Recently, Oxford Instruments Nanoscience and Zurich Instruments jointly launched a unique sample protection (SampleProtect) measurement system containing electrostatic discharge (ESD) protection, optimized for sample characteristics and photoelectrode experiments.
It ensures that sensitive samples are protected from electrostatic discharge damage throughout the experiment.
Based on extensive measurement experience, this “out of the box” system minimizes the time required to obtain initial experimental results and ensures that sensitive samples are always protected.

The sample protection measurement system can provide:

Wide temperature range from 3K to 300K

High quality weak signal measurement leads, no need to make measurement leads

Fully grounded signal measuring instruments and leads, ground loops do not affect measuring lines

A liquid-free or air-cooled compressor with a cold head that is completely liquid-free

Standard application:

Low temperature sample characterization

Mesoscopic system research

Superconductivity

Light and matter interaction

Quantum dot

Transport measurement

Advanced application:

Simultaneous measurement of voltage and current

Carrier and sideband measurements (intermodulation) for dual modulation experiments

Impedance characteristics up to 0.05% accuracy (requires MF-IA impedance analyzer option)

Frequency is extended to 5 MHz (requires MF-F5M frequency extension option)

Current to Digital Converter with 60 MSa / s and 16 Bit Resolution (requires MF-DIG Digitiser option)


Titanium Tee

Titanium tee is a type of pipe fitting made from high-performance titanium metal that is used to connect three pipes at a right angle, forming a T-shape. It is commonly used in industries such as chemical processing, oil and gas, and marine engineering, where corrosion resistance, strength, and durability are essential.

One of the key features of titanium tee is its excellent corrosion resistance, which makes it ideal for handling highly corrosive fluids and chemicals. This is due to the natural oxide layer that forms on the surface of titanium, providing excellent protection against a wide range of corrosive substances. As a result, titanium tee can withstand exposure to highly acidic or alkaline solutions, as well as seawater and other corrosive fluids.

Titanium tee also has a high strength-to-weight ratio, which means it can withstand high pressure and stress while remaining lightweight and easy to install. This is especially important in applications where weight is a critical factor, such as aerospace or marine engineering.


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