ECU
a vehicle system's Electronic Control Unit.
See Also: ECU Testing, ECU Simulation, Vehicle Electronics
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ECU Interfaces
ECU Interfaces are devices that connect to an ECU microcontroller directly as a memory emulator or through the debug port interface. The interface is typically through a direct replacement of the microcontroller, memory emulation, or through the debugger port. The method can be driven by what is supported on the microcontroller. ATI offerings support all approaches:
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ECU Software Download Stations
Jackmark Engineering design & manufacture ECU software download stations also known as flash stations, for several industry sectors including automotive, agriculture & utilities. The custom designed stations in either a single unit or multiple stacks provide a secure & reliable system of downloading software to electronic control units. Units are ‘locked in’ during the download phase with visual indicators of download status.
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ECU Simulator
PT-LabCar
PT-LABCAR is an open and scalable Hardware-in-the-Loop (HiL) system. It is designed for open- and closed-loop testing of ECUs specifically in the powertrain application domain. The system can be used to run automated regression tests for the release of software variants as well as for the validation of control and diagnostic functions in early phases of ECU development.
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Configurable Simulation Of ECU Diagnostics.
TestCUBE2
Softing Automotive Electronics GmbH
The ECU simulation TestCUBE2 is the counterpart for all cases of application in which an ECU is not yet (e.g. preparation of workshop tests) or no longer (e.g. tester regression test) available. TestCUBE2 is a configurable hardware and software solution for simulating ECU diagnostics with real bus communication. With just one device, you can simulate several ECUs or even an entire vehicle at the same time.
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Integrated AI-ADAS ECU And Cameras For Large Commercial Vehicle
ADM-TJ30
The integrated AI-ADAS ECU is connected to 8 cameras and powered by the vision-AI algorithm. It can detect and classify different kinds of vehicles/ pedestrians/ two-wheeler riders/ lane marking and other objects to perform multiple ADAS functions.
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Test Benches
Atec has made test equipment throughout all of its 65-year history. Test benches for aerospace and energy uses represent a significant segment of our experience. Atec has produced test benches involving hydraulics, mechanicals, electromechanicals, electronics, pneumatics, motors, and digital automation. Atec test benches have performed for challenging measurements, factory production, problem analysis and component overhaul scenarios. Today, complex test benches have capable data acquisition, control and communication systems integral in their electronics. Atec’s ADAQ™ system, based on COTS components and software, is proven and popular in test bench applications. DCUs, ECUs, FADECs and earlier analog or mechanical control units are easily interfaced.
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Auto Oxygen Sensor
KS60004
Konstar Electric Industrial Co., Ltd
An oxygen sensor, also known as a lambda sensor, continually detects the oxygen content in the exhaust gases of an engine. The oxygen sensor output signal informs the vehicle's ECU (Electronic Control Unit) whether the AFR (Air-Fuel Ratio) is lean or rich. Based on this, the ECU adjusts the amount of fuel injected into the engine to achieve an optimal AFR.
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Alfa Romeo Oxygen Sensor
KS60113 - Alfa Romeo
Konstar Electric Industrial Co., Ltd
An oxygen sensor, also known as a lambda sensor, continually detects the oxygen content in the exhaust gases of an engine. The oxygen sensor output signal informs the vehicle's ECU (Electronic Control Unit) whether the AFR (Air-Fuel Ratio) is lean or rich. Based on this, the ECU adjusts the amount of fuel injected into the engine to achieve an optimal AFR.
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BCI Tester
Test scenario creation function of BCI test.・Test scenario auto-run feature.・Test results file generated automatically. (CSV file: can be customized)・CAN / LIN communication function, data logging. (FlexRey available)・Power I/O, ECU I/O control functions, data logging.・Anomaly detection function display.・Noise detection function.
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CAN-BUS Shield
The CAN-BUS Shield provides your Arduino or Redboard with CAN-BUS capabilities and allows you to hack your vehicle. This shield allows you to poll the ECU for information including coolant temperature, throttle position, vehicle speed, and engine rpms. You can also store this data or output it to a screen to make an in-dash project.
