The TC-Link-200-OEM's small form factor, wide input range, and selection of antenna options make this product easy to integrate into many applications.
MicroStrain wireless sensor networks are fast to deploy and provide reliable, lossless data throughput. These networks are proven to work in demanding industries where reliable data acquisition is critical. Comes with replaceable batteries.
MicroStrain wireless sensor networks are fast to deploy and provide reliable, lossless data throughput. These networks are proven to work in demanding industries where reliable data acquisition is critical. Comes with replaceable batteries.
The CX product line has all the same features of the GX series in a cost-effective system-integrator friendly package designed for volume production.
The CX product line has all the same features of the GX series in a cost-effective, system-integrator friendly package designed for volume production.
The 3DMCV5-AHRS is a value focused AHRS designed to balance cost and performance.
The 3DM-CV5-AR is designed to balance cost and performance, and is ideally suited for a wide range of applications, including platform stabilization, balancing robots, antenna pointing, and usage monitoring.
The 3DM-GX5-AR is ideally suited for a wide range of applications, including platform stabilization antenna pointing and usage monitoring.
Pages
Best in Class Performance
- Bias tracking, error estimation, threshold flags, and adaptive noise modeling allow for fine tuning to conditions in each application
- l Accelerometer noise as low as 25 ug/√Hz
- Smallest and lightest industrial AHRS with Adaptive Kalman Filter available
- Triaxial accelerometer, gyroscope, magnetometer, temperature sensors achieve the optimal combination of measurement qualities
- Dual on-board processors run a new Auto-Adaptive Extended Kalman Filter (EKF) for outstanding dynamic attitude estimates
Ease of Use
- Automatic magnetometer calibration and anomaly rejection eliminates the need for field calibration
- Automatically compensates for vehicle noise and vibration
- Easy integration via comprehensive and fully backwardscompatible communication protocol
- Common protocol between 3DM-GX3, GX4, RQ1, GQ4, and GX5 inertial sensor families for easy migration
Cost Effective
- Out-of-the box solution reduces development time
- Volume discounts
Best in Class Performance
- Fully calibrated, temperature-compensated, and mathematically-aligned to an orthogonal coordinate system for highly accurate outputs
- Bias tracking, error estimation, threshold flags, and adaptive noise modeling allow for fine tuning to conditions in each application
- High-performance, low-drift gyros with noise density of 0.005°/sec/√Hz and VRE of 0.001°/s/g2RMS
- Triaxial accelerometer, gyroscope, temperature sensors achieve the optimal combination of measurement qualities
- Dual on-board processors run a new Auto-Adaptive Extended Kalman Filter (EKF) for outstanding dynamic pitch and roll.
- Smallest, lightest, highest performance VR in its class
Ease of Use
- User-defined sensor-to-vehicle frame transformation
- Easy integration via comprehensive and fully backwardscompatible communication protocol
- Robust, forward compatible MIP packet protocol
Cost Effective
- Out-of-the box solution reduces development time
- Volume discounts
Best in Class Performance
- Bias tracking, error estimation, threshold flags, and adaptive noise modeling allow for fine tuning to conditions in each application
- Smallest and lightest industrial AHRS with Adaptive Kalman Filter available
- High-performance, low-cost solution
- Direct PCB mount or chassis mount with ribbon cable
- Precision mounting alignment features
Ease of Use
- User-defined sensor-to-vehicle frame transformation
- Easy integration via comprehensive and fully backwards-compatible communication protocol
- Common protocol between 3DM-GX3, GX4, RQ1, GQ4, GX5, and CV5
Cost Effective
- Out-of-the box solution reduces development time
- Volume discounts
Features for Our Lower Cost Vertical Reference Units
Expect a Best in Class Performance with Each Miniature Vertical Reference Unit
