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Baseband
The original state of frequencies prior to modulation.
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L-Band RF Tuner and 2-Channel 500 MHz A/D with Virtex-7 FPGA - 6U VPX
Model 57791
- Accepts RF Signals from 925 MHz to 2175 MHz- One programmable LNA handles L-Band input signal levels from -50 dBm to +10 dBm- Programmable analog downconverter provides IF or I+Q baseband signals at frequencies up to 123 MHz- Two 500 MHz 12-bit A/Ds digitize IF or I+Q signals synchronously; optional: 400 MHz 14-bit A/Ds- Two FPGA-based multiband digital downconvertersXilinx Virtex-7 VX330T or VX690T FPGAs- 4 GB of DDR3 SDRAM- Sample clock synchronization to an external system reference- PCI Express (Gen. 1, 2 & 3) interface, up to x8- Clock/sync bus for multimodule synchronization- Optional user-configurable gigabit serial interface- Optional LVDS connections to the Virtex-7 FPGA for custom I/O- Supports GateXpress® FPGA-PCIe Configuration Manager- Synchronize up to eight modules with Model 7893 System Synchronization and Distribution Amplifier - PCIe
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PXIe-5451, 145 MHz, 16-Bit, 128 MB, PXI Waveform Generator
781204-01
PXIe, 145 MHz, 16-Bit, 128 MB, PXI Waveform Generator—The PXIe‑5451 is a 145 MHz, dual‐channel arbitrary waveform generator capable of generating user-definied waveforms, standard functions, and I/Q communications signals. It is an ideal instrument for including in systems for testing devices with I/Q inputs, or as the baseband component of an RF vector signal generator as wells as time-domain signals like envelope tracking. The PXIe‑5451 also features onboard signal processing (OSP) functions that include pulse shaping and interpolation filters, gain and offset control, and a numerically controlled oscillator (NCO) for frequency shifting. The PXIe‑5451 also features advanced synchronization and data streaming capabilities.
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PXIe-5650, 1.3 GHz RF Signal Generator
781215-01
The PXIe‑5650 features continuous-wave generation capabilities with FM, 2‑FSK, or OOK modulation. It uses direct digital synthesis (DDS) for high-resolution frequency hopping or phase-continuous sweeping for fixture and device characterization applications. The PXIe‑5650 is ideal for clocking nonstandard sample rates, such as WCDMA signals at baseband or intermediate frequency (IF). With these versatile signal generators, you can perform analog and digital modulation through the onboard DDS circuit, which gives you frequency modulation and frequency-shift keying for applications such as bit error rate test, antenna testing, or even keyless entry. You can also perform amplitude modulation using on-off keying.
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Communications Test System for Frontline Diagnostics
ATS3000P
The ATS3000P is designed using Astronics Test Systems’ proven Synthetic Instrumentation architecture. Featuring 23instruments, and both Automated and Standalone modes to test, record, and diagnose faults, the unit provides complete RF, Analog and Digital capabilities. The ATS3000P also includes the sophisticated IF and baseband I/Q DigitalSignal Processing required for modern radios. The fieldupgradeable, software-defined architecture features easyto-use graphical user interfaces and enables testing with minimal operator intervention. Test Program Sets are available for a full range of tactical radios, or you can create new TPSs easily using the included TestEZ® software suite.
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Baseband Signal Generator
Find the right T&M solutions for applications requiring baseband signal generation. Our product portfolio includes the well-established baseband generator, supporting many wireless standards such as WCDMA, LTE, HSPA and WLAN802.11a/b/g/n/ac, using WinIQSIM2™. Our solutions selection also includes function generators.
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PXIe-5645, 6 GHz, 80 MHz Bandwidth, RF and Baseband PXI Vector Signal Transceiver
782377-01
6 GHz, 80 MHz Bandwidth, RF and Baseband PXI Vector Signal Transceiver—The PXIe‑5645 combines a vector signal generator and vector signal analyzer with FPGA-based real-time signal processing and control into a single device, also known as a VST. Because of this software-designed approach, the PXIe‑5645 offers the flexibility of a software defined radio architecture with RF instrument class performance. The PXIe‑5645 features a high-performance, differential or single-ended baseband I/Q interface. This interface allows the PXIe‑5645 to address many additional applications, such as testing both the upconverted RF and downconverted baseband signals of a device with a single instrument.
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Downconverter
MADC-011021
Macom Technology Solutions Holdings Inc.
