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Inertial Measurement Units
combinations of precision gyroscopes, accelerometers, magnetometers, and pressure sensors measuring motion.
See Also: IMU
- Pickering Interfaces Inc.
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PXI Fault Insertion Switch, 7-Channel, Two Fault Buses, 20 A, Hardware Interlock
40-193A-002-HI
The 40-193A-002-HI is a 7-Channel Fault Insertion switch with hardware interlock and two fault buses, designed for the simulation of fault conditions in automotive systems. The module is capable of switching current up to 20A.
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Inertial Measurement Units
IMU
Analog Devices inertial measurement unit (IMU) sensors are based on multiaxis combinations of precision gyroscopes, accelerometers, magnetometers, and pressure sensors. Our technology reliably senses and processes multiple degrees of freedom, even in highly complex applications and under dynamic conditions. These plug and play solutions include full factory calibration, embedded compensation and sensor processing, and a simple programmable interface.
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Quantum Accelerometer
A quantum accelerometer uses atom interferometry to measure accelerations along a horizontal axis. Quantum accelerometers are able to achieve a combination of sensitivity and stability by exploiting quantum interference. As such, they will be critical components of a quantum inertial navigation unit, which will offer satellite-free navigation with unparalleled long-term accuracy. A phase locked SolsTiS system underpins this setup and provides the extremely low phase noise required to make high sensitivity measurements and dynamic frequency tunability to address multiple atomic transitions.
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Inertial Measurement Units
Safran manufactures inertial measurement units and sets a new standard for precision and performance by utilizing our proprietary inertial sensor technology. Our IMUs are engineered to excel in the Defense, Industrial, Aerospace, and Commercial sectors with the highest performing ITAR-free products commercially available.
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2MP Stereo Camera for NVIDIA® Jetson Nano™/AGX Xavier™/TX2
STEEReoCAM™
Houses two OmniVision's 1/2.9" OV2311 Monochrome image sensorHigh-speed 2-lane MIPI CSI-2 interface to connect with the Host ProcessorPlugs in to NVIDIA® Jetson Nano™/AGX Xavier™/TX2 developer kit2MP Global Shutter Sensor10-bit Monochrome output formatHouses 6-axis Inertial Measurement Unit (IMU)Baseline distance of 100mmAccurate depth sensing with a flexible range between 0.95m to 8mS-mount lens holder (M12) with pre-calibrated S-mount lens pairSupport Multiple SteereoCam to a Single board
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GPS Speedometer/GPS Vector Speedometer
LC-8120/LC-8220
The LC-8120/8220 is the GPS-based speedometers which measure speed and distance of moving objects with high accuracy. Support for GLONASS satellite which is not supported in the conventional model (LC-8100A/8200A) to ensure stable measurement. Antenna for LC-8220 (LC-0721) is smaller and lighter than the conventional antenna for LC-8200A (LC-0086) and it enables easy operation. The new antenna (LC-0721) is able to attach to the conventional unit of LC-8200(A) for measurement. The linearity of acceleration and angular speed are improved by using the standard IMU (inertial measurement unit) together with the optional high accuracy IMU. Also, by adding the high response IMU analog output function (option), the analog output frequency of the IMU data can be increased from 100 Hz to 500 Hz. A wide range of optional functions such as white-line detecting function (LC-0856), jerk measurement function (LC-0871) and average deceleration speed calculation (function in the LC-0831) are available for various automotive tests.
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Laboratory Centrifuges
Centrifuge systems are designed for the development, test, evaluation and calibration of accelerometers and a variety of inertial devices. Centrifuges provide a cost-effective solution for simulating high-"G" environments in the laboratory. They support testing of devices such as MEMS-based Inertial Measurement Units (IMUs), low-cost quartz or silicon sensors, Ring Laser Gyros (RLGs), Fiber-Optic Gyros (FOGs), fuzes and crash sensors.