- Fully calibrated, temperature-compensated, and mathematically-aligned to an orthogonal coordinate system for highly accurate outputs
- High-performance, low-cost solution
- Precision mounting alignment features
- Bias tracking, error estimation, threshold flags, and adaptive noise modeling
- Bias tracking, error estimation, threshold flags, and adaptive noise modeling allow for fine tuning to conditions in each application
Ease of Use for These 3DM® -CV5-15 Units
- Easy integration via comprehensive and fully backwards-compatible communication protocol
- Robust, forward compatible MIP packet protocol
- Common protocol between 3DM-GX3, GX4, RQ1, GQ4, GX5, and CV5
Cost Effectiveness
- Out-of-the box solution reduces development time
- Volume discounts
Best in Class Performance
- Fully calibrated, temperature-compensated, and mathematically-aligned to an orthogonal coordinate system for highly accurate outputs
- Bias tracking, error estimation, threshold flags, and adaptive noise modeling allow for fine tuning to conditions in each application
- High-performance, low-drift gyros with noise density of 0.005°/sec/√Hz and VRE of 0.001°/s/g2RMS
- Accelerometer noise as low as 25 ug/√Hz
Ease of Use
- User-defined sensor-to-vehicle frame transformation
- Common protocol between 3DM-GX3, GX4, RQ1, GQ4, GX5, and CV5
- Robust, forward compatible MIP packet protocol
Cost Effective
- Out-of-the box solution reduces development time
- Volume discounts
Best in Class Performance
- Bias tracking, error estimation, threshold flags, and adaptive noise modeling allow for fine tuning to conditions in each application
- Accelerometer noise as low as 25 ug/√Hz
- Smallest and lightest industrial AHRS with Adaptive Kalman Filter available
Ease of Use
- Automatic magnetometer calibration and anomaly rejection eliminates the need for field calibration
- Automatically compensates for vehicle noise and vibration
- Easy integration via comprehensive and fully backwards-compatible communication protocol
- Common protocol between 3DM-GX3, GX4, RQ1, GQ4, GX5, and CV5 inertial sensor families for easy migration
Cost Effective
- Out-of-the box solution reduces development time
- Volume discounts
Best in Class Performance
- Fully calibrated, temperature-compensated, and mathematically-aligned to an orthogonal coordinate system for highly accurate outputs
- High performance, low drift gyros with noise density of 0.005°/sec/√Hz and VRE of 0.001°/s/g²2RMS
- Accelerometer noise as low as 25 µg/√Hz
- Common protocol between 3DM®-GX3, GX4, RQ1, GQ4, GX5, and CV5
Ease of Use
-
Automatic magnetometer calibration and anomaly rejection eliminates the need for field calibration
-
Automatically compensates for vehicle noise and vibration
- Easy integration via comprehensive and fully backward-compatible communication protocol
Cost Effective
- Out-of-the-box solution reduces development time
- Volume discounts
Pages
Sensor Input
- 1 input channel supporting thermocouples, resistance thermometers (RTDs), and thermistors
- Onboard temperature calculation using NIST 9th order polynomial
- Onboard cold-junction compensation
- Digital filtering for up to 120 dB rejection of 50 and 60 Hz noise
- High accuracy and low noise
- Open-circuit (burnout) detection
- Differential voltage range from +/- 19.5mV to +/- 1.25 V
- Compatible thermocouples types:
- J, K, N, R, S, T, E, B
- Compatible RTDs:
- PT-10, PT-50, PT-100, PT-200, PT-500, PT1000
- Compatible thermistors:
- 44004, 44033, 44005, 44030, 44006, 44031, 44007, 44034, 44008, 44032, YSI-400
Operation
- Report sensor temperature, voltage, or resistance
- Up to 128 Hz sampling rate
- Continuous, periodic burst, or event-triggered operation
- LXRS protocol allows lossless data collection, scalable network size, and node synchronization of ±50 µs
- Datalogging up to 8 million data points
- Wireless range up to 1km
- Duty cycle sensor excitation for low power operation, well-suited for battery powered applications
Package
- Power with 3.3 to 30 V
- –40 to +105 °C operating temperature range
