Featured Products this Week . |
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2-Port USB Controlled Lab Grade VNA from 300 kHz to 6.5 GHz |
Vector Network Analyzer
from Copper Mountain Technologies
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The SC5065 from Copper Mountain Technologies is a modular 2-port compact lab grade VNA that operates from 300 kHz to 6.5 GHz. This small USB Controlled lab grade VNA has higher speeds, more dynamic range, and higher output power, with features like time domain and gating conversion, segmented frequency sweeps, linear/ logarithmic sweeps, power sweeps, multiple trace formats, 16 channels max. with up to 16 traces each, marker math, and limit tests. |
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True-RMS RF Power Sensor from 9 kHz to 67 GHz |
RF Power Meter & Sensor
from LadyBug Technologies
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The LB5967L from LadyBug Technologies is a True-RMS Power Sensor that operates from 9 kHz to 67 GHz. This general-purpose True-RMS average power meter can be used to perform scalar measurements. It has a measurement range from -50 to 18 dBm (~63 mW) with fast measurement speeds and a wide set of options for programmatic and embedded applications. |
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400 W Solid State Power Amplifier from 2 to 6 GHz |
RF Amplifier
from Exodus Advanced Communications
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The AMP2077-LC from Exodus Advanced Communications is a Solid-State High-Power Amplifier that operates from 2.0 to 6.0 GHz. It delivers a CW/Pulsed output power of over 400 W and a gain of more than 56 dB. This Class A/AB linear amplifier has spurious levels of less than -60 dBc and harmonics of -20 dBc. The SSPA is equipped with built-in protection circuits and provides extensive monitoring parameters for all modulation types, standards, forward/reflected power in Watts & dBm, VSWR, voltage, current, and temperature. |
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67 GHz Flexible, Colour-Coded VNA Test Cable Assemblies |
RF Cable Assembly
from Maury Microwave
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The StabilityVNA™ (SV-Series) from Maury Microwave are 67 GHz Test Port VNA Cable Assemblies. They offer excellent amplitude and phase stability with flexure, thereby improving measurement accuracy while reducing measurement uncertainty. These cable assemblies have excellent flexibility and anti-skid bands to ensure the cables can be arbitrarily positioned without spring-back or stress on DUTs. |
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Low Profile Wirewound Chip Inductors from 0.5 to 13 nH |
RF Inductor
from Coilcraft
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The 0201HT Series from Coilcraft are Low Profile Wirewound Chip Inductors with inductance values from 0.5 to 13 nH. They have higher Q and lower DCR than similarly sized thin-film inductors and are optimized for high-frequency impedance matching in applications such as cell phones, wearable devices, Wi-Fi, Bluetooth, GPS, and LTE/5G IoT networks. |
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Cavity Diplexer with Passbands from 902 to 928 / 2400 to 2500 MHz |
Diplexer
from Mini Circuits
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The ZVDP-902-252-S+ from Mini-Circuits is a Diplexer with passbands from 902 to 928 MHz and 2400 to 2500 MHz. It has a passband insertion loss of less than 1 dB and provides a stopband rejection of 27 to 90 dB. This cavity diplexer can handle an input power of up to 75 W and a return loss of 14 dB. It is designed by implementing resonant structures with very high Q and is ideal for narrow-band, high-selectivity applications. |
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InP Cryogenic Low Noise Amplifier from 4 to 8 GHz |
RF Amplifier
from Low Noise Factory
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The LNF-LNC4_8SG from Low Noise Factory (LNF) is a Cryogenic Low Noise Amplifier (LNA) that operates from 4 to 8 GHz. It provides 40 dB of gain with a noise figure of 0.02 dB and a noise temperature of 1.5 K. This LNA is manufactured using LNF’s proprietary InP HEMT technology. It is not hermetically-sealed and therefore, it must be operated in a vacuum environment when the temperature reaches below the dewpoint. |
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USB Peak Power Sensor from 50 MHz to 6 GHz for Wireless Signal Characterization |
RF Power Meter & Sensor
from Anritsu
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The MA24406A from Anritsu is a USB Peak Power Sensor that operates from 50 MHz to 6 GHz. It executes real-time processing of power readings with a measurement speed of 100,000 measurements/s and has a dynamic range of -60 to 20 dBm. This sensor has a video bandwidth of up to 195 MHz, which enables it to measure the peak power of wideband modulated signals, such as in the 802.11ac, as well as pulses that are as narrow as 10 ns. |
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RF Analog Signal Generators from 9 kHz to 6 GHz |
Signal Generator
from Keysight Technologies
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The N5171B EXG X-Series from Keysight Technologies are RF Analog Signal Generators with a frequency range from 9 kHz to 6 GHz. They provide a sine, square, triangle and positive/negative ramp waveform with an SSB phase noise of -133 dBc/Hz (at 20 kHz offset) and a frequency resolution of 0.001 Hz. These signal generators can perform basic parametric testing of components and functional verification of receivers with industry-leading output power. |
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Multi-protocol LPWAN Module from 864 to 928 MHz |
RF Module
from STMicroelectronics
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The STM32WL5MOC from STMicroelectronics is an LPWAN Module that operates from 864 to 928 MHz. It incorporates a multiprotocol LPWAN 32-bit ArmCortex-M4/M0 core, a sub-GHz radio transceiver, 32 MHz radio TCXO and 32 kHz RTC crystals. This module supports LoRa, (G)FSK, (G)MSK and BPSK modulations and is compatible with standardized or proprietary protocols such as LoRaWAN, Sigfox, or W-MBus (fully open wireless system-on-chip mioty). |
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SPST Tuning Control Switch from 100 to 3000 MHz |
RF Switch
from pSemi, A Murata Company
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The PE613010 from pSemi is an SPST Tuning Control Switch that operates from 100 to 3000 MHz. The switch can handle an input power of up to 38 dBm and has an insertion loss of less than 0.95 dB. It has a switching time of 7 µs and provides up to 11 dB of isolation. It is based on Peregrine’s UltraCMOS technology with an open reflective architecture and can be used for a wide variety of tuning circuit topologies with an emphasis on impedance matching and aperture tuning applications. |
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0.010 to 15 GHz RF Frequency Synthesizers |
Frequency Synthesizer
from Narda-MITEQ
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The 2LPL series from L3 Narda-MITEQ are frequency synthesizers that operate from 10 MHz to 15 GHz. The synthesizers provide an output power of up to 13 dBm and a spurious suppression of -60 dBc. They require a supply voltage from 7 to 28 V DC and consume less than 4 watts of power. They are available in a module that measures 2 x 2 x 0.61 inches with SMA female connectors and can operate from either external reference, or internal TCXO with stability as low as 500 PPB. |
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1 W Low Phase Noise Digital Phase Shifter from 9.5 to 10.5 GHz |
Digital Phase Shifter
from G.T. Microwave, Inc.
