Listen Case Study:
Table of Contents:
Table of Contents
Project Snapshot
Client | Borosil |
| Industry | Industrial / Glass Manufacturing |
| Application | High-Flame Workstation Cooling |
| Units Installed | 2 Symphony Air Coolers |
| Power Consumption | 3 kW (combined) |
| Outcome | Stabilised production; repeat order secured |
Table of Contents
Challenge
Borosil, a well-regarded name in industrial and laboratory glassware manufacturing, was encountering intense heat-related challenges at a specific workstation within their plant. The nature of operations at this station — involving continuous high-flame processes — generated extreme radiant heat that far exceeded comfortable working thresholds. Workers stationed in this zone were experiencing persistent discomfort and irritation, which began to translate into reduced concentration, slower output, and growing dissatisfaction on the floor.
The risk to the business was two-fold: unresolved heat stress could lead to production slowdowns affecting delivery timelines, and prolonged poor working conditions risked worsening workforce morale. Borosil required a targeted, energy-efficient cooling solution capable of withstanding the thermal intensity of a high-flame operating environment.
Solution
After evaluating the workstation’s thermal profile and spatial constraints, Symphony Venti Cool recommended the installation of two high-efficiency air coolers, strategically positioned to maximise cooling coverage at the affected zone. The selected units were chosen specifically for their combination of high cooling output and low power consumption — drawing only 3 kW in total, making them economically viable for continuous industrial operation.
Placement was optimised to direct cool airflow precisely at the worker positions, countering the radiant heat from the high-flame equipment. The installation was completed with minimal interference to Borosil’s ongoing production schedule, ensuring no additional downtime was incurred during deployment.

Performance
Following installation, workstation temperatures dropped to comfortable operational levels. Workers at the high-flame station reported immediate relief from heat-induced discomfort, and supervisory observations confirmed a clear improvement in worker focus and task execution pace. The cooling units operated consistently within the high-heat environment without performance degradation, validating their suitability for thermally demanding industrial applications.
With a combined power draw of just 3 kW, the units demonstrated strong energy efficiency relative to the cooling output delivered — an important factor for Borosil’s operational cost management. The system required no significant post-installation adjustments and continued to perform reliably across extended shifts.
Result
The introduction of Symphony’s air coolers successfully stabilised the workstation environment at Borosil. Production levels returned to target, and worker satisfaction at the previously problematic station improved noticeably. Borosil’s management expressed confidence in Symphony’s ability to deliver practical, cost-effective solutions for challenging industrial conditions. The positive outcome has positioned Symphony Venti Cool as a trusted cooling partner for Borosil, with repeat orders for future projects anticipated.
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