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Differential Quartz Crystal Microbalance
Dike
During an experiment to detect an affinity reaction on biological material, a molecule of interest is attached to the quartz crystal of the measurement channel, this deposition can be achieved by direct binding or by capture through another protein, the result of this process is to make the quartz sensitive to the molecule to be detected.
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Time-Resolved Electrochemical Quartz Crystal Microbalance
400C Series
The quartz crystal microbalance (QCM) is a variant of acoustic wave microsensors that are capable of ultrasensitive mass measurements. Under favorable conditions, a typical QCM can measure a mass change of 0.1-1 ng/cm2. QCM oscillates in a mechanically resonant shear mode under the influence of a high frequency AC electric field which is applied across the thickness of the crystal. Figure 1b below shows an edge view of a QCM crystal undergoing oscillatory shear distortion. The central portions of the top and bottom of the crystal are coated with a typically disk-shaped thin metal film (e.g., gold).
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Quartz Crystal Microbalance
QCM200
Stanford Research Systems, Inc.
The QCM200 Quartz Crystal Microbalance measures mass and viscosity in processes occurring at or near surfaces, or within thin films. This system includes a controller, crystal oscillator electronics, crystal holder, three quartz crystals, and Windows / Mac software.
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Flow Cell Kit
QCMT
The quartz crystal microbalance (QCM) technique under electrochemical frequency is very useful to determine many compounds such as metal proteins, metal ions and thiol-conjugated oligonucleotides.
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EQCM Electronic Quartz Crystal Microbalance
Elettra
Elettra has been designed to operate on its own, but it is also possible to connect it to a PC to control it and acquire, view and save data thanks to its extremely easy to use software that runs under MS-Windows™. The data acquisition process can be controlled extremely quickly thanks to the PLAY, PAUSE and STOP keys.
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Open-Source Quartz Crystal Microbalance
The sensor is a surface sensitive quartz crystal capable of measuring phenomena at molecular scale. It works in vacuum, air and liquid environments. The QCM sensor is based on the piezoelectric properties of the quartz crystal. The application of an alternating current causes the mechanical vibration of the quartz crystal in the MHz range. The QCM technique measures the variations in quartz frequency for measuring the mass variations on its surface.
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Moisture Analyzer Series
3050
The 3050 series of moisture analyzers utilizes AMETEK’s proven, accurate quartz crystal microbalance (QCM) technology. Built-in verification provides operators with increased measurement confidence.
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Quartz Crystal Microbalance
Determining moisture concentration in natural gas, industrial gases or process gas is critical to many applications. QCM and electrolytic analyzers deliver fast, reliable and cost-effective measurements that support these processes.
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Nanogravimetric Measuring Instrument
EUREKA
Eureka is a QCM / EQCM (Quartz Crystal Microbalance) nanogravimetric measuring instrument capable of mass measurements in the order of nano-grams and pico-grams. Eureka can be used with gas and liquids, the cells are made by BioAge and sold with the instrument. The tool is the most versatile among those existing on the market, with an excellent quality / price ratio. It is a portable instrument as it is powered only by the PC USB port.
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Quartz Crystals
Quartz crystal resonators are used in a wide range of electronic applications that require timing devices. The quality of the quartz crystal blank is critical to the performance of quartz crystal units and the high Q factor of quartz means that tight stabilities can be achieved; this is key to ensuring microprocessor timing circuits work correctly within customer’s designs.
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Electro-Optic DSTMS Crystals
DSTMS and other high-quality organic crystals are produced and optically prepared in the facilities of Rainbow Photonics in Switzerland.
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QUARTZ
Quartz – Time Tracking for Jira is a product of QARA Enterprise. It’s an advanced time-tracking tool that extends the power of Jira by adding powerful time management capabilities. The add-on supports powerful time reports, painless time entry, custom attributes, approval process and more. It is available for download on the Atlassian Marketplace.
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RF & Microwave Crystal Oscillators
A Crystal Oscillator is an oscillator which uses the resonance property of a quartz crystal to create an electric signal at a particular frequency. Compare Crystal Oscillators from the leading manufacturers on everything RF. Select a type and then use the parametric search tool to narrow down on a list of products from multiple manufacturers. Compare products, Download datasheets and get quotations.
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Quartz Charge Force Rings
Ring-style sensor configurations measure dynamic compression. Tension measurements are also possible if the unit has been installed with proper pre-load.
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Crystals
Abracon offers quartz crystals in a variety of package size options, frequencies and performance conditions such as industrial and automotive grade.
