Synchronizers
See Also: Synchronization
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SIRIUS XHS
SIRIUS XHS - High-speed Data Acquisition SystemSIRIUS XHS is a high-speed data acquisition system (15 MS/s) with the new Hybrid ADC technology capable of high-bandwidth transient recording and very high-dynamic, alias-free data acquisition. Modern data interfaces such as USB 3.0, GLAN, XCP, CAN, and OPC UA, with PTP synchronization allow for open and flexible connectivity.
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PXIe-5450, 145 MHz Bandwidth, 16-Bit, 512 MB, I/Q PXI Waveform Generator
780419-02
PXIe, 145 MHz Bandwidth, 16-Bit, 512 MB, I/Q PXI Waveform Generator—The PXIe‑5450 is a 145 MHz, dual‐channel arbitrary waveform generator optimized for I/Q communications signals. It is an ideal instrument for testing devices with I/Q inputs, or as the baseband component of an RF vector signal generator. The PXIe‑5450 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‑5450 also features advanced synchronization and data streaming capabilities.
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PXIe-5423, 40 MHz Bandwidth, 2-Channel, 16-Bit PXI Waveform Generator
785116-01
The PXIe-5423 is a 40 MHz arbitrary waveform generator capable of generating user-defined, arbitrary waveforms and standard functions including sine, square, triangle, and ramp. This arbitrary waveform generator can generate signals from -12 V to +12 V and uses a fractional resampling method to precisely generate waveforms. The PXIe-5423 also features advanced synchronization and generation features like waveform scripting and streaming.
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Ethernet/LXI digitizerNETBOX 16 Bit High Speed Digitizer - 250 MS/s on 20 Channels, 20 Single-Ended Inputs
DN6.442-20
The digitizerNETBOX DN6.44x series allows recording of up to 24 synchronous channels with sampling rates of 130 MS/s up to 500 MS/s. These products offer outstanding A/D features in resolution, bandwidth and speed as a remote instrument. The powerful A/D amplifier section offers six different input ranges, two input paths, AC/DC coupling and noise reduction filters.
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IC-3121, 1.91 GHz Intel Atom Quad-Core Processor, 2-USB3 Port Industrial Controller
784961-01
1.91 GHz Intel Atom Quad-Core Processor, 2-USB3 Port Industrial Controller - The IC‑3121 is a compact and rugged industrial controller that withstands the harsh environments common in automation, supervisory control, distributed control, and industrial embedded OEM applications. The IC‑3121 offers two USB3 ports with dedicated bandwidth, FPGA-based I/O capabilities, and network connectivity for distributed control applications. The advanced features include the ability to synchronize image inspection results with industrial I/O and configure hardware-timed network triggers to trigger camera acquisition, motion control, or data acquisition. You can use the advanced FPGA personality that is shipped with the system or customize the FPGA functionality using the LabVIEW FPGA Module.
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FD-11637, 8-Channel Strain/Bridge Input Device for FieldDAQ
785641-01
8-Channel Strain/Bridge Input Device for FieldDAQ - The FD-11637 can measure eight channels and has built-in bridge completion and voltage excitation to support for quarter-, half-, and full-bridge sensors. It also features anti-alias filtering, offset nulling, and shunt calibration to reduce the effect of noise and improve measurement accuracy. The FD-11637 has an ingress protection rating up to IP67 (dust- and water-resistant), can operate in -40 °C to 85 °C environments, and can sustain 100 g shock and 10 grm vibration. The FD-11637 incorporates Time Sensitive Networking (TSN) and features an integrated network switch and built-in power circuitry for simple daisy chaining. You program the FD-11637 with NI-DAQmx, which automatically synchronizes multiple FieldDAQ™ devices. The FD-11637 is ideal for test cell and outdoor environments.
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cRIO-9053, 1.33 GHz Dual-Core CPU, 4 GB Storage, -20 °C to 55 °C, Artix 7 50T FPGA, 4-Slot CompactRIO Controller
786424-01
1.33 GHz Dual-Core CPU, 4 GB Storage, -20 °C to 55 °C, Artix 7 50T FPGA, 4-Slot CompactRIO Controller - The cRIO-9053 is a rugged, deployable controller for data acquisition and control applications. It offers Intel Atom dual-core processing, an Artix-7 FPGA, and four slots for C Series modules. It runs the NI Linux Real-Time operating system with access to the I/O through NI-DAQmx drivers or with the LabVIEW FPGA module. The controller provides precise, synchronized timing and deterministic communications over the network using TSN, ideal for distributed measurements and control. This controller offers one Gigabit Ethernet port, one USB 3.1 host port, one USB 2.0 device port, a trigger line, and a μSD card slot for storing data locally. The registered trademark Linux® is used pursuant to a sublicense from LMI, the exclusive licensee of Linus Torvalds, owner of the mark on a worldwide basis.
