Datasheet HMC-ALH244 (Analog Devices)

制造商Analog Devices
描述GaAs HEMT MMIC LOW NOISE AMPLIFIER, 24 - 40 GHz
页数 / 页6 / 1 — HMC-ALH244. GaAs HEMT MMIC LOW NOISE. AMPLIFIER, 24 - 40 GHz. Typical …
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HMC-ALH244. GaAs HEMT MMIC LOW NOISE. AMPLIFIER, 24 - 40 GHz. Typical Applications. Features. Functional Diagram

Datasheet HMC-ALH244 Analog Devices

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HMC-ALH244
v02.0209
GaAs HEMT MMIC LOW NOISE AMPLIFIER, 24 - 40 GHz
1
Typical Applications Features
This HMC-ALH244 is ideal for: Noise Figure: 3.5 dB IP • Point-to-Point Radios H Gain: 12 dB • Point-to-Multi-Point Radios C P1dB Output Power: +13 dBm • VSAT - Supply Voltage: +4V @ 45 mA • SATCOM Die Size: 2.50 x 1.4 x 0.1 mm RS IE IF L P
Functional Diagram General Description
M The HMC-ALH244 is a two stage GaAs MMIC HEMT A Low Noise Amplifi er die which operates between E 24 and 40 GHz. The amplifi er provides 12 dB of gain, IS a noise fi gure of 3.5 dB, and requires only 45 mA O from a +4V supply voltage. The HMC-ALH244 amplifi er N die is ideal for integration into Multi-Chip-Modules (MCMs) due to its small size (3.5 mm2). W O L
Electrical Specifi cations [1], T = +25° C, Vdd= 4V, Idd = 45mA [2] A
Parameter Min. Typ. Max. Units Frequency Range 24 - 40 GHz Gain 10 12 dB Noise Figure 3.5 4 dB Input Return Loss 15 dB Output Return Loss 17 dB Output Power for 1 dB Compression 13 dBm Supply Current (Idd) 45 100 mA [1] Unless otherwise indicated, all measurements are from probed die [2] Adjust Vgg between -1V to +0.3V (-0.2V Typ.) to achieve Idd = 45 mA total Information furnish F ed obr pri y Anal ce, de og Device li s vie s r beyli, a eve nd to pla d to be accura ce o te and rder reliabl s e , pl . Ho ease co wever, no For price, delivery, and to place orders: Analog Devices, Inc., responsibility is assumed by Analog Devices for its use, nor for any infringements of patents or other ntact Hittite Microwave Corporation: One Technology Way, P.O. Box 9106, Norwood, MA 02062-9106 rights of third parties that may result from its use. Specifications subject to change without notice. No
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