Präzise Temperaturführung für die additive Fertigung

Einleitung

Die additive Fertigung, besser als 3D-Druck bekannt, ist eine aufstrebende Anwendung, die in der Fertigung immer mehr neue Einsatzmöglichkeiten eröffnet. Ursprünglich hauptsächlich für die schnelle Herstellung von Prototypen eingesetzt, wird der 3D-Druck heute auch für das Digitalisieren von Arbeitsabläufen und die Herstellung hochqualitativer Endprodukte eingesetzt. Es gibt viele verschiedene 3D-Druckmethoden für die konstruktive Erschaffung eines gewünschten Objektes.




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Additive Fertigung

in den 1990er-Jahren war er nur für die Herstellung von Prototypen von Teilen geeignet. Dank verbesserter Materialauswahl, Präzision und Wiederholbarkeit wird die Technologie heute häufig zur Herstellung von Endprodukten und zur Digitalisierung von Arbeitsabläufen eingesetzt. Beim 3D-Druck wird eine Kunststoff- oder Metallschmelze mit einem Laser schichtweise aufgetragen, wodurch ein stabiles dreidimensionales Bauteil entsteht.

Quality & Enviromental,Health & Safety Policy

Our quality mission is to build up and maintain high quality standards and a zero-defect culture in order to exceed customer satisfaction and provide reliable products for demanding applications across medical, analytical, industrial, transportation and telecommunications markets. This is our company quality policy. 

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Refrigeration Systems for Reagent Storage

Introduction

Reagents are essential for laboratory and medical testing. Reagent materials are used to detect the presence or absence of a substance, or to test if a specific reaction occurs. Thermal control is vital to preserve reagent materials, which can degrade over time when stored at improper temperatures. When they are kept at room temperature, reagents may become contaminated by microbial growth, which affects test integrity. Reagents can also be negatively affected at low temperatures if they undergo multiple freeze-thaw cycles. 




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Prototype Thermoelectric Cooler Requirements Form

If you are looking for a custom thermoelectric cooler we will ask you to fill out the specifications in this Prototype Thermoelectric Cooler Requirements form. These specifications, including cooling capacity, size constraints, and available input voltage, are taken into consideration when designing your thermoelectric cooler.

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Nextreme™ Compressor-Based Chillers User Manual (German - Deutsch)

The Nextreme™ Recirculating Chiller is a refrigeration-based chiller designed for precise and reliable temperature control of equipment. It can be used in several user applications such as medical, analytical instrumentation, industrial and semiconductor. This family of compressor-based chillers offer different configurable options for pumps selection, coolant flow control, supply pressure monitoring and filtering. This chiller also uses a semi-closed system for low coolant maintenance.

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Laird Thermal Systems Company Brochure

Laird Thermal Systems has more than 50 years of experience in the design, manufacture and servicing of thermal management solutions with millions of installations in operation today. We offer the most diverse product family in the industry and provide services that simplify and accelerate customer product development cycles. This brochure provides an overview of our products, services and application expertise.

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Thermoelectric Cooler Options

Laird Thermal Systems’ offers solid-state thermoelectric coolers with a wide range of sealing and finishing options for maximum performance in your application. In this brochure you will find all available options for our Thermoelectric coolers. All our products are made with high-grade ceramics and semiconductor materials, resulting in Best-in-Class quality performance solutions.

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