UK support for component feeding projects
01844 617223sales@sortationsolutions.co.uk
Automated component feeding line with vibratory feeders and inline tracks in a production environment

Linear vibratory feeding · UK project support

Keep every component moving in the right direction.

Linear vibratory feeders and precision tracks engineered to transfer, buffer and present oriented parts reliably at the point of assembly, inspection or packaging.

Application inputPart · orientation · rate · interface
01Part-led engineering

Track geometry developed around representative production components.

02Controlled accumulation

Buffer length and queue behaviour matched to the downstream cycle.

03Defined hand-off

Sensors, stops and escapements designed with the receiving machine.

04Proven before delivery

Trial and acceptance criteria agreed around the real operating condition.

A stable bridge between orientation and the machine cycle.

A linear feeder receives components from a bowl, step, centrifugal or other presentation system and moves them along a purpose-designed track while preserving the accepted orientation.

The track can also create a controlled queue, isolate upstream variation and hold enough correctly presented parts for the downstream process to continue through short feeder interruptions.

Linear feeder: a driven inline track used to convey, buffer, orient or meter components in a controlled path before an automated process.
Vibratory bowl feeder with a tooled track in an industrial assembly settingRepresentative production technology. Final track profile, guarding and controls are application-specific.

Complete feeding sub-systems

From bulk supply to one controlled component at a time.

Linear tracks are commonly integrated with vibratory bowls, step feeders, bulk hoppers, controls, support frames and guarding. Treating the path as one system makes it easier to manage replenishment, recovery and line signals.

Every proposal is based on the component, required orientation, sustainable accepted rate and machine interface—not a catalogue width or headline speed alone.

  • Single-lane and multi-lane track concepts
  • Track-full, low-level and jam sensing
  • Adjustable or change-part tooling where suitable
  • PLC handshakes and downstream-ready signals
  • Support frames, guarding and acoustic treatment
Discuss your component

A practical project route

Define it. Trial it. Integrate it.

01

Application review

Part variants, orientation, rate, environment and receiving-machine details are assessed.

02

Sample trial

Representative components are used to confirm behaviour, contact strategy and likely tooling.

03

Detailed engineering

Track, sensors, controls, frame and machine interface are coordinated as one system.

04

FAT & handover

The agreed test is run, results recorded and installation requirements confirmed.

Common questions

Linear feeder questions, answered.

Practical guidance for an early project review. Final design and performance are confirmed against the actual application.

01What is a linear vibratory feeder?

A linear vibratory feeder uses controlled vibration to move components along a straight, profiled track. It is commonly used to maintain orientation, create accumulation and present parts to an escapement, robot, assembly station or inspection process.

02Is a linear feeder the same as a conveyor?

No. A conveyor normally moves products on a driven belt, chain or surface. A linear feeder typically uses vibration and a component-specific track to preserve orientation or control a queue. The correct technology depends on the part and the required hand-off.

03Can a linear feeder orient components?

It can maintain an orientation created upstream and, in suitable applications, perform additional selection or orientation through track tooling. Complex random orientation is usually handled by a bowl, step, centrifugal or flexible feeding system first.

04How do you choose the track length?

Track length is based on transfer distance, required buffer time, component pitch, queue behaviour, access and available footprint. Longer is not automatically better because excessive accumulation can increase back pressure or instability.

05What information is needed for a quotation?

Send part photographs or drawings, all variants, dimensions and weight, material and finish, target sustained rate, required orientation, available space and details of the downstream machine interface.

Start with the component

Need a stable path to the next machine?

Send a part photo or drawing, the required orientation and sustainable rate. We will help define the right linear feeding approach.

Request an application review
Call 01844 617223