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 RF9908
6
Typical Applications
* CDMA/FM Cellular Systems * Supports Dual-Mode AMPS/CDMA * Supports Dual-Mode TACS/CDMA * Commercial and Consumer Systems * 3-Cell Battery-Operated Systems
CDMA/FM UPCONVERTER/BPSK MODULATOR
Product Description
The RF9908 is a complete upconverter designed for CDMA/FM cellular applications. The IC contains a double-balanced mixer stage and an output buffer amplifier stage. This device may also be used to directly BPSK modulate a carrier. The mixer is a Gilbert cell with emitter degeneration resistors to provide high IP3. The output stage is a class-B, push-pull configuration to reduce the overall current and still provide a good 50 output match. The unit operates at 3.6V and does not require any external matching components other than coupling capacitors. This circuit is designed as part of the RFMD CDMA Chip Set, consisting of a Transmit IF AGC Amp, this Transmit Upconverter, a Receive LNA/Mixer, and a Receive IF AGC Amp. Optimum Technology Matching(R) Applied
Si BJT Si Bi-CMOS
0.008 0.004 0.018 0.014
-A-
0.196 0.189 0.050
6
0.157 0.150 0.244 0.229
Dimensions in mm
0.068 0.053
8 MAX 0 MIN
0.034 0.016
0.009 0.007
NOTES: 1. Shaded lead is Pin 1. 2. All dimensions are excluding mold flash. 3. Lead coplanarity 0.005 with respect to datum "A".
u
Package Style: SOIC-8
GaAs HBT SiGe HBT
GaAs MESFET Si CMOS
Features
* Supports Dual Mode Operation * +8dBm Input/Output Intercept Point * Single 3.6V Power Supply * Internally Matched Inputs and Outputs * Buffered Output * Double-Balanced Mixer
IF+ 1 IF- 2 GND 3 LO+ 4
8 RF OUT 7 VCC 6 GND 5 LO-
Ordering Information
RF9908 RF9908 PCBA CDMA/FM Upconverter/BPSK Modulator Fully Assembled Evaluation Board
Functional Block Diagram
RF Micro Devices, Inc. 7628 Thorndike Road Greensboro, NC 27409, USA
Tel (336) 664 1233 Fax (336) 664 0454 http://www.rfmd.com
Rev A2 010720
6-57
MIXERS
RF9908
Absolute Maximum Ratings Parameter
Supply Voltage Input RF Power Operating Ambient Temperature Storage Temperature
Rating
-0.5 to 7.0 +6 -40 to +85 -40 to +150
Unit
VDC dBm 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).
Parameter
Overall
RF Output Frequency Range Conversion Gain Noise Figure Output IP3 Output ACP
Specification Min. Typ. Max.
500 to 1500 0 14 +8 -54 -75 1.5:1 30 DC to 200 265 30 30 300 to 1700 -6 to 0 -30 30 2:1 3.65% 18
Unit
Condition
T=25C, VCC =3.6V, RF=840MHz, LO=970MHz, IF=130MHz
MHz dB dB dBm dB dB
Over temperature and frequency
6
MIXERS
Output ALT Output VSWR Spurious Product Rejection
dBc MHz dB dB MHz dBm dBm dB
Referenced to a 1.23MHz in-band power. (885kHz offset) Referenced to a 1.23MHz in-band power. (1.98MHz offset) 50 Referenced to RF output
IF Input
IF Frequency Differential Input Impedance IF to RF Output Isolation IF to LO Isolation
LO Input
LO Frequency Range LO Level LO to RF Output Leakage RF to LO Isolation LO Input VSWR
-20
50 V mA
Power Supply
Voltage Current Consumption
6-58
Rev A2 010720
RF9908
Pin 1 Function IF+ Description
Balanced IF Input Pin. This pin is internally DC biased and should be DC blocked if connected to a device with a DC level present. For singleended input operation, one pin is used as an input and the other IF input is AC coupled to ground. The balanced, as well as single-ended, input impedance is 265.
Interface Schematic
IF+ IF-
BIAS
2 3 4
IFGND LO+
Same as pin 1, except complementary input. Ground connection. Keep traces physically short and connect immediately to ground plane for best performance. Balanced LO Input Pin. This pin is internally DC biased and should be DC blocked if connected to a device with a DC level present. For singleended input operation, one pin is used as an input and the other LO input is AC coupled to ground. The balanced, as well single-ended, input impedance is 50. Same as pin 4, except complementary input. Same as pin 3. Supply Voltage pin. External bypassing is required. External RF, LO, and IF bypassing is required. The trace length between the pin and the bypass capacitors should be minimized. The ground side of the bypass capacitors should connect immediately to ground plane. RF Output Pin. This pin is internally DC blocked. The output impedance is 50.
See pin 1.
LO+
LO-
BIAS
5 6 7
LOGND VCC
See pin 4.
6
MIXERS
RF OUT
8
RF OUT
Application Schematic
1 nF IF+ 1 nF IF2 3 100 pF LO+ 4 5 100 pF 7 100 pF 6 100 nF 1 8 VCC RF OUT
Rev A2 010720
6-59
RF9908
Evaluation Board Schematic
(Download Bill of Materials from www.rfmd.com.)
P1 P1-1 1 2 NC C1 2.2 nF 1 2 C2 2.2 nF 3 4 8 7 6 50 Microstrip 5 C5 10 nF LO3 VCC GND 9908400 Rev -
IF IN J1 C3 8 pF
T1 1:4
50 Microstrip
RF OUT J3 P1-1
C6 47 pF
C7 100 nF
6
MIXERS
C4 10 nF
Evaluation Board Layout Board Size 1.4" x 1.4"
Board Thickness 0.031", Board Material FR-4
6-60
Rev A2 010720


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