PVH-2022 PRECISION VIRTUAL HYGROMETER | ||||||||||||||||||||||
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General Description
The Model PVH-2022 Precision Virtual Hygrometer uses the chilled-mirror principle to determine the absolute humidity of any gas in terms of its dew or frost-point temperature. It provides fully automatic measurements and is the first instrument to harness the processing power of the personal computer (PC) to provide flexibility in data collection, presentation, and analysis. The PVH-2022 converts a PC into a complete humidity analysis system and includes a mirror inspection microscope, flow gauge, and graphical display software. System Configuration The PVH-2022 consists of a two stage chilled mirror hygrometer sensor, a PCI plug-in control card that inserts in an empty slot in your PC, and a LabVIEWâ interface program that runs in the Windowsä environment. This configuration maximizes the display, processing, and connectivity capabilities of your PC. Other 2022 series instruments are available for environments where a computer may not be practical or desirable. System can be equipped with optional pressure and temperature sensors. Features The PVH-2022 system offers all the benefits of a chilled-mirror hygrometer plus the flexibility of a virtual instrument:
Applications Two stage chilled mirror hygrometers are used to measure humidity in industrial, laboratory, and process-control applications to ensure product quality and safety as well as ensure cost savings. Common applications include:
Principle of Operation The measurement of the water vapor content of a gas by the dew-point technique involves chilling a surface, usually a metallic mirror, to the temperature at which water at the mirror surface is in equilibrium with the water vapor pressure in the gas sample above the surface. At this temperature, the mass of water on the surface is neither increasing (too cold a surface) nor decreasing (too warm a surface). This equilibrium temperature defines the saturation temperature for the water vapor in the gas. From this dew-point temperature, all other representations of the absolute humidity of the gas can be determined. With the additional measurements of the temperature and pressure of the gas, all other reporting forms for the humidity of the gas can be determined, including the wet bulb temperature and parts per million. ![]() In the chilled-mirror technique, a mirror is constructed from a material with good thermal conductivity such as silver or copper and properly plated with an inert metal such as iridium, nickel, or gold to prevent tarnishing and oxidation, and then chilled by means of a thermoelectric cooler until dew begins to form. A beam of light, typically from a light emitting diode, is aimed at the mirror surface and a photodetector monitors the amount of light reflected from the surface. As the gas sample flows over the chilled mirror, dew droplets begin to form on the mirror surface, and the reflected light becomes scattered. As the amount of reflected light decreases, the photodetector output also decreases. This in turn controls a thermoelectric heat pump that maintains the mirror temperature at the dew point. A precision miniature platinum resistance thermometer (PRT) properly embedded in the mirror monitors the mirror temperature at the established dew point. Important advantages of chilled-mirror hygrometers over all other humidity sensors The chilled-mirror dew-point hygrometer has at least five distinct advantages over all other humidity sensors:
The PVH-2022 is the most significant advancement in chilled mirror hygrometry since the advent of thermoelectric cooling.
Important advantages of the 2022 series over all other chilled-mirror hygrometers The YES 2022 two stage chilled mirror hygrometer series represents the state-of-the-art in dew point hygrometers. The following features are not available in other chilled-mirror hygrometers:
The Virtual Instrument Concept
control several devices through one user interface. Separate bulky control boxes, power supplies, strip-chart recorders, and cables are not required and need not clutter your work area. Moreover, the data is already in the PC where you need it¾ interfacing is not required. In addition, custom user interfaces for integration with existing systems may be created using the supplied LabVIEW drivers. The PVH-2022's control card is a 3/4 length PCI-type printed circuit card that mounts in a free slot in your MS-Windows 9x/NT PC (Note: your PC must have PCI slots). This card contains all the circuitry for the servo control logic as well as for monitoring the auxiliary dew point, pressure, and temperature sensors. The control card also provides circuits to monitor the contamination level of the mirror and the condition (dew or frost) of the mirror deposit. A wide variety of outputs, analog voltages, as well as digital formats for remote display and/or recording are provided. Two type Form C settable alarm relay contacts are also included for interfacing to control or SCADA systems.
The PVH-2022 hygrometer sensor is mounted on a rugged aluminum bracket equipped with a valve and flow gauge to monitor sample flow rates. An integral fan with filter removes heat from the thermoelectric heat pump, and auxiliary cooling coils are integrated with a finned air heat sink to allow the use of liquid coolants to achieve the maximum capabilities of the instrument. An integrated mirror inspection microscope is provided standard. Mechanical Interface
Specifications
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