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IRIG
Inter-range instrumentation group time codes.
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Multi Protocol Boards
The EXC-4000 carrier board series was developed to meet the needs of avionic testers for multi-protocol integrated, digital bus testing. Modules may be selected out of a growing list which currently includes MIL-STD-1553/1760, MMSI, H009, ARINC-429, ARINC-708/453, Serial (232/422/485), Discrete and CAN bus. Additionally, an IRIG B decoder implements a global time stamp relative to the IRIG B pulses. The need for higher density, different protocols, and multi-channel on one integrated test card has made the EXC-4000 series very successful.
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Automated Telemetry Test Station
ATTS5000
Systems Engineering & Management
The ATTS 5000 was developed by SEMCO to ensure that receiver systems successfully perform at both IRIG 118 Chapter 4 recommended tests, as well as additional customer-specified performance parameters. The ATTS 5000 ensures that the highest quality test data is consistently and repetitively collected on each and every system.
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IRIG 106 Chapter 10 SDK for MIL-STD-1553 Applications
Avionics Interface Technologies — A Teradyne Company LOGIN Open Search Form F-SIM-1553-AVOE F-SIM-1553-AVOE
Avionics Interface Technologies
Supports Capture, Recording, & Analysis of MIL-STD-1553 Chapter 10 Ethernet Data Streams - View Live MIL-STD-1553 Data and Activity Statistics from one or more Chapter 10 Streams - Compatible with AIT eDAQ-1553 & eDAQ-1553-FQ Modules - Open, View, Save, & Analyze MIL-STD-1553 bus data from Chapter 10 Archive Files - Replay MIL-STD-1553 bus data from Chapter 10 Archives using any of AIT’s MIL-STD-1553 Interface modules - Supported in AIT’s Flight Simulyzer simulation and analyzer software application
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VME Time & Frequency Processor
VME635091-SyncClock
Brandywine Communications’ VME635091-SYNCCLOCK is a time and frequency processor module that provides precision time and frequency reference to the host computer and peripheral data acquisition systems. Time is acquired from time code signals, typically IRIG B. Time is displayed on the front panel (hours, minutes, seconds) via LED digits.
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Express Multi Protocol Board
EXC-8000PCI
The EXC-8000PCIe is a PCI Express card supporting up to eight independent 8000 family avionics communication modules, allowing multiple different protocols to be mixed and matched on a single card. Modules available include MIL-STD-1553, MIL-STD-1760, MMSI, ARINC-429, ARINC-708, ARINC-717, Serial, Discrete and CAN bus.The EXC-8000PCIe supports extensive error injection and detection capabilities, IRIG B Time Code input, and can be ordered with an extended operating temperature range of -40ºC to +85ºC and conformal coating. The EXC-8000PCIe is supplied with C drivers, including source code.
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Compact PCI Multi-function Decommutator
LS-50-cP
The Lumistar LS-50-cP 3U Compact PCI Multi-function PCM Decommutator offers the greatest flexibility in the industry by incorporating up to 10 functions typically encountered in flight test applications in a single 3U Compact-PCI card slot. Five functions are achieved on the main board (PCM Simulator which can also operate as a BERT, PCM Decommutator, IRIG Time CodeReader, IRIG Time Code Generator, and the same 5 functions can be achieved on the LS-55-DB Multi-Function Decom Daughterboard. CVSD Voice Decoding and h.261 Video Decoding are achieved through software.
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8" Cable
CONW1553-1
Transitions from a card end connector (with IRIG) on the QVME-1553 or QVXI-1553X into two 8" cables with CJ70 Twinax, 3 lug, 1553 cable jack ends, and four 8" cables with BNC cable jacks for I/O triggers and IRIG Rec/Gen.
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Dynamic Data Simulator
LS-70-S
The Lumistar LS-70-S PCI Dynamic Data Simulator allows complex data streams to be generated for evaluation of bit synchronizers and PCM decommutator performance. It can also be used for uplink command generation to vehicles in flight, checkout of complete telemetry links, and playback of archived hard drive data in any format with the appropriate dll. The PCI board is only 7 inches long and contains the dynamic simulator and IRIG Time Code Generator.
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ARINC 429 XMC Interface Module
XMC-429
Avionics Interface Technologies
16, 32, or 64 ARINC 429 channels (up to 32 Tx & 32 Rx) - Programmable Tx channel output amplitude - Programmable high/low speed operation - Eight (8) Discrete I/O (Four (4) inputs, and four (4) outputs) - Concurrent operation of all Tx/Rx Channels at high data rates - Full error injection and detection - Data capture filtering, 100% bus recording, and physical bus replay - IRIG‐B time code encoder/decoder for data correlation - Conduction-cooling and/or conformal coating available - Designed for extended temperature operations - ANSI Application interfaces supporting C, C++, C#, and .net development - Device driver support: Windows, Linux, and VxWorks (others provided upon request)
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CPCI timing plug-in
CPCI-SyncClock32
The CPCI-SyncClock32 from Brandywine Communications provides precision time with zero latency to the host computer over the CPCI bus in the 3u form factor. An on-board microprocessor automatically synchronizes the clock to reference signal inputs. The reference signal inputs can be 1 PPS, IRIG or NASA time codes and optionally, GPS or Have Quick.
