Synchronization
See Also: Synchronizers
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PXIe-6674T, OCXO PXI Synchronization Module
781037-01
PXIe, OCXO PXI Synchronization Module—The PXIe‑6674T generates and routes clocks and triggers between devices in a PXI Express chassis as well as to other PXI and PXI Express chassis or third-party instrumentation. The PXIe‑6674T unlocks the advanced low-voltage differential signaling (LVDS) trigger signals PXIe‑DStarA, PXIe‑DStarB, and PXIe‑DStarC, on PXI Express while fully supporting the PXI trigger lines. The PXIe‑6674T can generate two types of clock signals: a highly stable 10 MHz clock based on an onboard precision oven-controlled crystal oscillator (OCXO) reference and a second clock from the direct digital synthesis (DDS) clock generation circuit.
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PXIe-6672, TCXO PXI Synchronization Module
780063-01
PXIe, TCXO PXI Synchronization Module—The PXIe‑6672 is a system timing controller module. It can drive the PXI star trigger lines, import and export PXI backplane clocks and triggers, generate a high-resolution direct digital synthesis (DDS) clock, and generate a high-stability temperature-compensated crystal oscillator (TCXO) 10 MHz Reference Clock for instrumentation. The PXIe‑6672 allows you to synchronize multiple PXI Express systems, synchronize a PXI Express system with external instruments and equipment, and increase the accuracy of instruments within a PXI Express system.
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PXI-6683, TCXO, GPS, IRIG-B, IEEE 1588 PXI Synchronization Module
782110-01
TCXO, GPS, IRIG-B, IEEE 1588 PXI Synchronization Module—The PXI‑6683 timing and synchronization modules synchronize PXI and PXI Express systems using GPS, IEEE 1588, and IRIG‑B to perform synchronous events. The PXI‑6683 can generate events and clock signals at specified synchronized future times and timestamp input events with the synchronized system time. The PXI‑6683 features an onboard temperature-compensated crystal oscillator (TCXO) that can be disciplined to GPS, IEEE 1588, and IRIG‑B for long-term stability. You also can use the PXI‑6683 to route clock signals and triggers with low skew within a PXI chassis or between multiple chassis, providing you a method for synchronizing multiple devices in a PXI system.
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IMS - Modular Synchronization
Meinberg Funkuhren GmbH & Co. KG
The IMS series (Intelligent Modular Synchronization) from Meinberg offers redundancy for synchronization sources and power supply in combination with a highly modular slot-based housing, which also supports hot swapping and scaling options in the field.
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Clockand Trigger Synchronization Board
CLKSYNC-PCI
CLKSYNC-PCI is a clock and trigger distribution board designed to provide up to eight synchronous clock and trigger outputs. The CLKSYNC-PCI is designed for use with multi-channel, ADC and DAC systems where clock and trigger synchronization are required.
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PXI Synchronization Module
PXI Synchronization Modules use the trigger bus, star trigger, and system reference clock features of PXI to implement advanced multi-device synchronization. By using PXI Synchronization Modules, you can improve measurement accuracy, implement advanced triggering schemes, and synchronize multiple devices to act as one for high-channel-count applications.
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Clock And Trigger Synchronization System
CLKSYNC-40
CLKSYNC-40 is a clock and trigger distribution system that provides multiple, independent copies of clock and trigger signals for multi-channel, Giga-sample ADC and DAC boards. Up to sixteen independent ADC or DAC clocks and triggers are synchronized.
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Clock And Trigger Synchronization Board With Atomic Clock
CLKSYNC-PCI-AC
CLKSYNC-PCI-AC is a clock and trigger distribution board designed to provide up to eight synchronous clock and trigger outputs. The CLKSYNC-PCI-AC is designed for use with multi-channel, ADC and DAC systems where precise clock and trigger synchronization are required.
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Synchronization and Distribution Amplifier - PCIe
Model 7892
The Model 7892 High-Speed Synchronizer and Distribution PCIe Board synchronizes multiple Pentek Cobalt or Onyx boards within a system. It enables synchronous sampling and timing for a wide range of multichannel high-speed data acquisition, DSP, and software radio applications
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Clock And Trigger Synchronization System
CLKSYNC-50
CLKSYNC-50 is a clock and trigger distribution system that provides multiple, independent copies of clock and trigger signals for multi-channel, Giga-sample ADC and DAC boards. Up to sixteen independent ADC or DAC clocks and triggers are synchronized.
