Agilent Turbo-V 2300 TwisTorr. The new molecular-drag Technology

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Agilent Turbo-V 2300 TwisTorr The new molecular-drag Technology

The new molecular-drag technology What is TwisTorr 2010 presents the new TwisTorr molecular drag technology based on its well-known hybrid Turbo Molecular Pump design, introducing a spiral drag section that achieves unmatched performance in both pumping speed and compression ratio in the most compact space available. New state-of-the-art electronics complete this industry leading Turbo Molecular Pump innovation 2003 With the Turbo-V 2K-G Varian, now Agilent, introduces a fully integrated Turbo pumping system 1996 Introduction by Varian of microprocessor-based on-board controller units: Navigator line Agilent TwisTorr Technology* Pumping effect is created by a spinning rotor disk which transfers momentum to gas molecules. Gas molecules are forced to follow spiral groove design on the stator. The specific design of the channel ensures constant local pumping speed and avoids reverse pressure gradients, minimizing power consumption. (*) US Patents applications 12/343961 and 12/343980, 24 Dec. 2008. Space Saving Design Centrifugal pumping action Centripetal pumping action 1991 Varian introduces a new hybrid type Turbo Molecular Pump: one monolythic rotor provides both high speed (Turbo stages) and high foreline tolerance (MacroTorr stages) Use of ceramic ball bearings with life-time lubrication using a proprietary dry solid lubricant 1986 Varian begins collaboration with Elettrorava for technology and knowhow transfer Our rotor is based on the proven Agilent monolithic rotor design which positions the TwisTorr Stator between two smooth spinning disks and therefore exploits the pumping action by both disk surfaces in series. The double-sided spiral groove design on the TwisTorr stators combines centripetal and centrifugal pumping action in series, greatly reducing the size of the drag section. 1980 Introduction of ceramic ball bearing technology Compound Turbo Molecular Pumps appear, combining a Turbo section with a Drag section 1970 Snecma design commercialized by Elettrorava, with manufacturing based in Turin, Italy 1965 First prototype of axial flow turbo pump (Snecma), with open thin blades Compression ratio Compression ratio for N 2 of a single TwisTorr stage can increase up to a factor of 100 with respect to a MacroTorr stage of the same space and rotor speed, without reducing foreline tolerance and pumping speed. This design is the basis for modern TMP technology 1960 Theoretical basis for the pumping mechanism of axial flow impeller (Shapiro and Kruger, MIT) 1,0E+03 TwisTorr stage 1958 First Turbo Molecular pumps developed using experimental design: Macrotorr stage Double-Ended design (Becker), based on a closed cell design using thick rotor and stator blades (this design was abandoned in the late 70s) Axial flow pumping principle, demonstrated in the high vacuum regime (Hablanian) k 1,0E+02 1,0E+01 EArly 1900 First Molecular Drag pumps 1912 W.Gaede 1,0E+00 1,0E-02 1,0E-01 1,0E+00 1,0E+01 1,0E+02 P foreline (mbar) 1922 F.Holweck 1929 M.Siegbahn

Agilent TwisTorr Key features Dedicated UHV solution The new high performing TwisTorr drag stages allow for a 20% reduction in the height and weight of the rotor High foreline pressure tolerance permits the use of a more compact dry fore pump, allowing you to downsize your system and run a fully UHV-compatible solution Rack electronics are ideally suited for research and laboratory environments, and because no electronics are present inside the pump, provide an excellent solution for radioactive applications as well according to our proprietary design. This highly precise process reduces material stress and relaxes the required assembly tolerances compared with a traditional stacked rotor design, in which individual rotor stages are assembled on a shaft. Our proprietary new inverted shaft fitting process reduces stress by 60% compared to traditional fitting. Operating efficiency State of the art rotor design with improved motor efficiency allows delivery of higher vacuum performance with lower heat dissipation inside the pump. A further improvement to average lower running temperatures comes from our improved water cooling system, which uses a double loop stainless steel cooling channel casted inside our pump body. Leading edge performance The new Turbo-V 2300 TwisTorr offers the highest pumping speed in its class for N 2 State of the art TwisTorr technology also creates higher compression ratios for light gases than other large Turbo Molecular Pumps The Turbo-V 2300 TwisTorr is designed for scientific and research applications and is operated with a dedicated full display rack controller TwisTorr allows for very high foreline pressure tolerance, so the pump may be backed by a smaller, cost-effective dry scroll pump like our TS600 Advanced electronics The Turbo-V 2300 solution is comprised of a stand-alone pump and a rack type display controller unit, available in two voltage versions: 110 and 220 VAC Remote control is available through Logical I/O and serial (RS232) connection. Profibus solutions are available on request as well The integrated Purge/Vent device allows for a controlled pump slow down, with a modulated vent procedure in combination with the Stop Speed Reading (SSR) function. The embedded purge gas solution protects bearings against dust and corrosive gases Design for Reliability Vacuum Performance Advanced rotor design in combination with TwisTorr technology has allowed us to reduce the number of pumping stages by 20% compared to conventional designs. The result is a more compact, lighter rotor with improved overall vacuum performance. This compact rotor design also leads to an improved dynamic stability of the rotor and a reduced mechanical load on the suspension. Advanced rotor geometry Our unique monolithic rotor is fully automatically machined out of one single piece of advanced high strength aluminum alloy Clean maintenance-free vacuum Modern research and scientific applications require the cleanest vacuum solution. For these applications we offer our unique UHV compatible Turbo Molecular Pump design. In our Turbo Molecular Pumps no suspension components are exposed to the UHV side of the system and there are no permanent magnetic bearings that could disturb the experimental chamber. Our high-precision ceramic ball bearings are both installed on the fore vacuum side of the pump and permanently lubricated with our unique proprietary solid lubricant characterized by an extremely low vapor pressure. This solution is absolutely maintenance free and allows for installation of the pump in any orientation. Our Turbo Molecular Pumps contain no free oil for bearing lubrication, thereby eliminating the need for refills and eliminating the risk of vacuum chamber contamination.

