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RF Amplifiers
take low power RF signals and output RF signals that vary in the same way as the input signal, but with a raised amplitude.
See Also: Amplifiers, Preamplifiers, Current Amplifiers, Audio Amplifiers, Voltage Amplifiers, Transconductance Amplifiers, Op Amps, Klystron, Instrumentation Amplifiers, Distribution Amplifiers, Microwave Amplifiers, Rf Power Amplifiers
- Pickering Interfaces Inc.
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PXI Quad 4 to 1 RF MUX SMB 75 Ohm
40-832-004
The 40-832-004 is a 75 Ohm 4 to 1 RF MUX with 4 banks in a single PXI slot. It has been designed to exhibit low insertion loss and VSWR through the use of modern RF relay technology at an affordable cost. Each MUX has been carefully designed to ensure excellent and repeatable RF characteristics to frequencies of 3GHz with each path having a nominally equal insertion loss.
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Millimeter Wave Amplifiers
Ducommun offers Low Noise (ALN), High Power (AHP), Full Waveguide Band (AFB) and General Purpose (AGP) amplifiers to cover the frequency range from 18 to 96 GHz. These amplifiers utilize thin-film and microelectronics manufacturing techniques and are discrete and/or MMIC PHEMT devices based. These amplifiers feature low noise, high output power, single DC power supply and wide operation temperature range. The amplifiers are offered in two categories, standard and custom-built. Both standard and custom-built amplifiers are equipped with various RF interface, including standard waveguide or coaxial connector for convenient system integration. The optional input and output integrated isolators are available as an option to further improve the port return loss.
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Power Sensors
RTP5006
Providing the highest video bandwidth and fastest rise times, the 50 MHz to 6 GHz Power Sensor by Boonton is the ideal instrument for fast, accurate and reliable RF power measurements.This module is ideal for many different applications including Crest Factor and Peak to Average Power Ratio (PAPR) measurements for Power Amplifiers and RF components; Telecommunication & Satellite signals: W-CDMA, QAM, OFDM, LTE-FDD and LTE-TDD; WiFi signals: 802.11ac and legacy 802.11 a/g/n/b; RF and Microwave pulse modulated power measurements: RADAR, MRI, Particle Accelerators; General purpose scalar measurements such as gain and return loss using modulated and pulsed signals as well as CW; and Monitoring, Recording, ALC loops, transient phenomena.
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Standard CW Amplifiers
The BT-AlphaA-CW series is a range of classAB RF power amplifiers covering the 10kHz to1MHz frequency range.• Rugged, solid-state design - high reliability• Extremely high phase and amplitude stability• High linearity• In-Built Protection• Very fast blanking• Capable of pulsed operation• Competitively pricedSuitable for CW radar, communications, HF/VHF jamming, particle accelerator applications/plasma systems, plasma, RF heating and otherscientific applications.
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Non-RMS Responding Power Detectors
Recognized as the pioneer and leader in RF detectors, Analog Devices offers a broad portfolio of high performance logarithmic amplifiers and TruPwr™ rms detectors. ADI logarithmic amplifiers measure signals up to 100 dB dynamic range, from dc to microwave, and accuracies of ±0.2 dB, and are well-suited for both RSSI and transmit power level detection. The TruPwr rms detectors address the challenge of measuring complex waveforms found in spread spectrum CDMA/W-CDMA and higher order QAM modulation systems and provide an accurately scaled dc voltage, which is the rms equivalent of the input waveform.
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High-Speed, Fiber-Optic Reference Transmitters
Thorlabs' Reference Transmitters are designed for high-speed fiber optic test and measurement applications. They are fully-integrated and user-configurable solutions based on proven lithium niobate (LiNbO3) modulator technology driven by high-fidelity RF amplifiers.
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PXIe-4154, 2-Channel, 8 V, 3 A PXI Programmable Power Supply
781155-01
2-Channel, 8 V, ±3 A PXI Programmable Power Supply—The PXIe‑4154 is a specialized programmable power supply for battery simulation. It is designed to simulate a lithium‑ion battery cell’s transient speed, output resistance, and 2‑quadrant operation (source/sink). Critical to many RF and wireless applications, the simulator’s fast transient response time allows it to rapidly respond to changes in load current with minimal voltage dip, which makes the PXIe‑4154 ideal for powering devices under test (DUTs) such as RF power amplifiers, cellular handsets, and a variety of other mobile devices. To model the behavior of a battery more accurately, you can use the onboard programmable output resistance to simulate a battery’s internal resistance. For quiescent and standby current measurements, the PXIe‑4154 features integrated current measurement.