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Synchronization And ASOPS Systems
The asynchronous optical sampling (ASOPS) technique allows high-speed scanning over some nanoseconds of time delay without a mechanical delay line. The SYNCRO-RRE, also available as stand-alone unit, provides state-of-the art phase lock electronics.
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PCIe-6376, 8 AI (16-Bit, 3.5 MS/s/ch), 2 AO, 24 DIO, Multifunction I/O Device
785809-01
8 AI (16-Bit, 3.5 MS/s/ch), 2 AO, 24 DIO, Multifunction I/O Device - The PCIe‑6376 is a simultaneous sampling, multifunction DAQ device. It offers analog I/O, digital I/O, four 32‑bit counters, and analog and digital triggering. Onboard NI‑STC3 timing and synchronization technology delivers advanced timing functionality, including independent analog and digital timing engines and retriggerable measurement tasks. The PCIe‑6376 is ideal for a variety of applications, such as IF digitization; transient recording; ISDN, ADSL, and POTS manufacturing test in the telecom industry; ultrasound and sonar testing; and high-energy physics. The included DAQExpress™ companion software provides basic measurement and analysis, while the NI‑DAQmx driver provides the ability to create customized automated measurement and control applications.
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(Small Instrumentation Modules)
SIM900
Stanford Research Systems, Inc.
The SIM900 Mainframe is the platform on which a SIM system is assembled. The mainframe provides power, computer interfaces, clock synchronization, and individual module status. Eight internal module slots accommodate single-width and double-width modules.
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SparkFun BabyBuck Regulator Breakout
3.3V (AP63203)
Who doesn't occasionally need power regulation? We certainly do, so we've designed the SparkFun BabyBuck Regulator Breakout to help us with just such a task. Featuring the AP63203 from Diodes Inc, this breakout board takes advantage of a 2A synchronous buck converter that has a wide input voltage range of 3.8V to 32V and fully integrated 125mΩ high-side power MOSFET/68mΩ lowside power MOSFET to provide high-efficiency step-down DC/DC conversion. All of this snuggled up in a low-profile, TSOT26 package that's integrated into a 0.4in by 0.5in board.
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16 Bit DDS Generator Up To 200 MHz
96xx series
The 96xx series DDS generators deliver the highest performance in both speed and resolution. The series includes produts between one and 24 synchronous channels. DDS – Direct Digital Synthesis – is a method for generating sine waves from a single, fixed-frequency reference clock and is widely used in signal generation applications. The DDS functionality implemented on Spectrum Instrumentation’s AWG platform is based on the principle of adding multiple “DDS cores” to generate a mul?ti-carrier (multi-tone) signal, with each carrier having its own well-defined frequency, amplitude and phase. In addition to these static parameters, there are also build in dynamic parameters like frequency slope and amplitude slope to allow for intrinsic linear changes for multiple cores.
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Digitizer
751Family
The 751 is a family of CAEN Waveform Digitizer able to perform basic waveform recording and run online advanced algorithms (DPP) of charge integration and pulse shape discrimination with constant fraction timing and zero-length encoding. Data is read by a Flash ADC, 10-bit resolution and 1GS/s sampling rate (2GS/s using half of the channels in DES mode), which is well suited for fast signals as the ones coming from fast organic, inorganic and liquid scintillators coupled to PMTs or Silicon Photomultipliers, Diamond detectors and others. The acquisitioncan be channel independent and it is possible to make coincidence/ anti-coincidence logic among diferent channels and external veto/ gating. Multiple boards can be synchronized to build up complex systems.
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PXI-5122, 100 MHz, 100 MS/s, 14-Bit PXI Oscilloscope
778756-04
100 MHz, 100 MS/s, 14-Bit PXI Oscilloscope—The PXI‑5122 high-resolution PXI oscilloscope has two channels 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 both time-domain and frequency-domain applications that require high-resolution, low-noise measurements with up to 100 MS/s and 100 MHz of analog bandwidth. The PXI‑5122 also features PXI synchronization and data streaming capabilities.