VENT PURGE Agilent Turbo-V 2300 TwisTorr rack Technical Specifications Compression ratio Vs Foreline Pressure Pumping Speed Ordering Information Pump 969-6000 AgILenT Turbo-V 2300 TwisTorr ISO250f Rack 969-6001 AgILenT Turbo-V 2300 TwisTorr Cff12 Od Rack Controllers* 969-9539 AgILenT Turbo-V 2300 Rack Controller 120V 969-9540 AgILenT Turbo-V 2300 Rack Controller 220 V 969-9962 AgILenT Turbo-V 2300 Pump-Controller Cable kit, 5mt (*): Please note that Rack Controllers do not include the Pump-Controller Cable Kit Accessories 969-9958 mains cable nema Plug, 3m long 969-9957 mains cable european Plug, 3m long 969-9144 Center-ring ISO250 969-9350 Inlet screen din ISO 250 // Cff12 AISI 969-9348 Water cooling kit for 6x8 (IdxOd) flexible tube 969-9338 Water cooling kit for 3/8 in. Id flexible tube Vacuum Performances Pumping speed for N 2 (*) 2050 l/s Pumping speed for He (*) 1800 L/s Pumping speed for H 2 (*) 1500 L/s Compression ratio for N 2 >8 x 10 8 Compression ratio for He 8 x 10 5 Compression ratio for H 2 4 x 10 4 Base pressure* 10-10 mbar (7.5 x 10-11 Torr) (**) (with recommended forepump) Max foreline pressure for N 2 4 mbar Inlet flange ISO 250f, Cff 12 O.d. foreline flange Kf 40 nw Other Nominal rotational speed 33300 rpm Start-up time without gas load < 6 minutes and with the recommended forepump Minimum recommended forepump TriScroll 600 Operational position Any Operating ambient temperature +5 C to +35 C Bakeout temperature 120 C (Cff), 80 C (ISO) Max rotor temperature 120 C Vibration level (displacement) < 0.01 μm at inlet flange Lubricant Permanent lubrication Cooling requirements Water Coolant water Recommended flow: 200 l/h Temperature: +15 C to +30 C Pressure: 3 to 5 bar (45 to 75 psi) Noise level <60 db(a) at 1 meter Storage temperature -20 C to +70 C environment protection IP54 Weight kg (lbs) ISO 250: 54.2 (119.5) Cf 12 : 55.3 (121.9) (*): WITHOUT InLeT SCReen (*): According to standard din 28 428, the base pressure is that measured in a leak-free test dome, 48 hours after the completion of test dome bake-out, with a Turbopump fitted with a Cff flange and using the recommended pre-vacuum pump Controller Specifications Input voltage 100, 120, 220, 240 Vac, 1-phase Input frequency 50-60 Hz maximum input power 1300 VA Output voltage 64 Vac Output frequency 555 Hz Output Power starting 560 W maximum Output Power normal 450 W maximum Weight (both models) 12,5 kg (28 lbs) Installation category II Pollution degree 2 Compression ratio Outline Drawing PURGE/VENT VALVES PORT VENT HOLE ON ENVELOPE 30 0' FORELINE KF 40 CONTROLLER CONNECTORS PURGE/VENT VALVES PORT BOTTOM VIEW ISO250F AND CFF 12" 45 Foreline Pressure [mbar] Ø334.90 [13.19] 60 FLANGE ISO 250F 71.63 [2.82] WATER COOLING FOR RUBBER TUBE Ø 9.0 40.00 [1.57] 16.00 [0.63] 275.80 [10.86] 167.00 [6.57] 36.50 [1.44] Pumping speed [l/sec] VENT Ø306.00 [12.05] GND HOLE FLANGE CFF 12" Inlet Pressure [mbar] 213.00 [8.39] 254.50 [10.05] 213.00 [8.39] 128.50 [5.06] 128.50 [5.06] 32.50 [1.28] 54.50 [2.15] 303.80 [11.96] 110.50 [4.35] Dimensions: millimeters [inches] 181.00 [7.13] Ø329.00 [12.95] WATER COOLING Ø329.00 [12.95] FOR RUBBER TUBE Ø 9.0

