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Supplier: Advanced Energy Industries, Inc.
Description: The Navio matching network delivers quick, accurate, and repeatable impedance across many applications. Plug-and-play installation with Advanced Energy’s RF power supplies for thin film applications Efficient and stable power delivery Compact and air
- Cooling: Forced Air
- Frequency Range: 13.56 to 60 MHz
- Modes of Operation: Automatic
- Rated Power Range: 1000 to 5000 watts
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Supplier: Advanced Energy Industries, Inc.
Description: The Navigator ll matching network’s advanced digital technology speeds tuning and match response time. Leading RF plasma methodology and control Advanced pulsing control with tune-while-pulsing capability Unprecedented insights into plasma with the integrated
- Cooling: Forced Air
- Frequency Range: 13.56 to 60 MHz
- Modes of Operation: Automatic
- Rated Power Range: 1000 to 30000 watts
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Supplier: ValueTronics International, Inc.
Description: The 3810-2NM is a used LISN from EMCO. A line impedance stabilization network (LISN) device is something engineers use to test radiofrequency (RF) emission and susceptibility. During an electronic equipment test, engineers place the LISN device between an alternating current or
- Frequency Range: 30 MHz
- Output Current Rating: 10 amps
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Supplier: ValueTronics International, Inc.
Description: The 4825/2 is a used LISN from EMCO. A line impedance stabilization network (LISN) device is something engineers use to test radiofrequency (RF) emission and susceptibility. During an electronic equipment test, engineers place the LISN device between an alternating current or
- Frequency Range: 30 MHz
- Output Current Rating: 25 amps
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Supplier: ValueTronics International, Inc.
Description: The LISN-50-25-2-01 is a used LISN from FCC. A line impedance stabilization network (LISN) device is something engineers use to test radiofrequency (RF) emission and susceptibility. During an electronic equipment test, engineers place the LISN device between an alternating
- Frequency Range: 100 MHz
- Output Current Rating: 25 amps
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Supplier: ValueTronics International, Inc.
Description: The 3816-2NM is a used LISN from EMCO. A line impedance stabilization network (LISN) device is something engineers use to test radiofrequency (RF) emission and susceptibility. During an electronic equipment test, engineers place the LISN device between an alternating current or
- Frequency Range: 100 MHz
- Output Current Rating: 16 amps
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Supplier: AVX Corporation
Description: protection, voltage regulation, instrument matching, RF impedance, and circuit miniaturization needs. Our resistors have been proven to be stable enough for everything from life-sustaining implantable to battlefield operations. AVX can provide most designs in surface mount
- Configuration: Resistor Network
- Mounting / Packaging: Surface Mount (SMT / SMD)
- Resistance Range: 5 to 5.00E7 ohms
- Technology / Construction: Thin Film
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Supplier: ROHDE & SCHWARZ, Inc.
Description: speed R&S®ZNB40 two-port model available in two versions Convenient characterization of active and passive RF components Fast embedding/de-embedding for impedance matching using virtual networks Mixed-mode S-parameters for balanced DUT
- Display Options: Video Display
- Frequency Range: 9 to 4.00E7 kHz
- Instrument Type: Portable / Benchtop Instrument
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Supplier: Pico Technology
Description: ) S 11 (1-port correction) De-embed (2 embedding networks may be specified), impedance conversion S21 (normalize, normalize + isolation) S21 (source match correction + normalize + isolation) Averaging, smoothing Hanning and
- Connection to Host: USB
- Display Options: None
- Frequency Range: 300 to 6.00E6 kHz
- Frequency Resolution: 10 Hz
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Supplier: Copper Mountain Technologies
Description: , antenna matching, quality control, material measurements, and many others. The S7530 is used particularly in the broadcasting industry where the standard line impedance is often 75 Ohms.