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3-Ch 200 MHz A/D with DDC & 2-Ch 800 MHz D/A with DUC, Virtex-6 FPGA - XMC
Model 71621
- Complete radar and software radio interface solution- Supports Xilinx Virtex-6 LXT and SXT FPGAs- Three 200 MHz 16-bit A/Ds- Three multiband DDCs- Two 800 MHz 16-bit D/As- One digital upconverter- Multiboard programmable beamformer- Up to 2 GB of DDR3 SDRAM or 32 MB of QDRII+ SRAM- Sample clock synchronization to an external system reference- Front panel clock/sync bus for multimodule synchronization- PCI Express (Gen. 1 & 2) interface up to x8 wide- Optional LVDS connections to the Virtex-6 FPGA for custom I/O- RoHS Compliant Lead-Free Version Available- Synchronize up to eight modules with Model 7893 System Synchronization and Distribution Amplifier - PCIe
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USB-8501, 2-Port, Low-Speed/Fault Tolerant, USB CAN Interface Device
786307-01
The USB-8501 is a low-speed controller area network (CAN) interface for developing applications with the NI‑XNET driver. The USB‑8501 is powered over the USB bus and does not require external power. It excels in applications requiring real-time, high-speed manipulation of hundreds of CAN frames and signals such as bus monitoring, automation control, and more. The NI‑XNET device‑driven DMA engine enables the onboard processor to move CAN frames and signals between the interface and the user program without CPU interrupts, minimizing message latency and freeing host processor time for processing complex applications. The USB‑8501 is available with a three‑pin COMBICON synchronization connector for triggering and synchronizing the internal hardware timebase with other devices.
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Database Management Free Tools
DBA xPress
Simply Develop and Monitor Your SQL Systems *Compare databases and synchronize the schema and data within them *Analyze dependencies and connections *Browse the content of SQL Server databases
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L-Band RF Tuner and 2-Channel 500 MHz A/D with Virtex-7 FPGA - XMC
Model 71791
- 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 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 downconverters- Xilinx 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- VITA 42.0 XMC compatible with switched fabric interfaces- Optional user-configurable gigabit serial interface- Optional LVDS connections to the Virtex-7 FPGA for custom I/O
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PCIe-7841, Virtex-5 LX30 FPGA, 200 kS/s Multifunction Reconfigurable I/O Device
781100-01
Virtex-5 LX30 FPGA, 200 kS/s Multifunction Reconfigurable I/O Device - The PCIe‑7841 features a user-programmable FPGA for high-performance onboard processing and direct control over I/O signals for 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‑7841 features a dedicated A/D converter per channel for independent timing and triggering. This design offers specialized functionality such as multirate sampling and individual channel triggering, which are outside the capabilities of typical DAQ hardware.
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cRIO-9058, 1.33 GHz Dual-Core CPU, 2 GB DRAM, 4 GB Storage, -40 °C to 70 °C, Artix-7 A100T FPGA, Extended Temperature, 8-Slot CompactRIO Controller
787880-01
1.33 GHz Dual-Core CPU, 2 GB DRAM, 4 GB Storage, -40 °C to 70 °C, Artix-7 A100T FPGA, Extended Temperature, 8-Slot CompactRIO Controller - The cRIO-9058 is a rugged, deployable controller for data acquisition and control applications. It offers Intel Atom dual-core processing, an Artix-7 FPGA, and eight 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 LabVIEW. The controller provides precise, synchronized timing and deterministic communications over the network using TSN, ideal for distributed measurements and control. This controller offers two Gigabit Ethernet ports, 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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Enhanced Serial Interface Module for Excalibur 8000 Family of Carrier Boards, with High Baud Rate & High Throughput
M8KSerial
The M8KSerial is an enhanced serial interface module for the multiprotocol Excalibur 8000 family of carrier boards, that includes several advanced features such as a high baud rate and high throughput. This module supports up to two independent channels of serial communications, each of which can be selected as RS-485, RS-422 or RS-232. The module operates independently of the host computer, reducing the need for host intervention.The M8KSerial module is based on the Exar XR16M570 Universal Asynchronous Receiver/Transmitter (UART). The device is compatible to industry standard 16550 UARTs. Each of the M4KSerialPlus’s four channels contains a transmit FIFO capable of holding up to 16384 bytes and a receive FIFO capable of holding either 16384 receive bytes or 5460 bytes with a 32-bit Time Tag associated with each byte. These large buffers allow application code to transfer large quantities of data with a single non-blocking subroutine call. The 32-bit Time Tag on receive channels is very useful for synchronizing serial data with data from other modules on the 8000 board or on other interface boards. Each channel has a programmable baud rate of up to 10 Mbps and can be configured as RS-232, RS-422 or RS-485.The M8KSerial module is supplied with C drivers, including source code.
