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 SERVICES

Amara Raja Design Alpha provides a complete Life Cycle product development services. The services are absolutely flexible, so that  customers can  select the required services, enter and exit at any stage of this life cycle. ARDA gets aligned and remain a complementing expert house to the clients, in fact act as their extended R&D team.

Design

The design phase in product development is a critical stage where the conceptual ideas generated in earlier phases are transformed into detailed plans, specifications, and prototypes. This phase is focused on creating a clear and actionable roadmap for the product's development.

Proto build

In the product development process, the proto build phase, short for "prototype build," is a crucial step that involves the creation of physical prototypes or mock-ups based on the detailed design developed in the earlier design phase. This phase is essential for testing and validating the design, identifying any potential issues, and ensuring that the product functions as intended.

Pilot build

the pilot build phase is a crucial step that occurs after successful prototyping and design phases. This phase involves producing a limited number of units of the product, often referred to as "pilot units" or "pre-production units." The primary purpose of the pilot build phase is to test and validate the entire manufacturing process and supply chain before full-scale production begins.

Commercial product

The commercial product phase is where all the planning and preparation from earlier stages come to fruition. The successful launch and sustained production of the product are the ultimate goals in this phase. Continuous monitoring, quality control, and responsiveness to market feedback are essential to ensure the product's success in the marketplace.

Compliance testing

Compliance testing in the design phase is essential to avoid costly design changes and delays later in the product development process. Ensuring that a product complies with relevant standards and regulations from the outset not only reduces the risk of non-compliance issues but also helps establish a foundation for a successful product launch.

Reliable testing

Reliability testing in the design phase is essential for identifying and addressing potential product weaknesses before mass production. It helps ensure that the final product meets customer expectations, operates safely, and minimizes the risk of unexpected failures in the field.

Concept

In product design, the concept section is a crucial phase where the initial ideas and creative concepts for a new product are developed and refined. This phase sets the direction for the entire design process.The chosen concepts are then further developed, detailed, and refined in subsequent phases, ultimately leading to the creation of a final design that can be prototyped, tested, and manufactured.

Proof of concept

A Proof of Concept (PoC) is a crucial step in both electronic and mechanical design processes. It involves creating a prototype or a small-scale model to demonstrate the feasibility and functionality of a design concept before committing to full-scale production.

SERVICES OFFERED

  1. Translational research and develoment

  2. Product engineering

  3. Holistic design

  4. Life-cycle support

Concept to Product Development

  1. Cost reduction possibilities

  2. Obsolence management

  3. Re-engineering

  4. Adding features and functionalities

Value Added Value Engineering

  1. Automated test jigs and fixtures to suit volume manufacturing

  2. Robotic arms

  3. Jigs and fixtures for reliability ecaluation

Development of Test Jigs and fixtures

  1. 3D printing

  2. Vacuum casting

  3. Complex electronic assembly

Pilot production & Low/Medium Volume Manufacturing

  1. Manufacturing in domain-certified facilities

  2. Packaged devices

High volume Manufacturing

  1. Translational research and develoment

  2. Product engineering

  3. Holistic design

  4. Life-cycle support

Concept to Product Development

1

  1. Automated test jigs and fixtures to suit volume manufacturing

  2. Robotic arms

  3. Jigs and fixtures for reliability ecaluation

Development of Test Jigs and fixtures

3

  1. Cost reduction possibilities

  2. Obsolence management

  3. Re-engineering

  4. Adding features and functionalities

Value Added Value Engineering

2

  1. 3D printing

  2. Vacuum casting

  3. Complex electronic assembly

Pilot production & Low/Medium Volume Manufacturing

4

  1. Manufacturing in domain-certified facilities

  2. Packaged devices

High volume Manufacturing

5

  1. Translational research and develoment

  2. Product engineering

  3. Holistic design

  4. Life-cycle support

Concept to Product Development

1

  1. Manufacturing in domain-certified facilities

  2. Packaged devices

High volume Manufacturing

5

  1. Cost reduction possibilities

  2. Obsolence management

  3. Re-engineering

  4. Adding features and functionalities

Value Added Value Engineering

2

  1. 3D printing

  2. Vacuum casting

  3. Complex electronic assembly

  4. Mould Design

Pilot production & Low/Medium Volume Manufacturing

4

  1. Commitment to Society

  2. Support for Startups

  3. Personalized Interactions

Mentoring 

6

  1. Automated test jigs and fixtures to suit volume manufacturing

  2. Robotic arms

  3. Jigs and fixtures for reliability ecaluation

Development of Test Jigs and fixtures

3

ESDM  SOUTIONS

  1. Translational research and develoment

  2. Product engineering

  3. Holistic design

  4. Life-cycle support

Concept to Product Development

1

  1. Automated test jigs and fixtures to suit volume manufacturing

  2. Robotic arms

  3. Jigs and fixtures for reliability ecaluation

Development of Test Jigs and fixtures

3

  1. Manufacturing in domain-certified facilities

  2. Packaged devices

High volume Manufacturing

4

  1. 3D printing

  2. Vacuum casting

  3. Complex electronic assembly

Pilot production & Low/Medium Volume Manufacturing

5

  1. Commitment to Society

  2. Personalized Interactions

  3. Support for Startups

Mentoring 

6

  1. Cost reduction possibilities

  2. Obsolence management

  3. Re-engineering

  4. Adding features and functionalities

Value Added Value Engineering

2

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