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 RF2302
4
Typical Applications
* CDMA Cellular/PCS and JCDMA Systems * TDMA Cellular/PCS Systems * GSM Systems * Wireless Local Loop Systems * Wideband CDMA Systems * PDC Systems (950MHz and 1450MHz)
BROADBAND LINEAR VARIABLE GAIN AMPLIFIER
Product Description
The RF2302 is a broadband linear variable gain amplifier that was designed specifically for digital communications systems that require linear amplification over a wide gain control range. It is suitable for use in CDMA or TDMA systems in the cellular or PCS band, in DAMPS systems, and in PDC systems. Operating supply voltage ranges from 3V to 6V. The device operates over a large frequency band, from 100MHz to 2000MHz, and is tuned to a specific frequency band with an output bias feed inductor and blocking capacitor. Bias optimization may be achieved by adjusting the voltage to pin 8 (PD). The IC is manufactured on an advanced Gallium Arsenide Heterojunction Bipolar Transistor (GaAs HBT) process and is featured in a new standard miniature 8-lead plastic MSOP package. Optimum Technology Matching(R) Applied
Si BJT Si Bi-CMOS
4
0.192 + 0.008 0.012 0.006 + 0.003 A
GENERAL PURPOSE AMPLIFIERS
0.0256
R F2 37
0.021 + 0.004
0.118 + 0.004 sq.
6
0.034
NOTES: 1. Shaded lead is pin 1. 2. All dimensions are exclusive of flash, protrusions or burrs. 3. Lead coplanarity: 0.002 with respect to datum "A".
6 MAX 0 MIN
0.006 + 0.002
ro du ct
u
Package Style: MSOP-8
GaAs HBT SiGe HBT
GaAs MESFET Si CMOS
Features
* 25dB Linear Gain Control range * +14dBm OP1dB at 3.5V (836MHz) * Single 3V to 6V Supply * 14dB Max Gain at 836MHz * 10dB Max Gain at 1900MHz * 4dB Noise Figure at 836MHz
VCC 2 GND 3 GND 4
U pg r
RF IN 1
S ee
ad ed
8 PD 7 RF OUT 6 GND 5 GC
P
Functional Block Diagram
Ordering Information
RF2302 Broadband Linear Variable Gain Amplifier RF2302 PCBA-L Fully Assembled Evaluation Board 836MHz RF2302 PCBA-H Fully Assembled Evaluation Board 1.88GHz
RF Micro Devices, Inc. 7625 Thorndike Road Greensboro, NC 27409, USA Tel (336) 664 1233 Fax (336) 664 0454 http://www.rfmd.com
Rev A8 010410
4-43
RF2302
Absolute Maximum Ratings Parameter
Supply Voltage Power Down Voltage Gain Control Voltage DC Current Output Load VSWR Operating Ambient Temperature Storage Temperature
Rating
0 to +8.0 0 to +3.1 0 to +3.1 100 12:1 -40 to +85 -40 to +150
Unit
VDC VDC VDC mA C C Caution! ESD sensitive device.
RF Micro Devices believes the furnished information is correct and accurate at the time of this printing. However, RF Micro Devices reserves the right to make changes to its products without notice. RF Micro Devices does not assume responsibility for the use of the described product(s).
4
GENERAL PURPOSE AMPLIFIERS
Parameter
Overall
RF Frequency Range Small Signal Maximum Gain Small Signal Minimum Gain Noise Figure Linear Gain Control Range Gain Control Slope Input IP3
Specification Min. Typ. Max.