Agilent Turbo-V 2300 TwisTorr Rack Service & Support Advance Exchange To maximize uptime, and for those occasions where you cannot afford stopping your process, Agilent offers exchange units for advanced shipment, with pumps which are rebuilt to as-new specs and latest revision level. As soon as requested, your order can be processed within 24 hours. Repair Agilent products offer unmatched reliability, performance and cleanliness. Production requirements, however, inevitably create, over time, the need for maintenance and repair. Timely repair at Agilent will keep your products performing at an outstanding level all the time. Upgrade Designed for customers who want replace a unit with a newest technology product. We rebuild these products to asnew specifications, with a full 12-month warranty.level all the time. United States and Canada 121 Hartwell Avenue Lexington, MA 02421 USA Tel.: +1 781 861 7200 Toll-Free: +1 800 882 7426 Fax: +1 781 860 5437 vpl-customerservice@agilent.com Benelux Netherlands B.V. Herculesweg 8 4338 PL Middelburg The Netherlands Tel: +31 118 671570 Fax: +31 118 671569 China (China) Co. Ltd No.3, Wang Jing Bei Lu, Chao Yang District, Beijing, 100102 China Tel.: +86 (10) 6439 7888 Fax: +86 (10) 6439 1318 Toll-Free: 800 820 8266 vpc-customerservice@agilent.com France France 7 avenue des Tropiques Z.A. de Courtaboeuf - B.P. 12 91941 Les Ulis cedex France Tel.: +33 (0) 1 69 86 38 84 Fax: +33 (0) 1 69 86 29 88 vpf.sales@agilent.com Germany & Austria Alsfelder Strasse 6 Postfach 11 14 35 64289 Darmstadt Germany Tel.: +49 (0) 6151 703 353 Fax: +49 (0) 6151 703 302 India India Pvt. Ltd. G01. Prime corporate Park, 230/231, Sahar Road, Opp. Blue Dart Centre, Andheri (East), Mumbai 400 099. India Tel: +91 22 30648287/8200 Fax: +91 22 30648250 Toll Free: 1800 113037 cag_india@agilent.com Italy Italia S.p.A. via F.lli Varian 54 10040 Leini, (Torino) Italy Tel.: +39 011 997 9111 Fax: +39 011 997 9350 Toll-Free: 00 800 234 234 00 vpt.sales@agilent.com vpt-customerservice@agilent.com Japan Japan, Ltd. 8th Floor Sumitomo Shibaura Building 4-16-36 Shibaura Minato-ku Tokyo 108-0023 Japan Tel.: +81 3 5232 1253 Toll-Free: 0120 655 040 Fax: +81 3 5232 1710 vpj-customerservice@agilent.com Korea Korea Ltd. Shinsa 2nd Bldg. 2F 966-5 Daechi-dong Kangnam-gu, Seoul Korea 135-280 Tel.: +82 2 3452 2455 Toll-Free: 080 222 2452 Fax: +82 2 3452 2451 vpk-customerservice@agilent.com Mexico Concepcion Beistegui No 109 Col Del Valle C.P. 03100 Mexico, D.F. Tel.: +52 5 523 9465 Fax: +52 5 523 9472 Singapore Singapore Pte Ltd No.1 Yishun Avenue 7 Singapore 768923 Tel: +65 6215 8045 Fax : +65 6754 0574 Toll-Free: 1 800 2762622 vps-customerservice@agilent.com South East Asia Sales Sdn Bhd Unit 201, Level 2 uptown 2, 2 Jalan SS21/37, Damansara Uptown 47400 Petaling Jaya, Selangor, Malaysia Tel : +603 7712 6106 Fax: +603 6733 8121 Toll-Free: 1 800 880 805 vps-customerservice@agilent.com Taiwan Taiwan Limited 20 Kao-Shuang Rd., Pin-Chen City, 324 Taoyuan Hsien, Taiwan, R.O.C. Tel. +886 34959281 Toll Free: 0800 051 342 vpw-customerservice@agilent.com UK & Ireland UK Ltd 6 Mead Road Oxford Industrial Park Yarnton, Oxford OX5 1QU UK Tel.: +44 (0) 1865 291570 Fax: +44 (0) 1865 291571 vpt-customerservice@agilent.com This information is subject to change without notice, Inc. 2011 Published January 24, 2011 VPD-0211EN