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10 MHz Rubidium Oscillator
PRS10
Stanford Research Systems, Inc.
The PRS10 is an ultra-low phase noise, 10 MHz rubidium-disciplined crystal oscillator. The device fulfills a variety of communication, synchronization and instrumentation requirements.
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Charge/Discharge System Controller
PFX2500 Series
PFX2500 Series is a high performance Charge/Discharge system controller that takes measurements in combination with our DC power supply and electronic load in order to evaluate test sample (electric storage elements such as secondary batteries) characteristics. It is also capable to perform evaluation test with high-performance, large capacity and wide range of rating with the combination of DC power supply and electronic load.Execution of the test is conducted by the exclusive application software. The test corresponds to long time continuous test and synchronization test with temperature chambers with the multiplexed protection performance. In addition, easy data editing is also capable with fulfilling graphic performance.
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PXIe-8623, 4-Port, 100/1000BASE-T PXI Automotive Ethernet Interface Module
787992-01
PXIe, 4-Port, 100/1000BASE-T PXI Automotive Ethernet Interface Module - The PXIe-8623 is a 100/1000BASE-T unshielded twisted pair (UTP) PXI Automotive Ethernet Interface Module that helps you develop applications with the NI‑XNET driver. With the PXIe-8623, you can develop applications that require Ethernet to test and validate automotive electronic control units (ECUs). The PXIe-8623 provides up to four independent endpoints or up to two network terminal access points (TAPs). It features onboard hardware timestamping and can act as up to four separate 802.1AS masters or slaves, making synchronization with an external network as well as the rest of a PXI system possible. Additionally, the PXIe-8623 features LEDs on the front panel to help you monitor the network link and activity.
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Industrial Ethernet Physical Layer Devices
The ADI Chronous™ Industrial Ethernet physical layer (PHYs) portfolio includes solutions for standard 10 Mbps, 100 Mbps, and 1 Gbps. It also features the new 10BASE-T1L technology for single-pair Ethernet.Our industry-leading low latency and low power PHY technology maximizes data transmission and signal integrity in deterministic applications by reducing cycle times and system power consumption. It enables superior synchronization of signals across the industrial network and supports the development of TSN.
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V-FullWaver
The V-FullWaver systems were specifically developed for precise full waveform time domain Induced Polarisation, Resistivity and SP measurements. Each system is fully independent; incorporating its own power source, GPS module and digital memory for up to 3 months continuous recording. The V-FullWaver is a dual channel Induced Polarisation, Resistivity and SP receiver. Continually recording at 10ms sample rate provides a full waveform record. It can be synchronized on the GPS PPS signal, allowing an easy process of the signal. Data on the memory can be downloaded directly on a simple USB stick from all the Fullwavers.
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4-Channel 200 MHz A/D with DDC, Virtex-7 FPGA - 3U VPX
Model 52761
- Supports Xilinx Virtex-7 VXT FPGAs- GateXpress supports dynamic FPGA reconfiguration across PCIe- Four 200 MHz 16-bit A/Ds- Four multiband DDCs- Multiboard programmable beamformer- 4 GB of DDR3 SDRAM- Sample clock synchronization to an external system reference- LVPECL clock/sync bus for multiboard synchronization- PCI Express (Gen. 1, 2 & 3) interface up to x4- Optional LVDS connections to the Virtex-7 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- Supports GateXpress® FPGA-PCIe Configuration Manager- Synchronize up to eight modules with Model 7893 System Synchronization and Distribution Amplifier - PCIe
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PCI Direct Digital Synthesizers
SYNTH300-TRIG
These devices provide two synchronized DDS-based RF channels on a single PCI card. With fine frequency and phase control, triggered operation, and the ability to accept an external clock, the Synth300 products enable a number of advanced applications at a fraction of the cost of conventional equipment. In addition to two analog outputs, the product can be ordered with one (or two) LVDS outputs for programmable digital clock applications, and can be configured for control by externally supplied TTL signals for low-latency triggered operation such as PSK, FSK, and triggered sweep operation.
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PCIe-7857, Kintex-7 160T FPGA, 1 MS/s, DRAM Multifunction Reconfigurable I/O Device
786458-01
PCIe, Kintex-7 160T FPGA, 1 MS/s, DRAM Multifunction Reconfigurable I/O Device - The PCIe‑7857 features a user-programmable FPGA for high-performance onboard processing and direct control over I/O signals to ensure complete flexibility of system timing and synchronization. You can customize these devices with the LabVIEW FPGA Module to develop applications requiring precise timing and control such as hardware‑in‑the‑loop testing, custom protocol communication, sensor simulation, and high-speed control. The PCIe‑7857 features a dedicated analog-to-digital converter per channel for independent timing and triggering. This device offers specialized functionality such as multirate sampling and individual channel triggering, which are outside the capabilities of typical data acquisition hardware.