- Humiseal 1B31 Conformal Coating
- 4 mounting holes sized for 2-56 UNC
- Optional aluminum base
- Antenna options include on-board, or U.FL connector
Sensor Input
- 12 input channels for thermocouples or differential voltage
- Onboard cold-junction compensation
- Onboard temperature calculation using NIST 9th order polynomial
- Compatible thermocouples types:
- J, K, N, R, S, T, E, B
- Digital filtering for up to 120 dB rejection of 50 and 60 Hz noise
- Open-circuit (burnout) detection
- Differential voltage range from +/-19.5 mV to +/-1.25 V
- Low drift over time and temperature
Operation
- Report temperature or mV
- Up to 128 Hz sampling rate
- Continuous or event-triggered operation
- LXRS protocol allows lossless data collection, scalable network size, and node synchronization of ±50 µs
- Datalogging up to 8 million data points
- Wireless range up to 1km
- Long battery life
Package
- Internal batteries (4 x AA Batteries)
- External power (4.0 – 36 V)
- Bolt down or DIN-rail mounting
- –40 to +85 °C operating temperature range
- ESD: 4kV
- Molded polycarbonate enclosure
Sensor Input
- 6 input channels for RTD, thermistor, or other resistive sensor
- Temperature calculation using NIST 9th order polynomial
- Compatible RTD's:
- PT-10, PT-50, PT-100, PT-200, PT-500, PT1000
- Compatible thermistors:
- 44004, 44033, 44005, 44030, 44006, 44031, 44007, 44034, 44008, 44032, YSI-400
- High resolution 24-bit data
- Digital filtering for up to 120 dB rejection of 50 and 60 Hz noise
- Onboard temperature sensor
Operation
- Report temperature or resistance
- Up to 64 Hz sampling rate
- Continuous or event-triggered operation
- LXRS protocol allows lossless data collection, scalable network size, and node synchronization of ±50 µs
- Datalogging up to 8 million data points
- Wireless range up to 1km
- Long battery life
Package
- Internal batteries (4 x AA Batteries)
- External power (4.0 – 36 V)
- Bolt down or DIN-rail mounting
- –40 to +85 °C operating temperature range
- ESD: 4kV
- Molded polycarbonate enclosure
Sensor
-
High Performance Accelerometer
- 25 µg/√Hz (8g option)
- 80 µg/√Hz (20g option)
-
Super-stable Gyro
- 8 dph in-run bias (-40 to +85°C)
- Offset temperature hysteresis 0.05°/s
- ARW 0.3°/√hr
- Pitch-roll static/dynamic accuracy ±0.25°/0.4°
Operation
- IMU sampling rate up to 1000Hz
- Auto-adaptive EKF output rate up to 500Hz
- Independently configurable IMU and EKF outputs
- Forward compatible MIP Protocol optimizes bandwidth
- SensorConnect software for configuration, control, display, and logging
Package
- CNC Anodized Aluminum
- Precision alignment features
- Highly compact and low profile
- 38.0 mm x 24.0 mm x 10.7 mm
- 12.0 grams
- USB and TTL UART interface (up to 921600 BAUD)
- –40 to +85 °C operating temperature range
Sensor
-
High Performance Accelerometer
- 25 µg/√Hz (8g option)
- 80 µg/√Hz (20g option)
-
Super-stable Gyro
- 8 dph in-run bias (-40 to +85°C)
- Offset temperature hysteresis 0.05°/s
- ARW 0.3°/√hr
- Pitch-roll static/dynamic accuracy ±0.25°/0.4°
Operation
- IMU sampling rate up to 1000Hz
- Auto-adaptive EKF output rate up to 500Hz
- Independently configurable IMU and EKF outputs
- Forward compatible MIP Protocol optimizes bandwidth
- SensorConnect software for configuration, control, display, and logging
Package
- CNC Anodized Aluminum
-
Precision alignment features, Highly compact and low profile
- 38.0 mm x 24.0 mm x 10.7 mm
- 12.0 grams
- USB and TTL UART interface (up to 921600 BAUD)
- –40 to +85 °C operating temperature range
Sensor
-
High Performance Accelerometer
- 100 µg/√Hz (8g standard)
- 2g, 4g, 20g, 40g options
-
Super-stable Gyro
- 8 dph in-run bias (-40 to +85°C)
- Offset temperature hysteresis 0.05°/s
- ARW 0.3°/√hr
Operation
- IMU sampling rate up to 1000Hz
- Auto-adaptive EKF output rate up to 500Hz
- In-run auto-mag calibration features
- Independently configurable IMU and EKF outputs
- SensorConnect software for configuration, control, display, and logging
Package
- CNC Anodized Aluminum
- Precision alignment features
- Highly compact and low profile
- 38.0 mm x 24.0 mm x 9.7 mm
- 13.0 grams
