Automated test systems & industrial control

Techtiq Automation

Giving precision engineering a digital presence as rigorous as the systems themselves.

techtiq.co.in
An automated appliance performance testing system inside a precision laboratory

01 / The brief

Make deep engineering capability easy for technical buyers to navigate and trust.

Techtiq’s work spans mechanical design, electrical control, instrumentation, PLC programming, software, validation, commissioning, and support. The challenge was to show that complete capability without burying visitors in specifications—and to make thirteen specialised test platforms feel like one coherent engineering practice.

02 / The thinking

Organise the story around decisions engineers already need to make.

We led with the intersection of technology and technique, then moved from credibility signals into the company’s engineering principles, product families, delivery lifecycle, and customer experience. Standards, applications, measured outcomes, and system names remain visible, while the page keeps one consistent commercial action: discuss the requirement.

03 / What this enables

A technical catalogue that also works as a confident business introduction.

The finished experience gives laboratories and manufacturers several useful entry points: understand Techtiq’s capability, browse the test-system portfolio, review its end-to-end process, or start with a specific method ready to automate. Technical substance and usability reinforce each other rather than compete for attention.

Current live visual system

What the project looks like now.

A closer view of the imagery and experience language currently published across Techtiq Automation.

Automated performance test equipment in a controlled industrial laboratory
The opening visual establishes precision engineering, instrumentation, and connected control as one integrated system.
Refrigerator performance testing system in the Techtiq product portfolio
Product imagery shows the real testing environment and the measurement infrastructure surrounding each appliance.
Washing machine performance testing system with instrumentation and controls
Laundry systems make the relationship between appliance, controlled inputs, instrumentation, and operator data immediately legible.
MCCB force testing panel built by Techtiq Automation
The MCCB platform extends the story beyond appliances into guarded, automated electrical-component testing.

Experience architecture

From test method to commissioned system

The experience mirrors Techtiq’s connected engineering lifecycle, keeping requirements, hardware, controls, measurement, and operator use aligned from the first conversation onward.

  1. 01
    Define

    Map the standard, process, facility, and performance requirement

  2. 02
    Design

    Engineer mechanics, electrical controls, instrumentation, and software together

  3. 03
    Integrate

    Build, program, and validate for repeatable operation

  4. 04
    Support

    Commission on site, guide operators, and retain technical context

Engineering footprint

Precision, made operational

A focused portfolio of appliance and electrical-component test platforms, supported by industrial automation and full-system integration capability.

Platforms
13
Standards
IEC / BS EN / IS
Engineering since
2017

What we shaped

A connected system, not a collection of screens.

01

A credible technical position

A proposition that connects standards-led precision, industrial automation, and long-term system reliability without relying on generic engineering language.

02

A scalable product portfolio

Thirteen systems organised by application, appliance category, measurement purpose, and specification detail so the range can grow without losing clarity.

03

One connected enquiry path

Product exploration, delivery process, and customer-support content all lead naturally toward a requirement-led technical conversation.

Visit Techtiq Automation

The client experience

How we worked together.

The client experience was structured around engineering clarity: make the standard, requirement, responsibilities, and next decision visible before the system design becomes complex.

  1. 01

    Begin with the requirement

    We treated standards, test methods, process constraints, and operator needs as the starting material for the story rather than presenting a generic list of capabilities.

  2. 02

    Connect every discipline

    Mechanical, electrical, controls, instrumentation, and software content were reviewed as parts of one operating system so the digital narrative reflected how Techtiq actually engineers.

  3. 03

    Make the portfolio comparable

    Product families were shaped around consistent information—application, performance focus, system type, and next action—without forcing unlike test systems into identical detail.

  4. 04

    Carry context through handover

    Commissioning, operator guidance, technical support, and future system needs remain part of the experience, showing that the relationship continues beyond delivery.

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