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Quartz Crystall Oscillators
Superior crystal oscillator precision is required for both time and frequency in precision instrument applications such as synthesizers, counters and spectrum analyzers.
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Quartz ICP® Links
Link-style sensors measure dynamic compression and tension. They are constructed using a force ring that is under compressive pre-load between threaded mounting hardware. The threaded mounting on both ends of the sensor supports integrated link-style installations. Versions offering full-scale measurements of 10 lb to 50k lb (45 N to 220k N) compression and 30k lb (130k N) tension are available.
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3-Component Quartz Force Rings
260 Series
Three-component quartz force ring sensors are capable of simultaneously measuring dynamic force in three orthogonal directions (X, Y, and Z). They contain three sets of quartz plates that are stacked in a preloaded arrangement. Each set responds to the vector component of an applied force acting along its sensitive axis. 3-component ring force sensors must be statically preloaded for optimum performance. Preloading provides the sensing elements with the compressive loading required to allow the proper transmission of shear forces. Versions are available with ranges up to 10k lb (45k N) in the z-axis (perpendicular to the top surface), and up to 4000 lb (18k N) in the x-and y (shear) axes. Both ICP® and charge output styles are available.
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Temperature Compensated Crystal Oscillators
Temperature Compensated Crystal Oscillators by Pasternack
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Temperature Compensated Crystal Oscillators
TCXOS & VCTCXOS
Temperature Compensated Crystal Oscillators (TCXO) deliver excellent temperature characteristics combined with low power consumption and fast warmup. Voltage Controlled Temperature Compensated Crystal Oscillators (VCTCXO) combine the same excellent temperature characteristics, low power consumption and fast warmup with a voltage control function to allow precise tuning of the output frequency after PCB assembly and later, to compensate for any effects of aging as well as offering the ability to pull back to nominal frequency where there is a change of circuit conditions
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3-Component Quartz Force Links
261 Series
Three-component force links eliminate the preload requirement of 3-component quartz force ring sensors, and offers a convenient, 4-screw hole mounting plate on each side end the sensor. Quartz 3-component force links are constructed by installing a 3-component force ring sensor, under preload, between two mounting plates.
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Phase-Locked Crystal Oscillator
PLXO Series 0.9” x 0.9” x 0.25”
*Compact Surface Mount Package *Excellent Phase Noise and Stability *Configurable for any application
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General Purpose Quartz Force Sensors
General purpose force sensors are offered in either stud or axial mounted configurations. They are internally pre-loaded and can be used for dynamic compression, tension, and impact force measurements. Tapped mounting holes on both ends of the radial connector style support link, platform, integrated link, and free-standing installations. The axial mounted type offers protection of the electrical connector and sensor cable from potential damage during drop testing and in free-standing installations. Supplied impact caps facilitate impact and drop force measurements.
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Electro-Optic OH1 Crystals
OH1 and other high-quality organic crystals are produced and optically prepared in the facilities of Rainbow Photonics in Switzerland.
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2- and 4-Mirror Floating Zone Crystal Furnaces
IR Image Furnace
The high-performance, compact IR Image Furnace from Quantum Design offers unsurpassed performance in a convenient, stand-alone design. Rivaling much larger and more costly IR furnaces, it uses the Floating Zone (FZ) method to promote single crystal growth from a polycrystalline rod. This method has been shown to be extremely effective for a wide class of materials. Now, more easily than ever before, you have the ability to synthesize superior quality single crystal specimens in your own laboratory. This furnace is available in both 2- and 4-mirror versions.
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Miniature Quartz Force Sensors
Often the test engineer will try to take low level measurements with a sensors not rated for these low levels. Due to insufficient sensitivity the resulting data may be noisy, hard to analyze or unusable. Using the appropriately sized and ranged PCB Miniature Quartz Force Sensor solves the problem and gives reliable data at a Low Amplitude level. The miniature sensor configuration permits low-amplitude, dynamic compression, tension, and impact force measurements.
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Quartz ICP® Force Rings
Ring-style sensor configurations measure dynamic compression. Tension measurements are also possible if the unit has been installed with proper pre-load. The through-hole mounting supports platform, integrated link, and support style installations using either a through-bolt or the supplied stud.
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Quartz Impact Force Sensors
Impact-style sensors are specifically designed for impact force measurements. The sensor is typically mounted in a free-standing manner with the installed impact cap directed toward the oncoming object with which it will collide.