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RF Micro Devices

RFPD3020 Datasheet Preview

RFPD3020 Datasheet

Hybrid Power Doubler amplifier module

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RFPD3020
45MHz to
1600MHz
GaAs/GaN
Power Dou-
bler Hybrid
RFPD3020
45MHz to 1600MHz GaAs/GaN Power
Doubler Hybrid
Package: SOT-115J
+VB
Features
Excellent Linearity
Superior Return Loss
Performance
Extremely Low Distortion
Optimal Reliability
Low Noise
Unconditionally Stable Under All
Terminations
Extremely High Output Capability
22.5dB Min. Gain at 1600MHz
450mA Max. at 24VDC
Applications
45 MHz to 1600MHz CATV
Amplifier Systems
INPUT
OUTPUT
Functional Block Diagram
Product Description
The RFPD3020 is a hybrid power doubler amplifier module. The part employs GaAs
pHEMT die and GaN HEMT die, has high output capability, and is operated from
45MHz to 1600MHz. It provides excellent linearity and superior return loss perfor-
mance with low noise and optimal reliability.
Ordering Information
RFPD3020
45MHz to 1600MHz GaAs/GaN Power Doubler Hybrid
DS121115
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. ©2012, RF Micro Devices, Inc.
7628 Thorndike Road, Greensboro, NC 27409-9421 · For sales or technical
support, contact RFMD at (+1) 336-678-5570 or customerservice@rfmd.com.
1 of 3




RF Micro Devices

RFPD3020 Datasheet Preview

RFPD3020 Datasheet

Hybrid Power Doubler amplifier module

No Preview Available !

RFPD3020
Absolute Maximum Ratings
Parameter
Rating
RF Input Voltage (single tone)
DC Supply Over-Voltage
(5 minutes)
Storage Temperature
Operating Mounting Base
Temperature
60
30
-40 to +100
-30 to +100
Unit
dBmV
V
°C
°C
Caution! ESD sensitive device.
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.
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.
RoHS (Restriction of Hazardous Substances): Compliant per EU Directive
2002/95/EC.
Nominal Operating Parameters
Parameter
Specification
Min. Typ. Max.
Unit
Condition
Overall
Power Gain
21.0
21.7
22.0
VB = 24V; TMB = 30°C; ZS = ZL = 75
dB f = 45MHz
22.5
23.5
24.5
dB f = 1600MHz
Slope[1]
0.5 1.0 2.5 dB f = 45MHz to 1600MHz
Flatness of Frequency Response
1.3 dB
Input Return Loss
-20
dB f = 45MHz to 320MHz
-18 dB f = 320MHz to 640MHz
-16 dB f = 640MHz to 870MHz
-15 dB f = 870MHz to 1200MHz
-14 dB f = 1200MHz to 1600MHz
Output Return Loss
-20
dB f = 45MHz to 320MHz
-19 dB f = 320MHz to 640MHz
-18 dB f = 640MHz to 870MHz
-13 dB f = 870MHz to 1200MHz
-10 dB f = 1200MHz to 1600MHz
Noise Figure
3.0 4.0 dB f = 50MHz to 1600MHz
Total Current Consumption (DC)
420.0
450.0
mA
Distortion Data 45MHz to
550MHz
VB = 24V; TMB = 30°C; ZS = ZL = 75
CTB[3]
XMOD[4]
CSO[5]
-77 -74 dBc VO = 56.4dBmV at 1000MHz, 13.4dB
-71
-68
dBc
extrapolated tilt, 79 analog channels plus 75
digital channels (-6dB offset)[2]
-71 -68 dBc
CIN[6]
63 66
dB
Notes:
1. The slope is defined as the difference between the gain at the start frequency and the gain at the stop frequency.
2. 79 analog channels, NTSC frequency raster: 55.25MHz to 547.25MHz, +43dBmV to +50dBmV tilted output level, plus 75 digital channels, -6dB offset relative to
the equivalent analog carrier.
3. Composite triple beat (CTB) is defined by the NCTA.
4. Cross modulation (XMOD) is measured at baseband (selective voltmeter method), referenced to 100% modulation of the carrier being tested.
5. Composite second order (CSO) (both sum and difference products) is defined by the NCTA.
6. Carrier to intermodulation noise (CIN) is defined by ANSI/SCTE 17 (Test procedure for carrier to noise).
2 of 3
7628 Thorndike Road, Greensboro, NC 27409-9421 · For sales or technical
support, contact RFMD at (+1) 336-678-5570 or customerservice@rfmd.com.
DS121115


Part Number RFPD3020
Description Hybrid Power Doubler amplifier module
Maker RF Micro Devices
Total Page 3 Pages
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