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GaN
Gallium Nitride is a stable wide bandgap semiconductor material. AKA: Gallium Nitride
See Also: LED, Transistor
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Radio Frequency (RF) And Microwave Products
Enable your 5G, aerospace, defense, test and measurement or industrial RF wireless applications with our portfolio of RF and microwave devices. These include high reliability RF diodes, Gallium Nitride (GaN) and Gallium Arsenide (GaAs) Monolithic Microwave Integrated Circuit (MMIC) amplifiers, frequency translation and power transistor devices, switches, attenuators, varactors, filters and more.
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Osram High Power Blue Violet Laser Diodes (450-488nm)
The Optoelectronics Company Ltd
OSRAM Opto Semiconductors is a key player in the field of visible InGaN (Indium Gallium Nitride) lasers. OSRAM Opto Semiconductors offer leading product performance and innovative packaging. Thanks to their excellent beam quality, OSRAM laser diodes are ideally suited for the optical imaging of light. Not only that, but their small package size is particularly beneficial to highly compact systems, such as pico projectors. OSRAM laser diodes offer high efficiency and long lifetime: due to their excellent efficiency (ratio of light produced compared to electric power consumed), the temperature increase experienced by blue InGaN lasers during operation is kept to an absolute minimum, allowing them to deliver a long life – up to 10,000 hours at 40 °C.
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Solid State GaN (Gallium Nitride) Amplifiers
Fairview Microwave’s solid state GaN (Gallium Nitride) power amplifiers (also called SSPAs) feature broad frequency bands ranging from 30 MHz to 7.5 GHz and very high gain levels from 43 to 60 dB. These GaN SSPAs also show impressive harmonic response (-15 to -20 dBc) under worst case conditions. Saturated output power levels range from 10W to 100W with 20% to 35% Power Added Efficiency (PAE). All of our high power solid state GaN amplifiers from Fairview have internally regulated single voltage supplies. Our GaN SSPAs are designed to withstand environmental conditions such as humidity, altitude, shock and vibration with an operating temperature ranges from -40°C to +85°C. Some models are also equipped with integrated heat sinks and cooling fans. Most designs are EAR99.
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Narrow band & Linear SSPA
Exodus Advanced Communications
Exodus Narrowband CW and Linearized SSPA products feature LDMOS, GaN,GaAsFET discrete and Chip & Wire Hybrid technologies covering frequency ranges from 1MHz to 26.5GHz at power levels exceeding 1KW for Modules and 10KW for Systems
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High-Power CW Amplifiers
Our family of solid-state power amplifiers (SSPAs) utilizes proprietary technology and a proven building block approach that enables rapid customization to specific requirements. The world-class design team understands the tradeoffs between GaAs versus GaN and FET versus MMIC to quickly achieve the right design for the right problem. Whether you need a connectorized compact GaN SSPA or an integrated SSPA assembly, we have the technical know-how to deliver on-time and on-budget.
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DL-ISO 1000 Vpp Square Pin Tip
DL-ISO-1000V-TIP
- Ideal for GaN and SiC devices- Highest system accuracy- Fastest rise time- High CMRR - 160 dB
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RF Amplifiers up to 2500 MHz
L and S Band 1,2,4, and 8 Kilowatt rack mount solid state microwave amplifiers ideal for CW and pulse TWT amplifier replacement utilizing GaN technology and rivals the TWT amplifier in size and weight. Also available is our broad line of high power modules including 25, 50, and 100 watt pallets for integrating into your own power amplifier design.
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High Frequency Amplifiers (> 6 GHz)
Qorvo's portfolio of amplifiers that operate over 6 GHz includes both GaAs and GaN devices, available in die and package forms.
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500 MHz 60 V Common Mode Differential Probe
DL05-HCM
60 V of common mode and 80 V differential input range with 1 GHz of bandwidth, make these probes ideal for lower voltage GaN power conversion measurements. The 60 V of common mode is well suited for handling any float of the battery and bulk/absorption voltage during charging, while the 80 V differential input range provide margin for any overshoot.
