GaN
Gallium Nitride is a stable wide bandgap semiconductor material. Also known as: Gallium Nitride
See Also: LED, Transistor
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GaN substrates
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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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Wideband GaN Amplifiers
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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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GaN Power Amplifiers > 5W
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Macom Technology Solutions Holdings Inc.
MACOM GaN RF power amplifier solutions are designed with the latest GaN-on-SiC and GaN-on-Si technologies. Our MACOM PURE CARBIDE series of GaN-on-SiC power amplifiers offers high performance and reliability for the most demanding applications. Our expanding GaN portfolio is designed to address the challenging requirements of Aerospace & Defense, Industrial, Scientific and Medical applications and 5G wireless infrastructure. MACOM GaN products deliver output power levels ranging from 2 W to over 7 kW and exhibit best in class RF performance with respect to gain and efficiency. For sensitive Aerospace & Defense applications MACOM can offer a US only supply chain with AS9100D Certification.
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Rad Hard GaN Drivers
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The space market has been driving towards more efficient power management solutions. Part of the drive includes the use of Gallium Nitride Field Effect Transistors (GaN FETs) for power conversion. GaN FETs have higher power conversion efficiency and have more natural immunity to radiation, due to them being wide-bandgap semiconductors. Equally important is the use of the correct driver that will allow reliable operation and maximize the benefits of the GaN FETs. Some of the key driver requirements are: a well-regulated gate drive voltage; high source/sink current capability and a split driver output stage.
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Solid-State RF amplifier module for High Power Testing
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Exodus Advanced Communications
Exodus introduces the AMP1071 - a Solid-State RF amplifier module covering the entire ultra-wide 2.0-20.0GHz frequency range instantaneously at 20W CW minimum. Using State of the Art GaN devices, the AMP1071 operates from a 32VDC source at less than 10A consumption. This module is suitable for use with all single channel modulation standards and applications requiring high power and ultra-wide band coverage. It has built-in protection circuits, high reliability and ruggedness. Typical applications include High Power Testing, EMI/RFI, EW and Communications and Jamming.
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High Voltage Switching Test System
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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.
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60 V Common Mode Differential Probes
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The 60 V Common Mode Differential Probes are the ideal probes for lower voltage GaN power conversion measurement with the highest accuracy, best CMRR, and lowest noise.
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High-Power CW Amplifiers
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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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Microscope Photoluminescence Spectrometer
Flex One
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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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Test & Measurement Instrument Amplifiers
MPA-series
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The MPA-series Test & Measurement Instrument Amplifiers are based on state-of-the-art GaN PA modules and operate from 0.7 to 26.5 GHz (multiple frequency options are available). They provide High continuous power across the band, high linearity for wideband communications testing, have variable gain adjustment and a high-resolution display shows amplifier status. Amplifiers offer a wide range of application-specific requirements including simultaneous high-power, wide bandwidth, low harmonic power and high linearity.
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Ruggedized SSPA 4 to 8 GHz, 40 W GAN Hybrid Module
AMP1110
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Exodus Advanced Communications
Ruggedized Solid State Power Amplifier. Our Best in Class Power Amplifier AMP1110 a 4 to 8 GHz, 40 W Minimum Saturated Power output module. The AMP1110 is a Class AB linear GaN hybrid design with instantaneous bandwidth. Other features include 4.0dB Peak to Peak flatness and 12A Max Consumption. This AMP1110 has Built-in protection circuits, high reliability and ruggedness. It is suitable for any application such as EW, EMI/RFI Lab, and High Power testing.
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Low Temperature Gas Source
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Get a low-cost means to introduce a gas without thermal pre-cracking using Veeco’s low-temperature gas source for molecular beam epitaxy (MBE) systems. The source features a large conductance tube for fast gas switching and a diffuser end plate for good growth uniformity. It is an ideal gas injector for CBr4 for carbon doping in GaAs and NH3 for GaN growth, as well as any other gases that do not require thermal pre-cracking. Enhance system capabilities further by combining the source on one mounting flange with an Atomic Hydrogen Source or 5cc Dopant Source.
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Rad Hard GaN FETs
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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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Defect Inspection Systems
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Candela® defect inspection systems detect and classify a wide range of critical defects on compound semiconductor substrates (GaN, GaAs, InP, sapphire, SiC, etc.) and hard disk drives, with high sensitivity at production throughputs.
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Solid State GaN (Gallium Nitride) Amplifiers
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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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DL-HCM Series High-Temperature Solder-In Tip
DL-HCM-HiTemp
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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 Voltage Optically Isolated Probe, 1 GHz Bandwidth. Includes soft-carrying case.