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Barometric Pressure Simulation
SimBARO
Embedded and Integrated GPS/Inertial navigation systems require an altitude reference data input provided by a barometric pressure altimeter to reduce vertical plane errors inherent within inertial systems. Spirent’s SimBARO product offers a simulated source of barometric pressure altitude data and is available as an add on to SimINERTIAL, Spirent’s Inertial Measurement Unit (IMU) and Embedded GPS/Inertial navigation system (EGI) test tool.
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GNSS Smart Antenna
iCON gps 70 series
For construction professionals, Leica Geosystems introduces the most efficient GNSS rovers, the Leica iCON gps 70 Series. With the iCON gps 70 T you can measure and stakeout points quicker than ever before without the need to keep the pole vertical and level the bubble. The combination of the latest GNSS technology and inertial measurement unit (IMU) equips the iCON gps 70 T with permanent tilt compensation and makes it resistant to any magnetic interference. Being fully calibration-free, the iCON gps 70 T is ready when you are – anytime, anywhere.
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Tactical Grade Inertial Measurement Unit (IMU)
ADIS16490 iSensor
The ADIS16490 iSensor® device is a complete inertial system that includes a triaxial gyroscope and a triaxial accelerometer. Each inertial sensor in the ADIS16490 combines industry-leading iMEMS® technology with signal conditioning that optimizes dynamic performance. The factory calibration characterizes each sensor for sensitivity, bias, alignment, and linear acceleration (gyroscope bias). As a result, each sensor has its own dynamic compensation formulas that provide accurate sensor measurements. The ADIS16490 provides a simple, cost-effective method for integrating accurate, multiaxis inertial sensing into industrial systems, especially when compared with the complexity and investment associated with discrete designs. All necessary motion testing and calibration are part of the production process at the factory, greatly reducing system integration time. Tight orthogonal alignment simplifies inertial frame alignment in navigation systems. The SPI and register structure provide a simple interface for data collection and configuration control.
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VR/AR/MR Calibration Platform
AR, VR and MR device calibration is critical for product performance. Leverage Averna’s standardized alignment platform to efficiently calibrate cameras and Inertial Measurement Unit (IMU) modules with supreme accuracy. Easily customize or upgrade the base platform into the automated quality solution to best fit your manufacturing requirements.
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Data Interfaces, Sensors And Actuators
Dewesoft also develops and manufactures data interfaces such as CAN USB devices, GNSS and INS positioning devices, and Inertial Measurement Units (IMU), and high-speed cameras. All devices are completely compatible and synchronized with all of our Data Acquisition (DAQ) systems and offer the same highest possible built quality. To complete the measurement chain we also provide high accuracy current and vibration sensors.
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High-Sensitive GPS Speedometer
LC-8310 series
The LC-8310 high-sensitive GPS speedometer can measure the velocity of a vehicle and the distance using GPS/GLONASS.It adopts the method to correct the speed obtained from satellite signals with IMU ((Inertial Measurement Unit) and achieves high response, stable and high accuracy measurement (velocity accuracy of ±0.2 km/h, distance accuracy of ±0.2 %).
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INERTIAL MEASUREMENT UNIT
MS-IMU3050
Extreme performance in the industry's most compact package, the ITAR free and EAR99 MS-IMU3050 represents the next generation of cutting edge MEMS IMUs. With an ultra-durable and dimensionally stable MIC-6 alloy housing, MIL-A-8625 coating, and Mil-Standard interface connector, the MS-IMU3050 will endure the most demanding environments, giving long term stability and reliability in your application.
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GPS-Aided Inertial Navigation Systems
INS
The INS was unveiled in 2001 when Inertial Labs started manufacturing its first MEMS-based, IP67 and IP68 sealed and OEM versions, MIL-STD-810G qualified multiple interfaces and COM ports Single and Dual Antenna GPS-Aided Inertial Navigation Systems (INS). Each INS contains an Inertial Labs developed Tactical or Industrial-grade Inertial Measurement Units (IMU) and reliable single or dual GNSS receivers from suppliers like NovAtel, u-blox and Septentrio.