100 13 9 -22 -30 2000 15 12 -19 -27
Unit
MHz dB dB dB dB dB dB dB V/V dBm dBm dBm dBm
Condition
VCC =3.0V, VPD =2.8V, VGC =2.2V, T=25C
Input VSWR Output VSWR
TDMA
ACPR ALT1 -33 -34 -63 -73 -50 -55 -55 3 2.7 40
CDMA
ACPR ALT1
ad ed
-34 -35 -68 -75 -52 -59 -57
ro du ct
3:1 6 2.9 1.0 55 9 18 10 100
32 1 +11 +10 -1 +1
3 +12.5 +11 +1 +3 1.8:1 2.5:1
P
Power Supply
Supply Voltage Power Down Voltage High Power Down Voltage Low DC Current Consumption VPD Current VGC Current Power Down Current Turn On/Off Time
U pg r
4-44
S ee
50 7 16
R F2 37
dBc dBc dBc dBc dBc dBc dBc V V mA mA A A nS
14 11 -20 -29 4 7 34
Freq=836MHz, VGC =2.2V Freq=1880MHz, VGC =2.2V Freq=836MHz, VGC =1.4V Freq=1880MHz, VGC =1.4V Freq=836MHz, VGC =2.2V Freq=1880MHz, VGC =2.2V VGC =1.4V to 2.2V Slope=Output peak voltage/VGC Freq=836 MHz, VGC =2.2V Freq=1880 MHz, VGC =2.2V Freq=836MHz, VGC =1.4V Freq=1880MHz, VGC =1.4V In 50 system In 50 system
836MHz, VGC =2.2V 1880MHz, VGC =2.2V 836MHz, VGC =2.2V 1880MHz, VGC =2.2V 836MHz, VGC =2.2V 1880MHz, VGC =2.2V 836MHz, VGC =2.2V T=25C
VCC =3.0V, VPD =2.8V, VGC =1.4V to 2.2V VPD =2.8V, VGC =2.2V, VCC =3.0V VPD =2.8V, VGC =2.2V, VCC =3.0V VPD <1V, VGC <1V
6
Rev A8 010410
RF2302
Pin 1 2 3 4 5 Function RF IN VCC GND GND GC Description
RF input pin. This pin is DC coupled and requires a blocking capacitor. Power supply. This pin is connected to a battery or a regulated supply and requires a bypass capacitor as close to the pin as possible. Ground connection. Keep traces physically short and connect immediately to ground plane for best performance. Ground connection. Keep traces physically short and connect immediately to ground plane for best performance. Use a separate ground via for this pin. Analog gain control pin. This pin controls the gain of the IC. Minimum gain occurs at VGC <1V and maximum gain is achieved with VGC =2.2V. 25dB of linear gain control with no variation of input P1dB is available, and additional attenuation is possible with VGC <1V with input P1dB variation. Bypass this pin near the device. Same as pin 3. RF output pin. This pin is DC coupled and requires VCC through a bias inductor sized accordingly to provide a high pass transformation with a series capacitor. This LC transformation sets the output load line for the amplifier. If this amplifier is driving a power amplifier or antenna, no additional matching is required. However, to improve the output match, a parallel resistor can be added across the inductor. For 836MHz applications use a 10nH bias inductor (optional resistor R3=100 ohms) and 2.7pF coupling capacitor. For 1900MHz applications use a 2.7nH bias inductor (optional resistor R3=150ohms) and 1.0pF coupling capacitor. Power down pin. This pin provides bias for the amplifier. To turn the amplifier on, this pin should be at 2.8V. Reducing this voltage below 0.5V ensures that the amplifier will draw less than 10A current from the supply. Additionally, bias current can be optimized for lower output power by adjusting this voltage over a 2.7V to 2.9V range from a regulated supply.
Interface Schematic
4
GENERAL PURPOSE AMPLIFIERS
VCC C12 1 F PD RF OUT J2 GC C14 1 F
6 7
GND RF OUT
8
PD
Evaluation Board Schematic - 836MHz or 1900MHz
(Download Bill of Materials from www.rfmd.com.)