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RF Amplifier
SA812AGC
Hangzhou Softel Optic Co., Ltd.
SA812AGC Field Bidirectional AGC Amplifier is a new high gain amplifier. Adopt optimized circuit design and scientific and rational process. High performance AGC control circuit inside is useful for stable gain and low distortion. It's the best choice for large and medium-sized bidirectional CATV transmission network.
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PXIe High-Speed Source/Measure Unit, 13 V, ± 1 A or 6 V, ± 3 A, 18 W
M9111A
The M9111A is a 1-slot, 2-quadrant PXIe module that provides stable, glitch-free sourcing and sinking, and high accuracy measurements. It offers high-throughput and measurement quality for design validation and production test of RF power amplifiers. With industry-leading output stability under extreme, dynamic load conditions and unmatched transient performance to dramatically reduce voltage droop due to pulse loading, the M9111A SMU speeds test time. The high-speed M9111A can change its output voltage, stabilize that voltage, and accurately measure current from Amps down to micro-Amps all in less than 1 ms so that you can move on to the next test as quickly as possible.
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Power Amplifier, RF
Is a type of electronic amplifier that converts a low-power radio-frequency signal into a higher power signal. Typically, RF power amplifers drive the antenna of a transmitter.
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GaN Power Amplifiers > 5W
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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RF Amplifiers
AR RF/Microwave Instrumentation
Our “A” and “W” Series amplifiers have the power to deliver all the field strength you need. With unsurpassed mismatch capabilities and excellent flatness, they provide all the power promised over the entire operating band.
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PXIe Measurement Accelerator
M9451A
The M9451A PXIe Measurement Accelerator combined with Option DPD Digital Pre-Distortion & Envelope Tracking Gateware shows what is possible when you combine state of the art FPGA's with Keysight's trusted measurement expertise and PXIe's high speed data handling. As part of Keysight's RF PA/FEM Characterization & Test, Reference Solution, this combination provides unprecedented performance for demanding envelope tracking and digital pre-distortion measurements required for testing modern power amplifiers (PAs) and front-end modules (FEMs). Hardware acceleration provides better than 20x speed improvement over Keysight's previous host-based Reference Solution, with closed/open loop digital pre-distortion (DPD) and envelope tracking (ET) measurements taking just tens of milliseconds and overall measurement times less than 70 ms.
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Microwave Amplifiers For Immunity and Wireless Testing
AR RF/Microwave Instrumentation
AR’s microwave amplifiers are just as tough and dependable as our RF amplifiers, and they are backed by the same comprehensive warranty. Our microwave amplifiers offer the hard-to-find combinations of power and bandwidth in frequency increments and power output you need for today’s test applications.
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Fiber Transmitter With Fiber Amplifier
FTFA 844
- Auto Switch over from Fiber to RF & Vice versa- Works as Transmitter & Fiber Amplifier- AGC / MGC - Automatic & Manual Gain Control- Very High MER / BER- High Quality DFB Lasers with Isolators- RF Input : 78dB ~ 90dB- Optical Input : -8dBm ~ +2dBm- Optical Wavelength : 1310nm- Power : 110VAC ~ 240VAC, 50HzSpecifications:- Bandwidth: 47 ~ 860 MHz- Input RF Level: 75 ~ 85dBuV- Input Optical Level:- -8dBm ~ +3dBm- SMPS Power Supply:- 110V AC ~ 265V AC- Power Consumption: 50Watt- AGC Range: 0 ~ -8dBm
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L-Band RF Tuner and 2-Channel 200 MHz A/D with Virtex-6 FPGA - 6U VPX
Model 57690
- One L-Band tuners accept RF signals from 925 MHz to 2175 MHz- One programmable LNAs boost LNB (low-noise block) antenna signal levels with up to 60 dB gain- One programmable analog downconverters provide I + Q baseband signals with bandwidths ranging from 4 to 40 MHz- Two 200 MHz 16-bit A/Ds- Supports Xilinx Virtex-6 LXT and SXT FPGAs- Up to 2 GB of DDR3 SDRAM; or: 32 MB of QDRII+ SRAM- PCI Express (Gen. 1 & 2) interface up to x8- Clock/sync bus for multiboard synchronization- Optional user-configurable gigabit serial interface- Optional LVDS connections to the Virtex-6 FPGA for custom I/O- Ruggedized and conduction-cooled versions available- Synchronize up to eight modules with Model 7893 System Synchronization and Distribution Amplifier - PCIe
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Arbitrary Waveform Generators
Proteus Series
The new Proteus Arbitrary Waveform Generator is ideal for applications in Quantum Computing, Electronic Warfare, Radar, and next generation communications such as 5G, 6G, Ultrawide Bandwidth (UWB), and WiFi (802.11) 6 and 7. Built on the latest RF DAC and RF ADC technology, the series has sample rates up to 9GS/s and multiple Nyquist zone frequency range capability in excess of 10GHz. It’s an innovative task oriented programming environment, and user programmable FPGA. When used in combination with its optional RF Digitizer it gives you the ability to change waveforms in real-time - ideal for improving the coherence time of a Qubit, characterizing an RF amplifier, or responding to an EW threat.
