Coherix, Inc. Product

Predator3D™ Inspection & Process Control

Coherix, Inc.

Predator3D provides inline 100% robust 3D inspection and autonomous process control of adhesive and sealant bead dispensing. It tells you how much volume is dispensed at any location at any instantaneous moment.

Image of Predator3D™ Inspection & Process Control

Predator3D provides inline 100% robust 3D inspection and autonomous process control of adhesive and sealant bead dispensing. It tells you how much volume is dispensed at any location at any instantaneous moment. Predator3D bead inspection, mounted around the nozzle, is equipped with four high-speed 3D sensors, providing a 360° 3D view of the bead in any dispensing direction with no added complexity to robot programming or additional cycle time. Embedded with Coherix proprietary solution software, Predator3D bead inspection provides real-time 3D information on bead width, height, volume, location and detects and repairs skips or neck-downs with no external computer needed. Predator3D bead inspection is not affected by part color or ambient lighting changes, providing robust operation even in “black-on-black” or “gray-on-gray” situations where 2D techniques fail.

Coherix Predator3D in-line 3D machine vision for dispensing applications inspects adhesive, sealant, thermal paste, urethane, glue and RTV height, width, volume and location. It provides real-time, robust 3D information on the quality of the dispensed bead with 100% part traceability. Predator3D enables value-added process control features: +Auto Repair™ – automatically repairs gaps and neck downs with no human intervention +LocationMaster™ – locates a part in 3D space and sends offset...

Other Products from Coherix, Inc.

Predator3D GlassMaster Pro for Urethane Inspection Image

Predator3D GlassMaster Pro for Urethane Inspection

Coherix Predator3D GlassMaster Pro provides a complete in-line, robust 3D inspection of high-profile glass urethane bead height, width, volume and position. GlassMaster Pro enables customers to increase yields while avoiding false rejects and optimize their overall dispensing.