Smart Motorized Drawbridge
Product Code : SCL-PLE-10504
The Smart Motorized Drawbridge from Lab Glassware Manufacturer is a STEM and engineering laboratory model used for demonstrating bridge movement, motorized lifting, gear transmission, and basic automation control principles. Manufactured and exported from Ambala, Haryana, India since 1982, Lab Glassware Manufacturer supplies this drawbridge model to school and college engineering and robotics labs in India and to institutional buyers in Senegal, Ivory Coast, Mali, and Guinea as part of ongoing supply to Francophone West Africa.
Quick answer: The Smart Motorized Drawbridge is a scaled engineering model of a lifting drawbridge, driven by a motor and gear transmission, used to teach mechanical advantage, gear ratios, and basic automation control concepts in STEM and engineering practicals. It is supplied as a standard STEM engineering model by Lab Glassware Manufacturer; no independent certification is claimed unless separately confirmed in writing.
| Specification | Detail |
| Product Name | Smart Motorized Drawbridge |
| Brand | Lab Glassware Manufacturer |
| Category | Physics Lab Equipment > Engineering Models > Motorized Automation Model |
| Function | Demonstrates motorized lifting, gear transmission, and automation control via a scaled drawbridge model |
| Standards / Certifications | No product-specific certification claimed; add only if verified by datasheet, inspection report, or compliance document |
| Intended Users | Schools, colleges, STEM labs, engineering training centres, distributors, and institutional buyers |
| Indicative Price (India) | Request current indicative market benchmark, incl. GST, for the specific quantity and grade required |
Teaching Mechanical Advantage and Automation with a Drawbridge Model
A motorized drawbridge model gives students a tangible, working example of mechanical advantage: the gear transmission between the drive motor and the bridge deck lets a relatively small motor lift a much heavier structure slowly and under control, illustrating the same principle used in real lifting bridges, cranes, and elevators. Because the model also includes basic motor control, it serves as an accessible introduction to automation concepts before students move on to more complex robotics projects, such as those built around the Static Kit Gripper for Robots. Power supply requirements and control interface (manual switch versus programmable controller) should be confirmed for a specific listing before ordering, since these can vary between model revisions.
Frequently Asked Questions
What does the Smart Motorized Drawbridge teach?
It demonstrates mechanical advantage through gear transmission, motorized lifting, and basic automation control using a scaled drawbridge model.
Is the drawbridge controlled manually or automatically?
Control method (manual switch or programmable controller) can vary between model revisions, so this should be confirmed with Lab Glassware Manufacturer at the time of order.
Does this model carry an independent certification?
No product-specific certification is claimed for this model. Any certification or compliance document should be verified directly with Lab Glassware Manufacturer before being relied on.
Can Lab Glassware Manufacturer supply this for export or bulk institutional orders?
Yes. Lab Glassware Manufacturer manufactures and exports STEM and engineering lab equipment from Ambala, Haryana, and can quote indicative FOB/CIF pricing for institutional and export orders on request.
Related Products
Static Kit Gripper for Robots — another STEM robotics and automation accessory from the same catalog.
Load Cells with Amplifier (4 pcs) — a compatible force-sensing accessory for mechanism-based demonstrations.
Roller Coaster Complete Equipment — another mechanics and engineering demonstration model.
Request a Quote
For indicative pricing, export documentation, or tender-compliant quotations for the Smart Motorized Drawbridge, contact Lab Glassware Manufacturer via the Contact Us page or submit requirements through the Lab Tender page.
Last updated: September 2026