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PXIe-5114, 125 MHz, 250 MS/s, 8-Bit PXI Oscilloscope, 256 MB
783591-03
PXIe, 125 MHz, 250 MS/s, 8-Bit PXI Oscilloscope—The PXIe‑5114 low-cost PXI oscilloscope has two channels that sample up to 250 MS/s with flexible settings for coupling, impedance, voltage range, and filtering. PXI oscilloscopes also feature a number of triggering modes, deep onboard memory, and an instrument driver that includes data streaming and analysis functions. This device is ideal for applications with fast signals that require flexible measurement configurations and up to 125 MHz of analog bandwidth. The PXIe‑5114 also features advanced PXI synchronization and data streaming capabilities.
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PD Calibrator
PDCAL has excellent pulse-with stability; scale calibration factors are permanently stored inside its flash memory. Thanks to on board photo coupler PDCAL output pulse can be synchronized with the actual line frequency through external surrounding electrical light source systems.
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Logic Analyzer
GoLogicXL-36
Logic analyzers and oscilloscopes offering fast sample rates and large memory depths are required to debug and test modern electronics. The GoLogicXL captures a very large window of bus activity using sample depths up to 1 billion samples. 4 GHz sampling rates expose the finest details in your signals. 1 GHz Transitional sampling provides the optimum method to capture fast data bursts separated by seconds, minutes, or even hours of bus inactivity. The GoLogicXL State analysis can also synchronize with single-data-rate 300 MHz SDR clocks, and double-date-rate 250 MHz DDR clocks (500 MHz effective).
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PXIe-4145, 4-Channel, ±6 V, 500 mA Precision PXI Source Measure Unit
782435-01
PXIe, 4-Channel, ±6 V, 500 mA Precision PXI Source Measure Unit - The PXIe-4145 is a 4-channel source measure unit (SMU) ideal for high-pin-count applications. It features 4-quadrant operation, and each channel has integrated remote (4 wire) sensing for accurate measurements. The fast sample rate of the PXIe-4145 can reduce measurement times, capture transient device characteristics, and allow quick I V characterization of devices under test (DUTs). With a high-speed sequencing engine, you can synchronize all these SMUs with each other or with other instruments such as switches or high-speed digital test modules. Additionally, you can tune the PXIe-4145 response to any load to achieve optimum responses with maximum stability and minimum transients using SourceAdapt technology.
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AWD Dynamometers
MD-AWD-500-AC/EC-100/250
The key to designing an AWD dynamometer properly is to understand the methods currently being used by manufacturers in the field of AWD drivetrain technology. A dynamometer that can accommodate various types of AWD vehicle transmissions and wheelbases without excessive complication and, more importantly, without risking damage to a client’s AWD system is paramount. Full time AWD vehicles are designed to provide maximum performance regardless of road conditions. In cases where traction is less than ideal, a vehicle may be designed to improve stability and traction at the expense of power. This means adding torque to a spinning wheel or retarding of timing. In order to properly test an AWD vehicle for peak performance, an AWD chassis dynamometer must be able to simulate ideal road-load conditions to the vehicle. This approach allows the vehicle to be evaluated under “optimum” operational conditions; whereby torque is distributed to the vehicle’s tires in the same manner that would normally occur when a vehicle has equal traction at all four drive wheels, and is therefore operating at peak efficiency. To achieve this, Mustang’s AWD-500 Series incorporates an internal drive system that synchronizes the front and back rollers to simulate a flat, dry road condition. Synchronization, or linkage, insures that the front and rear rollers are always spinning at precisely the same road speed. This process eliminates the possibility of activating a vehicle’s traction control system and also insures that a vehicle’s torque management system is operating under the assumption that the vehicle is not skidding, turning or slipping. Mustang’s AWD-500 can be operated in AWD Mode while testing two-wheel drive vehicles. This process allows the non-driven axle to be spun by the dynamometer rollers at the same speed as the driven axle, eliminating the speed differential that occurs on two-wheel drive dynamometers – problem solved.
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Multiple Camera Board For NVIDIA® Jetson AGX Xavier™
E-CAM130_CUXVR
e-CAM130_CUXVR is a synchronized multiple 4K camera solution for NVIDIA® Jetson AGX Xavier™ development kit that has up to four 13 MP 4-Lane MIPI CSI-2 camera boards. Each camera is based on the camera module e-CAM137_CUMI1335_MOD, 1/3.2" AR1335 color CMOS image sensor from ON Semiconductor® and integrated high performance Image Signal Processor (ISP). All these four cameras are connected to the base board using 30 cm micro-coaxial cable. These four 4-lane MIPI camera modules can be synchronously streamed in 4K resolution, which will be best fit for high end multi camera solution. Customers can opt to purchase anything between single camera to four cameras as according to their requirement.