- USB and TTL UART interface (up to 921600 BAUD)
- –40 to +85 °C operating temperature range
Sensor
-
High Performance Accelerometer
- 100 µg/√Hz (8g standard)
- 2g, 4g, 20g, 40g options
-
Super-stable Gyro
- 8 dph in-run bias (-40 to +85°C)
- Offset temperature hysteresis 0.05°/s
- ARW 0.3°/√hr
Operation
- IMU sampling rate up to 1000Hz
- Auto-adaptive EKF output rate up to 500Hz
- Independently configurable IMU and EKF outputs
- Forward compatible MIP Protocol optimizes bandwidth
- SensorConnect software for configuration, control, display, and logging
Package
- CNC Anodized Aluminum
- Precision alignment features
- Highly compact and low profile
- 38.0 mm x 24.0 mm x 9.7 mm
- 11.0 grams
- TTL UART interface (up to 921600 BAUD)
- –40 to +85 °C operating temperature range
Sensor
-
High Performance Accelerometer
- 25 µg/√Hz (8g option)
- 80 µg/√Hz (20g option)
-
Super-stable Gyro
- 8 dph in-run bias (-40 to +85°C)
- Offset temperature hysteresis 0.05°/s
- ARW 0.3°/√hr
- Pitch-roll static/dynamic accuracy ±0.25°/0.4°
Operation
- IMU sampling rate up to 1000Hz
- Auto-adaptive EKF output rate up to 500Hz
- Independently configurable IMU and EKF outputs
- Forward compatible MIP Protocol optimizes bandwidth
- SensorConnect software for configuration, control, display, and logging
Package
- CNC Anodized Aluminum
- Precision alignment features
-
Highly compact and low profile
- 36.0 mm x 36.6 mm x 11 mm
- 16.5 grams
- USB and RS-232 (up to 921600 BAUD) interfaces
- –40 to +85 °C operating temperature range
Sensor
-
High Performance Accelerometer
- 25 µg/√Hz (8g option)
- 80 µg/√Hz (20g option)
-
Super-stable Gyro
- 8 dph in-run bias (-40 to +85°C)
- Offset temperature hysteresis 0.05°/s
- ARW 0.3°/√hr
- Pitch-roll static/dynamic accuracy ±0.25°/0.4°
Operation
- IMU sampling rate up to 1000Hz
- Auto-adaptive EKF output rate up to 500Hz
- Independently configurable IMU and EKF outputs
- Forward compatible MIP Protocol optimizes bandwidth
- SensorConnect software for configuration, control, display, and logging
Package
- CNC Anodized Aluminum
- Precision alignment features
-
Highly compact and low profile
- 36.0 mm x 36.6 mm x 11.1 mm
- 16.5 grams
- USB and RS-232 (up to 921600 BAUD) interfaces
- –40 to +85 °C operating temperature range
Sensor
- Multi-Constellation receiver tracks up to 32 satellites
-
High Performance Accelerometer
- 25 µg/√Hz (8g option)
- 80 µg/√Hz (20g option)
-
Super-stable Gyro
- 8 dph in-run bias (-40 to +85°C)
- Offset temperature hysteresis 0.05°/s
- ARW 0.3°/√hr
- Pitch-roll Dynamic Accuracy ±0.2°
Operation
- Adjustable sampling rates up to 500Hz
- 34 state auto-adaptive EKF
- Independently configurable IMU, GNSS, EKF outputs
- Forward compatible MIP Protocol optimizes bandwidth
- SensorConnect software for configuration, control, display, and logging
Package
- CNC Anodized Aluminum
- Precision alignment features
- Highly compact and low profile
- 44.2 mm x 36.6 mm x 11 mm
- 20 grams
- USB and RS-232 interfaces
- –40 to +85 °C operating temperature range
Pages
General Documentation
General Documentation
General Documentation
General Documentation
General Documentation
General Documentation
Technical Notes
- Interface Control Drawing
- C-Series Connectivity Board Interface Control Document
- Inertial product comparison
- Inertial Sensor Utils User Manual
- Auto-Adaptive Dynamic Roll & Pitch Performance
- When to use “Capture Gyro Bias”
- Using a GX5 with Bluetooth RS-232 Adapters
- Using a Hardware Datalogger with Inertial Sensors
General Documentation
Technical Notes
- Interface Control Drawing
- C-Series Connectivity Board Interface Control Document
- Inertial product comparison
- Auto-Adaptive Dynamic Roll & Pitch Performance
- When to use “Capture Gyro Bias”
- Overview of All Inertial Products
- Inertial Sensor Utils User Manual
- Using a Hardware Datalogger with Inertial Sensors
General Documentation
Technical Notes
- Product Comparison: GX5 Series vs. GV7 Series
- Inertial product comparison
- Inertial Sensor Utils User Manual
- Migrating from 3DM-GX4 to 3DM-GX5 Series
- Using a GX5 with Bluetooth RS-232 Adapters
