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3-Space™ Embedded Miniature 10-DOF AHRS / IMU for OEM Integration

$249.00

This product is RoHS compliant.

One 23mm x 23mm, 1.3 gram module delivers precision orientation and high-g event capture from ±2g to ±320g, with EEPTS motion-path tracking running onboard. No GPS, no external infrastructure, no second sensor to integrate.

Pricing & Lead-Time

This sensor is built to order and carefully tested, allowing us to deliver exceptional quality and application-specific customization options.

The listed price applies to standard single-unit orders. Both pricing and lead-time vary based on order quantity.

Ordering 10 or more units? Contact us directly so we can quote pricing and timeline specific to your project.

First time working with the platform? The 3-Space™ Embedded Evaluation Kit pairs this sensor with a plug-and-play USB evaluation board, so you can validate performance on your bench before committing to a board design.

Quantity discounts available
SKU: TSS-EM3 Category:

Description

Product SKU: TSS-EM3

One module. Two jobs. No infrastructure.

Most inertial designs force a choice: a precision accelerometer that clips during hard impacts, or a high-range accelerometer too noisy for accurate orientation. The 3-Space™ Embedded v3.1 eliminates that tradeoff. Its auto-selecting dual accelerometers span ±2g to ±320g in a single 1.3 gram surface-mount module, so the same part that tracks fine orientation also captures impacts, drops, launches, and shocks. No second sensor, no extra board space, no arbitration firmware to write.

The Embedded v3.1 is a production-capable, 10-DOF Attitude and Heading Reference System (AHRS) / Inertial Measurement Unit (IMU) built on a triaxial gyroscope, auto-selecting dual accelerometers, magnetometer, and barometric pressure sensor. Patented onboard processing and quaternion-based filtering deliver fused orientation at rates up to 2000Hz, fast enough for closed-loop stabilization, robotics control, and real-time immersive applications.

Motion paths without GPS

The embedded EEPTS pedestrian tracking system extracts real-time motion paths from body-worn devices or hand-carried equipment with no GPS and no external infrastructure. Wherever satellite signals can’t reach (inside structures, underground, in dense environments) EEPTS runs entirely onboard the sensor and outputs motion-path offsets directly. Capability that normally requires a dedicated navigation software effort on your host system is built into the part.

Precision you can configure

Choose between Extended Kalman Filtering and our proprietary QGRAD3™ filter, which delivers fused orientation with lower latency and lower computational overhead. A dynamic sensor confidence algorithm maintains accuracy across changing operating conditions, and the gradient descent calibration process compensates for sensor error at high update rates. Orientation is available in absolute or relative terms, in every format your application expects: quaternion, Euler angles, rotation matrix, axis angle, and two-vector.

An integrated World Magnetic Model (WMM) turns magnetometer readings into headings you can actually navigate by: simple commands return heading and bearing referenced to true north, magnetic north, or grid north, with declination handled onboard instead of in your application code.

Built for your board, documented for your team

Castellated SMT edge pads support secure surface mounting with optional through-hole mounting. Communication options include SPI, I2C, USB 2.0, and asynchronous serial, with USB appearing as a virtual COM port. Every sensor function is accessible through our well-documented open protocol, in human-readable ASCII or fast machine-readable binary, with Python and C APIs and the free 3-Space™ Sensor Suite application for rapid evaluation. Firmware updates are free for the life of the product.

Designed and built in Portsmouth, Ohio, USA, with direct access to the engineers who created it.

Key Features

Sensing

  • Auto-selecting dual accelerometers cover ±2g to ±320g in one module: precision orientation and high-g event capture without a second sensor
  • 10-DOF platform: triaxial gyroscope, dual accelerometers, magnetometer, and barometric pressure
  • ±1° dynamic orientation accuracy with 1.5°/hr average gyro bias stability
  • 5000g shock survivability, -40°C to +85°C operating range

Processing

  • Fused orientation output at up to 2000Hz with Extended Kalman Filter, QGRAD3™, or IMU mode
  • Embedded EEPTS pedestrian tracking: real-time motion paths from body-worn or hand-carried equipment without GPS or external infrastructure
  • Integrated World Magnetic Model (WMM): heading and bearing referenced to true north, magnetic north, or grid north with simple commands
  • Tunable filtering, oversampling, and orientation error correction
  • Absolute or custom reference axes; access to fully calibrated or raw sensor data