- Frequency Range: 20 to 3.00E6 kHz
- Frequency Resolution: 10 Hz
- Instrument Type: Portable / Benchtop Instrument, PC-Based Instrument / Module
- Nominal Input Impedance: 75 Ohms
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Supplier: Copper Mountain Technologies
Description: loss measurement, distance to fault measurements, antenna matching, quality control, material measurements, and many others. The TR7530 is used particularly in the broadcasting industry where the standard line impedance is often 75 Ohms.
- Frequency Range: 20 to 3.00E6 kHz
- Frequency Resolution: 10 Hz
- Instrument Type: Portable / Benchtop Instrument, PC-Based Instrument / Module
- Nominal Input Impedance: 75 Ohms
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Supplier: Skyworks Solutions, Inc.
Description: -11 is designed for ease of use and maximum flexibility, with fully matched 50 O inputs and outputs, and digital controls compatible with 1.4 V to 3 V CMOS levels. An external Output Matching Network (OMN) between the PA output and the antenna switch provides ultimate flexibility in
- Amplifier Type: Power Amplifier
- Frequency Range: 1787 to 1930 MHz
- Maximum Operating Voltage: 4.5 volts
- Minimum Operating Voltage: 3 volts
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Supplier: RFMW Ltd.
Description: The SKY65015 is a general-purpose, broadband amplifier fabricated from Skyworks InGaP HBT process and packaged in a SOT-89 package. The amplifier's input and output impedances are 50 O, which allows these amplifiers to be cascaded without external impedance matching
- Applications: Terrestrial RF/Microwave Systems
- Frequency Range: 100 to 6000 MHz
- Maximum Gain: 18 dB
- Maximum Operating Voltage: 5 volts
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Supplier: RFMW Ltd.
Description: The SKY65013 is a general-purpose, broadband amplifier fabricated from Skyworks InGaP HBT process and packaged in an SOT-89 package. The amplifier’s input and output impedances are 50 O, which allows these amplifiers to be cascaded without external impedance matching
- Applications: Terrestrial RF/Microwave Systems
- Frequency Range: 100 to 7000 MHz
- Maximum Gain: 13 dB
- Maximum Operating Voltage: 5 volts
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Supplier: RFMW Ltd.
Description: The SKY65014 is a general-purpose, broadband amplifier fabricated from Skyworks InGaP HBT process and packaged in a SOT-89 package. The amplifier’s input and output impedances are 50 O, which allows these amplifiers to be cascaded without external impedance matching
- Applications: Terrestrial RF/Microwave Systems
- Frequency Range: 100 to 6000 MHz
- Maximum Gain: 15 dB
- Maximum Operating Voltage: 5 volts
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Supplier: RFMW Ltd.
Description: The SKY65017 is a general purpose, broadband amplifier fabricated from Skyworks InGaP HBT process and packaged in a SOT-89 package. The amplifier's input and output impedances are 50 O, which allows these amplifiers to be cascaded without external impedance matching
- Applications: Terrestrial RF/Microwave Systems
- Frequency Range: 100 to 6000 MHz
- Maximum Gain: 20 dB
- Maximum Operating Voltage: 5 volts
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Supplier: e-peas SA
Description: Evaluation board (79 x 46 mm) includes the AEM30940 QFN28, its 7 passive components and jumpers to easily configure the AEM. Matching network with RF rectifier are provided to directly handle the RF signal from an antenna. Jumpers are used to define the MPPT ratio
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Supplier: e-peas SA
Description: Evaluation board (79 x 46 mm) includes the AEM40940 QFN28, its 7 passive components and jumpers to easily configure the AEM. Matching network with adapted balun are provided to directly handle the RF signal from an antenna. Jumpers are used to define the MPPT ratio recommended
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Supplier: Skyworks Solutions, Inc.
Description: The SKY65014 is a general-purpose, broadband amplifier fabricated from Skyworks InGaP HBT process and packaged in a SOT-89 package. The amplifier’s input and output impedances are 50 O, which allows these amplifiers to be cascaded without external impedance matching
- Frequency Range: 100 to 6000 MHz
- Maximum Gain: Over 16 dB
- Minimum Gain: 16 dB
- Noise Figure: 4.8 dB
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Supplier: Skyworks Solutions, Inc.
