Advanced Liquid Cooling for Rheometers

 

Introduction

Rheometers are scientific instruments used for studying the stress-strain relationship of polymers, fluids, and other soft materials to understand their flow/deformation properties. Rheometers are applied in a wide range of applications, such as in the development of new materials, quality control, and process optimization. Any rheometer that operates at elevated temperatures or measures temperature-dependent material properties requires a cooling system to maintain a precise temperature during testing.

Eco-Friendly Temperature Stabilization Solutions for OEMs’ Climate Action Goals

Introduction

At Laird Thermal Systems, we are committed to eco-friendly solutions for temperature stabilization for demanding applications across global medical, analytical, industrial, transportation, and telecommunications markets.

Older compressor-based systems often use high global-warming potential (GWP) HFC refrigerants like R134a and R404A. New industry requirements are moving away from the use of such refrigerants due to their environmental impact. New government restrictions on traditional and natural refrigerants are central to compressor-based systems.

Laird Thermal Systems Commits to Sustainable Principles with SBTi-Endorsed Emissions Goals


October 16, 2023Laird Thermal Systems, a global leader in thermal management solutions, is proud to announce the official approval of its greenhouse gas emissions reduction targets by the Science Based Targets initiative (SBTi), with levels required to meet the goals of the Paris Agreement. This significant achievement underscores Laird Thermal Systems’ unwavering commitment to Environmental, Social, and Governance (ESG) principles and responsible business practices.




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Electronic Enclosure Cooling Thermoelectric vs. Compressor-Based Air Conditioners

Introduction

Air conditioners utilizing thermoelectric coolers are often considered as an alternative to conventional vapor-compression systems for enclosure cooling. Because a thermoelectric cooler is compact, robust, and completely solid-state, the inherent reliability of such a system is attractive to engineers and end-users alike. However, there is an inherent reluctance to choose a thermoelectric-based system due to preconceptions about energy efficiency or lack of experience with thermoelectrics.

How to make the Laird Thermal Systems Wizard your Thermal Wizard

Introduction

Engineers of all disciplines more frequently need a Thermal Wizard, someone who can solve their heat dissipation or critical thermal management problems. If you need a Thermal Wizard or you are that Thermal Wizard that coworkers count on, then you are familiar with the more common issues associated with solving unanticipated or sudden thermal management problems.

Alternative Refrigerants for 21st Century Laboratories

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Laird Thermal Systems Technical Paper
by Greg Ducharme, Product Director, Liquid Cooling Systems

Cooling Particle Accelerators: Linear Accelerators and Cyclotrons

Introduction

Particle accelerators, such as linear accelerator (LINAC) and cyclotron systems, increase the kinetic energy of particles for use in a variety of applications, ranging from scientific studies on particle physics to radiation therapy for cancer patients. Particle accelerators, like most sensitive medical and laboratory equipment, are negatively affected by thermal variations, specifically an increase in heat. Temperature control of vital particle accelerator system components is critical for operational integrity, performance accuracy and system reliability.

DA-020-12-02

The DA-020-12-02 is a thermoelectric based air conditioner designed to temperature control small chambers used in analytical and medical diagnostic instruments. The unique design offers premium fans pushing air across-high density heat sinks to minimize the number of air flow paths required to operate. The design utilizes custom thermoelectric modules to maximize cooling capacity with a high coefficient of performance. Moisture resistant insulation is used to keep condensation from penetrating the thermoelectric module cavity.


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