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PXI & LXI Simulation Tools
Our PXI & LXI simulation tools help you to accelerate the development process by simulating the product in your test system. These tools allow you to develop and test the system software independent from your application hardware. By using the tools, you can minimize the time required with the physical system.
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Avionics Interfaces & Test Instruments
ARINC 664
Avionics Interface Technologies
AIT’s ARINC 664 test instruments can be used in test and simulation applications that are required to transmit and receive data over the ARINC 664 avionics databus. AIT’s instruments use small form-factor pluggable transceivers (SFP) and support copper or fiber optic physical network interfaces.Using an FPGA based architecture, with multiple embedded processors, the ARINC 664 instruments provide onboard support for upper layer protocol processing (A653, UDP, IP) and utilize DMA to provide optimal data throughput. All ARINC 664 protocol operations, including VL traffic shaping, redundancy management, and IP fragmentation and reassembly, are handled onboard.
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PXI Multifunction Reconfigurable I/O Module
PXI Multifunction Reconfigurable I/O Modules feature a dedicated analog-to-digital converter (ADC) 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 data acquisition hardware. You can customize these models with the LabVIEW FPGA Module to develop applications requiring precise timing and control such as hardware-in-the-loop (HIL) testing, custom protocol communication, sensor simulation, and high-speed control. PXI Express models also include peer-to-peer streaming for direct data transfer to other PXI Express models.
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Simulation And Analysis Software
fcXplorer Analyzer
Avionic Interface Fiber Channel Simulation and Analysis Test Software, fcXplorer, is an easy-to-use graphical user interface for Fiber Channel Simulyzer modules. fcXplorer is designed for troubleshooting, optimization, planning and configuration of fiber channel data. The low and high level protocol analysis offers acquisition, filtering, time stamping and interpretation of Fiber Channel data traffic and generates statistics.
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PXI-7854, Virtex-5 LX110 FPGA, 750 kS/s PXI Multifunction Reconfigurable I/O Module
780342-01
Virtex-5 LX110 FPGA, 750 kS/s PXI Multifunction Reconfigurable I/O Module—The PXI‑7854 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 PXI‑7854 features a dedicated A/D converter (ADC) 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 data acquisition hardware.
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PCIe-7856, Kintex-7 160T FPGA, 1 MS/s, Multifunction Reconfigurable I/O Device
786455-01
PCIe, Kintex-7 160T FPGA, 1 MS/s, Multifunction Reconfigurable I/O Device - The PCIe‑7856 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‑7856 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-7857, Kintex-7 160T FPGA, 1 MS/s, DRAM PXI Multifunction Reconfigurable I/O Module
784146-01
Kintex-7 160T FPGA, 1 MS/s, DRAM PXI Multifunction Reconfigurable I/O Module—The PXIe‑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 PXIe‑7857 features a dedicated A/D converter (ADC) 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 data acquisition hardware. The PXIe‑7856 also includes peer‑to‑peer streaming for direct data transfer to other PXI Express modules.
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Multiprotocol P104Plus Interface Board for Embedded Applications or Avionics Test & Simulation Applications
EXC-4000P104plus
The EXC-4000P104plus is a multiprotocol P104plus interface board for embedded applications or avionics test and simulation applications. Each board holds up to five independent modules. Two on-board modules use the MIL-STD-1553 communications protocol (M4K1553Px); another on-board module uses the ARINC-429 communications protocol; two additional detachable modules can be any one of the following types:M4K1553PxS (Single Function - RT validated) This module operates as a Bus Controller, Remote Terminal or a Bus Monitor. This module qualifies for airborne applications.M4K1553Px (Multi Function) This module operates as a Bus Controller, up to 32 Remote Terminals and as a Bus Monitor. Supports an Internal Concurrent Monitor in RT and BC/RT modes.M4K1553Px(S)-1760 Same as M4K1553Px(S) plus MIL-STD-1760 options.M4KMMSI Mini Munitions Store Interface module. Supports RT, BC/Concurrent-RT/Concurrent Monitor and Bus Monitor modes. Up to 8 hub ports EBR-1553 [10 Mbps 1553 protocol using RS-485 transceivers] and 1 monitor output.M4KH009 Based on our H009 family. This module operates as a Central Computer Complex (CCC) and/or up to 16 Peripheral Units (PUs) simultaneously, or as a Bus Monitor. In addition, a Concurrent Bus Monitor enables concurrent monitoring of the bus during CCC and PU simulation.M4K429RTx Based on our ARINC 429RxTx board. This module supports either five or ten ARINC 429 channels each of which can be configured in real time as a receive or transmit channel.M4K708 This module supports two channels of ARINC 708/453, each one selectable as either transmit or receive.M4KSerial This module supports up to 4 independent channels of serial communications, each of which can be selected as RS485, RS422 or RS232.M4KDiscrete This module supports 20 selectable input/open collector output discretes. The module supports TTL (0 to 5 volts) or avionics (0 to 32 volts) voltage levels.M4KCAN This module supports up to 6 independent channels of CAN 2.0B protocol with standard and extended message frames and message identifiers.