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Optical Node
Sichuan Jiuzhou Electronic Technology Co.,Ltd
* Philips CGD914 amplifier module that employs both GaAs and Si dies.* 4 outputs, output level ≥100dBμV when optical input at -1dBm.* Plug-in fixed attenuator, fixed equalizer.* Optical power indication for -7 ~ 0dBm.* FP laser or DFB laser for return path.* RF test point for forward path and return path.* Optional SNMP responser unit supporting JIUZHOU HFC Net Managing software.* AC 60V or AC 220V power supply.* Aluminum die-casting housing.
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Space-Qualified Products
Teledyne RF & Microwave has a rich history with more than 40 years of space heritage without any in-flight failures. We serve the commercial, scientific, military, and government communities with best-of-breed space solutions. As one of the first companies receiving MIL-PRF-38534 Class K certification, Teledyne earned the space community's trust by commercializing and supporting the industry's most comprehensive line of space-qualified products, from components to solid-state power amplifiers to integrated microwave assemblies.Teledyne's quality certifications include MIL-PRF-38534, Classes H & K (TRB Option). Our space-qualified RF and microwave portfolio covers frequencies from 5 MHz to Ka-band. Explore more below for an overview of our product offerings and capabilities.
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Power Limiter, 0.01 to 50 GHz
N9355F
The N9355F power limiter provides the best broadband input power protection to sensitive RF and microwave instruments and components, like network analyzers, spectrum analyzers, and amplifiers, from excess RF power, DC transients and ESD. Minimize your measurement uncertainty and improve your measurement accuracy with the limiter's superior RF performance.
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Amplifiers
Becker Nachrichtentechnik GmbH
Becker Nachrichtentechnik GmbH offers a large portfolio of high performance broadband RF amplifiers. Optimized for linearity, high dynamic range and low noise, they cover all widely used radio standards like cellular, satellite radio, TETRA/BOS, GNSS, GPS, 802.11, including the new bands for LTE-U. They amplify wideband radio signals from shortwave over UHF, VHF up to 18 GHz in 50 Ohm technology (I-band, G-band, P-band, L-band, S-band, C-band and X-band). They are used as compact RF drivers, antenna pre-amplifiers or RF boosters in a variety of applications ranging from tunnel radio coverage extension, over airspace radio monitoring to in-ear monitoring and can also be offered as 1U 19” rack variants. Due to their advanced design, the power consumption is significant lower than typical industry alternatives, saving cost at customers with respect to cooling.
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VECTOR-GUN HANDHELD DIRECTION FINDING ANTENNA SYSTEM
HFDF
National RF's Type HFDF active directional antenna system consists of a high gain RF amplifier coupled to a tunable Faraday shielded loop antenna. Several loop antenna assemblies are available to provide coverage of frequencies in the HF and low VHF spectrum. Due to the nature of a Faraday shielded loop, the antenna exhibits a sharp null through the diametric center of the loop. This null is used to determine the direction of incoming radio signals or to locate electrical noise being radiated from some source. The internal high gain amplifier is used to compensate for the inherent inefficiency of the actual loop at the operating frequency. Overall, the system dynamic response is about +6 dB as compared to the dynamic response of a dipole. To aid in the direction finding process on strong signals, an internal 30 DB attenuator is provided. As the loop antenna presents a bi-directional response, tri-angulation may be required to eliminate the ambiguous signal direction. The line of site of the incoming signal is determined by listening for a signal null on the receiver or by watching the receiver’s S-meter.
