DRIVER &GAIN BLOCK AMPLIFIERS -SMT
1
HMC313 / 313E
v07.0418
GaAs InGaP HBT MMIC BROADBAND
AMPLIFIER GAIN BLOCK, DC - 6 GHz
For price, delivery, and to place orders: Analog Devices, Inc.,
One Technology Way, P.O. Box 9106, Norwood, MA 02062-9106
Phone: 781-329-4700 • Order online at www.analog.com
Application Support: Phone: 1-800-ANALOG-D
Information furnished by Analog Devices is believed to be accurate and reliable. However, no
responsibility is assumed by Analog Devices for its use, nor for any infringements of patents or other
rights of third parties that may result from its use. Specications subject to change without notice. No
license is granted by implication or otherwise under any patent or patent rights of Analog Devices.
Trademarks and registered trademarks are the property of their respective owners.
General Description
Features
The HMC313 & HMC313E are GaAs InGaP
Heterojunction Bipolar Transistor (HBT) MMIC
ampliers that operate from a single Vcc supply.
The surface mount SOT26 amplier can be used
as a broadband gain stage or used with external
matching for optimized narrow band applications.
With Vcc biased at +5V, the HMC313(E) offers 17 dB
of gain and +15 dBm of saturated power while only
requiring 50 mA of current.
P1dB Output Power: +14 dBm
Output IP3: +27 dBm
Gain: 17 dB
Single Supply: +5V
High Reliability GaAs HBT Process
Ultra Small Package: SOT26
Included in the HMC-DK001 Designer’s Kit
Ideal as a Driver & Amplier for:
• 2.2 - 2.7 GHz MMDS
• 3.5 GHz Wireless Local Loop
• 5 - 6 GHz UNII & HiperLAN
Electrical Specications, TA = +25 °C, Vcc = +5.0V
Parameter Vcc = +5V Units
Min. Ty p . Max.
Frequency Range DC - 6 GHz
Gain 14 17 20 dB
Gain Variation Over Temperature 0.02 0.03 dB/°C
Input Return Loss 7 dB
Output Return Loss 6 dB
Reverse Isolation 30 dB
Output Power for 1 dB Compression (P1dB) @ 1.0 GHz 11 14 dBm
Saturated Output Power (Psat) @ 1.0 GHz 15 dBm
Output Third Order Intercept (IP3) @ 1.0 GHz 24 27 dBm
Noise Figure 6.5 dB
Supply Current (Icc) 50 mA
Note: Data taken with broadband bias tee on device output.
Functional Diagram
Typical Applications