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PXI-2512, 7-Channel, 10 A PXI Signal Insertion Switch Module
778572-12
7-Channel, 10 A PXI Signal Insertion Switch Module—The PXI‑2512 fault insertion unit (FIU) is designed for hardware‑in‑the‑loop (HIL) applications and electronic reliability tests. Each module has a set of feedthrough channels that you can open or short to one or more fault buses. You can use this architecture to simulate open or interrupted connections as well as shorts between pins, shorts to battery voltages, and shorts to ground on a per-channel basis. When controlled with the LabVIEW Real-Time Module, the PXI‑2512 is ideal for validating the integrity of control systems including engine control units (ECUs) and full authority digital engine controls
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PXIe-1486, 8 Input, 8 Output, or 4 Input/4 Output PXI FlexRIO FPD-Link™ Interface Module
787454-01
The PXIe-1486 combines the Texas Instruments Flat Panel Display Link™ (FPD-Link™) interface with the Xilinx FPGA for high-throughput vision and imaging applications. This module provides a high-speed digital interface for using and testing modern advanced driver assistance systems (ADAS) and autonomous drive (AD) camera sensors and electronic control units (ECUs). Additionally, the PXIe-1486 makes use of a combination of FPD-Link™ serializers and deserializers with a Xilinx FPGA to provide a high-throughput and customizable FPD-Link™ interface on PXI. The included FlexRIO driver, with LabVIEW FPGA examples, provides access and control for power-over-coax, I²C back-channel communication, and general-purpose input/output (GPIO) communication on the FPD-Link™ channels. The PXIe-1486 is ideal for applications such as in-vehicle data logging, lab-based playback, or hardware-in-the-loop (HIL). FPD-Link is a trademark of Texas Instruments.
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Engineering Test & Development Tools
Besides DG’s aftermarket diagnostic tools, DG Technologies also offers several engineering tools for vehicle network development. DG’s hardware and software products are used by a variety of engineering customers such as test engineers, production engineers, and fiber optic testers. Our customers use DG interfaces for manipulating messages, datalogging, and ECU end-of-line testing over various multiplex networks.
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PXIe-2512, 7-Channel, 10 A PXI Signal Insertion Switch Module
780587-12
PXIe, 7-Channel, 10 A PXI Signal Insertion Switch Module—The PXIe‑2512 fault insertion unit (FIU) is designed for hardware‑in‑the‑loop (HIL) applications and electronic reliability tests. Each module has a set of feedthrough channels that you can open or short to one or more fault buses. You can use this architecture to simulate open or interrupted connections as well as shorts between pins, shorts to battery voltages, and shorts to ground on a per-channel basis. When controlled with the LabVIEW Real-Time Module, the PXIe‑2512 is ideal for validating the integrity of control systems including engine control units (ECUs) and full authority digital engine controls (FADECs).
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PXI Signal Insertion Switch Module
PXI Signal Insertion Switch Modules, also known as fault insertion units (FIUs), provide a set of feedthrough channels, which make the switch transparent to the system when closed. You can open or short these channels to one of two fault buses, allowing you to simulate open or interrupted connections as well as shorts between pins, shorts to battery voltages, and shorts to ground on a per-channel basis. When controlled with the LabVIEW Real-Time Module, the PXI Signal Insertion Switch Module can validate the integrity of control systems including engine control units (ECUs) and full authority digital engine controls (FADECs). You can also use the FIU models for hardware-in-the-loop (HIL) applications and electronic reliability tests.
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Multi Function Coil Tester
This device tests all ECU control, electronic control, or conventional distributor type ignition coils. The Tester comes with a range of connection cables with terminals to suit the majority of 2-wires, 3-wires, or 4-wires Ignition Coil of various car makes. The Ignition Coil Test is designed to detect the faults in the ignition system and whether there is any occurrence of misfire in a sluggish engine.
