scholarly journals Innovation in the Product Development Process

2009 ◽  
Vol 3 (2) ◽  
Author(s):  
T. KraMer

The objective of this study is to show a methodical product development process that is infused with innovative elements in strategic locations, which facilitates product quality, technical breakthroughs, speed to market, and how this method can create a system of development involving all stakeholder groups. This process fosters an understanding of advantageous times for ideation activities and reiteration activities to occur. Due to a lack of industry knowledge and practice regarding design, the sub-categorization of steps in this process will lead to understanding of the tasks, costs and timeframes involved in the design phases. The intention of this process definition is also to build an understanding of which functional groups should be involved in research, ideation and design, and develop an understanding of how these groups should collaborate, and which should be responsible for certain product decisions. Although many similarities exist among current development methods, common misconceptions and process deficiencies are prevalent. Innovative aspects of the process are commonly misunderstood, and are often completely lacking or applied at an inefficient juncture of the process. Other times evaluation and research phases are left incomplete, leaping directly to the mechanical development process phase. This causes earlier steps to be done after engineering work is underway, which creates inefficiencies in the process. There is also evidence of a large gap of misunderstanding about what the nature of the design phase really is, which causes it to be left out of the process altogether or ill-applied during the process. We conducted an examination of current studies and process information from medical device companies and evaluated them for the exclusion or placement of key innovative elements. Common similarities were discovered, and a modified development process description was created with the inclusion of elements useful for optimizing innovation and reducing redundancy. Some of the detrimental commonalities include a lack of detail in the research and ideation phases of the process, the tendency for companies to skip around in the process and impeding the ability to hit critical dates, and involving groups and disciplines in the process at incorrect times which stifles innovation and causes bottlenecks. The revised process involves designers in evaluation, research, marketing, engineering, validation and production, finding that it pulls all groups together, linking them to a single process. We found that this model of product development can provide results that will improve performance and acceptance of new medical devices, while increasing innovation and help to uncover breakthrough concepts. Key factors in this process include the practice of planning innovation into the process in the proper places; having a design team involved in all phases to increase product quality; and expending sufficient effort in the highly misunderstood areas of the process. It is also shown that success is achieved if product decisions are made around design criteria derived from the process, with a design team involved in making these decisions. Continued iterations must occur during the appropriate phases, and when the process is followed, bottlenecks are removed, streamlining takes place, innovation can occur, and customer needs are more fully met in the product, increasing overall product quality and launch success.

2021 ◽  
Vol 1 ◽  
pp. 51-60
Author(s):  
Peter Welzbacher ◽  
Gunnar Vorwerk-Handing ◽  
Eckhard Kirchner

AbstractThe importance of considering disturbance factors in the product development process is often emphasized as one of the key factors to a functional and secure product. However, there is only a small number of tools to support the developer in the identification of disturbance factors and none of them yet ensures that the majority of occurring disturbance factors is considered. Thus, it is the aim of this contribution to provide a tool in form of a control list for the systematic identification of disturbance factors. At the beginning of this contribution, the terms “disturbance factor” and “uncertainty” are defined based on a literature review and different approaches for the classification of uncertainty are presented. Subsequently, the fundamentals of multipole based model theory are outlined. Moreover, a first approach in terms of a control list for a systematic identification of disturbance factors is discussed. Based on the discussed approach and taking the identified weaknesses as a starting point, a control list is presented that combines the existing basic concept of the control list with the fundamentals of multipole based model theory.


2011 ◽  
Vol 331 ◽  
pp. 603-606
Author(s):  
Chun Sheng Wu ◽  
Qiao Ying Wu

The objective of the research was to redesign generic process of the apparel product development adopted in Chinese apparel enterprises currently by comparing and analyzing several important models. The revised apparel retail product development model by Wickett, Gaskill and Damhorst, Kunz’s taxonomy of the apparel merchandising system, and the no-interval coherently phased product development model for apparel (NICPPD) by May-Plumlee and Little were analyzed. The key factors of product development process that need to be improved were anylized according to the NICPPD model. The end result was the redesigned process of apparel product development.


2021 ◽  
Vol 23 (07) ◽  
pp. 659-666
Author(s):  
Basankar Vikas ◽  
◽  
Dr. S. P. Metkar ◽  
Manoj Mane ◽  
Bhuvaneshwar Kanade ◽  
...  

In every product development industry, automation plays a key role in increasing the throughput of the company and providing better planning in product development and improved product quality. It is very necessary to find a solution to interdependencies during the product development process. During simulation-based analysis of a product, it is required that the need for actual hardware of the product is to be eliminated. Because of this, the functionality of the actual hardware can be analyzed by using software using simulations. If simulations of different products are running, the data is to be exchanged between different simulations effectively. It can be considered as simulating data exchange, as it is implemented in the hardware form. A proper and suitable method is to be used to have this goal achieved. This paper will address the integration approach for application code simulations or programs that are built to perform specific tasks.


2000 ◽  
Vol 64 (2) ◽  
pp. 1-14 ◽  
Author(s):  
Rajesh Sethi

New product quality has been found to have a major influence on the market success and profitability of a new product. Firms are increasingly using cross-functional teams for product development in hopes of improving product quality, yet researchers know little about how such teams affect quality. The author proposes and tests a series of hypotheses regarding how new product quality is affected by team characteristics (functional diversity and information integration) and contextual influences (time pressure, product innovativeness from the firm's perspective, customers’ influence on the product development process, and quality orientation in the firm). The findings reveal that quality is positively related to information integration in the team, customers’ influence on the product development process, and quality orientation in the firm. New product quality is negatively influenced by the innovativeness of the new product from the firm's perspective. However, information integration mitigates the negative effect of innovativeness on quality. Quality orientation weakens the relationship between information integration and quality. Time pressure and functional diversity do not have any effect on product quality.


Author(s):  
Jonathan Hey ◽  
Jonathan Yu ◽  
Alice M. Agogino

This paper addresses two major challenges new product development teams face in making a product people want. The first challenge is to frame the design situation based on a real need of a customer. The second challenge is to get everyone on the team in agreement about what that framing is — everyone needs to be on the same page about what it is they’re doing. Yet these two challenges are not independent, they are intertwined with each other, connected by the concrete research and sharing activities the teams perform. We introduce a framework to help understand the path of a design team along these two dimensions as well as illustrations of the three most common paths observed among graduate multidisciplinary new product development teams as supported by interviews and survey data. These case studies form the basis of four themes to help teams navigate the new product development process.


Author(s):  
Andrea CAPRA ◽  
Ana BERGER ◽  
Daniela SZABLUK ◽  
Manuela OLIVEIRA

An accurate understanding of users' needs is essential for the development of innovative products. This article presents an exploratory method of user centered research in the context of the design process of technological products, conceived from the demands of a large information technology company. The method is oriented - but not restricted - to the initial stages of the product development process, and uses low-resolution prototypes and simulations of interactions, allowing users to imagine themselves in a future context through fictitious environments and scenarios in the ambit of ideation. The method is effective in identifying the requirements of the experience related to the product’s usage and allows rapid iteration on existing assumptions and greater exploration of design concepts that emerge throughout the investigation.


Sign in / Sign up

Export Citation Format

Share Document