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Traffic Simulators
simulate communications over a network.
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Fibre Channel Modules
AIM’s Fibre Channel test, simulation and analysis modules use our field proven Common Core hardware design giving you the best performance, best feature set and highest functional integration on the market. The use of SoC (System on Chip) based core designs with one dual core RISC processor per port, massive and scalable DDR3 memory and IRIG-B time encoder/decoder functions are standard. The new ultra high performance intelligent 4-lane PCIe 2.0 interface modules offer 2 ports with full function test, simulation, monitoring and analyzer functions for Fibre Channel networks. The dual core processor provides onboard processing and data transfer capabilities for the most demanding Fibre Channel applications including upper layer protocol support done on board level. Large and high data throughput DDR3 RAM is accessible for the onboard processor as is a high performance FPGA implementing the customized Fibre Channel interfaces enabling the board to analyze incoming and modify outgoing data in real time. Each module provides 2 Fibre Channel compliant full duplex ports, implementing the full link level services. SFP cages make it suitable for different media types as optical or electrical network technologies. Ports operate either in Traffic Simulator or Analyzer/Monitor mode with support for port related Frame Statistics. Sophisticated packet capturing mechanism and monitoring features are complimented with powerful triggering and filtering capabilities.
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Enterprise-Scale Application and Security Testing
PerfectStorm ONE 10GE/40GE Appliance
Keysight Network Applications and Security
Building upon the terabit-scale PerfectStorm platform, PerfectStorm ONE™ appliances offers enterprises, service providers, and technology vendors a revolutionary solution for generating stateful applications and malicious traffic, simulating millions of real-world end-user environments to test and validate infrastructure, a single device, or an entire system.
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API Testing with LoadView
Simulate 1,000s of users hitting your API every second to generate 100,000+ calls to your server per load testing session.Define your API tests to simulate traffic at the pace you need by implementing a load curve that increases the number of simultaneous users as necessary to properly test your system.Gather performance metrics consisting of the response times of each session and validation that the API returns the expected results in each response.Visualize how the average response time is affected as you increase the number of simultaneous users.Examine individual test sessions to see error codes and utilize additional troubleshooting tools such as traceroutes, waterfall charts and a copy of the server response.
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ACARS CMU Simulator
Square Peg Communications Inc.
The SPCI CMU Simulator replaces the ACARS Communications Management Unit for end-to-end testing of the ACARS system. It communicates with an Inmarsat Classic Aero or SB-Safety Satellite Data Unit (SDU) via ARINC-429 to generate and receive ACARS traffic. The CMU Simulator is implemented as a Physical Layer Tester script, and can run on either a BPLT or a GDU. In addition, it can run on a standard PC using a special version of the GDU or BPLT software. In all cases, a suitable ARINC-429 interface must be present.
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PXI/PXIe Resolver Simulator Module, 4-Banks
43-670-201-AABBCC
The 41/43-670-201 is ideal for the simulation of Resolvers. It has four banks, each capable of simulating the output of a single 5 or 6-wire resolver.
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VXI 12-Channel, 3-Wire LVDT/RVDT Simulation
65DL2
NAI’s 65DL2 is a 12-channel, 3-wire, LVDT/RVDT Simulation Instrument on a VXI board. This single-slot, message-based board features up to 12 stimulus channels of 3-wire LVDT/RVDT, wraparound self-test, and onboard programmable excitation supply. The board is uniquely versatile, as each excitation input and output voltage is programmable. In addition, each channel can be programmed to be controlled by an external DC voltage. A replacement for the 5410C-83, the 65DL2 is ideally suited for defense, commercial aerospace, and industrial applications.
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PXI RTD Simulator Module, 4 Channel, PT1000
40-263-503
The 40-263-503 is a 4-channel PT1000 RTD Simulator. The 40-263 range is a cost effective method of simulating PT100, PT500 or PT1000 RTDs. It supports 4, 8, 12, 16, 20 or 24 channels in one or two PXI slots. Also, channels are able to be set as short or open circuit to simulate faulty wiring to a sensor.
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PXI Millivolt Thermocouple Simulator Module - 16 Channel
41-760-003
This series of PXI Thermocouple Simulator Modules is available in a choice of 32, 24, 16 or 8 channels—each channel providing a low-voltage output across two connector pins capable of providing ±20mV with 0.7µV resolution, ±50mV with 1.7µV resolution and ±100mV with 3.3µV resolution, covering most thermocouple types.
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PXI/PXIe LVDT/RVDT/Resolver Simulator Module
41-670-XYZ-AABBCC
The 41/43-670 range is ideal for the simulation of variable differential transformers (VDT), both linear (LVDT) and rotary (RVDT) types, as well as resolvers. Available with up to four banks, each bank is capable of simulating the output of a single 5 or 6-wire VDT or resolver, or dual 4-wire utilizing a shared excitation signal. This allows the module to simulate up to 4 channels of 5 or 6-wire or 8 channels of 4-wire.
