Overhead Bridge Crane
KOŞU GRUP LIFTING SYSTEMS

Overhead Bridge Crane

Overhead bridge cranes are engineered as single or double girder systems according to span, runway level, capacity, lift height, duty and process flow.

MANUFACTURER + SERVICE + SPARE PARTS

Not a one-off sale, but technical support across the equipment lifecycle.

Koşu Grup combines engineering, manufacturing, installation, commissioning, maintenance, breakdown support, modernisation and parts within one manufacturer-led workflow.

1992manufacturing and field experienceFirst-party field footage

Manufacturer-led approach

New systems, refurbishment, service and parts are reviewed within one engineering and manufacturing workflow.

Technical part-to-system matching

Matching uses nameplate, dimensions, voltage, interfaces, capacity and operating conditions rather than part name alone.

Lifecycle service continuity

Maintenance, breakdown, modernisation and spare parts are considered throughout the equipment lifecycle after installation.

Evidence-led technical proposals

Real site and technical data are used instead of unverified claims about stock, certificates, capacities or brand authorisations.

Real manufacturing and field footage

Manufacturing, installation, mechanical inspection, panels, controls and commissioning are supported by first-party footage.

Project-specific engineering review

Where standard parts are insufficient, manufacturing or adaptation can be technically assessed from dimensions, samples and duty conditions.

VERIFIABLE MANUFACTURER CONFIDENCE

Not claims, but technical data and a real workflow.

Koşu Grup defines quotation and service scope from equipment data, site conditions, manufacturing/application steps and final checks. Availability, capacity and compatibility are technically verified for each enquiry.

REAL EVIDENCE LAYERExplore real manufacturing and field footage

Workshop and field footage, technical content and service routes are connected within one information architecture.

Real Videos
KOŞU GRUP TECHNICAL DECISION CENTRE

Clarify product selection, faults, refurbishment and technical enquiries in one flow.

Use short questions to reach the right product or service family and transfer the result into a technical enquiry. It provides verifiable preliminary engineering direction, not a final calculation.

01

Crane & hoist pre-selection engine

Use capacity, motion, duty, headroom and environment to identify the first product family.

This tool is not a final engineering selection or fault diagnosis. Site, nameplate, dimensional and duty data must be verified by the technical team.
PRODUCT OVERVIEW

Select the system by operating scenario, not just product name.

Overhead bridge cranes are engineered as single or double girder systems according to span, runway level, capacity, lift height, duty and process flow.

The correct configuration is not determined by rated load alone. Load geometry, centre of gravity, cycle count, lifting distance, horizontal travel, environment and service access should be reviewed in one technical picture.

KEY FEATURES
Single or double girder configuration
Project design based on span and capacity
Bridge, trolley and lifting motions
Installation, commissioning and service plan
DESCRIBE THE REQUIREMENT CLEARLY

The same requirement may be described in different terms.

These phrases may describe the same technical requirement. Relevant links lead to the most useful selection, pricing, service, parts or fault page.

Single/double girder layout, span, hook height, bridge/trolley travel, supporting structure and duty are reviewed together.

APPLICATIONS

The right arrangement for the process.

01

Factories

02

Steel service centres

03

Machinery manufacturing

04

Logistics facilities

ENGINEERING DECISIONS

What we clarify before quotation.

Clear definition of capacity, duty and site conditions supports better decisions for both investment and service life.

Capacity

Maximum and typical load, allowance and load geometry.

Motion

Speed needs for lifting, bridge, trolley and slewing.

Site

Span, level, power, structure, floor and environment.

Operation

Shift, cycle, operator and maintenance scenario.

FREQUENTLY ASKED QUESTIONS

Short answers specific to this page context.

01What information is required for a crane or hoist quotation?+

Maximum load, lifting height, horizontal travel, span, operating frequency, power supply, site photographs and installation location help determine the correct system.

02Can a quotation be prepared without a site survey?+

A preliminary quotation can be prepared from basic data. A site survey is recommended when the supporting structure, runway, floor, power or installation conditions affect the project.

03Do you provide maintenance and repair for existing cranes?+

The scope is technically reviewed after receiving the system type, capacity, brand/model, fault symptoms and site location.

04How are spare parts matched?+

Labels, serial data, capacity, photographs, dimensions and connection details are used to identify a suitable part.

05Do you support projects across Türkiye?+

Manufacturing and service coordination from Istanbul is planned across Türkiye according to project scope, schedule and location.

06Does Koşu Grup serve all of Türkiye?+

Yes. Project data can be collected remotely, while manufacturing, shipping, installation and service are planned nationwide according to scope and site conditions.

07Does Koşu Grup manufacture for international projects?+

International manufacturing and project enquiries are accepted. Country, power supply, site dimensions, delivery model, installation and documentation are clarified during quotation.

08Do calculator results constitute engineering approval?+

No. The tools prepare enquiry data. Capacity, structure, duty class, dynamic effects and safety require authorised engineering verification.

09What faults are covered by 24/7 technical service?+

Initial assessment and service coordination cover hoists, bridge and gantry cranes, controls, brakes, limits, motors, travel, power feeds, chain/rope and spare-part faults.

10Which photos help an RFQ?+

Equipment labels, full system, runway/beam, hook area, panel, pendant, fault point and safe-distance site views accelerate assessment.

11How is crane maintenance frequency defined?+

Manufacturer instructions, use intensity, environment, load spectrum, fault history and legal requirements are reviewed together.

12Can an old crane be modernised?+

A scope can be defined after reviewing structure, mechanics, brakes, limits, controls, motors, gearboxes, power supply and spares availability.

13How are spare parts identified?+

Make/model, serial and capacity labels, dimensions, connectors, mounting, photos and existing part codes are compared together.

LET’S DISCUSS YOUR PROJECT

Share the load, dimensions and site. We will help define the technical path.

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