India’s heat-pump specialist · 30 years of engineering
Industry & manufacturing

Process hot water to 120 °C, at a quarter of the energy.

Pharma, food, dairy, textiles and laundries. Where a boiler makes 90 °C water at 80% efficiency, a high-temperature heat pump makes it at over 300%.

120 °Cmaximum delivery
3.1COP at 95 °C
Zeroon-site combustion
factory / process plant
The problem

What a boiler is really costing you.

01

Fuel is the smaller half

Diesel and gas cost is visible. Storage, handling, burner service, flue maintenance and statutory inspection are not, until they leave the budget.

02

Waste heat goes up the stack

Most process plants reject heat at the same time they are burning fuel to make it. That is the arbitrage a heat pump captures.

03

Scope 1 emissions are now audited

On-site combustion is the line customers and lenders ask about first. Electrifying process heat removes it entirely.

What we specify

High-temperature plant, integrated into your process loop.

Selection depends on your return temperature far more than your flow temperature — which is why we ask for the loop schematic before quoting.

TT-HT

High-temperature heat pump

Delivery at 80, 95 or 120 °C for CIP, sterilisation, dyeing and washing duties.

80 / 95 / 120 °CCOP to 3.4
See the range →
TT-CM

Base-load DHW plant

Cheaper kWh for the 60 °C portion of the load, cascaded ahead of the high-temperature stage.

14–180 kWcascade duty
See the range →
TT-ST

Buffer & surge storage

Storage that lets the plant run steadily against a batch process that does not.

glass-enamelbatch buffering
See the range →
Also part of the scheme
  • Return-temperature survey, because it sets the achievable COP
  • Waste-heat recovery from chillers, compressors or process reject
  • Cascade arrangement so each stage works in its efficient band
  • Existing boiler retained for peak or steam duties
  • Metering and reporting for Scope 1 and 2 accounting
  • Phased cutover around your shutdown window
Case study

A textile dye house replaced 60% of its boiler load.

Two TT-HT units took the 95 °C wash and rinse duty, cascaded behind a TT-CM handling the 60 °C base load. The boiler stayed for steam only, and its fuel bill dropped by three-fifths.

62%less boiler fuel
3.1measured COP at 95 °C
21 mopayback
See more projects
dye house — TT-HT installation
How it goes

From first call to handover.

Industrial schemes start with your loop schematic and a week of logged temperatures.

Step 1

Loop survey

Flow and return temperatures logged across a full production week.

Step 2

Cascade design

Which stage handles which band, and what the boiler keeps.

Step 3

Install

Skid delivery and tie-in planned around your shutdown window.

Step 4

Verify

Metered COP against the design figure, in writing.

Send us a week of loop temperatures.

Flow, return and batch timings. That is enough for us to tell you what a heat pump can realistically take off your boiler.