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PXI RTD Simulator Module 18 Channel PT100
40-262-001
The 40-262 is a 3U PXI module range that supports 6 (in one slot), 12 or 18 (in two slots) channels of RTD simulation. Based on the design principles of our 40-260 PXI Precision Resistor, this RTD simulator module can provide a setting resolution of <8mΩ (PT100) or <90mΩ (PT1000) and a resistance accuracy of better than 0.1% on all channels.
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2 Port 10/100/1000Mbit/s AFDX/ARINC664P7 Test, Simulator And Monitor Module For PCIe
APE-FDX-2/B
AFDX®/ARINC664P7 Test and Simulation module for PCIe x1 with 2 full duplex ports programmable for 10/100/1000 Mbit/s. Versions available for both Airbus and Boeing variants of ARINC664P7.
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ARINC825 (CAN Bus) Test & Simulation Module for PCIe
ACPe825-x
ARINC825 (CAN bus) Test & Simulation module for PCIe with 2 or 4 electrically isolated CAN bus nodes operating concurrently at CAN bus high speed bit rate of up to 1Mbit/s. The ACP825 PCIe card can work either with full functionality as an active CAN node for testing and simulating or in Listening Only mode for monitoring and recording purposes.
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PXI/PXIe LVDT/RVDT/Resolver Simulator Module, 4-Banks
41-670-001-AABBCC
The 41/43-670-001 is ideal for the simulation of variable differential transformers (VDT), both linear (LVDT) and rotary (RVDT) types, as well as resolvers. It has four banks, each capable of simulating the output of a single 5 or 6-wire VDT or resolver, or dual 4-wire utilizing a shared excitation signal. This allows the module to simulate up to 4 channels of 5 or 6-wire or 8 channels of 4-wire.
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Single Stream STANAG3910/EFEX Test And Simulation Module for PCI
APXX3910
STANAG3910/EFEX Test and Simulation module for PCI with 1 dual redundant HS/LS channel and onboardFibre Optic Front End (FOFE). Easily select between EFAbus and EFEX modes for Tranche II Eurofighter. The APXX3910 is a functional replacementfor model APX3910.
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PXI RTD Simulator Module, 12 Channel, PT500
40-263-302
The 40-263-302 is a 12-channel PT500 RTD Simulator. The 40-263 range is a cost effective method of simulating PT100, PT500 or PT1000 RTDs. It supports 4, 8, 12, 16, 20 or 24 channels in one or two PXI slots. Also, channels are able to be set as short or open circuit to simulate faulty wiring to a sensor.
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PXI RTD Simulator Module, 20 Channel, PT100
40-263-101
The 40-263-101 is a 20-channel PT100 RTD Simulator. The 40-263 range is a cost effective method of simulating PT100, PT500 or PT1000 RTDs. It supports 4, 8, 12, 16, 20 or 24 channels in one or two PXI slots. Also, channels are able to be set as short or open circuit to simulate faulty wiring to a sensor.
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ARINC825 (CAN Bus) Test & Simulation Module for PCI With 2 Or 4 CAN Bus Nodes
ACP825-x
ARINC825 (CAN bus) Test & Simulation module for PCI with 2 or 4 electrically isolated CAN bus nodes operating concurrently at CAN bus high speed bit rate of up to 1Mbit/s. The ACP825-x PCI card can work either with full functionality as an active CAN node for testing and simulating or in Listening Only mode for monitoring and recording purposes.
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4, 8, 16 And 32 Channels ARINC429 Test & Simulation Module CompactPCI-Express/PXI-Express (3U)
ACE429-3U-x
4, 8, 16 and 32 channels ARINC429 Test & Simulation module for CompactPCI-Express/PXI-Express (3U).
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Regenerative Grid Simulator
61800 series
Market demand for Distributed Resource (DR) products such as PV inverters and wind energy systems is steadily growing as the world strives for clean renewable energy sources. This demand has created a need for rigorous regulation testing to standards such IEEE 1547 / IEC 61000-3-15 / IEC 62116 ensuring proper and safe operation of on-grid products. It has become critical to manufacturers to conduct these tests to prove compliance and to relieve product liability concerns. Chroma’s new 61800 family of Grid Simulators has been designed to fulfill these test requirements by providing a full 4 quadrant, fully regenerative, grid simulator with advanced features for compliance, safety and product verification testing.
