Flexterity Robotics
Industrial robot workcell with a camera and parts for computer vision automation

Industrial computer vision and robot automation

Automate the industrial work that delivers the most value.

Flexterity Robotics helps identify the right tasks, then builds practical computer vision, robot guidance, and automation systems from workflow review through feasibility and prototyping to pilot, rollout, and ongoing improvement.

What we do

Defined engagements that move from opportunity to implementation.

Flexterity is built for the stage where a generic product is not enough, but the workflow is valuable enough to automate. The goal is a working path: what to automate, what to build, what can fail, and how to get to a useful system.

Automation Opportunity Review

Review a station, line, or workflow to identify the highest-value automation targets and the practical path to implement them.

Vision Feasibility Sprint

Test whether cameras and models can reliably count, track, detect, or inspect the parts, packages, labels, or defects that matter.

Automation Pilot Build

Build the first working version of a computer vision, robot guidance, or workflow automation system for a scoped industrial task.

Vision entry points

Computer vision systems for tasks that already cost time, labor, or quality.

Counting

Parts, packages, trays, bins, inventory, rejects, and other repeatable visual quantities.

Tracking

Movement, dwell time, line flow, handoffs, bottlenecks, and process timing.

Detection

Parts, tools, labels, SKUs, missing items, safety issues, and workflow states.

Inspection

Visual defects, packaging errors, assembly mistakes, contamination, and misalignment.

Systems

Autonomy and vision work across cameras, robot arms, and ground robots.

Computer Vision

Object detection, counting, tracking, segmentation, 3D reconstruction, camera calibration, and inspection pipelines.

Robot Arms

Manipulation, grasping, motion planning, robot guidance, visual perception, task execution, and recovery behavior.

Ground Robots

SLAM, localization, navigation, obstacle avoidance, route execution, mapping, autonomy evaluation, and deployment data capture.

Robot autonomy consulting

Robot autonomy implementation for teams building real systems.

Flexterity also supports robotics companies, integrators, and automation teams with autonomy architecture and hands-on implementation across perception, mapping, planning, manipulation, and deployment. Expertise includes object detection and segmentation, 3D perception, SLAM, navigation, obstacle avoidance, path planning, grasping, task execution, evaluation, and data capture.

Perception and Scene Understanding

Object detection, segmentation, tracking, 3D perception, camera calibration, and perception pipelines for robot decision-making.

Mapping, Navigation, and Planning

SLAM, localization, navigation, obstacle avoidance, path planning, task planning, recovery behavior, and autonomy stack integration.

Manipulation and Task Execution

Robot guidance, grasping, manipulation workflows, motion planning, task execution, evaluation, data capture, and deployment-readiness gaps.

Good fit signals

The best automation targets are repeated, measurable, and valuable enough to justify action.

The task runs often enough for automation to matter.

The current process depends on repetitive visual judgment or manual handling.

Photos or video can show the workflow, parts, constraints, and failure modes.

A scoped feasibility result would help justify implementation or unblock an internal project.

Approach

Prove the automation path before committing to full deployment.

01

Observe

02

Rank ROI

03

Prototype

04

Pilot

05

Instrument

06

Improve

Our process reduces risk step by step: choose the right workflow, validate the approach, build a working system, and improve it with real operating data.

Start with the workflow

Have a workflow that should be automated?

Send a short process description, photos, or video. Flexterity can help identify the highest-value automation target and build the next step, whether that is a feasibility sprint, prototype, pilot system, rollout plan, or autonomy implementation.