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4-Channel 200 MHz A/D with DDC, Virtex-7 FPGA - XMC
Model 71761
- Complete radar and software radio interface solution- Supports Xilinx Virtex-7 VXT FPGAs- GateXpress supports dynamic FPGA reconfiguration across PCIe- Four 200 MHz 16-bit A/Ds- Four multiband DDCs (digital downconverters)- Multiboard programmable beamformer- 4 GB of DDR3 SDRAM- Sample clock synchronization to an external system reference- LVPECL clock/sync bus for multimodule synchronization- PCI Express (Gen. 1, 2 & 3) interface up to x8- VITA 42.0 XMC compatible with switched fabric interfaces- 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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4-Channel 200 MHz, 16-bit A/D with Virtex-6 FPGA - 3U VPX
Model 52660
- Complete radar and software radio interface solution- Supports Xilinx Virtex-6 LXT and SXT FPGAs- Supports gigabit serial fabrics including PCI Express, Serial RapidIO and Xilinx Aurora- Four 200 MHz 16-bit A/Ds- Up to 2 GB of DDR3 SDRAM or 32 MB of QDRII+ SRAM- Sample clock synchronization to an external system reference- LVPECL clock/sync bus for multiboard synchronization- Optional LVDS connections to the Virtex-6 FPGA for custom I/O- 3U VPX form factors 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
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LXI Instruments
ProDAQ 61xx Series
The ProDAQ 61xx Series is a family of LXI Instruments based on the ProDAQ 6100 LXI architecture, which provides high-througput and precise synchronization for a new family of high-performance standalone LXI instruments.
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Analog Oscilloscope
FS-404
*OSCILLOSCOPE: 40 MHz Dual Trace,Dual Trigger, 1mV Sensitivity, 10ns Resolution.*FUNCTION GENERATOR: 0.5Hz~5MHz Frequence, Sine,Square,Triangle,3 waveforms, Max output:20 Vp-p(No Load),10 Vp-p(50Ω? Load)., TTL Synchronous Output
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Time Code Generators
Masterclock's time code generators provide a source of very stable time code and accurate time and date information. The GPS500 extracts timing reference from GPS satellite signals and generate time code synchronized to within less than 10 microseconds of UTC (Universal Coordinated Time). It can output IRIG-B with and without IEEE 1344 date encoding, SMPTE/EBU, NMEA 0183, Kinemetrics/Truetime, and 1PPS.
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IRIG Time Code Receiver & Generator for Computers (PCI Express)
TCR180PEX
Meinberg Funkuhren GmbH & Co. KG
The TCR180PEX receives IRIG-A/B/G, IEEE 1344, IEEE C37.118 or AFNOR NF S87-500 time codes and can be used for synchronizing the system time of its host PC. The IRIG output of this card can generate an IRIG signal for other IRIG time code readers. The output format is independent from the incoming IRIG signal - a perfect solution to your IRIG conversion requirements. It is used in applications like data acquisition, standalone computer time synchronization (for systems without a network connection or higher accuracy requirements) or as an IRIG converter device.
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3-Channel 200 MHz A/D and 2-Channel 800 MHz D/A with Virtex-6 FPGA - 3U VPX
Model 52620
- Complete radar and software radio interface solution- Supports Xilinx Virtex-6 LXT and SXT FPGAs- Supports gigabit serial fabrics including PCI Express, Serial RapidIO and Xilinx Aurora- Three 200 MHz 16-bit A/Ds- One digital upconverter- Two 800 MHz 16-bit D/As- Up to 2 GB of DDR3 SDRAM or 32 MB of QDRII+ SRAM- Sample clock synchronization to an external system reference- LVPECL clock/sync bus for multimodule synchronization- Optional LVDS connections to the Virtex-6 FPGA for custom I/O- 3U VPX form factors 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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Clock Generator
CG-1800
A video sync / master clock generator that can build a flexible high-quality sound synchronization system.
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Raman Spectrometer
Spec 64
The fiber coupled high speed Raman spectrometer is optimized for maximum light throughput and high speed spectrum acquisition. Connected to an AFM or a scanning stage, high speed Raman imaging is possible due to an integration time down to 10 ms per spectrum. The spectrometer can be operated with a separate software as stand-alone device or synchronized via the Anfatec AFM software.





