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DL-HCM Series High-Temperature Solder-In Tip
DL-HCM-HiTemp
60 V of common mode and 80 V differential input range with 1 GHz of bandwidth, make these probes ideal for lower voltage GaN power conversion measurements. The 60 V of common mode is well suited for handling any float of the battery and bulk/absorption voltage during charging, while the 80 V differential input range provide margin for any overshoot.
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High Throughput Test Platform for Multi-Site & Index Parallel Applications
ETS-88
The ETS-88 is an optimal test platform for testing a wide variety of devices including: simple analog, high precision, high voltage, high current / power, automotive, video, audio, complex mixed-signal, as well as emerging power processes like SiC and GaN.
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2 GHz to 6 GHz, 45 dBm Power Amplifier
HMC7885
The HMC7885 is a 32 W gallium nitride (GaN), monolithic microwave integrated circuit (MMIC) power amplifier (PA) module that operates between 2 GHz and 6 GHz, and is provided in an 18-lead hermetically sealed module. The amplifier typically provides 21 dB of small signal gain and 45 dBm of saturated radio frequency (RF) output power. The amplifier draws 2200 mA of quiescent current (IDD) from a 28 V dc supply. The RF input and output are dc blocked and matched to 50 Ω for ease of use.
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High Density Plasma Etching System for 200mm substrates
Model DRIE-1200-LL-ICP
Single process chamber for high rate plasma etching of 200mm wafers. Loadlocked. Stainless steel construction. Capabilities of smaller, multiple wafer throughput. Substrate materials include (but are not limited to) silicon, silicon oxynitrides, SiC, SiGe, Aluminum, and III-V compounds including GaAs, GaN, GaP, and InP. Stable plasma generation capabilities to below 1 mTorr. Five, Six, or Eight gas mass flow controllers are standard. Expanded or reduced numbers are available upon request.
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Ultra Broadband SSPA
Exodus Advanced Communications
Exodus Chip & Wire Hybrid ultra broadband amplifiers feature GaN, GaAsFET discrete die on ceramic substrate covering frequency ranges from 4GHz to 26.5GHz and power levels exceeding 500W.
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Power Amplifiers
Analog Devices MMIC-based GaN and GaAs power amplifiers cover the low hundred MHz frequency range up through and including components in the W band (75 GHz to 110 GHz). In addition to components, our portfolio also includes GaN-based power amplifier modules with output power exceeding 8 kW. Designed for excellent linearity at high output power, our power amplifiers maintain good heat dissipation and high reliability at elevated temperatures for the wide variety of wired and wireless applications that they are used in.
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Wideband GaN Amplifiers
The Teledyne RF & Microwave family of GaN-based amplifiers maximizes power density and efficiency, and establishes a new benchmark for small size in the 0.1 to 6.0 GHz range that operates over multi octave. With dimensions of 2.5"L x 2"W x 0.42"H at only 2.1 cubic inches, these modular, non-ITAR GaN amplifiers maintain the rugged design characteristics needed for harsh airborne and land based requirements.
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DL-ISO 2500 Vpp Square Pin Tip
DL-ISO-2500V-TIP
- Ideal for GaN and SiC devices- Highest system accuracy- Fastest rise time- High CMRR - 160 dB
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Broadband High Power Amplifiers
Chengdu KeyLink Microwave Technology Co., Ltd.
KeyLink's broadband high power amplifiers are available for operating frequencies from 1 MHz to 18 GHz. Power levels for octave and multi-octave designs range from 2 watts to over 500 watts. Based on state-of-the-art GaN, GaAs, LDMOS power devices and MMICs, KeyLink designs and manufactures SSPA(solid state power amplifiers ) with excellent performance in terms of high efficiency over ultra-wide working band, high reliability and ruggedness.
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DL-ISO 200 Vpp MMCX Tip
DL-ISO-200V-TIP
- Ideal for GaN and SiC devices- Highest system accuracy- Fastest rise time- High CMRR - 160 dB
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Microscope Photoluminescence Spectrometer
Flex One
Photoluminescence (PL) is the light emission from a material under the excitation by ultraviolet, visible or near infrared radiation. In semiconductor luminescent property measurements, the sample (e.g. GaN, ZnO, GaAs etc.) was usually excited by a laser (with a wavelength of 325 nm, 532 nm, 785 nm etc.), and its PL spectrum is measured to analyze the optical physical properties, such as the band gap width etc.. Photoluminescence is a high sensitivity, non-destructive analysis method, which can provide the information about the structure, composition and surrounding atomic arrangement of materials. Therefore, it is widely used in physics, materials science, chemistry and molecular biology and other related fields.