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Solar Array Simulator
62000H-S series
The latest programmable solar array simulator power supply 62000H-S Series released by Chroma provide simulation of Voc (open circuit voltage) up to 1800V and Isc (short circuit current) up to 30A. The 62000H-S provides an industry leading power density in a small 3U high package. The solar array simulator is highly stable and has a fast transient response design, which are both advantageous to MPPT performance evaluation on PV inverter devices. The 62000H-S Series have many unique advantages including high speed & precision digitizing measurement circuits with a 100kHz A/D, 25kHz D/A controlled I-V curve and a digital filter mechanism. It can simulate an I-V curve accurately and response the mains ripple effect from the PV inverter. In addition, the built-in EN50530/Sandia SAS I-V model in the standalone unit can easily program the Voc, Isc, Vmp, and Imp parameters for I-V curve simulation, without a PC controller.
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3U cPCI Synchro/Resolver Simulation Board
75DS2
NAI’s 75DS2 is a Synchro/Resolver Simulation Board with four independent, isolated channels. These channels can incorporate up to four Digital-to-Synchro/Resolver Simulation Converters with 1.5, 2.2, or 3 VA drive capability, or either two or four Digital-to-LVDT/RVDT Simulation Converters. One of the outputs on each channel can be grounded without affecting performance.
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PXI/PXIe LVDT/RVDT Simulator Module, 2-Banks
41-670-103-AABBCC
The 41/43-670-103 is ideal for the simulation of variable differential transformers (VDT), both linear (LVDT) and rotary (RVDT) types. It has two banks, each capable of simulating the output of a single 5 or 6-wire VDT or resolver, or dual 4-wire utilizing a shared excitation signal. This allows the module to simulate up to 2 channels of 5 or 6-wire or 4 channels of 4-wire.
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PXI RTD Simulator Module, 20 Channel, PT500
40-263-102
The 40-263-102 is a 20-channel PT500 RTD Simulator. The 40-263 range is a cost effective method of simulating PT100, PT500 or PT1000 RTDs. It supports 4, 8, 12, 16, 20 or 24 channels in one or two PXI slots. Also, channels are able to be set as short or open circuit to simulate faulty wiring to a sensor.
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PXI/PXIe LVDT/RVDT/Resolver Simulator Module, 2-Banks
41-670-003-AABBCC
The 41/43-670-003 is ideal for the simulation of variable differential transformers (VDT), both linear (LVDT) and rotary (RVDT) types, as well as resolvers. It has two banks, each capable of simulating the output of a single 5 or 6-wire VDT or resolver, or dual 4-wire utilizing a shared excitation signal. This allows the module to simulate up to 2 channels of 5 or 6-wire or 4 channels of 4-wire.
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PXI/PXIe Battery Simulator Module, 4-Channel, 1 kV Isolation
43-752A-102
Targeting EV, automotive, aerospace, energy storage and electric aircraft applications, the new battery simulator modules occupy a single PXI slot. These 4-channel battery simulators are capable of supplying up to 7 V and 300 mA per channel. The channels are fully isolated from ground and from each other, allowing series connection to simulate batteries in a stacked architecture.
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PXI RTD Simulator Module, 12 Channel, PT1000
40-263-303
The 40-263-303 is a 12-channel PT1000 RTD Simulator. The 40-263 range is a cost effective method of simulating PT100, PT500 or PT1000 RTDs. It supports 4, 8, 12, 16, 20 or 24 channels in one or two PXI slots. Also, channels are able to be set as short or open circuit to simulate faulty wiring to a sensor.
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PXI RTD Simulator Module, 8 Channel, PT100
40-263-401
The 40-263-401 is an 8-channel PT100 RTD Simulator. The 40-263 range is a cost effective method of simulating PT100, PT500 or PT1000 RTDs. It supports 4, 8, 12, 16, 20 or 24 channels in one or two PXI slots. Also, channels are able to be set as short or open circuit to simulate faulty wiring to a sensor.
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PXI/PXIe Battery Simulator Module, 4-Channel With V/I Readback
41-752A-012
Targeting EV, automotive, aerospace, energy storage and electric aircraft applications, the new battery simulator modules occupy a single PXI slot. These 4-channel battery simulators are capable of supplying up to 7 V and 300 mA per channel. The channels are fully isolated from ground and from each other, allowing series connection to simulate batteries in a stacked architecture.
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VXI 16-Channel, 2-Wire LVDT/RVDT Simulation
65DL1
NAI’s 65DL1 is a 16-channel, 2-wire, LVDT/RVDT Simulation Instrument on a VXI board. This single-slot, message-based board provides 16 independent, transformer-isolated, LVDT/RVDT, programmable 2-wire outputs (up to 34 V), wrap-around self-test, and an onboard programmable excitation supply.
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Synchro Simulator
SPA-CASE
Computer Conversions Corporation
The Synchro Simulator has two modes of operation: Static and Dynamic. The mode of operation is selected by the position of the mode switch. In the static mode, the thumbwheel switches select the output angle. In the dynamic mode, the speed and direction switches determine the rate and direction of synchro outputs. Self test circuitry continuously monitors and displays the output.