Description: The SKY65017 is a general purpose, broadband amplifier fabricated from Skyworks InGaP HBT process and packaged in a SOT-89 package. The amplifier's input and output impedances are 50 O, which allows these amplifiers to be cascaded without external impedance matching
- Frequency Range: 100 to 6000 MHz
- Maximum Gain: Over 20 dB
- Minimum Gain: 20 dB
- Noise Figure: 4.5 dB
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Supplier: Skyworks Solutions, Inc.
Description: The SKY65013 is a general-purpose, broadband amplifier fabricated from Skyworks InGaP HBT process and packaged in an SOT-89 package. The amplifier’s input and output impedances are 50 O, which allows these amplifiers to be cascaded without external impedance matching
- Frequency Range: 100 to 7000 MHz
- Maximum Gain: Over 12.5 dB
- Minimum Gain: 12.5 dB
- Noise Figure: 5.5 dB
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Supplier: PTB Sales, Inc.
Description: Notice the interface difference between the MKS ENI OEM-12A and the OEM-12B power supplies. MKS ENI Matchwork Impedance Matching Networks provide tuning from 40W to 10kW and 2MHz to 40.68Mhz. The OEM-50 models we have are: OEM-50M2 (25 pin), OEM-50N11601 (15 pin), OEM-50-01M6
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Supplier: PTB Sales, Inc.
Description: Notice the interface difference between the MKS ENI OEM-12A and the OEM-12B power supplies. MKS ENI Matchwork Impedance Matching Networks provide tuning from 40W to 10kW and 2MHz to 40.68Mhz. The OEM-50 models we have are: OEM-50M2 (25 pin), OEM-50N11601 (15 pin), OEM-50-01M6
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Supplier: PTB Sales, Inc.
Description: Notice the interface difference between the MKS ENI OEM-12A and the OEM-12B power supplies. MKS ENI Matchwork Impedance Matching Networks provide tuning from 40W to 10kW and 2MHz to 40.68Mhz. The OEM-50 models we have are: OEM-50M2 (25 pin), OEM-50N11601 (15 pin), OEM-50-01M6
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Supplier: PTB Sales, Inc.
Description: Notice the interface difference between the MKS ENI OEM-12A and the OEM-12B power supplies. MKS ENI Matchwork Impedance Matching Networks provide tuning from 40W to 10kW and 2MHz to 40.68Mhz. The OEM-50 models we have are: OEM-50M2 (25 pin), OEM-50N11601 (15 pin), OEM-50-01M6
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Supplier: Richardson RFPD
Description: . Exceptional performance, long term reliability and high efficiency are achieved by employing advanced broadband RF matching networks and combining techniques, EMI/RFI filters, machined housings and qualified components. Empower RF’s ISO9001 Quality Assurance Program
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Supplier: Richardson RFPD
Description: -generation 5G solutions, or small cell applications. The dual-channel receiver integrates two independent LNAs with bypass function and a high power switch. The PE53210 can be utilized across the 3.3–3.8 GHz frequency range with internal impedance matching networks. This
- Device Type / Applications: Front End
- IC Package Type: LGA, Other
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Supplier: Allied Electronics, Inc.
Description: BNC Connector, 75 Ohms Impedance, RG59 Cable Type, Brass Body Material These high quality RF connectors are approved for use by the major manufacturers of computer networks and are used extensively for all interconnecting and accessory cables and panels. These true 75 O
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Supplier: IHS Markit Engineering & Product Design
Description: TEST METHOD FOR DETERMINING THE LOAD IMPEDANCE AND EFFICIENCY OF MATCHING NETWORKS USED IN SEMICONDUCTOR PROCESSING EQUIPMENT RF POWER DELIVERY SYSTEMS
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Supplier: Advanced Energy Industries, Inc.