The MADC-011021 is a surface mount E-band receiver. The module operates from 71 - 86 GHz and is designed to be used in direct conversion or heterodyne applications. The RF input is a WR12 interface. The module provides 12 dB of conversion gain and a noise figure of 5 dB. The linear mixer topology allows for strong IIP3 performance (2 dBm) to be maintained up to the radio input levels recommended in the standards. The baseband is a quadrature balanced four line interface (I, I*, Q, Q*).
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L-Band RF Tuner and 2-Channel 400 MHz A/D
Model 78891
Accepts RF signals from 925 MHz to 2175 MHz, Programmable LNA handles L-Band input signal levels from -50 dBm to + 10 dBm, Programmable analog downconverter provides IF or I+Q baseband signals at frequencies up to 123 MHz
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Logarithmic Transimpedance Amplifiers
Analog Devices translinear logarithmic amplifiers utilize advanced translinear techniques to provide an exceptionally large dynamic range in a versatile and easily used form. Our portfolio relies on proprietary innovations in design and precision laser trimming to achieve the wide measurement range and accuracy in products such as the AD8304 and AD8305. ADI translinear logarithmic amps are used in a variety of applications including optical power measurement, wide range baseband logarithmic compression, the measurement of current and voltage ratios, and optical absorbance measurements.
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90-Degree Optical Hybrid
Six-port hybrid devices have been used for microwave and millimeter-wave detection systems since the mid-1990s and are a key component for coherent receivers. In principle, the six-port device consists of linear dividers and combiners interconnected in such a way that four different vectorial additions of a reference signal (LO) and the signal to be detected are obtained. The levels of the four output signals are detected by balanced receivers. By applying suitable baseband signal processing algorithms, the amplitude and phase of the unknown signal can be determined.
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DUAL RF Multiple-Input/Output
FMC-SDR400
Sundance Multiprocessor Technology Ltd.
FMC-SDR400 is a Dual RF multiple input/output module (MIMO) based on AD9361, 70MHz – 6GHz RF transceiver and AD9656 ADC for baseband sampling of less than 70MHz (input only in this range). A software selectable gain and tunable RF bandpass front-end section provides high RF sensitivity by allowing rejection of out-of-band-of-interest interfering signals.
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PXIe-5820, 500 MHz, 1 GHz I/Q Bandwidth, Baseband PXI Vector Signal Transceiver
783967-01
500 MHz, 1 GHz I/Q Bandwidth, Baseband PXI Vector Signal Transceiver—The PXIe‑5820 is the baseband model of the second-generation vector signal transceiver (VST) with 1 GHz of complex I/Q bandwidth. It combines a wideband I/Q digitizer, wideband I/Q arbitrary waveform generator, and high-performance user-programmable FPGA in a single 2-slot PXI Express module. You can use the VST for a variety of applications including baseband I/Q test of wireless and cellular chipsets; envelope tracking of digitally predistorted waveforms for power amplifiers; and the generation and analysis of new wireless standards such as 5G, 802.11ax, and LTE-Advanced Pro.
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STEREO PERFORMANCE METER
SPM-1
The SPM-1 measures the stereo content present in any left and right audio program material. It measures 0-50 dB separation on live program material by cross correlating the right and left base-band audio information.
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Standards Reference for Test Systems PXI Card
GX1034
The GX1034 offers PXI system designers the capability to develop a system re-certification strategy that employs only internal system resources. By incorporating the GX1034 as part of a system configuration, it is possible to develop a system accuracy verification strategy that can recertify a system's source and measure baseband instrumentation resulting in simplified support / maintenance logistics and improved system availability.
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Vector Signal Generator
VSG25A
The VSG25A is a 100 MHz to 2.5 GHz vector signal generator, featuring a 12-bit I/Q baseband arbitrary waveform generator which can be clocked at virtually any frequency from 54 kHz to 180 MHz, and includes a 4096×16 bit pattern buffer for built-in or custom modulation.
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USRP-2920, 20 MHz Bandwidth, 50 MHz to 2.2 GHz USRP Software Defined Radio Device
781906-01
20 MHz Bandwidth, 50 MHz to 2.2 GHz USRP Software Defined Radio Device - The USRP‑2920 is a tunable RF transceiver with a high-speed analog‑to‑digital converter and digital‑to‑analog converter for streaming baseband I and Q signals to a host PC over 1 Gigabit Ethernet. You can also use the USRP‑2920 for the following applications: white space; broadcast FM; public safety; land-mobile, low-power unlicensed devices on industrial, scientific, and medical (ISM) bands; sensor networks; cell phone; amateur radio; or GPS.