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PCI Express Timecode and GPS Reader Generator
PCIEX-SyncClock
The PCI-Express time code reference timing card with standard options such as IRIG B and optional GPS receiver provides an extremely accurate time source to the PCI-Express bus.
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PCI Express Timecode and GPS Reader Generator
PCIe-SyncClock LP
The PCI-Express SyncClock LP from Brandywine Communications provides precision time with zero latency to the host computer over the PCI bus. An on-board microprocessor automaticallysynchronizes the clock to reference signal inputs. The reference signal inputs can be 1 PPS, IRIG or NASA time codes and optionally, GPS or HaveQuick. The clock can free run and be set by commands from the host over the PCI Express bus.
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Advanced PC/104 Timing Board
PC104-Plus SyncClock32
The PC/104Plus SG from Brandywine Communications provides precision time with zero latency to the host computer over the PCI bus. An on-board microprocessor automatically synchronizes the clock to reference signal inputs. The reference signal inputs can be 1 PPS, IRIG or NASA time codes and optionally, GPS or HaveQuick.
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IRIG Timecode Receiver and Generator
RG1
The RG1 Time Code receiver synchronizes to IRIG-A/B/G time codes and provides precise time in a memory register, for the host SBC.The IRIG output of the card can be used to synchronize other IRIG time code readers. Additionally, the RG1 includes a real-time clock (RTC) that may be used as a reference source for IRIG master applications, to free the system processor from the task of updating the master timer.
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IRIG Amplitude Modulated Time Code Distribution Amplifier
1205A / 1205A-MC
Precise Time and Frequency, Inc.
The ptf 1205A is a 12-channel IRIG amplitude modulated time code distribution amplifier housed in a 1U high, 19″ rack package. The ptf 1205A uses an RF design combining the latest technology in low noise components to minimize input/output delays which are of the order of nano seconds.The unit uses two stages of input signal buffering to distribute the input signal to 12 separate outputs, and insure maximum isolation between individual output signals.
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Receivers
Designed to demodulate IRIG destruct tones, this receiver uses an up-converting superheterodyne configuration for high dynamic range and image rejection and has a receive sensitivity of better than -107 dBm. Originally developed to monitor/verify Range Safety Command Destruct Transmitters, it is a compact rugged design usable wherever a high tolerance to shock, vibration and temperature is required.
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High-Power Flight Termination Systems
Kratos Defense & Security Solutions, Inc.
The Kratos Flight Termination System (FTS) is a turnkey system capable of transmitting MONITOR, ARM, and TERMINATE flight termination encoded command signals, as well as 20 individual IRIG tones (up to 6 simultaneously).
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IRIG B Booster
Signals & Systems India Private Limited
IRIG B Booster – SIB-1010 is used to boost the IRIG-B AM and PWM/TTL signal which is received from the GPS unit. It provides easy and affordable connectivity to substation equipment and power generation and distribution equipment. With this Plug-N-Play unit, you can expand your IRIG B connections to multiple devices instantly. It is rugged and surge-protected equipment. Its cabinet can be mounted directly on a wall, panel or DIN Rail, without the need for additional brackets. It has an inbuilt power supply module, therefore, doing away the need for an external power adapter.
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Mini PCI Express Timecode and GPS Reader Generator
SyncClock
The Mini PCIe SyncClock32 from Brandywine Communications provides precision time with zero latency to the host computer using one Mini-PCIe slot. An on-board microprocessor automatically synchronizes the clock to reference signal inputs. The reference signal inputs can be 1 PPS, IRIG or NASA time codes and optionally, HaveQuick.
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GPS synchronized NTP Server
NTV-100
Brandywine Communications NTV-100RG is an affordable, convenient and flexible NTP Server. This network time server accurately time synchronizes computers, time displays, PBX’s, and a wide variety of other equipment. The NTV-100RG is a small, rack mounted NTP Server that can synchronize to GPS or to the IRIG B time code to provide NTP time.
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GPS Master Clock
Signals & Systems India Private Limited
GPS Master Clock System – MCS-GPSMC-1010 is a 3U Card rack type, 19” Rack-mountable Redundant GPS Time Server which synchronizes and maintains the timing and frequency requirement of power and process industry equipment using a signal obtained from any one of the sources like GPS or GLONASS or Time protocols such as NTP and IRIG. It distributing the same time signal through several types of interfaces. It provides redundancy for Power and GPS receiver to increase reliability and offers protection against time synchronization failure. The system is field-upgradeable and an extremely flexible system, designed to handle time synchronization requirements today and in the future. It provides nanosecond accuracy when external time references are not available. It has a storage facility to store the system log file. It delivers NTP, SNTP, IRIG-B, PFC-Pulse, DCF77, BCD parallel data, Ethernet Fiber Optic & RS485/RS232 outputs. System enables configuration and monitoring through Web-based application. It supports a wide range of power supply either 90V-260V AC/DC or 18-36VDC or 36V-72VDC. Power supply model can be mixed and matched as required by the user, depending upon power supply options available at the installation site.