P1 P1-1 1 2 3 GC GND VCC P1-1 P2 1 2 3
P
ad ed
ro du ct
PD GND VCC 2302400-, 401R3 () 100 150 L1 (nH) 10 2.7 C4 (pF) 2.7 1
P1-3
P1-3
U pg r
RF IN J1
50 strip
C6
1 2 3 4
VCC
S ee
C13 1 F
C9 15 pF
Board L (836 MHz) H (1900 MHz)
C6 (pF) 12 3.3
Rev A8 010410
R F2 37
R3 L1 8 7 C4 6 5
6
C3 1 nF C1 22 pF 50 strip C11 1nF
4-45
RF2302
Evaluation Board Layout 836MHz Board Size 2.0" x 2.0"
4
GENERAL PURPOSE AMPLIFIERS
Evaluation Board Layout 1.88GHz
4-46
S ee
U pg r
ad ed
P
ro du ct
R F2 37
Rev A8 010410
6
RF2302
Gain @ 3.3, 3.0, 2.7V versus VGC
(Frequency 1880MHz @ -8dBm, IS-95 Mod. VPD=2.8V, VGC=2.2 to 1.4V)
15.0 10.0 5.0 0.0 -5.0 -10.0 -15.0 -10.0 -20.0 -15.0 -25.0 -30.0 -35.0 1.4 1.6 Gain @ 3.3 V Gain @3.0 V Gain @ 2.7 v -20.0 -25.0 1.4 1.6 1.8 2.0 2.2 2.2
Gain @ 3.3, 3.0, 2.7V versus VGC
(Frequency 836MHz @ -6dBm, IS-95 Mod., VCC=3.0V, VPD=2.8V, VGC=2.2 to 1.4V)
20.0 15.0 10.0 5.0 Gain @ 3.3 V Gain @ 3.0 V Gain @ 2.7 V
Gain (dB)
Gain (dB)
0.0 -5.0
4
GENERAL PURPOSE AMPLIFIERS
VGC (V)
1.8
2.0
VGC (V)
(Frequency 1880MHz @ -8dBm, VCC=3.0V, VPD=2.8V)
30.0 Igc [UA] @25 C 25.0 Igc [UA] @ - 40 C Igc [UA] @ 85 C 20.0 25.0
(Frequency 836MHz @ -6dBm, VCC=3.0V, VPD=2.8V)
IGC (uA)
10.0
5.0
0.0
-5.0 0.0 0.2 0.4 0.6 0.8 1.0 1.2 1.4
P
ro du ct
10.0 5.0 0.0 -5.0 2.2 0.0 0.2 0.4 0.6 0.8 1.0 1.2 1.4 1.6 1.8 2.0 2.2
ad ed
1.6
1.8
2.0
VGC (V)
IGC (uA)
15.0
R F2 37
20.0 Igc [UA] @25 C Igc [UA] @ - 40 C Igc [UA] @ 85 C 15.0
IPD versus VPD (Frequency 1880MHz,VCC=3.0V,VGC=2.2V)
IPD versus VPD (Frequency 836MHz @ -6 dBm, VCC=3.0V, VGC=2.2V)
8.0 7.0 6.0 5.0 Ipd [mA] @25 C Ipd [mA] @ - 40 C Ipd [mA] @ 85 C
7.0 6.0 5.0
Ipd [mA] @25 C
Ipd [mA] @ - 40 C Ipd [mA] @ 85 C
U pg r
8.0
S ee
IPD (mA)
IPD (mA)
4.0 3.0 2.0 1.0 0.0
4.0 3.0 2.0 1.0 0.0 -1.0
-1.0 0.0 0.2 0.4 0.6 0.8 1.0 1.2 1.4 1.6 1.8 2.0 2.2 2.4 2.6 2.8
0.0
0.2
0.4
0.6
0.8
6
1.0 1.2
IGC versus VGC
IGC versus VGC
VGC (V)
1.4
1.6
1.8
2.0
2.2
2.4
2.6
2.8
VPD (V)
VPD (V)
Rev A8 010410
4-47
RF2302
Gain versus VGC
(Frequency 836MHz @ -6dBm, IS-95 Mod., VCC=3.0V, VPD=2.8V, 20.0 15.0 10.0 5.0 Gain @ - 40C Gain @ 25C Gain @ 85C VGC=2.2 to 1.0V)
Gain versus VGC (Frequency 1880MHz @ -8dBm, IS-95 Mod., VCC=3.0V, VPD=2.8V
15.0 10.0 5.0 0.0 Gain @ - 40C Gain @ 25C Gain @ 85C
Gain (dB)
0.0 -5.0 -10.0
Gain (dB)
1.0 1.2 1.4 1.6 1.8 2.0 2.2
-5.0 -10.0 -15.0 -20.0
4
GENERAL PURPOSE AMPLIFIERS
-15.0 -20.0 -25.0
-25.0 -30.0 -35.0 1.0 1.2 1.4 1.6 1.8 2.0 2.2
VGC (V)
VGC (V)
20.0 15.0 10.0 5.0
15.0 10.0 5.0 0.0
Gain @ - 40C Gain @ 25C Gain @ 85C
Gain (dB)
-5.0 -10.0 -15.0 -20.0 -25.0 1.0 1.2 1.4 1.6 1.8