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Digital Signal Processing (DSP)
Digital signal processing (DSP) affords greater flexibility, higher performance (in terms of attenuation and selectivity), better time and environment stability, and lower equipment production costs than traditional analog techniques. Components available today let DSP extend from baseband to intermediate frequencies (IFs). This makes DSP useful for tuning and signal selectivity, and frequency up and down conversion.
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RF Test Spectrum Measurements over CPRI
Integris 3000
Most modern cell tower network configurations place the Remote Radio Head (RRH) at the top of the tower and the baseband unit(BBU) at the bottom of the tower. While this configuration is advantageous for both computational efficiency and mitigation of RF loss across the cable, it means the only place along RF can be accessed is at the top of the tower. This forces field technicians to have to climb the tower to measure and debug RF noise problems.
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USRP‑2930, 20 MHz Bandwidth, 50 MHz to 2.2 GHz, Included GPS-Disciplined OCXO, USRP Software Defined Radio Device
781910-01
20 MHz Bandwidth, 50 MHz to 2.2 GHz, Included GPS-Disciplined OCXO, USRP Software Defined Radio Device - The USRP‑2930 is a tunable RF transceiver with a high-speed analog‑to‑digital converter and digital‑to‑analog converter for streaming baseband I and Q signals to a host PC over 1 Gigabit Ethernet. It also features a GPS-disciplined oscillator (GPSDO) with PPS accuracy of ±50 ns. You also can use the NI USRP‑2930 for the following communications applications: white space; broadcast FM; public safety; land-mobile, low-power unlicensed devices on industrial, scientific, and medical (ISM) bands; sensor networks; cell phone; amateur radio; or GPS.
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Radar Environment Simulator
Scientific Research Corp. STI Division
SRC has developed a family of products used to test radar systems during development and to train after system implementation. Our product provides realistic signals at RF, IF, and at baseband that simulate multiple targets, jamming, atmospheric effects, and clutter. In addition to meeting U.S. needs, these radar environment simulators have been sold to customers in Spain, The Netherlands, and other countries to support key radar developments.
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Audio / Video
Transport one or multiple baseband (composite) video and audio channels over a single fiber strand up to 120km.
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L-Band RF Tuner and 2-Channel 200 MHz A/D with Virtex-6 FPGA - XMC
Model 71690
- Accepts RF Signals from 925 MHz to 2175 MHz- Programmable LNA boosts LNB (low noise block) antenna signal - levels with up to 60 dB gain- Programmable analog downconverter to I + Q baseband signals - 4 to 40 MHz bandwidth- Two 200 MHz 16-bit A/Ds digitize the I + Q signals synchronously- Supports Xilinx Virtex-6 LXT and SXT FPGA- 2 GB DDR3 SDRAM or 32 MB of QDRII+ SRAM- Sample clock synchronization to an external system reference- PCI Express (Gen. 1 & 2) interface, up to x8- Clock/sync bus for multimodule synchronization- VITA 42.0 XMC compatible with switched fabric interfaces- Optional user-configurable gigabit serial interface- Optional LVDS connections to the Virtex-6 FPGA for custom I/O- Synchronize up to eight modules with Model 7893 System Synchronization and Distribution Amplifier - PCIe
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L-Band RF Tuner and 2-Channel 200 MHz A/D with Virtex-6 FPGA - 3U VPX
Model 52690
- Accepts RF Signals from 925 to 2175 MHz- Programmable LNA boosts LNB (low noise block) antenna signal levels with up to 60 dB gain- Programmable analog downconverter provides 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 FPGA- 2 GB DDR3 SDRAM or 32 MB of QDRII+ SRAM- Sample clock synchronization to an external system reference- Clock/sync bus for multiboard synchronization- Optional LVDS connections to the Virtex-6 FPGA for custom I/O- 3U VPX form factor provides a compact, rugged platform- Compatible with several VITA standards including: VITA-46, VITA-48 and VITA-65 (OpenVPX™ System Specification)- Ruggedized and conduction-cooled versions available- Synchronize up to eight modules with Model 7893 System Synchronization and Distribution Amplifier - PCIe
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Automotive Audio Processors
ST’s wide portfolio of analog and digital signal processors covers the full range of features and channel configurations for the car-audio application spectrum, from low-end solutions to high-end premium audio systems. More than 40 analog signal processors offer a large choice for the number of inputs, number of output channels, and baseband audio functions, including EQ, dynamic compressors, subsonic filters, and more. Alternatively, a fully digital solution with embedded 20-bit audio ADCs and DACs is based on a proprietary 24-bit DSP specifically crafted for audio applications.