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Dual Port Simulator Fiber Channel XMC Module
XMC-FC4 Simulyzer
*Two independent fiber channel ports*The two SFPs accept electrical as well as optical transceivers*Each port supports 1, 2, or 4 Gbps*Supports customer-specific defined transmission speed*Comprehensive decoding of FC-1, FC-2 and Upper Layer Protocol (ULP) frames*Triggering and filtering*Supports DMA for high-speed streaming*IRIG-B time code encoder / decoder for data correlation*Supports ULPs such as FC-AE-ASM, FC-AE-RDMA, FC-AE-1553 and FC-AV*Supports HS-1760E applications such as AS5653, AS5652 and AS5627*Optional fcXplorer, Windows-based FC simulation and analysis test software*FC SDK (Software Development Kit) provides drivers and APIs for Windows XP / 7,*Linux, VxWorks, QNX Neutrino RTOS and others on request
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PCI and PCI-X Bus Analyzer / Exerciser
PCI850
The PCI850 analyzer provides a multitude of functions to help analyze your system.- Capturing bus activity using sequential triggers and filters- Exerciser to perform memory, I\O and configuration cycles- Stimulus generation for hardware simulation- Target memory with addressable windows- Anomaly detection of protocol and timing violations- Performance analysis of utilization, transfer rates, latency, statistics- Compliance testing
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PCI-7813, 3M Gate Virtex-II FPGA, Digital Reconfigurable I/O Device
779370-01
The PCI‑7813 is a reconfigurable I/O (RIO) device that features a user-programmable FPGA for onboard processing and flexible I/O operation. With LabVIEW FPGA, you can individually configure the digital lines as inputs, outputs, counter/timers, PWM, encoder inputs, or specialized communication protocols. You can also program custom onboard decision making that executes with hardware-timed speed and reliability. The PCI‑7813 is well-suited for a wide variety of applications, such as high-speed waveform generation, sensor simulation, hardware-in‑the‑loop (HIL) test, custom communications protocols, bit error rate test, and other applications that require precise timing and control.
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PXIe-7856, Kintex-7 160T FPGA, 1 MS/s PXI Multifunction Reconfigurable I/O Module
784145-01
Kintex-7 160T FPGA, 1 MS/s PXI Multifunction Reconfigurable I/O Module—The PXIe‑7856 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 PXIe‑7856 features a dedicated A/D converter (ADC) 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 data acquisition hardware. The PXIe‑7856 also includes peer‑to‑peer streaming for direct data transfer to other PXI Express modules.
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AFDX®/ARINC664P7 Modules
AIM’s AFDX®/ARINC664P7 test, simulation, monitoring 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 multiple processors for real time bus protocol and application support, massive memory and IRIG-B time code encoder/decoder functions are standard. Versions are available to support the Boeing specific ARINC664P7 extensions.
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Intelligent Double Sized H009 Interface Module for Excalibur 8000 Family of Carrier Boards
M8KH009
The M8KH009 is an intelligent, double-sized, H009 interface module for the multimode, multiprotocol, EXC-8000 family of carrier boards. The M8KH009 provides a complete solution for developing and testing H009 interfaces and performing system simulation of the H009 bus, according to the standard H009 protocol. Each module of the M8KH009 contains 32K x 16 dualport RAM for Data Blocks, control registers, and Look-up tables. In addition, the module contains another 32K x 16 dual-port RAM for a Concurrent Monitor. All data blocks and control registers are memory mapped, and may be accessed in real-time. Each of the independent, dual-redundant M8KH009 modules may be programmed to operate in one of three modes of operation: Central Control Complex (CCC) mode with Concurrent Peripheral Unit operation (1–16 PUs), Peripheral Unit mode (Multiple – up to 16 PUs) and Bus Monitor mode. In addition, the module can simultaneously operate as an independent Internal Concurrent Monitor in CCC, Multiple PU or CCC/Concurrent PU modes.