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Command Encoder/Exciter
Kratos Defense & Security Solutions, Inc.
The Command Encoder/Exciter (CEE) is a rack-mount unit ideal for test and verification of Flight Termination Receivers (FTR) and/or Tone Receiver/Decoders. It accepts a universal AC power input, and it generates a modulated RF output carrier signal adjustable in 100kHz steps from 406MHz – 450MHz from suitable for interrogation all RCC 319 compliant IRIG FTRs.
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Dual Channel Multi-function Decommutator
LS-55-DD
The Lumistar LS-55-DD PCI Dual Multi-function PCM Decommutator offers two multifunction decoms and two optional bit synchronizers (LS-45) in a single PCI card slot. The multi-function decoms are implemented in FPGA using a next generation design based on the LS-50-P. The simulators,decommutators, time code reader and time code generator are achieved on the main board and the bit synchronizer is achieved through a low-profile daughterboard. CVSD voice, h.261 video, and IRIG Chapter 8 decoding are achieved through software.
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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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Aerospace Testing Solutions
Aerospace Testing SolutionsDewesoft offers a variety of solutions for aerospace testing. From standard data recording, structural dynamics, rotating machinery analysis, acoustic testing, to more specific applications like ground station telemetry solutions with full support for ARINC-429 and MIL-STD-1553 buses, PCM telemetry, IRIG 106 - Chapter 10, Ethernet packets, and iNet telemetry.We can provide flexible and robust data acquisition hardware and software that will match your requirement for testing airplanes, helicopters, rockets, satellites in the air, space, or on the ground - proving ground, wind tunnel, vibration shaker or acoustic chamber. Our solutions are being used and trusted by leading aerospace companies on the most demanding projects like NASA, ESA, Space X, Airbus, Boeing, Lockheed Martin, Bombardier, Honeywell to name just a few.
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Countdown Or Countup Clock Controller
RC600
The RC600 is a remote control that adds both countdown and countup timer control features to our NTDS and TCDS clocks. Reference or generate time input from NTP or time code (IRIG & SMPTE). Control a virtually unlimited number of time code clocks and network clocks.
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Intelligent, Single- or Dual-Channel MIL-STD-1760 Adapter
EXC-1553UNET/Px-1760
The EXC-1553UNET/Px-1760 is an intelligent, single- or dual-channel, MIL-STD-1760 adapter. Its small size and ability to interface through USB or Ethernet interfaces make it a complete solution for developing, testing and performing system simulation of the MIL-STD-1760 bus, both in the lab and in the field.The EXC-1553UNET/Px-1760 shares its API with the entire Px family so that applications currently running on PCI, PCIe, ExCARD or PCMCIA boards will run without change on this device.Multiple units can operate via USB ports on the same computer. In addition, multiple units can operate on the same network, by programming each one with a unique IP address, and can be accessed from any computer on the network.In addition the EXC-1553UNET/Px(S)-1760 provides 8 I/O Discrete signals and an IRIG B input.
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IRIG Time Code Receiver & Generator Module
TCR180
Meinberg Funkuhren GmbH & Co. KG
The module TCR180 has been designed to receive and to generate IRIG-A/B/G, IEEE 1344, IEEE C37.118 or AFNOR NF S87-500 time codes. 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. The frequency locking of the master oscillator to the time code system enables this module to generate fixed and programmable standard frequencies with high accuracy and stability. Various oscillator options allow the cost efficient implementation of different requirements concerning the accurracy of the outputs. The generator of the IMS-TCR module generates pulses per second and per minute and per hour. Four programmable outputs are also available. The pulses are synchronized to UTC-second.
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MIL-STD-1553 Data Acquisition Module for Ethernet Networks
eDAQ-1553
Avionics Interface Technologies
One or two dual redundant MIL-STD-1553 bus interfaces - Transformer and Direct bus coupling supported - Two 10/100/1000 Mbit/s Ethernet LAN Interfaces - Streams MIL-STD-1553 bus data in standard IRIG 106 Chapter 10 format. - Compatible with 3rd party recorders and telemetry tools - All captured MIL-STD-1553 bus data provided with timestamps - Full error injection & detection capabilities - Works with AIT’s Flight Simulyzer™ GUI Analyzer/Simulator software
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Time Measurement Equipment
TimeSpy
The TimeSpy precisely measures the time accuracy of a wide range of inputs (such as: NTP, IRIG B, 1PPS, and ASCII) against an internal precision GPS-controlled oscillator, displayed on the large, full color windows-based touch screen. The TimeSpy can precisely measure the time error at the point of use for systems where time is distributed over large distances. The TimeSpy can also measure free-running clocks and timing systems which are synchronized from untraceable sources, such as television and radio broadcasts, electrical power lines and the internet.