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Electronique grand public

2020-02-27 hqt

Development speed and a well-designed, user-centric final product are critical to the success of companies launching consumer and computer electronic products and devices to different markets. Technology-enabled manufacturing processes can accelerate design cycles, lower development costs, and help support more SKUs and product customization that consumers now demand. From airplanes to automobiles to hospitals, electronics can be found nearly everywhere delivering value through advanced features and improving user experiences.


Why kaitomould  for Development of Consumer and Computer Electronic Components?

Automated Quoting

Save days or weeks of development time with automated quoting and design feedback within hours, oftentimes faster.

Rapid Injection Molding

Quickly scale from prototyping to low-volume production and be first to market with quick-turn plastic injection molding, overmolding, and insert molding.

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Functional Prototyping

Quickly iterate and improve early designs with 3D-printed or machined prototypes made in production materials.

Mass Customization

Leverage low-volume production capabilities to offer more customization options that customers demand.

Onshoring

Simplify your supply chain with a domestic manufacturing partner that can produce functional, end-use parts within days and provide a bridge to production.


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HP Slashes Design Cycle Time with Rapid Manufacturing

The tech giant used injection molding to trim development time from months to weeks for its next-generation printers. While developing its next-generation inkjet printer, HP turned to Protolabs’ injection molding service to slash design cycle time from a standard, six- to eight-week timeframe to just 15 days.

What Materials Work Best for Consumer and Computer Electronic Components?

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ABS. This reliable thermoplastic is widely used in industries like consumer electronics. It brings general-purpose performance for parts like electronics enclosures and handheld devices and is also relatively inexpensive.
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Aluminum.This material can be machined or formed through sheet metal fabrication to create housings, brackets, or other metal parts that need high strength and low weight are required.
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Élastomères. Disponible en impression 3D et en moulage par injection, choisissez parmi plusieurs matériaux élastomères pour les pièces nécessitant une résistance aux chocs ou une flexibilité. Le surmoulage est également disponible pour les composants et les produits dotés de poignées, boutons ou poignées ergonomiques.
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Polycarbonate. Ce thermoplastique solide et extrêmement résistant aux chocs présente un faible retrait et une bonne stabilité dimensionnelle. C'est un plastique transparent qui est disponible dans des qualités optiquement claires, qui fonctionne bien pour les couvercles et boîtiers transparents.

APPLICATIONS COMMUNES

Nous avons plusieurs capacités au sein de nos services et processus destinés aux industries de l'électronique grand public et informatique. Quelques applications courantes incluent:

  • Boîtiers
  • Agencements
  • Consoles
  • Dissipateurs de chaleur
  • Boutons
  • Poignées
  • Lentilles
  • Boutons
  • Commutateurs
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