The HMC204MS8G is a passive frequency doubler from Hittite Microwave Corporation. It has 17dB of conversion loss, 42dB of isolation, no need for DC bias, and a small MSOP package.
HMC204C8 is a passive miniature frequency doubler in a non-hermetic surface mount package from Hittite Microwave Corporation. It works in the frequency range of 4-8GHz with input power range of +10dBm-+15dBm. It features small size, no DC bias, and no measurable additive phase noise onto the multiplied signal.
HMC204 is a passive frequency doubler from Hittite Microwave Corporation. It is suitable for wireless local loop, LMDS, VSAT and point to point radios as well as test equipment. Its features are small size, no DC bias and no measurable additive phase noise onto the multiplied signal.
Hittite Microwave Corporation is a company that supplies microwave equipment, offering products such as GaAs MMIC DOUBLE-BALANCED MIXER. The product features small size, no DC bias required, and is suitable for applications such as 18 GHz TVRO, 23 GHz Telecom Radios, and military systems.
This document describes the features and characteristics of the HMC199MS8 dual SPDT switch. The switch integrates two SPDT switches and a through line, suitable for applications in the DC to 2.5 GHz range. It features low insertion loss, positive voltage control, and an ultra-small package.
The HMC197 is a GaAs MMIC SOT26 SPDT switch from Hittite that operates from DC to 3 GHz with low insertion loss and ultra small package. The device is ideal for 900 MHz, 1.8-2.2 GHz and 2.4 GHz ISM applications with insertion loss less than 1 dB.
The HMC189MS8 is a miniature passive frequency doubler in a plastic 8-lead MSOP package. The suppression of undesired fundamental and higher order harmonics is 33 dB typical with respect to input signal levels.
HMC190MS8 is a low cost SPDT switch from Hittite Microwave Corporation. It features an 8-lead MSOP package and operates from DC to 3.0GHz. It is especially suited for low power applications with its positive control voltages and exceptional third order intermodulation performance of +50dBm.
The HMC194MS8 is a low-cost SPDT switch in an 8-lead MSOP package for use in applications which require high isolation between two RF paths. The device can control signals from DC to 3 GHz and has been optimized to provide extremely high isolation with minimal insertion loss in medium and low power applications.
The HMC195 is a low-cost SPDT switch from Hittite Microwave Corporation. It is packaged in a SOT26 and operates from DC to 2.5GHz. It is ideal for applications that require very low distortion at high signal power levels. The design provides exceptional intermodulation performance; a +62 dBm third order intercept at 8 Volt bias. RF1 and RF2 are reflective shorts when “Off”. On-chip circuitry allows single positive supply operation at very low DC current with control inputs compatible with CMOS and most TTL logic families.
HMC187MS8 is a miniature frequency doubler MMIC in a plastic 8-lead MSOP package from Hittite, with frequency range of 0.85 - 2.0 GHz and input signal of 10 to 20 dBm.
The HMC183QS24 is a low-cost non-reflective SP8T switch from Hittite Corporation. It is packaged in a 24-lead QSOP and has a frequency range of DC-2.0GHz. The insertion loss is 0.8dB and it features a 3:8 decoder that allows it to be controlled with 3 control lines and a negative bias.
The HMC182S14 is a low-cost terminated SP4T switch in a 14-lead SOIC package for use in antenna diversity, switched filter banks, gain/attenuation selection, and general channel multiplexing applications. It has low insertion loss, integrated 2:4 decoder and other features.
HMC175MS8 is a miniature double-balanced mixer in an 8-lead plastic surface mount Mini Small Outline Package (MSOP) from Hittite Corporation. It is suitable for applications in high signal density environments, such as Mini-Base Stations, Portable Wireless and PCMCIA.
The HMC174MS8 GaAs MMIC T/R SWITCH DC - 3 GHz is a low-cost SPDT switch in an 8-lead MSOP package for use in transmit- receive applications which require very low dis- tortion at high signal power levels.