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| Image | Part Number | Manufacturer | Description | Series | Packaging | RoHS Status | Manufacturer Part Number | Voltage - Supply | Output | Shell Style | Package / Case | Polarization |
|---|---|---|---|---|---|---|---|---|---|---|---|---|
| LTC5544IUF | ADI (Analog Devices, Inc.) | IC POWER MANAGEMENT | - | - | - | - | 3.1 V ~ 3.5 V | - | - | 16-WQFN Exposed Pad | - | |
| HMC143-EAB | ADI (Analog Devices, Inc.) | IC MMIC MIXER | - | - | - | - | - | - | - | Die | - | |
| HMC-C015 | ADI (Analog Devices, Inc.) | MODULE MMIC MIXER DBL BAL GAAS | - | Bulk | - | - | - | - | - | Module, SMA Connectors | - | |
| HMC-MDB277 | ADI (Analog Devices, Inc.) | IC MMIC MIXER DBL-BAL DIE | - | Bulk | - | - | - | - | - | Die | - | |
| UPC8106TB-A | CEL (California Eastern Laboratories) | IC MIXER 400MHZ-2.5GHZ UP 6SMINI | UPC8106TB | Bulk | - | - | 2.7 V ~ 5.5 V | - | - | 6-TSSOP, SC-88, SOT-363 | - | |
| TFF1017HN/N1,115 | NXP Semiconductors / Freescale | IC MIXER 10.7-12.75GHZ 16DHVQFN | - | Tape & Reel (TR) | - | - | 4.5 V ~ 5.5 V | - | - | 16-VFQFN Exposed Pad | - | |
| TFF1015HN/N1,135 | NXP Semiconductors / Freescale | IC MIXER 10.7-12.75GHZ 16DHVQFN | - | Tape & Reel (TR) | - | - | 4.5 V ~ 5.5 V | - | - | 16-VFQFN Exposed Pad | - | |
| HMC525LC4 | ADI (Analog Devices, Inc.) | IC MMIC IQ MIXER 4-8.5GHZ 24-QFN | - | Strip | - | - | - | - | - | 24-TFQFN Exposed Pad | - | |
| HMC292LC3BTR | ADI (Analog Devices, Inc.) | IC MMIC MIXER HI IP3 12-QFN | - | Original-Reel® | - | - | - | - | - | 12-VFCQFN Exposed Pad | - | |
| DB0440LW1 | L3 Narda-MITEQ | BROADBAND DOUBLE BALANCED | DB0440 | - | - | - | - | - | - | Module, SMA Connectors | - |
RF mixers are electronic devices used to convert signals from one frequency to another in RF and microwave communication systems. They operate by combining two or more input signals and producing an output signal containing the sum and difference frequencies of the input signals. RF mixers find applications in frequency conversion, modulation, demodulation, upconversion, downconversion, and heterodyning processes in wireless communication systems, radar systems, test and measurement equipment, and satellite communication systems. They play a critical role in translating signals between different frequency bands, enabling efficient signal processing and transmission in RF systems.