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Oxygen Sensor
KS60006
Konstar Electric Industrial Co., Ltd
An oxygen sensor, also known as a lambda sensor, continually detects the oxygen content in the exhaust gases of an engine. The oxygen sensor output signal informs the vehicle's ECU (Electronic Control Unit) whether the AFR (Air-Fuel Ratio) is lean or rich. Based on this, the ECU adjusts the amount of fuel injected into the engine to achieve an optimal AFR.
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PXIe-1487, 8 Input, 8 Output, or 4 Input/4 Output PXI FlexRIO GMSL™ Interface Module
787457-01
The PXIe-1487 combines the Maxim Integrated Gigabit Multimedia Serial Link™ (GMSL™) interface with the Xilinx FPGA for high-throughput vision and imaging applications. This module provides a high-speed digital interface for using and testing modern advanced driver assistance systems (ADAS) and autonomous drive (AD) camera sensors and electronic control units (ECUs). Additionally, the PXIe-1487 makes use of a combination of GMSL™ serializers and deserializers with a Xilinx FPGA to provide a high-throughput and customizable GMSL™ interface on PXI. The included FlexRIO driver, with LabVIEW FPGA examples, provides access and control for power-over-coax, I²C back-channel communication, and general-purpose input/output (GPIO) communication on the GMSL™ channels. The PXIe-1487 is ideal for applications such as in-vehicle data logging, lab-based playback, or hardware-in-the-loop (HIL). GMSL is a trademark of Maxim Integrated Products, Inc.
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PXI-8517, 2-Port PXI FlexRay Interface Module
780689-02
2-Port PXI FlexRay Interface Module—The PXI‑8517 is designed for developing FlexRay applications. As part of the NI‑XNET platform, the PXI‑8517 works well in applications requiring real-time, high-speed manipulation of hundreds of FlexRay frames and signals, such as hardware‑in‑the‑loop simulation, rapid control prototyping, bus monitoring, automation control, and more. The PXI‑8517 contains two fully functional FlexRay interfaces, allowing an individual ECU to be connected to the interface when other cold-start nodes are not available. You also can use the interfaces individually to connect two separate FlexRay networks while maintaining full performance on each interface.
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PCI-8517, 2-Port FlexRay Interface Device
780685-02
2-Port FlexRay Interface Device—The PCI‑8517 is designed for developing FlexRay applications. As part of the NI‑XNET platform, the PXI‑8517 works well in applications requiring real-time, high-speed manipulation of hundreds of FlexRay frames and signals, such as hardware‑in‑the‑loop simulation, rapid control prototyping, bus monitoring, automation control, and more. The PCI‑8517 contains two fully functional FlexRay interfaces, allowing an individual engine control unit (ECU) to be connected to the interface when other cold-start nodes are not available. You also can use the interfaces individually to connect two separate FlexRay networks while maintaining full performance on each interface.
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Volkswagen Oxygen Sensor
KS60113 - Volkswagen
Konstar Electric Industrial Co., Ltd
An oxygen sensor, also known as a lambda sensor, continually detects the oxygen content in the exhaust gases of an engine. The oxygen sensor output signal informs the vehicle's ECU (Electronic Control Unit) whether the AFR (Air-Fuel Ratio) is lean or rich. Based on this, the ECU adjusts the amount of fuel injected into the engine to achieve an optimal AFR.
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Powertrain ICs for ICE/HEV/EV
ST's powertrain ICs cover a variety of functions including voltage regulators, sensor interfaces, and load or motor drivers, which are the building blocks of typical Engine Control Units (ECU) found in a vehicle's main applications (engine management systems, transmission control systems, alternator regulators, etc.).
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Ferrari Oxygen Sensor
KS60113 - Ferrari
Konstar Electric Industrial Co., Ltd
An oxygen sensor, also known as a lambda sensor, continually detects the oxygen content in the exhaust gases of an engine. The oxygen sensor output signal informs the vehicle's ECU (Electronic Control Unit) whether the AFR (Air-Fuel Ratio) is lean or rich. Based on this, the ECU adjusts the amount of fuel injected into the engine to achieve an optimal AFR.
