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CIS - Closed Ion Source Gas Analyzers

CIS

CIS Series Residual Gas Analyzers With better than 1 ppm detection limit, direct sampling at mTorr pressure, and a user-friendly Windows software package, the CIS systems will s...

品牌: Stanford Research Systems价格: 面议服务区域: 全国

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CIS - Closed Ion Source Gas Analyzers

CIS Series Residual Gas Analyzers With better than 1 ppm detection limit, direct sampling at mTorr pressure, and a user-friendly Windows software package, the CIS systems will satisfy your most demanding applications. On-line process monitoring and control, verification of process gas purity at the point of use, high-vacuum residual gas analysis, and process equipment leak checking are some of the areas where these systems will prove indispensable. RGA Software Download RGA Windows (legacy software) RGA Python Driver RGA Basics Ethernet Adapter Manual PPR Gas Analyzer RGA Gas Analyzer PPM100 RGA Monitor CIS Series Closed Ion Source Analyzers Gold Plated Ionizer X Gold Plated Ionizer CIS Gas Analyzer The probe consists of a quadrupole mass spectrometer with a CIS ionizer mounted inside a 2.75" Conflat ® Tee. The control unit mounts directly on the probe’s feedthrough flange and contains all the necessary electronics for operating the instrument. The side port of the CIS nipple provides a connection for the differential pumping system that keeps the quadrupole, filament and detector at high vacuum. The system can be connected directly to a process chamber through its standard CIS mounting flange (2.75" CF). The unit is self-aligning, with a simple, robust design. You can clean and reassemble the probe, and replace the filament and electron multiplier in the field, without ever calling the factory. The entire ionizer is made of gold-plated stainless steel. This reduces outgassing and background signals in the ionization region, improves the long-term stability and permits operation while exposed to reactive and corrosive gases. A Tungsten filament is used, which resists corrosive and reactive gases like WF 6 and silane, and leads to extended lifetime. The closed (gas tight) design of the ionizer prevents commonly interfering species from backstreaming into the ionization volume. This produces peaks free of spectral overlap. A Choice of Detectors The CIS series analyzers come standard with both a Faraday cup detector (10 ppm detection) and a continuous dynode electron multiplier (1 ppm detection). The software allows you to easily switch between detectors. Electron Multiplier X CIS Electron Multiplier CIS Gas Analyzer CIS Electron Multiplier The CIS systems can also be used in a so-called "RGA mode". In this mode, the unit has a lower minimum detectable partial pressure, but a lower maximum operating pressure as well. The RGA mode isused, for example, in the first stage of a sputtering process when the chamber is evacuated to a low pressure, and the quality of the vacuum is checked for leaks and harmful contaminants. The unit can then be switched to a CIS mode for sampling directly at higher pressure. Complete Programmability A standard RS-232 interface is provided along with a complete programming reference. All probe parameters can be controlled and monitored, and data can be acquired for use in custom applications. Analog Mode X Analog Mode CIS Gas Analyzer The CIS systems are supported with a real-time Windows software package that runs on PCs. The intuitive graphical user interface allows measurements to be made quickly and easily. The program is fully interactive, giving the user complete control of the graphical display. Screens can be split for dual-mode operation, scales can be set to linear or log format, and data can be scaled manually or automatically. Data is captured and displayed in real-time or scheduled for acquisition at a given interval for long-term data logging. Features include user-selectable units (ppm, Torr, mbar, Pa and A), programmable audio and visual alarms, and comprehensive, on-line help. The software allows complete CIS head control with easy mass scale tuning, sensitivity calibration, ionizer setup, and electron multiplier gain adjustment. For further analysis, data files can be saved in ASCII format for easy transfer into spreadsheets. Graphic images can be saved as META files or copied to the clipboard for importing into other Windows programs. The software also provides password protection for locking out head parameters so that casual users can’t alter important settings. An optional stand-alone monitor ( PPM100 ) can be used to control the RGA without a host computer. Pressure vs. Time X Pressure vs. Time CIS Gas Analyzer Multi-Head Operation The software supports multiple head operation when more than one CIS is needed. Up to eight ECUs can be monitored from the software. Pumping Requirements The CIS instruments require connection to a pumping system with an effective pumping speed of at least 40 L/s and a base pressure of less than 10 -9 Torr . The connection port is a 2.75" Conflat ® flange. Option O100TDP provides a turbo pump which mounts directly to the CIS head along with a diaphragm roughing pump. When this option is ordered the entire analyzer is assembled, tested, and calibrated at the factory. Users can provide their own pumping station; however, it is the user's responsibility to ensure that the pumping system does not damage or limit the performance of the instrument. Affordable Performance Library Mode X Library Mode CIS Gas Analyzer The SRS CIS systems offer state-of-the-art performance for a fraction of the cost of competing models. Standard systems include Faraday cup detector, electron multiplier detector and Windows software. Options include built-in power module for AC line operation, and a pumping package that includes a turbomolecular pump and diaphragm pump. CIS Dimensional Drawing Electron emission current (mA) Electron energy (eV) Extraction voltage (V) Sensitivity (A/Torr) (for N 2 @28 amu) Linear range upper limit (Torr) 1. The CIS tests were performed with a 70 L/s hybrid turbomolecular pump, backed by a diaphragm pump, attached to the side port of the CIS Cover Tee. 2. The RGA mode sensitivities reported were calculated for N 2 at less than 10 -5 Torr. 3. The CIS mode sensitivities were calculated for N 2 at 1 to 5 × 10 -4 Torr. 4. MDPP (minimum detectable partial pressure) is determined by measuring baseline levels for Faraday cup detection in the presence of 28 N 2 at 10 -5 (RGA mode) and 10 -3 Torr (CIS mode). Up to 3 orders of magnitude improvement in detectability is possible when the electron multiplier is turned on. CIS Series Specifications Faraday cup and electron multiplier

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