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Silicon & Compound Wafers
Compound semiconductors are undergoing a major expansion addressing many new applications and using various materials such as SiC, GaN, GaAs and others, to improve the performance of new devices in several segments such as Power and Face Recognition.
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DL-ISO 2 Vpp MMCX Tip
DL-ISO-2V-TIP
- Ideal for GaN and SiC devices- Highest system accuracy- Fastest rise time- High CMRR - 160 dB
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T/R(Transceiver Module)
Chengdu KeyLink Microwave Technology Co., Ltd.
RF Amplifiers up to 500MHz LDMOS and GaN are applied for this frequency range of Narrow and Broad band including VHF, UHF bands amplifier modules and offers low risk on heat radiation and long term sustainable operation. Also, controlling and protection circuits are designed.
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GaN substrates
Sumitomo Electric Industries, Ltd.
Gallium Nitride (GaN) substrates are widely used for optical devices in the blue-violate to green ranges due to their excellent material characteristics. In recent years, GaN substrates have been drawing attention for power devices. Many development projects are underway.
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GaN Amplifiers
SBP-3233831838-KFKF-E1-HR
Model SBP-3233831838-KFKF-E1-HR is a power amplifier with a typical small signal gain of 18 dB and a nominal Psat of +38 dBm across the frequency range of 32 to 38 GHz. The DC power requirement for the amplifier is +30 VDC/2 A. The mechanical configuration is an inline structure with K(F) connector as its input port and output port. Other port configurations, such as K connectors and WR-28 waveguides for either the input or output, are also available under different model numbers.
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RF Amplifiers up to 6000 MHz
Includes RF and microwave amplifiers covering the band from 500Mhz to 6000Mhz in a single module with either GaN or GaAs devices. Custom and standard power amplifiers available with high linearity, low noise figure, and very low error vector magnitude (EVM). Our rack systems and select modules include Automatic Gain Control (AGC), Automatic Level Control (ALC), and peak/pulse/average detection useful in OTA, MIMO, and CTIA testing.
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Rad Hard GaN FETs
Wide band gap semiconductor technologies such as Gallim Nitride Field Effect Transistors (GaN FETs) have been gaining interest for power management and conversion in space applications. These devices feature higher breakdown voltage, lower RDS(ON) and very low gate charge enabling power management systems to operate at higher switching frequencies while still achieving higher efficiency and a smaller solution footprint. There is an additional benefit from GaN devices that make them attractive to the space market. These devices are inherently immune to total ionizing dose radiation.
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Driver Amplifiers (< 3 W)
Qorvo's driver amplifiers are designed to provide good linear or efficiency performance for gain stages prior to the final power amplifier in a transmitter chain. These products support frequencies up to 46 GHz, using process technologies such as InGaP HBT, power pHEMT, E/D pHEMT and GaN.
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High Voltage Optically Isolated Probe, 700 MHz Bandwidth. Includes soft-carrying case.
DL07-ISO
The DL-ISO enables highest confidence in GaN and SiC device characterization with highest accuracy, best signal fidelity, and comprehensive connectivity.
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High Voltage Switching Test System
The advanced development of new technologies, such as SiC and GaN, have opened the opportunity for more efficient and higher voltage/power performance in switching and power management circuits. Their high cutoff frequencies, low on-state resistance, and very high breakdown voltages can increase power supply power handling densities approaching hundreds of watts/inch. Reliability of these new technologies and techniques is critical for realizing practical applications. While Silicon devices have a rich history of proven reliability, these newer compound semiconductor technologies are too new to have a reliability history and have not been well proven. Further, process variations, even in well-controlled lines, yield widely varying results. This has driven the need for additional testing and to burn-in devices prior to delivery.