- Auto-Adaptive Dynamic Roll & Pitch Performance
- When to use “Capture Gyro Bias”
- Using a Hardware Datalogger with Inertial Sensors
General Documentation
Technical Notes
- Product Comparison: GX5 Series vs. GV7 Series
- Migrating from 3DM-GX4 to 3DM-GX5 Series
- Inertial product comparison
- Inertial Sensor Utils User Manual
- Using a GX5 with Bluetooth RS-232 Adapters
- When to use “Capture Gyro Bias”
- Auto-Adaptive Dynamic Roll & Pitch Performance
- Using a Hardware Datalogger with Inertial Sensors
General Documentation
Technical Notes
- Product Comparison: GX5 Series vs. GV7 Series
- Migrating from 3DM-GX4 to 3DM-GX5 Series
- Using a GX5 with Bluetooth RS-232 Adapter
- Auto-Adaptive Dynamic Roll & Pitch Performance
- When to use “Capture Gyro Bias”
- Inertial Product Comparison
- Inertial Sensor Utils User Manual
- Using a Hardware Datalogger with Inertial Sensors
Pages
Software/Firmware
More
- Micro D-to-USB Communication and Power Cable
- Micro D-to-RS232 Communication and Power Cable
- Craft Cable with Micro DB9 and Flying Leads
- Interface Control Drawing
- Dewesoft Inertial Sensor Manual
- 6212-3006 OEM Cable Kit
- 6212-3010 DEVELOPMENT KIT, RS232, INERTIAL C-SERIES
- 6212-3009 DEVELOPMENT KIT, USB, INERTIAL C-SERIES
Software/Firmware
More
- Micro D-to-USB Communication and Power Cable
- Micro D-to-RS232 Communication and Power Cable
- Craft Cable with Micro DB9 and Flying Leads
- C-Series Connectivity Board Drawing (STP File)
- Interface Control Drawing
- Dewesoft Inertial Sensor Manual
- 6212-3006 OEM Cable Kit
- 6212-3010 DEVELOPMENT KIT, RS232, INERTIAL C-SERIES
- 6212-3009 DEVELOPMENT KIT, USB, INERTIAL C-SERIES
Software/Firmware
More
- Micro D-to-USB Communication and Power Cable
- Micro D-to-RS232 Communication and Power Cable
- Craft Cable with Micro DB9 and Flying Leads
- C-Series Connectivity Board Drawing (STP File)
- 3DMCV5 3D Model (STP File)
- Dewesoft Inertial Sensor Manual
- 6212-3006 OEM Cable Kit
- 6212-3010 DEVELOPMENT KIT, RS232, INERTIAL C-SERIES
- 6212-3009 DEVELOPMENT KIT, USB, INERTIAL C-SERIES
Software/Firmware
More
- Micro D-to-USB Communication and Power Cable
- Micro D-to-RS232 Communication and Power Cable
- Craft Cable with Micro DB9 and Flying Leads
- C-Series Connectivity Board Drawing (STP File)
- 3DMCV5 3D Model (STP File)
- Dewesoft Inertial Sensor Manual
- 6212-3006 OEM Cable Kit
- 6212-3010 DEVELOPMENT KIT, RS232, INERTIAL C-SERIES
- 6212-3009 DEVELOPMENT KIT, USB, INERTIAL C-SERIES
Software/Firmware
More
- Micro D-to-USB Communication and Power Cable
- Micro D-to-RS232 Communication and Power Cable
- PSA-05R-090 9 Volt DC Power Supply for RS-232 Cable
- Craft Cable with Micro DB9 and Flying Leads
- 3DM-GX5-15 Drawing (STP File)
- Dewesoft Inertial Sensor Manual
- 6212-3004 CONNECTIVITY KIT, USB, AHRS/IMU
- 6212-3001 CONNECTIVITY KIT, RS232, AHRS/IMU
Software/Firmware
More
- Micro D-to-USB Communication and Power Cable
- Micro D-to-RS232 Communication and Power Cable
- PSA-05R-090 9 Volt DC Power Supply for RS-232 Cable
- Craft Cable with Micro DB9 and Flying Leads
- 3DM-GX5-25 Drawing (STP File)
- Dewesoft Inertial Sensor Manual
- 6212-3004 CONNECTIVITY KIT, USB, AHRS/IMU
- 6212-3001 CONNECTIVITY KIT, RS232, AHRS/IMU
Software/Firmware
More
- Tallysman TW4721 GNSS Antenna Datasheet
- Micro D-to-USB Communication and Power Cable
- Micro D-to-RS232 Communication and Power Cable
- PSA-05R-090 9 Volt DC Power Supply for RS-232 Cable
- Craft Cable with Micro DB9 and Flying Leads
- 3DM-GX5-45 Drawing (STP File)
- 3DM-GX5-45 Dimensional Drawing with Sensor Origin
- Dewesoft Inertial Sensor Manual
- 6212-3000 CONNECTIVITY KIT, RS232, GNSS
- 6212-3002 CONNECTIVITY KIT USB, GNSS
Pages
Product Video Tutorials
Visit our YouTube channel to view the full Sensing Tutorials playlist HERE.
Managing Data Repositories
Upgrading Firmware
Setting Nodes to Idle
Changing Frequency
Working with the Beacon
Using the Range Test Tool
Upgrading SensorConnect
Single/Multi Node Sampling
Idle, Sleep, Sample Modes
Export/Import Node Configs
Downloading Datalog
Add Nodes in SensorConnect
Creating .CSV Files