperature
Input Impedance
Output P1dB
Power Down
PA is OFF
PA is ON
Power Supply
Operating Voltage
Current Consumption
Power Down Current
Power down current leakage
VREG1, 2, 3 Voltage
Specification
Min. Typ. Max.
2300
1.75
2.75
26
2
25
2
23.5
3
34
34
34
1.5
50
33
32
30.5
2.85
3 to 5
500
200
425
180
370
170
2.85
2400
TBD
TBD
TBD
0.6
5.0
10
1
3
10
Unit
MHz
dBm
%
dBm
%
dBm
%
dB
dB
dB
±dB
Ω
dBm
dBm
dBm
VCC
VDC
V
mA
mA
mA
mA
mA
mA
mA
mA
VDC
mA
Condition
Nominal Condition T=25 °C, VCC=3.3V, 4.2V,
5.0V, VREG=2.85V, Freq=2350MHz, Duty
Cycle 1 to 100% unless otherwise noted
IEEE802.16e
Measured standard IEEE802.16e waveform
(16QAM, 10MHz BW), VCC=5.0V
RMS, Mean
Measured standard IEEE802.16e waveform
(16QAM, 10MHz BW), VCC=4.2V
RMS, Mean
Measured standard IEEE802.16e waveform
(16QAM, 10MHz BW), VCC=3.3V
RMS, Mean
At nominal condition and VCC=5.0V
At nominal condition and VCC=4.2V
At nominal condition and VCC=3.3V
-10°C to +85°C
Input matched to 50Ω
At nominal conditions with CW Signal and
VCC = 5.0 V
At nominal conditions with CW Signal and
VCC = 4.2 V
At nominal conditions with CW Signal and
VCC = 3.3 V
Pin 3 (PDOWN) Voltage<0.6VDC
Pin 3 (PDOWN) Voltage<0.6VDC
RF POUT=+26dBm and VCC=5.0V
Idle Current, No RF and VCC=5.0V
RF POUT=+25dBm and VCC=4.2V
Idle Current, No RF and VCC=4.2V
RF POUT=+23.5dBm and VCC=3.3V
Idle Current, No RF and VCC=3.3V
VREG = 0.0 V
PDOWN=Low, VREG=High
Higher VREG voltage is possible but with adjust-
ing the series resistors to keep the voltage con-
stant at the pins.
I_REG Current
Prelim DS090427
7628 Thorndike Road, Greensboro, NC 27409-9421 · For sales or technical
support, contact RFMD at (+1) 336-678-5570 or [email protected].
5 of 18

5 Page





RF5602 arduino
www.DataSheet4U.com
Proposed
RF5602
Evaluation Board Schematic
WiBro 2.3GHz to 2.4GHz Operation
C17
10 uF
C13
5.1 pF
R4
0Ω
L5
1.8 nH
C11
1 μF
L3
12 nH
0.7 pF
P1 P2
P1-1 1 VCC P2-1 1 P_DETECT
2 GND
2 GND
HDR_1X2
P2-2 3 VREG3
P2-4 4 VREG2
P2-5 5 VREG1
HDR_1X6
C16
1 μF
C1
1000 pF
J1
RF IN
PDOWN
50 Ω μstrip
16 15 14 13
1 12
2 11
3 10
L6
3.9 nH
38 Ω μstrip
C19
2 pF
38 Ω μstrip
C9
2 pF
C8
1 pF
50 Ω μstrip
J2
RF OUT
R1
560 Ω
49
5678
R2
180 Ω
R3
56 Ω
hF
C7
330 pF
Voltage
5.0
3.3
R4 Value in Ohms
27
0
PDETECT
VREG
Prelim DS090427
7628 Thorndike Road, Greensboro, NC 27409-9421 · For sales or technical
support, contact RFMD at (+1) 336-678-5570 or [email protected].
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