DL10-ISO
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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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DL-ISO 200 Vpp MMCX Tip
DL-ISO-200V-TIP
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- Ideal for GaN and SiC devices- Highest system accuracy- Fastest rise time- High CMRR - 160 dB
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Semiconductor Curve Tracer
CS-8000 Series
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The CS-8000 series are equipped with a high-voltage source of up to 5 kV and a high-current source of 2 kA. It features Pulse output, Gate pattern, and very small current measurement capabilities, and it supports the design evaluation of wideband-gap semiconductors such as SiC and GaN.
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DL-ISO 10 Vpp MMCX Tip
DL-ISO-10V-TIP
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- Ideal for GaN and SiC devices- Highest system accuracy- Fastest rise time- High CMRR - 160 dB
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Dynamic Test Systems
H3TRB | HTGB (HTGS) | RTGB (RTGS)
Test System
Durability and reliability of wide-bandgap materials such as SiC and GaN are an important topic. The focus here is on new failure mechanisms whose effects are not visible with traditional H(3)TRB/HTGS – but which nevertheless have an influence on the real application.
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ST/MT Family
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MT System is a configurable test equipment suitable to verify static and dynamic parameters of power semiconductors (i.e. IGBT, MOSFET, DIODE, THYRISTOR, SiC, GaN, etc) packaged and unpackaged (discrete, module and substrate). ST System is a test equipment suitable to verify stability or drift of all static parameters of discrete power semiconductors.
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IsoVu Isolated Probes
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The IsoVu Measurement Systems can make nearly impossible measurements – like high-side Vgs- a reality, providing today’s power engineer with measurement insights not available in other power systems and instruments. When performing near-impossible measurements, especially in those involving Gallium Nitride (GaN) and Silicon Carbide (SiC), it can be extremely time consuming and cumbersome. IsoVu eliminates those concerns: IsoVu probes offer better common mode rejection and higher bandwidth for high EMI environments and on power FETs like SiC and GaN.
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Solid State Broadband High Power Amplifier 1900 - 6000 MHz / 200 Watts
2215
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The 2215 is suitable for octave bandwidth high power CW, modulated and pulse applications. This amplifier utilizes high power GaN devices that provide wide frequency response, high gain, high peak power capability and low distortions. Exceptional performance, long-term reliability and high efficiency are achieved by employing advanced broadband RF matching networks and combining techniques, EMI/RFI filters, and all qualified components. for EMC, RF Product Test, Communications and Electronic Warfare applications.
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Power Management Controller
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Macom Technology Solutions Holdings Inc.
Hghly integrated Power Management Integrated Circuit for GaN Power Amplifier
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50 µs Pulse Medium Current Source/Measure Unit (MCSMU)
B1514A
Source Measure Unit
The 50 s Pulse Medium Current SMU is an SMU designed for faster pulsed IV measurement. It enables a pulsed measurement down to 50 s pulse width, a 10 times or more narrow pulsed measurement than provided by a comparable conventional SMU. In addition, the instrument offers a wider range and versatility, up to 30 V / 1A, with voltage/current programmability. It is useful to characterize high to medium power devices on the new materials such as SiC and GaN, and organic devices, and the MCSMU expands your choices of pulsed IV measurement.
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2 GHz to 6 GHz, 45 dBm Power Amplifier
HMC7885
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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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DL-ISO 2500 Vpp Square Pin Tip
DL-ISO-2500V-TIP
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- Ideal for GaN and SiC devices- Highest system accuracy- Fastest rise time- High CMRR - 160 dB
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Solid State Power Amplifiers
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Skylink SSPAs incorporate state-of-art DPD and well-done Heat Dissipation technologies with available LDMOS, GaN & GaAs Chips. Solutions of SSPA frequency range from 9kHz to 50GHz and output power up to kilowatts and includes basic PA modules to integrated chassis with embedded software for local and remote control and monitoring.
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GaN 100W Power Amplifiers
PE15A5033F
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The PE15A5033F is a 100 W high gain Class A/AB Coaxial Linear Power Amplifier operating in the 0.7 to 2.7 GHz frequency range. The amplifier offers 100 Watts typical saturated power and 45 dB minimum small signal gain with 1.5 dB typical gain flatness @ Psat. The amplifier requires typically a +30V DC power supply. The SMA connectorized module is unconditionally stable and operates over the temperature range of 0C and +50C. The unit comes with a Heatsink and Fan.





