Integration

  • 23mm x 23mm x 1.95mm, 1.3 grams, castellated SMT edge pads with optional through-hole mounting
  • SPI, I2C, USB 2.0, and asynchronous serial; USB via virtual COM port
  • Open communication protocol in ASCII or binary, with Python and C APIs
  • Free firmware updates, RGB status LED, programmable interrupts
  • Development kit available (Part: TSS-EVK-EM)

Applications

Where the Embedded v3.1 works

  • Robotics, positioning, and stabilization
  • Unmanned air, land, and water vehicle navigation
  • GPS-denied personnel and pedestrian tracking
  • Impact monitoring, drop testing, and crash detection
  • Equipment monitoring and preventative maintenance
  • Industrial motion and vibration analysis
  • Sports performance analysis and healthcare monitoring
  • Aeronautical and defense systems
  • Down-hole applications
  • Motion capture, virtual reality, and human interfaces
  • Education and performing arts

If it moves, we can track it

From GPS-denied navigation to pediatric medical devices to the largest naval vessels, our engineers have solved motion tracking problems no datasheet anticipated. We conduct application-specific R&D for your domain, building on our proven COTS platform or engineering one that doesn’t exist yet. Bring us the requirement everyone else said was too hard.

Contact Us

Hardware

Specifications

General

Part number TSS-EM3-H-v3.1 (Low- & High-Range accelerometers)
Dimensions 23mm x 23mm x 1.95mm (0.9 x 0.9 x 0.086 in.
Weight 1.3 grams (0.0458 oz)
Supply voltage +3.3v ~ +6.0v
Power consumption¹ Minimum: 10mA in low-power modes. Maximum: 55mA at full-performance
Communication interfaces USB 2.0 FS, SPI, I2C, Asynchronous Serial
Filter update rate² Up to 2000Hz with Extended Kalman Filter AHRS · Up to 2000Hz with QGRAD3™ AHRS · Up to 2000Hz in IMU mode
Orientation output Absolute & relative quaternion, Euler angles, axis angle, rotation matrix, two vector
Other output Corrected sensor data, normalized sensor data, temperature, pedestrian motion-path (longitude/latitude) offsets
SPI clock rate 10 MHz max
I2C clock rate 4 MHz max
Internal pull-up 50k Ω
Serial baud rate 4,800~4,000,000 selectable, default: 115,200
Shock survivability 5000𝑔
Temperature range

MSL Classification

-40°C ~ 85°C (-40°F ~ 185°F)

Level 3 (168 hours ≤ 30°C / 60% RH)

Sensor

Orientation range 360º about all axes
Orientation accuracy³ ±1º for dynamic conditions & all orientations
Orientation resolution <0.08º
Orientation repeatability 0.08º for all orientations
Accelerometer scale Auto-selecting dual accelerometers: ±2g/±4g/±8g/±16g selectable (Low-Range) · ±32g/±64g/±128g/±256g/±320g selectable (High-Range, H model)
Accelerometer resolution 16-bit (Low-Range), 16-bit (High-Range)
Accelerometer noise density 60µg/√Hz (Low-Range), 1000µg/√Hz (High-Range)
Accelerometer sensitivity 0.0000610352g/digit–0.00048828g/digit (Low-Range) · 0.00097656g/digit–0.010417g/digit (High-Range)
Accelerometer temperature sensitivity ±0.01%/°C (-40°C to +85°C), both accelerometers
Gyro scale ±250/±500/±1000/±2000/±4000 °/sec selectable
Gyro resolution 16-bit
Gyro noise density 0.005º/sec/√Hz
Gyro bias stability @ 25°C 1.5º/hr average for all axes
Gyro sensitivity 0.008750°/sec/digit for ±250°/sec · 0.140016°/sec/digit for ±4000°/sec
Gyro non-linearity 0.01% full-scale
Gyro temperature sensitivity ±0.007%/°C (-40°C to +85°C)
Magnetometer scale ±8.0 Ga
Magnetometer resolution 18-bit
Magnetometer sensitivity 0.06 mGa/digit
Magnetometer non-linearity 0.1% full-scale

¹ Varies based on power Settings
² Depends upon communication mode and filter mode.

Downloads

TSS v3 Sensor Suite:   Latest Release, All Releases

TSS v3 User’s Manual:   TSS v3 User’s Manual

TSS v3 Python 3 API:   About, Examples