Precision technologies. Application first.

Start with the engineering requirement.

Not necessarily a part number. Precision optics, position feedback and engineered motion for demanding systems.

Supporting engineering teams in Israel, from development through production.

POG opto-mechanical design illustration
POG / opto-mechanical design
Rotary encoder shown by FLUX
FLUX / position feedback
Frameless rotor and stator shown by Lin Engineering
Lin Engineering / frameless motors

Three technologies.
One system perspective.

The right starting point is the performance you need, the constraints you face and how the technology will integrate.

01
Mounted optical systems selected for prototype to production
POG / series production

POG

Precision Optics

Custom optical systems, precision components and microstructures — considered together with mounting, alignment and metrology.

Explore the technology
02
FLUX GMI angle encoder rings
FLUX / GMI angle encoder

FLUX

Encoder for Precision Position Feedback

FLUX absolute encoders for precision position feedback: GMI encoders, inductive angle encoders and OEM integration for equipment developers. Maximum absolute output resolution reaches 25 bits in the GMI-ANGLE family; select resolution by model.

Explore the technology
03
Lin Engineering DriveCore housed motors
Lin Engineering / DriveCore

Lin Engineering

Engineered Motion

Frameless motors and configurable motion platforms for integration-led semiconductor, medical and robotics projects.

Explore the technology
Opto-mechanical design illustration from the POG optical-systems website
POG / opto-mechanical design

Precision Optics / custom optical systems

From an optical requirement to an assembled system.

Custom development or manufacture to your drawings. Bring optical design, mechanical integration and acceptance evidence into the same brief.

Explore optical systems

News and meetings.

Follow POG, FLUX and Lin Engineering updates, or plan a conversation at an exhibition.

Built around your application.

Explore the markets
01
Colourful semiconductor chip pattern
Semiconductor application / Jason Leung, Unsplash

Semiconductor Equipment

Define imaging or illumination function, spectral range, alignment and contamination constraints.

Explore the application
02
Robotic joint illustration shown by FLUX
FLUX / application illustration

Robotics & Automation

Explore frameless integration around space, joint loads, duty cycle and heat removal.

Explore the application
03
Robot technology concept
Medical robotics concept / AI-generated, Pixabay

Medical & Surgical Systems

Define optical function, spectral range, space constraints and inspection criteria.

Explore the application
04
F-16 aircraft illustration
Aerospace application / Pixabay illustration

Defence, Aerospace & Security

Discuss imaging, alignment, packaging and the required verification evidence.

Explore the application

From requirement to a route forward

Make the engineering conversation useful.

  1. 01
    Define the requirement

    Share the function, performance targets, interfaces and environment.

  2. 02
    Explore the technology

    Consider a component, an integrated assembly or a custom development route.

  3. 03
    Confirm the fit

    Review feasibility, acceptance criteria and production needs with the relevant manufacturer.

Bring us the requirement.
We’ll start there.

Discuss your application