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The P2P-61A-5AR from G.T. Microwave is a Low Phase Noise, Pin Diode Phase Shifter that operates from 9.5 to 10.5 GHz. It provides a phase shift range from 0 to 360 degrees with a step size of 0.087 degrees. This 12-bit phase shifter provides a low phase noise of 132 dBc/Hz @ 10 kHz and -142 dBc/Hz @ 100 kHz with a switching speed of 500 ns. |
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High Stability Thermoset RF Laminates for Industrial Radar Applications |
Laminate
from Rogers Corporation
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The RO4835IND Lo Pro from Rogers Corporation are Thermoset RF Laminates that are specifically designed to operate for short-range (<30 m) industrial radar applications from 60-81 GHz where excellent electrical performance and cost-efficiency are equally important. The Lo Pro Laminates offer a typical dielectric constant of 3.48 and a dissipation factor of 0.0037 with stable performance over a wide frequency range. |
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Right-Angle Waveguide-to-Coaxial Adapter from 26.5 to 40 GHz |
Waveguide to Coax Adapter
from Spacek Labs
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The T28-K from Spacek Labs is a 90° Waveguide-to-Coaxial Adapter that operates in the Ka-Band from 26.5 to 40 GHz. It can be used to adapt a component or system from a WR-28 (UG599/U) waveguide interface to the 2.92mm (K) coaxial connector and vice versa. This adapter has an insertion loss of 0.3 dB and a VSWR less than 1.35:1. |
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Rugged SATCOM On-The-Move Terminal from 7.25 to 31 GHz |
SATCOM Terminal
from General Dynamics Mission Systems
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The M20-20M from General Dynamics Mission Systems is a SATCOM On-The-Move Terminal. It operates from 10.95 to 14.5 GHz (Ku-band), 20.20 to 31 GHz (Ka-MIL) and 7.25 to 8.4 GHz (X-band). This terminal has been specifically designed for ground vehicle command, control & communications (C3) missions where beyond line of sight (BLOS) SATCOM capabilities are mission critical. |
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800 W GaN Asymmetric Doherty Power Transistor from 600 to 1000 MHz |
RF Transistor
from Ampleon
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The C4H10P800A from Ampleon is a GaN Asymmetric Doherty Power Transistor that operates from 600 to 1000 MHz. It delivers an output power of 800 W with a power gain of 18.3 dB and a drain efficiency of 61.1%. This transistor has an adjacent channel power ratio (ACPR) of -22.9 dBc with exceptional pre-distortion capability. It has lower output capacitance for improved performance in Doherty applications and is internally matched to 50 Ohms for ease of use. |
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LTE Cat 1 Modules for M2M and IoT Applications |
Cellular Module
from Quectel
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The EC21 Series from Quectel are LTE Cat 1 Modules that are designed to support global LTE, UMTS/HSPA (+), and GSM/GPRS/EDGE coverage. They are suitable for IoT applications that are not reliant on high-speed connectivity but still require the longevity and reliability of LTE networks. These modules incorporate Qualcomm’s IZat location technology Gen8C Lite with multi-constellation GNSS connectivity, which greatly simplifies the product design and provides quicker, more accurate, and dependable positioning service. |
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Low-Power 1-Port RAIN RFID Reader Module for Battery-Powered Applications |
RFID Reader Module
from CAEN RFID
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The Lepton9 (Model R9100C) from CAEN RFID is a 1-Port RAIN RFID Reader Module for low power, high performance RAIN RFID applications. It provides programmable output power from 10 mW to 1 W and can detect tags at a distance of more than 5 m (depending on antenna and tag dimensions). The module is based on the Impinj E910 chipset that provides fast reading speeds and enables application in the dense reader and dense tag environments. |
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14.5 GHz CMOS Ultra-Efficient Power Amplifier for SATCOM Applications |
RF Amplifier
from Falcomm
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The FCM1401 from Falcomm is a Dual-stage CMOS Power Amplifier with a center frequency of 14.5 GHz. It is based on the proprietary ultra-efficient Dual-Drive™ architecture developed by Falcomm and is implemented using the GlobalFoundries 130NSX1 process. This technology provides significant advantages, including exceptional performance, improved energy efficiency, and reduced thermal management costs. |
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