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Inertial Navigation Systems (INS and IMU)
Inertial Navigation Systems (INS and IMU)High accuracy 100Hz GPS and GNSS receivers and Inertial Navigation Systems (IMU - inertial measurement units) with Real-time Kinematics (RTK) correction for the most precise position-based test and measurement applications.
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Inertial Measurement Units
IMU
The Inertial Labs Inertial Measurement Units (IMU) contain three highly accurate advanced MEMS gyroscopes and three high-performance accelerometers. The IMU-P and Kernel are calibrated within their operating temperature range to achieve maximum end-user usability. This also ensures tactical grade performance regardless of the environment in which it is used.
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SparkFun Triple Axis Accelerometer Breakout
LIS3DH
The LIS3DH Breakout is a smart, low-power, three-axis, capacitive micro-machined accelerometer with 12 bits of resolution that you can use to add translation detection to your project. It would be classified as a 3DoF, or 3 Degrees of Freedom. Inertial Measurement Units (or IMUs) can provide additional space location data, such as gyroscopic or magnetometric. The LIS3DH provided on this breakout operates under the same principles but gives a few analog inputs to play with, and it has some built-in movement detection abilities.
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PXI FPGA & Measurement Accelerator
Keysight PXI FPGA & measurement accelerator provide digital-pre-distortion (DPD) and envelope tracking (ET) measurements that are embedded in high performance FPGA processing cards.
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Digital Source Capture Unit
DIO2
The DIO-II module is a multimode digital source and capture unit. In Low Speed Mode it provides a 20-bit parallel or 24-bit serial I/O capability running at speeds up to 50 MHz. In High Speed Mode, the DIO-II provides a 16-bit parallel I/O capability up to 200 MHz. In both Modes, the Clock is generated by a low jitter PLL source that is capable of generating clocks from 320 kHz up to 1 GHz.
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Attitude And Heading Reference Systems
AHRS
Beginning in 2001, Inertial Labs began manufacturing its MEMS-based, IP-67 sealed, MIL-STD-810G qualified, multiple interfaces and COM ports Attitude and Heading Reference System in response to the need for an inclusive and price competitive Antenna Pointing, Aiming, and Stabilizing applications. Each INS contains an Inertial Labs-developed tactical or industrial-grade inertial measurement unit (IMU) and an Inertial Labs-manufactured high-precision Fluxgate magnetometer.
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PXIe-4142, 4-Channel, ±24 V, 150 mA PXI Source Measure Unit
782430-01
PXIe, 4-Channel, ±24 V, 150 mA PXI Source Measure Unit - The PXIe-4142 is a 4-channel source measure unit (SMU) ideal for high-pin-count applications. It features 4-quadrant operation, and each channel has integrated remote (4-wire) sensing for accurate measurements. The fast sample rate of the PXIe-4142 can reduce measurement times, capture transient device characteristics, and allow quick I V characterization of devices under test (DUTs). With a high-speed sequencing engine, you can synchronize all these SMUs with each other or with other instruments such as switches or high-speed digital test modules.
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Inertial Measurement Units (IMU)
Inertial Measurement Unit (IMU) sensors integrate multiaxis combinations of precision gyroscopes, accelerometers, magnetometers, and pressure sensors, intelligently fused to provide reliable position and motion discernment for stabilization and navigation applications. Precision MEMs IMUs deliver the required accuracy levels even in complex operating environments and under dynamic or extreme motion dynamics. ADI iSensor® IMU technology has been uniquely developed to reliably provide the high performance necessary to enable emerging applications in autonomous machinery and instruments, across multiple markets.
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3U OpenVPX Sensor Interface Unit
SIU34
The SIU34 is a highly configurable rugged system or subsystem ideally suited to support a multitude of Mil-Aero applications that require high-density I/O, communications, Ethernet switching and processing. The SIU34 leverages NAI’s 3U OpenVPX™ boards to deliver off-the-shelf solutions that accelerate deployment of SWaP-optimized systems in air, land and sea applications.