Description: kW) Internal load match (10:1 impedance range) Two distinct arc-handling circuits Efficient, compact, water-cooled design CE compliant Compatible with Advanced Energy’s LMII 10K matching network allowing higher voltage operation
- AC Input Voltage: 208 volts
- Form Factor: Rack Mount
- Input Frequency: 50 to 60 Hz
- Output Frequency: 0.0400 MHz
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Supplier: Triad Magnetics
Description: TY-310P Data/Voice Coupling Transformer Triad telecommunications transformers are designed to meet the requirements for access over leased private lines or through the dial-up switched telephone network. The TY series transformers are used for a variety of applications including
- Mounting / Form Factor: PC / PCB Mount
- Operating Frequency Range: 300 to 3500 Hz
- Standards: RoHS Compliant, Other
- Transformer Category: Signal / RF Transformer
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Supplier: Richardson RFPD
Description: : Bypass, Coupling, Tuning, Feedback, Impedance Matching and DC Blocking. Typical circuit applications: Microwave/RF/IF Amplifiers, Mixers, Oscillators, Low Noise Amplifiers, Filter Networks, Timing Circuits and Delay Lines.
- Capacitance Range: 3.00E-7 microF
- DC Rated Voltage Range (WVDC): 150 volts
- Electrostatic Capacitors: Ceramic
- Lead / Termination Type: Other
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Supplier: Richardson RFPD
Description: higher performance than a discrete implementation. The BD2425NnRF has an unbalanced port impedance of 50 and matched balanced port impedance when used in the specified matching network, which is the conjugate match of the nRF24L01 and nRF24L01+
- Operating Frequency Range: 2.40E9 to 2.53E9 Hz
- Type: Balun Transformer
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Supplier: RS Components, Ltd.
Description: QUAD HIFREQ Series Surface Mount Multilayer Ceramic Capacitors for RF Power Applications, MRI coils and generators, RF instruments, Lasers, CATV, UHF / microwave RF power amplifiers, Filter networks, timing circuits, Mixers, oscillators impedance matching
- Capacitance Range: 6.00E-6 microF
- Electrostatic Capacitors: Ceramic, Ceramic COG (NPO)
- Technology: Multilayer
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Supplier: RS Components, Ltd.
Description: QUAD HIFREQ Series Surface Mount Multilayer Ceramic Capacitors for RF Power Applications, MRI coils and generators, RF instruments, Lasers, CATV, UHF / microwave RF power amplifiers, Filter networks, timing circuits, Mixers, oscillators impedance matching
- Capacitance Range: 8.00E-7 microF
- Capacitance Type: Fixed
- Configuration / Form Factor: Surface Mount / Chip Capacitor
- Electrostatic Capacitors: Ceramic, Ceramic COG (NPO)
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Featured Products Top
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Almost all modern circuits are sensitive to power quality, which to a large extent is a measurement of the power rail impedance. This is because flat impedance power rails result in much lower noise than power rails that aren’t flat. In RF circuits the peaks generally result in increased (read more)
Browse Vector Network Analyzers Datasheets for Copper Mountain Technologies -
The S5243 is a 2-port 44 GHz Vector Network Analyzer is CMT's highest frequency Compact VNA. It features excellent dynamic range of 130 dB, typ. (10 Hz IFBW) and 17 µs measurement speed in a compact package with the maximum standard software feature set. S5243 VNA includes an RF (read more)
Browse Vector Network Analyzers Datasheets for Copper Mountain Technologies -
Almost all modern circuits are sensitive to power quality, which to a large extent is a measurement of the power rail impedance. This is because flat impedance power rails result in much lower noise than power rails that aren’t flat. In RF circuits the peaks generally result in (read more)
Browse Vector Network Analyzers Datasheets for Copper Mountain Technologies -
Almost all modern circuits are sensitive to power quality, which to a large extent is a measurement of the power rail impedance. This is because flat impedance power rails result in much lower noise than power rails that aren’t flat. In RF circuits the peaks generally result in increased (read more)
Browse Vector Network Analyzers Datasheets for Copper Mountain Technologies -
An ideal cable transfers maximum RF energy while incurring as little loss as possible. To choose the best cable for a test solution, one has to consider several factors such as: operating frequency, characteristic impedance, insertion loss, return loss/VSWR, power handling capacity, operating (read more)
Browse Cable Assemblies Datasheets for Copper Mountain Technologies -