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ARINC-664 Part 7 Test and Simulation Board
EXC-664PCIe
The EXC-664PCIe board is an ARINC-664 part 7 test and simulation board designed to help integrate avionics suites, and can simulate up to two ARINC-664 P7 End Systems with full dual redundant support for receive and transmit operation. The board also contains room for two standard 4000 modules that can support multiple channels of other avionics communications protocols including MIL-STD-1553, ARINC-429, Serial, Discrete, ARINC-708 and CANbus.
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PXI-7953, Virtex-5 LX50 FPGA, 750 kS/s PXI Multifunction Reconfigurable I/O Module
780340-01
Virtex-5 LX50 FPGA, 750 kS/s PXI Multifunction Reconfigurable I/O Module—The PXI‑7852 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 PXI‑7852 features a dedicated A/D converter (ADC) 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 data acquisition hardware.
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BusTools/1553 BusTools Software Analyzer
Abaco Systems' BusTools-1553 is an integrated, Microsoft Windows-based, application solution for MIL-STD-1553 test, analysis and simulation. BT-1553 software harnesses the power of Abaco Systems' hardware interfaces on PCI, PCI Express, CompactPCI, PMC, ExpressCard, PCMCIA, USB, XMC, PC/104-Plus, VME and VXI platforms for simplified control over simulation, display, data logging, playback, and protocol analysis of MIL-STD-1553/1760 A and B networks.
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Type 2, PCMCIA Dual Redundant MIL-STD-1553 serial bus Simulator Analyzer Tester
PC401
MIL-STD-1553 A, B, & McAir MULTI PROTOCOLS Simulator/Analyzer/Tester type 2 PCMCIA BUS Interface Card - The PC401 can be used for Validation Testing, ProductionTesting, full bus simulation and monitoring, as a generalpurpose 1553 interface or a stand alone bus Analyzer. Forprecise message scheduling and measurements, the Majorand minor frame times are independent of messagesequences or retransmissions on errors and the start of allcommand messages are independent of message length,response time or length of response. Message timing iscalibrated and RT responses have low jitter.
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PXI Digital Reconfigurable I/O Module
PXI Digital Reconfigurable I/O Modules feature a user-programmable FPGA for onboard processing and flexible I/O operation. You can completely control the synchronization and timing of all signals and operations along with custom onboard decision making. The PXI Digital Reconfigurable I/O Module is suited for a wide variety of applications, such as high-speed waveform generation, sensor simulation, hardware-in-the-loop (HIL) test, custom communications protocols, bit error rate testing, and other applications requiring precise timing and control.
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Databus-to-Network Interfaces
OBB2
The OBB2 is highly configurable and includes built-in standard peripherals (Ethernet, serial, and USB), along with four internal Cores that can be populated with a variety of databus protocols and discrete I/O modules. With the newest advanced set of MIL-STD-1553 and ARINC 429 modules, users can verify wave form compatibilities, test functions of bus shorts and opens, and—when combined with our CoPilot® software—perform lab, production and flight test verification and simulation right out of the box.
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Carrier - Virtex 7 W/FMC Site
VPF: 3U VPX
The VPF is a VPX form factor (VITA 46), FPGA processor board designed to meet the needs of challenging, embedded high‐performance digital signal processing applications at a competitive price point. AMD Virtex 7: VX330 and VX690 population options are available. The Virtex 7 FPGA provides impressive processing capabilities and supports operations such as: FFTs, FIR filters, fixed‐point and repetitive processing tasks. The VPF FPGA node processes input from the FMC HPC (Vita 57.1) site, allowing for maximum application configurability and performance when coupled with DEG’s market leading ADC and DAC FMC modules (250MSPS to 4.0GSPS). The VPF is fully compliant with the OpenVPX standard and accommodates the PCIExpress Gen 3.0 communication protocol. Delphi also offers a VPF FPGA Design kit which allows customers to leverage and modify DEG source code, develop within an open architecture, and rapidly integrate FPGA HDL. The DEG FPGA Design kit includes: Source code, simulation test bench and utilities to support custom algorithm development. Embedded Linux, VX Works and Windows software drivers are available. HPC FMC Site, Fully Compatible with all Delphi ADC and DAC FMC Modules.
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PXIe-7867, Kintex-7 160T FPGA, 18-Channel AO, 1 MS/s, PXI Multifunction Reconfigurable I/O Module
785570-01
Kintex-7 160T FPGA, 18-Channel AO, 1 MS/s, PXI Multifunction Reconfigurable I/O Module—The PXIe-7867 features a user-programmable FPGA for high-performance onboard processing and direct control over I/O signals for complete flexibility of timing and synchronization. With 18 analog output channels connected directly to the FPGA, you can quickly design for applications that require precise timing such as hardware-in-the-loop testing, custom protocol communication, sensor simulation, and high-speed control. The PXIe-7867 features a dedicated A/D converter (ADC) per channel for independent timing and triggering. This design offers multirate sampling and individual channel triggering, which are outside the capabilities of typical data acquisition hardware. The PXIe-7867 also includes peer-to-peer streaming for direct data transfer to other PXI Express modules.