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PXI 11-Channel 2A Fault Insert Switch
40-202-101
This is the 11 Channel version of the 40-202 Fault Insertion Switch. It is primarily designed for the simulation of fault conditions in automotive & avionics applications involving the reliability testing of safety critical controllers. It is designed to be able to insert three different fault conditions between the test fixture and the equipment under test
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PXIe Short SMU
52403P
Chroma's 52403P is a PXI Express Short Pulse SMU (Source/Measure Unit) designed for fast, precise and reliable sourcing and measurement of thermo-sensitive devices such as high-power laser diodes (LD). Integrating a high-speed pulser, a high precision SMU and a DAQ module into a single PXIe SMU, the 52403P can measure both the LIV and the low-level leakage current of a high-power LDs.
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PXIe Measurement Accelerator
M9451A
The M9451A PXIe Measurement Accelerator combined with Option DPD Digital Pre-Distortion & Envelope Tracking Gateware shows what is possible when you combine state of the art FPGA's with Keysight's trusted measurement expertise and PXIe's high speed data handling. As part of Keysight's RF PA/FEM Characterization & Test, Reference Solution, this combination provides unprecedented performance for demanding envelope tracking and digital pre-distortion measurements required for testing modern power amplifiers (PAs) and front-end modules (FEMs). Hardware acceleration provides better than 20x speed improvement over Keysight's previous host-based Reference Solution, with closed/open loop digital pre-distortion (DPD) and envelope tracking (ET) measurements taking just tens of milliseconds and overall measurement times less than 70 ms.
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PXI 5A Fault Insertion Switch 10-Channel
40-196-001
The 40-196 is a 10 Channel 5A Fault Insertion Switch, primarily designed for the simulation of fault conditions in automotive & avionics applications involving the reliability testing of safety critical controllers. It is designed to be able to insert different fault conditions between the test fixture and the equipment under test: Open-Circuit, Short-Circuit between signal pairs, Short-Circuit between signal pairs and user applied fault conditions e.g. Power or GND. Shorting relays on each channel enable UUT signals to be subjected to external user applied fault conditions or to be shorted to the adjacent signal in the same channel. Relays in line with the signal allow open circuit conditions to be simulated on either side or both sides of a channel signal pair. The switching topology of the 40-196 allows channels to be interconnected so that complex fault insertion systems can be constructed.
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PXI Dual Bus 32-Chan 2A Fault Insert Switch
40-190B-202
The Dual Bus, 32 Channel PXI Fault Insertion switch is part of our family of 2 Amp fault insertion solutions, The range includes modules with 74, 64 or 32 channels and single or dual fault buses. This version has normally closed through relays, so in the default state, there is a path between input and output for all signal channels. It is primarily designed for the simulation of fault conditions in automotive & avionics applications involving the reliability testing of safety critical controllers.
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PXI Single Bus 74-Ch 2A Fault Insertion Switch, N/O Through Relays
40-190B-301
The Single Bus, 74 Channel PXI Fault Insertion switch is part of our family of 2 Amp fault insertion solutions, The range includes modules with 74, 64 or 32 channels and single or dual fault buses. This version has normally open through relays, so in the default state, there are no paths between inputs and outputs for any signal channel. It is primarily designed for the simulation of fault conditions in automotive & avionics applications involving the reliability testing of safety critical controllers.
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PXIe-4144, 4-Channel, ±6 V, 500 mA PXI Source Measure Unit
782432-01
PXIe, 4-Channel, ±6 V, 500 mA PXI Source Measure Unit - The PXIe-4144 is a 4-channel source measure unit (SMU) ideal for high-pin-count applications. It features 4-quadrant operation, and each channel has integrated remote (4-wire) sensing for accurate measurements. The fast sample rate of the PXIe-4144 can reduce measurement times, capture transient device characteristics, and allow quick I V characterization of devices under test (DUTs). With a high-speed sequencing engine, you can synchronize all these SMUs with each other or with other instruments such as switches or high-speed digital test modules.