Distinguished Microwave Lecturer. He discusses why he teaches E&M and why it is beneficial to use a Vector Network Analyzer with his students. He talks some of the basic measurements they make with VNAs at The College of New Jersey. Finally, he explains how VNAs are used for design projects by his students. (read more)
Browse Vector Network Analyzers Datasheets for Copper Mountain Technologies -
terminations (DC-passing and DC-blocking model available), as well as impedance matching pads and transformers. Custom designs are also available at no charge! (read more)
Browse RF Attenuators Datasheets for JFW Industries, Inc. -
needed to be made in the grounding and coupling around the connector as well as in matching the impedance on the line between the connector and the FPGA. In the last step we organized a joint hackathon between both development teams in order to verify our assumptions and simulations and propose (read more)
Browse Electrical and Electronic Design Services Datasheets for Instrumentation Technologies D.O.O. -
model achieves a higher level of accuracy with measurements that are exceptionally close to the real device, streamlining workflow and simplifying the design process. Circuit Co-Simulation XF improves chip component and matching network analysis using a combined time (read more)
Browse Finite-difference time-domain (FDTD) Software Datasheets for Remcom (USA) -
signal is encoded in a non-return-to-zero (NRZ) pattern and is sensed by all nodes. The CAN bus physical interface is similar to RS-485 two-wire, half-duplex communications. On CAN bus systems, signal integrity is achieved by matching the impedance of the transmission line and thereby (read more)
Browse PC/104 Modules Datasheets for WinSystems, Inc.
Conduct Research Top
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AN721: Impedance Matching Networks Applied to RF Power Transistors, Courtesy of Motorola
Some graphic and numerical methods of impedance matching will be reviewed here. The examples given will refer to high frequency power amplifiers. Although matching networks normally take the form of filters and therefore are also useful to provide frequency discrimination, this aspect will only
More Information Top
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RF Circuit Design 2nd Edition Complete Document
Both the LO and RF impedance matching networks are connected from 50 to the gates of MOSFETs.
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http://dspace.mit.edu/bitstream/handle/1721.1/45237/309296197-MIT.pdf?sequence=2
Additional measurements for losses in the RF impedance matching network will also be .
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Impedance model of helical resonator discharge
In contrast to the usual configuration of a helical resonator system which does not use any RF impedance matching network , an impedance matching network is employed to locate the RF tap at any position along the helical coil.
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Instrumentation and Controls Division biennial progress report, September 1, 1978-September 1, 1980
RF Impedance Matching Network R. E. Wintenberg and 0.
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Plasma uniformity of inductively coupled plasma reactor with helical heating coil
Overlooking this potential advan- tage, previous HR plasma sources did not use any RF impedance matching networks because the source were operated in a reso- nance mode [10]–[12].
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A compact, RF-driven, pulsed ion source for intense neutron generation
The required rf impedance matching network has been successfullyminiaturized to - 5 cm diameter and tested.
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Characterization of water vapor plasma‐modified polyimide
electrode; (B ) rf-poweredelectrode; ( C ) capacitance ma- nometer; (D) vapor inlet; (E) rf impedence matching network ; (F) rf generator; ( G )pumping port.
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Laser mixer for microwave fiber optics
Several 1 km fiber optic links, without laser diode RF impedance matching networks , have been constructed employing various commercially available lasers to evaluate the effective down-conversion and up-conversion links.
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Process control using new approaches in plasma diagnostics
As shown in figure 1, the sensor which contains current and voltage transducers is placed between the RF impedance matching network and the powered electrode.
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Development of Advanced Deposition Technology for Microcrystalline Si Based Solar Cells and Modules: Final Technical Report, 1 May 2002-31 July 2004
We solved the problem by building, in-house, a manual RF impedance matching network of excellent stability.