P
2.0
ro du ct
-10.0 -15.0 -20.0 -25.0 -30.0 -35.0 1.0 1.2 1.4 1.6 1.8 2.0 2.2 2.2
0.0
VGC (V)
ad ed
Gain (dB)
-5.0
ACPR versus VGC (Frequency 1880MHz @ -8dBm, IS-95 Mod., VCC=3.0V, VPD=2.8V
0.0 ACPR @ 25C ACPR @ - 40C ACPR @ 85C 0.0
U pg r
-10.0
-10.0
-20.0
-20.0
ACPR(dBc)
ACPR (dBc)
-30.0
-40.0
S ee
-30.0
-40.0
-50.0
-50.0 -60.0 -60.0
-70.0
-80.0 1.0 1.2 1.4 1.6 1.8 2.0 2.2
-70.0 1.0 1.2 1.4 1.6 1.8 2.0 2.2
VGC (V)
4-48
R F2 37
Gain @ - 40C Gain @ 25C Gain @ 85C ACPR @ 25C ACPR @ -40C ACPR @ 85C
(Frequency 836MHz @ -6dBm, NADC. Mod., VCC=3.0V, VPD=2.8V)
(Frequency 1880MHz @ -8dBm, NADC Mod. VCC=3.0V, VPD=2.8V)
(Frequency 836MHz @ -6dBm, IS-95 Mod., VCC=3.0V, VPD=2.8V)
6
Gain versus VGC
Gain versus VGC
VGC (V)
ACPR versus VGC
Vgc(V)
Rev A8 010410
RF2302
ACPR versus VGC
-23.0
ACPR. versus VGC
(Frequency 836MHz @ -6dBm, NADC.Mod., VCC=3.0v, VPD=2.8V, 0.0 ACPR @25C ACPR @-40C -10.0 ACPR @85C VGC=2.2 to 1.0V)
(Frequency 1880MHz @ -8dBm.NADC Mod., VCC=3.0v, VPD=2.8v)
ACPR @25C ACPR @-40C ACPR @85C
-25.0
-5.0
-27.0
ACPR (dBc)
-29.0
ACPR. (dBc)
-15.0
-20.0
-31.0
-25.0
-33.0 -30.0 -35.0 -35.0 -37.0 1.0 1.2 1.4 1.6 1.8 2.0 2.2 -40.0 1.0 1.2 1.4 1.6 1.8 2.0 2.2
4
GENERAL PURPOSE AMPLIFIERS
VGC (V)
VGC (V)
0.0 -10.0
ALTR.CH.Power @25C ALTR.CH.Power @-40C ALTR.CH.Power @85C
Alternate Channel Power (dBc)
Alternate Channel Power (dBc)
-20.0 -30.0 -40.0 -50.0 -60.0 -70.0 -80.0 -90.0 1.0 1.2 1.4 1.6 1.8
P
ro du ct
-40.0 -50.0 -60.0 -70.0 -80.0 -90.0 2.2 1.0 1.2 1.4 1.6 1.8 2.0 2.2
ad ed
2.0
VGC (V)
R F2 37
0.0 -10.0 -20.0 -30.0 -50.0 -55.0 -60.0 -65.0 -70.0 -75.0 -80.0 1.0 1.2 1.4
(Frequency 836MHz @ -6dBm, IS-95 Mod., VCC=3.0V, VPD=2.8V, VGC=2.2 to 1.0V)
(Frequency 1880MHz @ -8dBm, IS-95 Mod., VCC=3.0V, VPD=2.8)
ALTR.CH.Power @ 25C ALTR.CH.Power @ -40C ALTR.CH.Power @ 85C
Alternate Channel Power versus VGC
0.0 -10.0 -20.0 -30.0 -40.0 -50.0 -60.0 -70.0 -80.0 -90.0 1.0 1.2 1.4 1.6 1.8 VGC=2.2 to 1.0V) ALTR.Ch.Power @25C ALTR.Ch.Power @-40C ALTR.Ch.Power @85C
Alternate Channel Power versus VGC
(Frequency 1880MHz @-8dBm, NADC Mod., VCC=3.0V, VPD=2.8V)
ALTR.Ch.Power @25C ALTR.Ch.Power @-40C ALTR.Ch.Power @85C
(Frequency 836MHz @ -6dBm, NADC. Mod., VCC=3.0V,VPD=2.8V,
Alternate Channel Power (dBc)
U pg r
2.0
2.2
Alternate Channel Power (dBc)
S ee
6
Alternate Channel Power versus VGC
Alternate Channel Power versus VGC.
VGC (V)
1.6
1.8
2.0
2.2
VGC (V)
VGC (V)
Rev A8 010410
4-49
GENERAL PURPOSE AMPLIFIERS
4
4-50
RF2302
S ee
U pg r
ad ed
P
ro du ct
R F2 37
6
Rev A8 010410


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