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HMC-MDB218

Analog Devices
Part Number HMC-MDB218
Manufacturer Analog Devices
Description GaAs MMIC SUB-HARMONIC IRM MIXER
Published Mar 6, 2017
Detailed Description MIXERS - SUB-HARMONIC - CHIP v02.1023 Typical Applications 2 This HMC-MDB218 is ideal for: • Short-Haul / High Capac...
Datasheet PDF File HMC-MDB218 PDF File

HMC-MDB218
HMC-MDB218


Overview
MIXERS - SUB-HARMONIC - CHIP v02.
1023 Typical Applications 2 This HMC-MDB218 is ideal for: • Short-Haul / High Capacity Radios • SATCOM • Military Radar, ECM & EW • Sensors • Test & Measurement Equipment Functional Diagram HMC-MDB218 GaAs MMIC SUB-HARMONIC IRM MIXER, 54 - 64 GHz Features Wide IF Bandwidth: DC - 3 GHz RF Frequency: 54 to 64 GHz LO Frequency: 27 to 32 GHz High Image Rejection: 30 dB Passive; No DC Bias Required Die Size: 1.
54 x 1.
41 x 0.
1 mm General Description The HMC-MDB218 is a sub-harmonically pumped (x2) MMIC Mixer which can be used as either an image reject mixer (IRM) or a single sideband upconverter.
This passive MMIC mixer is fabricated with GaAs Heterojunction Bipolar Transistor (HBT) Shottky diode technology.
For downconversion applications, an external quadrature hybrid can be used to select the desired sideband while rejecting image signals.
All bond pads and the die backside are Ti/Au metallized and the Shottky devices are fully passivated for reliable operation.
The HMC-MDB218 Sub Harmonic IRM is compatible with conventional die attach methods, as well as thermocompression and thermosonic wire bonding, making it ideal for MCM and hybrid microcircuit applications.
All data shown herein is measured with the chip in a 50 Ohm environment and contacted with RF probes.
2-1 Electrical Specifications*, TA = 25 °C, IF = 1 GHz, LO = +10 dBm Parameter Min.
Typ.
Frequency Range, RF 54 - 64 Frequency Range, LO 27 - 32 Frequency Range, IF DC - 3 Conversion Loss 12.
5 1 dB Compression (Input) -2 Image Rejection 30 LO to RF Isolation 30 LO to IF Isolation 30 IP3 (Input) 7 Amplitude Balance 0.
3 Phase Balance 1 * Unless otherwise indicated, all measurements are from probed die Max.
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