Netzer

Netzer VLX-80

Part no.: Netzer VLX-80

Key Features

• 80mm diameter

• SSI, BiSS-C

• Up to 20 bits resolution

• High tolerance to EMI, RFI and magnetic fields

Netzer VLX encoders are ideal for a wide variety of applications such as medical robots, defense and gimbals in vision systems. Featuring an open frame, 2 plate design, the sensor is lightweight, highly tolerant to temperature, shock, EMI, RFI and magnetic fields. It offers a unique combination of high performance at an economical cost.

Call us for more info at 856-727-9500

"*" 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:

Netzer

Netzer VLP-140

  • 140mm diameter
  • SSI, BiSS-C
  • Up to 21 bits resolution
  • High tolerance to EMI, RFI and magnetic fields

Netzer

Netzer VLM-60

  • Absolute multiturn counting w/ SSI output
  • 60mm diameter, 8mm height, 25mm ID
  • Up to 17 bits resolution
  • High tolerance to EMI, RFI and magnetic fields

Netzer

Netzer DS-25

  • Minitature Size, 25mm diameter
  • SSI, BiSS-C, Analog (sin/cos)
  • Up to 19 bits resolution
  • High tolerance to EMI, RFI and magnetic fields

Netzer

Netzer VLX-140

  • 140mm diameter
  • SSI, BiSS-C
  • Up to 21 bits resolution
  • High tolerance to EMI, RFI and magnetic fields
Blog:

Deciphering the Ideal Shafted Encoder: Beyond Optical vs. Magnetic

Welcome to a journey through the evolution and application of rotary sensors, with a special focus on magnetic sensing technology as presented by Everight Position, an Advanced Sales Partner of POSITAL products.

SSI Hardware

SSI hardware is fairly simple. Just use any RS-422 transceiver to generate the differential signals from/to the microcontroller port pins. Keep reading to learn about the different implementations of SSI hardware.

TMR: A New Revolution in Magnetic Rotary Encoders

Abstract: Tunnel magnetoresistance (TMR) sensing is an exciting new chapter for magnetic-based rotary encoders. Requiring less current, while offering higher signal strength, many of the inherent short comings of Hall Effect based sensors can be addressed.

Availability and the Three-Legged Stool analogy at Everight

While they may be small, the role of rotary encoders in spacecraft is vital, demanding a balance between performance, reliability, and the unforgiving environment of space. From NASA’s Robonaut II to automated material handling systems on the International Space Station, Everight has worked with engineers to put rotary encoders into ‘the final frontier.’

Download Now

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