Micronor

MR343 MRI Safe Incremental Linear Sensor

Part no.: MR343 MRI Safe Incremental Linear Sensor

Key Features

• Non-metallic construction makes the sensor entirely MRI safe

• 0.1 mm positional resolution

• Inherently Safe, Simple Mechanical Device

• Immune to EMI and RFI

The MR343 non-metallic construction makes the sensor entirely MRI safe, being both immune and invisible to magnetic fields.

Call us for more info at

"*" indicates required fields

Hi, My name is

and I’m interested in the

You can reach me by email at

or phone at

Message

This field is for validation purposes and should be left unchanged.
You may also be interested in:

Micronor

MR342 Incremental Fiber Optic Encoder

  • 100% passive sensing design – no electronics whatsoever
  • Linear and rotary sensor configurations
  • Sensor can be installed in all manner of hazardous locations and potentially explosive atmospheres
  • Immune to EMI and RFI

Micronor

MR344 Hollow Shaft Incremental Fiber Optic Encoder

  • 100% passive sensing design – no electronics whatsoever
  • Up to 1.25" through hollow design
  • Sensor can be installed in all manner of hazardous locations and potentially explosive atmospheres
  • Immune to EMI and RFI

Micronor

MR348 MRI-Safe Rotary Incremental Encoder

  • 100% passive sensing design – no electronics whatsoever
  • Up to 1.25" through hollow design
  • Sensor can be installed in all manner of hazardous locations and potentially explosive atmospheres
  • Immune to EMI and RFI

Micronor

MR342 Incremental Fiber Optic Drawwire Linear Sensor

  • Please contact Everight for length options up to 50'
  • 100% passive sensing design – no electronics whatsoever
  • Sensor can be installed in all manner of hazardous locations and potentially explosive atmospheres
  • Immune to EMI and RFI
Blog:

Fiber Optics Encoders

Read how Micronor’s fiber optic encoders provide an inherently safe sensing option with immunity to lightning, radiation and magnetic fields.

The NEXTGen CANopen inclinometers

The NEXTGen CANopen inclinometers are available now! POSITAL has updated its family of TILTIX inclinometers with new three-axis MEMS accelerometers, enhanced firmware, and a new housing concept.

NASA Lunabotics Challenge

Nearly fifty University Teams recently gathered in Florida for the NASA Lunabotics Challenge. The robots are tasked with driving, digging, and depositing regolith—the fragmented rock material that covers the moon’s surface—in a lunar simulant. Beyond robotics and mechatronics, the program teaches team work, project management and industry collaboration.

Inductosyn vs Modern Rotary Encoders

An Inductosyn is type of inductive position sensing device from Farrand Controls/ Ruhle Companies. Inductosyns work using the same basic physics as a transformer using planner arrays of inductive windings.

Download Now

This field is for validation purposes and should be left unchanged.