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PXIe-8523, 4-Port, 100/1000BASE-T1 PXI Automotive Ethernet Interface Module
787311-01
PXIe, 4-Port, 100/1000BASE-T1 PXI Automotive Ethernet Interface Module - The PXIe-8523 is a 100/1000BASE-T1 unshielded twisted pair (UTP) PXI Automotive Ethernet Interface Module for developing applications with the NI‑XNET driver. With this hardware, you can develop applications … that require Automotive Ethernet to test and validate automotive electronic control units (ECUs). The PXIe-8523 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, so it can synchronize with an external network as well as the rest of a PXI system. The PXIe-8523 also provides LEDs on the front panel to help you monitor the network link and activity.
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Saab Oxygen Sensor
KS60113 - Saab
Konstar Electric Industrial Co., Ltd
An oxygen sensor, also known as a lambda sensor, continually detects the oxygen content in the exhaust gases of an engine. The oxygen sensor output signal informs the vehicle's ECU (Electronic Control Unit) whether the AFR (Air-Fuel Ratio) is lean or rich. Based on this, the ECU adjusts the amount of fuel injected into the engine to achieve an optimal AFR.
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IVN-8561, Automotive Ethernet Interface Device
786169-01
2-Channel, 4-Port, 100BASE-T1 to 100BASE-TX Automotive Ethernet Interface Device—The IVN-8561 is an interface that converts 100BASE-T1 unshielded twisted pair (UTP) automotive Ethernet to standard 100BASE-TX Ethernet. It is ideal for developing applications that require automotive Ethernet to test and validate automotive electronic control units (ECUs). The IVN-8561 provides two channels to convert data between 100BASE-TX Ethernet and 100BASE-T1 Automotive Ethernet. Each 100BASE-T1 port can be configured as master or slave, using switches on the front panel. The IVN-8561 also provides LED on the front panel so that you can monitor the linkage and activity on the various ports.
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Oxygen Sensor
KS60051
Konstar Electric Industrial Co., Ltd
An oxygen sensor, also known as a lambda sensor, continually detects the oxygen content in the exhaust gases of an engine. The oxygen sensor output signal informs the vehicle's ECU (Electronic Control Unit) whether the AFR (Air-Fuel Ratio) is lean or rich. Based on this, the ECU adjusts the amount of fuel injected into the engine to achieve an optimal AFR.
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ADAQ Data Systems
Atec’s Data Acquisition and Control System (ADAQ™) is a modern, full-featured, highly integrated hardware and software solution that is applicable for use with most commercial and military turbine engine test cell applications. Built upon National Instruments’ respected LabVIEW platform, ADAQ™ is robust, versatile, user friendly, and specifically designed to handle the demanding requirements of engine testing. It links seamlessly to digital engine modules (FADECs, DEECs, EECs, ECUs) as well as legacy analog and mechanical controls. Users can create, remove, calibrate and display channels, as well as generate custom calculations, screens and reports. Beyond the most impressive manual throttle control and operation available, Atec’s ADAQ™ additionally offers the option of fully automated testing.
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Helicopter FADECs
The EMC-100 is dual channel Full Authority Digital Engine Control (FADEC) system, designed for helicopter turboshaft engines. The electronic control unit’s (ECU) primary channel provides precise engine power management and rotor speed control throughout the operational range of the engine. The reversionary backup channel provides full mission capability should a primary system failure occur.
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Data-based Modeling and Calibration
ASCMO
ETAS ASCMO is the easy-to-use-solution for advanced model-based calibration and data-based modeling in significantly less time. ETAS ASCMO enables the fast and efficient development of accurate data-based models. Once created, these high-accuracy models can be used to optimize parameters of real systems such as engine ECUs or plant models in different simulation environments (e.g. Simulink or HiL-Systems). Both, steady state and dynamic/transient system behaviors can be captured.





