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Low Noise Dual Band VCO
This custom oscillator subassembly consists of two low noise oscillators covering 1.5 to 2.5 GHz, a power combiner, a standard Teledyne RF & Microwave amplifier, and a lowpass microstrip filter. Teledyne RF & Microwave designed both oscillators for low phase noise and linear tuning. The output frequency bands are switched using standard TTL control.
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Broadband Amplifiers
Pasternack broadband amplifier is rated at 1 Watt (30 dBm) Psat and 1.67:1 input VSWR maximum. Our broad band radio frequency amp is part of over 40,000 RF, microwave and millimeter wave components available from Pasternack. This coaxial broadband amplifier can ship worldwide the same day of the purchase as with our other available RF parts.
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IVTS In-Vehicle Test Set
The in-vehicle test set was developed to successively measure several active RF amplifiers installed in the vehicle as well as different antenna structures. It offers the possibility to connect 12 DUTs. The DUTs can be connected to an external spectrum analyser via a 1 to 12 RF multiplexer. Each DUT can be individually switched and supplied with an adjustable voltage via a bias-tee integrated in the system. The individual bias voltages and currents are recorded by the IVTS and can be called up on an interactive control panel or via Ethernet and SCPI commands. The complete system can be powered by rechargeable battery and can be operated either via Ethernet, fibre optics or WLAN.
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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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Low Noise Pre-Amplifiers
Low Noise Pre-Amplifier and companion external low noise amplifier (LNA) are used to amplify low level microwave signals. The Pre-Amplifier contains an AC/DC power supply, internal low noise amplifier, and a bias tee to source a DC bias voltage on the RF input connector.To overcome cable loss between the test antenna and the Pre-Amplifier assembly, a remote low noise amplifier (LNA) is mounted directly onto the 10 GHz antenna. A bias tee inside the Pre-Amplifier chassis powers the remote LNA through the coax cable interconnecting the pre-amplifier and the 10 GHz test antenna.
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Low Phase Noise Amplifiers
Pasternack's low phase noise amplifiers cover select frequency bands ranging from 1.5 to 18 GHz with residual phase noise levels as low as -180 dBc/Hz @ 10 KHz offset. Additional performance specs include small signal gain ranging from 9 to 14 dB, with typical noise figure of 5.5 dB. Psat levels for these amplifiers range from +16 to +25 dBm with Output IP3 levels as high as +34 dBm. All models feature single DC voltage supplies and input/output RF ports are internally matched for 50 ohms with DC blocking capacitors. These compact module assemblies require no external components and are available in rugged Kovar metal drop-in packages that are gold-over-nickel-plated and support field replaceable SMA connectors. All models are EAR99 and guaranteed to meet MIL-STD-883 test conditions for hermeticity and temperature cycle.
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RF POWER AMPLIFIERS
BLWA Series
A) RF-Sample Ports I) 3x 208 V AC / 60 HzB) External Dual Directional Coupler L) LAN Remote ControlC) IEEE-488.2 GPIB Remote Control S) Internal RF Switching UnitD) Front Panel RF Connectors R) RS-232C Remote ControlE) RF Power Indication (digital) U) USB Remote ControlF) Gain Adjustment W) Liquid CoolingH) DC Supply X) External Control of other Amplifiers
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RF Milliwatt Meters
Type NDB-2 and NDB-3
National RF’s Type NDB-2 and NDB-3 RF Milliwatt Meters are affordable pieces of test equipment for both the RF laboratory and the home experimenter. Both provide a digital reading of RF power in dB reference 1 milliwatt of power into a 50 ohm load (i.e. 0 dBm). The circuitry consists of a low noise logarithmic amplifier that drives a digital A/D converting meter circuit. The lowest power levels that can be read are about –73 dBm (approximately 40 microvolts or .00000003 milliwatts). The maximum power input should not exceed 10 milliwatts (+10 dBm or .010 watts) when inputed without attenuation. An internal attenuator is provided and described in the next section.
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Ku Band Gain Control Amplifier
Expanding Teledyne RF & Microwave's existing line of high frequency amplifiers, microwave gain controllable amplifiers are designed and biased for critical performance applications. One example covers 10-13 GHz, offers 45 dB unattenuated small signal gain with 15 dB attenuation range. Typical gain flatness is ±0.5 dB, +35 dBm third order intercept point, +22 dBm minimum 1-dB gain compression, and 3.5 dB unattenuated noise figure 4.5 dB at full attenuation. This is only one of a series of microwave controllable amplifiers currently in production.