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ARINC BusTools Software Analyzer
BusTools-ARINC is the only solution for Bus Analysis, Simulation, Maintenance and Data Logging of ARINC 429, 575, 561/6-wire, 717 and CSDB databus protocols. Simultaneously control, log and display data from a single Windows-based program on USB, PCI, CompactPCI, PCI Express, ExpressCard, PC/AT, PC/104 and PCMCIA platforms. BusTools-ARINC provides comprehensive monitoring, data logging and simulation for 100% bus loading activity.
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PCIe-7842, Virtex-5 LX50 FPGA, 200 kS/s Multifunction Reconfigurable I/O Device
781101-01
Virtex-5 LX50 FPGA, 200 kS/s Multifunction Reconfigurable I/O Device - The PCIe‑7842 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‑7842 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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PXI-7841, Virtex-5 LX30 FPGA, 200 kS/s PXI Multifunction Reconfigurable I/O Module
780337-01
Virtex-5 LX30 FPGA, 200 kS/s PXI Multifunction Reconfigurable I/O Module—The PXI‑7841 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 PXI‑7841 features a dedicated A/D converter (ADC) 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 data acquisition hardware.
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STANAG3910/EFEX Modules
AIM’s STANAG3910/EFEX test, simulation, monitoring 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 multiple processors for real time bus protocol and application support, massive memory and IRIG-B time code encoder/decoder functions are standard. The latest versions also support avionics discrete I/O. Configurations with dual redundant concurrent HS/LS Bus Controller (BC), Multiple Remote Terminals, and Chronological/Mailbox Bus Monitor operation with full HS/LS protocol error injection/detection, multi-level triggering, advanced capture/filtering and real time bus recording, time stamping and physical bus replay ensure your bus integrity. Support for EFAbus Direct Digital Links (DDL), Fibre Optic DDL (FODDL) and EFAbus Express extensions (Mixed Mode and Dual Mode operation) are available. To support the French ‘Rafale’ aircraft, modules are available with an Electrical Front End. Single Function variants support cost effective solutions. Each module is delivered with a Board Support Package (BSP) containing the onboard driver software, a full Application Programming Interface (API) and detailed getting started and programming guides. Powerful PBA.pro databus test and analysis software is optionally available for all our STANAG3910 modules.
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TDL Network Simulation
Curtiss-Wright Defense Solutions
The need for realistic and effective military training simulations is fundamental to prepare warfighters for the challenges they may face on the field. The TCG portfolio of advanced tactical data link solutions enables the creation of configurable high-fidelity simulations, both real-time or scripted, of the industry’s most prominent data link protocols and standards.
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PXIe-7858, Kintex-7 325T FPGA, 1 MS/s, DRAM PXI Multifunction Reconfigurable I/O Module
784147-01
Kintex-7 325T FPGA, 1 MS/s, DRAM PXI Multifunction Reconfigurable I/O Module—The PXIe‑7858 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 PXIe‑7858 features a dedicated A/D converter (ADC) 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 data acquisition hardware. The PXIe‑7856 also includes peer‑to‑peer streaming for direct data transfer to other PXI Express modules.
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PCIe-7846, Kintex-7 160T FPGA, 500 kS/s Multifunction Reconfigurable I/O Device
786456-01
PCIe, Kintex-7 160T FPGA, 500 kS/s Multifunction Reconfigurable I/O Device - The PCIe-7846 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-7846 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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SAE J1939 API
The J1939 API is a programming interface that allows quick and easy development of J1939 applications on a PC with Windows operating system.The programming interface of the API is based on the IXXAT VCI driver and is therefore available for all IXXAT PC CAN interfaces. Based on the J1939 protocol software from IXXAT, the SAE J1939 API allows complete simulation of J1939 applications on a PC.
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PXI-7842, Virtex-5 LX50 FPGA, 200 kS/s PXI Multifunction Reconfigurable I/O Module
780338-01
Virtex-5 LX50 FPGA, 200 kS/s PXI Multifunction Reconfigurable I/O Module—The PXI‑7842 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 PXI‑7842 features a dedicated A/D converter (ADC) 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 data acquisition hardware.