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L-Band RF Tuner and 2-Channel 400 MHz A/D with Kintex UltraScale FPGA - 3U VPX
Model 54891
- Jade Xilinx Kintex UltraScale FPGA Products and Navigator Design Suite Software Video- Jade Xilinx Kintex UltraScale FPGA Family Brochure- Accepts RF signals from 925 MHz to 2175 MHz- Programmable LNA handles L-Band input signal levels from -50 dBm to + 10 dBm- Programmable analog downconverter provides IF or I+Q baseband signals at frequencies up to 123 MHz- Two 400 MHz 12-bit A/Ds digitize IF or I+Q signals synchronously- Two FPGA-based multiband DDCs (digital downconverters)- Xilinx® Kintex® UltraScale™ FPGA- Five GB of DDR4 SDRAM- Sample clock synchronization to an external system reference- PCI Express interface (Gen. 1, 2 & 3) up to x8- Clock/sync bus for multimodule synchronization- Optional LVDS and gigabit serial connections for FPGA for custom I/O- Optional optical interface for data streaming- Navigator BSP® for software development- Navigator FDK® for custom IP development- Spark® fully-integrated development system- Free lifetime applications support- Synchronize up to eight modules with Model 7893 System Synchronization and Distribution Amplifier - PCIe
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Full Band Down-Converters
STC-20-10-S1
Full band down-converters are designed to convert high frequency millimeterwave signals down to the baseband at 10 MHz to 1.6 GHz. These down-converters deliver a superior performance since they are assembled with SAGE Millimeter’s instrumentation grade components, such as multipliers, amplifiers, filters, isolators, and more. The below standard offering covers the frequency range of 26.5 to 170 GHz and delivers a typical LO power of 3 dBm and conversion gain of 20 dB. The down-converters provide low harmonic levels and excellent gain flatness, making them ideal for test instrumentation applications. Specifications other than those listed below are available upon request.
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DC Coupled, 14-Bit Digitizer For ExpressCard 54, 2 Channels 150 MS/s
EC14150D
The EC14150D (EC) is an DC-coupled dual channel waveform capture board that provides a remarkable combination of high speed and high resolution sampling along with a very large memory capacity all in a very compact and low power consuming ExpressCard form factor. At 4.5 W, the EC represents one of the lowest power consuming digitizer cards ever created for its class. Signal frequencies up to 200 MHz can be accurately captured either in baseband or in higher order Nyquist zones using under-sampling techniques. Where DC-coupling is required, the EC14150D should be considered.
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Transceiver Adapter Module For FlexRIO
Transceiver Adapter Modules for FlexRIO feature multiple inputs, outputs, and digital I/O lines for applications that require the acquisition and generation of IF or baseband signals with in‐line, real‐time processing. Example applications include RF modulation and demodulation, channel emulation, signals intelligence, real‐time spectrum analysis, and software defined radio (SDR). Transceiver Adapter Modules also provide digital I/O capability for interfacing with external hardware.
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PXIe-5451, 145 MHz, 16-Bit, 512 MB, PXI Waveform Generator
781204-02
PXIe, 145 MHz, 16-Bit, 512 MB, PXI Waveform Generator—The PXIe‑5451 is a 145 MHz, dual‐channel arbitrary waveform generator capable of generating user-definied waveforms, standard functions, and I/Q communications signals. It is an ideal instrument for including in systems for testing devices with I/Q inputs, or as the baseband component of an RF vector signal generator as wells as time-domain signals like envelope tracking. The PXIe‑5451 also features onboard signal processing (OSP) functions that include pulse shaping and interpolation filters, gain and offset control, and a numerically controlled oscillator (NCO) for frequency shifting. The PXIe‑5451 also features advanced synchronization and data streaming capabilities.
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NI-5782, 100 MHz Bandwidth Transceiver Adapter Module for FlexRIO
782705-02
The NI‑5782 is ideal for applications that require the acquisition and generation of IF or baseband signals with in-line, real-time processing. You can analyze acquired signals in the PXI FPGA Module for FlexRIO to perform measurements and generate response signals. Application areas include RF modulation and demodulation, channel emulation, bit error rate testing (BERT), signal intelligence, radio frequency identification (RFID) and near-field communication (NFC) test, real-time spectrum analysis, and software defined radio (SDR).