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USB-6356, 8 AI (16-Bit, 1.25 MS/s), 2 AO (3.33 MS/s), 24 DIO USB Multifunction I/O Device
782260-01
8 AI (16-Bit, 1.25 MS/s), 2 AO (3.33 MS/s), 24 DIO USB Multifunction I/O Device - The USB-6356 is a simultaneous sampling, multifunction DAQ device. It offers analog I/O, digital I/O, and four 32-bit counters/timers for PWM, encoder, frequency, event counting, and more. Onboard NI-STC3 timing and synchronization technology delivers advanced timing functionality, including independent analog and digital timing engines and retriggerable measurement tasks. The USB-6356 is well suited for a broad range of applications, from basic data logging to control and test automation. The included NI-DAQmx driver and configuration utility simplify configuration and measurements.
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JadeFX FlexorSet 4-Ch 16-bit: 500 MHz A/D & 2 GHz D/A - 3U VPX
Model 5983-324
- Jade Xilinx Kintex UltraScale FPGA Products and Navigator Design Suite Software Video- Jade Xilinx Kintex UltraScale FPGA Family Brochure- Supports Xilinx Kintex UltraScale FPGAs- Four 500 MHz 16-bit A/Ds- Four digital upconverters- Four 2 GHz 16-bit D/As (500 MHz input sample rate, 2 GHz output sample rate with interpolation- 4 and 5 GB of DDR4 SDRAM- Sample clock synchronization to an external system referencePCI Express (Gen. 1, 2 and 3) interface up to x8- User-configurable gigabit serial interface- Optional optical interface for backplane gigabit serial interboard communication- LVDS connections to the Kintex UltraScale FPGA for custom I/O and sychronization- Compatible with several VITA standards including: VITA-46, VITA-48 AND VITA-66.4 and VITA-65 (OpenVPX™ System Specification)
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GPS Synchronized Clock Systems
Signals & Systems India Private Limited
GPS synchronized clock system offers accurate time to all clocks in the system. The GPS clock synchronization system consists of a master clock and multiple slave clocks. The master clock communicates with all the salve clocks via wired/wireless medium in the system to provide them with an accurate time source. The objective of the GPS synchronized clock system is to make sure that all clocks in the system display the same time. Regardless of which part of the building you are in, the time shown by the clocks will be uniform and accurate.
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Solid State Recorder
MS 2001
This system is used to acquire Bi phase and DM signals from aircraft and records into FLASH memory. System has automatic frame synchronization and it is achieved through in built hardware circuit.
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Dual Channel Bit Synchronizer for Rates up to 45 Mbps
LS-45-DB
The Lumistar LS-45-DB Dual Channel Bit Synchronizer Daughterboard provides optimal reconstruction of a serial PCM data stream that has been corrupted by noise, phase jitter, amplitude modulation, or base line variations. The all-digitaldesign assures a high performance, consistent product, with excellent reliability and long-term stability. Dual channel design can feed each channel of the LS-55-DD dual decom. The LS-45-DB also has a post D combiner that allows for optimal ratiocombining of the two input signals A unique Built-in-Test feature allows performance verification for the Bit Synchronizer to ensure the highest level of operation. Auto-test BIT is performed for a short duration on the application of power and tests more than 90% of the Bit Synchronizer components. This test verifies that power is properly applied, verifies that there are no internal bit errors, and performs other tests to ensure that the bit synchronizer is fully operational with status indication of results. Command-test BIT performs the same functions and can be initiated by the user at any time through the Lumistar software when used on Lumistar PC products. The user has the ability to generate internal pseudo-random patterns and calculate internal bit error rates with or without the injection of forced errors.Various status indicators are also available through the software. The Bit Synchronizer also contains a BER reader as well as frame sync pattern indicator.





























