Near 1000 ТЕС models with wide range oftemperature differences and cooling power are availaыe

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2 TERMJDN Near 000 ТЕС models with wide range oftemperature differences and cooling power are availaыe APPLICATIONS R detectors and sensors X-Ray detectors CCDs Lasers and light-emitting diodes Fiber-optic and photonic equipment РС boards and processors Micro chips, electronic packages Scientific instruments And lots of other electronic and photonic applications ADVANTAGES lncreased temperature difference Reduced input power Reduced feeding current Economic space requirements lncreased heat flux density Short cool-down time ReliaЫe operation at elevated tem peratu res Coolers with д Т up to 50 С designed to specifications Pb-free Lead free modules are availaыe on request l9wt pofiaf м ю mafre - cientifk upplvd jojt al owt р at,ю cfuvцje jojt owt cшuj.#wt, Thermion 9/, Tenistaya str., Odessa 65009, Ukraine Phone/Fax: (82) , +380 (8) semeniouk@thermion.tenet.odessa.ua

3 Contents Page About Thermion Company Thermion TE coolers 5 Custom Made TE Coolers and Systems 6 Consulting 6 Research and development 6 Assemblies 6 TMC-Series 7 igh Power Density TMC Coolers 8 TMC 0 Single Stage (Standard) 9 TMC 0 Single Stage (Option) 0 TMC 06 Single Stage (Standard) TMC 06 Single Stage (Option) 2 TMC 0 Multi Stage 3 TMC 06 Multi Stage TMC 0 Multi Stage 6 TMC-series Designator Decoding 7 TMB-Series 8 TMB 0 Multi Stage 9 TMB 06 Multi Stage 2 TMB 0 Multi Stage 23 TMB-series Designator Decoding 25 TML-Series 26 TML 0 Single Stage 27 TML 06 Single Stage 28 TML 0 Single Stage 29 TML-series Designator Decoding 3 TLB-Series 32 TLB 0 Multi Stage 33 TLB 06 Multi Stage 3 TLB 0 Multi Stage 35 TLB-series Designator Decoding 36 Ordering Information 37 3

4 About Thermion Company has arisen in 99 on the basis of Scientific Group of Odessa State Academy of Refrigeration, which carried out researches in thermoelectricity since 0. Our staff has over 50 years experience in research, development and manufacturing thermoelectric components and systems. In this period we participated in numerous programs on thermoelectricity supported by the Government of the USSR and Ukraine. Thermion is a leader in developing and producing Peltier micro modules destined for cooling and temperature control of small sized electronic and electrooptic components such as X-Ray detectors, semiconductor lasers, light emitting diodes, IR detectors and charge-coupled devices. Thermion supports its products with extensive design and technical assistance including prompt computerized selection of the most efficient coolers for any specified application. Our theoretical methods and computer programs enable us to make fast and skilled design of optimized thermoelectric coolers having enhanced performance and reduced space requirements. In our manufacturing practice we use selection of semiconductor materials to obtain excellent thermoelectric characteristics. Besides, permanent improvements in technology is the subject of intensive research of our staff. As a result, we have today all the components, which are necessary to produce superior thermoelectric product - adequate theory, efficient computer programs, perfect TE materials and proper technology. With this potential laid by, we are able to offer you high quality, superior performance thermoelectric modules at prices that give you a possibility to be competitive in marketing your own products. Our policy is to satisfy customer's needs regardless of order volume - from a single unit to great commercial batches.

5 TERMION TE COOLERS Thermion introduces several lines of miniature thermoelectric coolers which include single stage and multi stage modules. These coolers are solid state devices which act as heat pumps when DC current is supplied. They can cool or heat depending on the direction of electrical current. The number of available configurations is growing permanently and now over 900 standard sizes are available, cold side being in the range from x to 2x2 mm, maximum current ranging from 0.3 to 5 A, temperature difference - from 75C in single stage to 30C in standard multi stage configurations. The modules utilize superior quality TE materials and ceramic plates which provide full electrical insulation and excellent thermal conductivity. They are ideal for maintaining optimum operating temperature in applications where space and power restrictions predominate. Normally, Thermion modules are assembled with sole 83 C solder. They withstand heating to 75 C and fit for continuous operation at 20 C. The options assembled on lead-free solders with melting point 38, 5, 27 and 230 C are also available. Modules are supplied with junctions diffusion protection, what guarantee reliable continuous operation at elevated temperatures. Thermion permanently improves its products to meet the most refined customer s requirements. As a result, the nomenclature of Thermion coolers is widening permanently, being supplemented with new and improved configurations. Currently we propose you new TLB series of linear cascade modules destined for low temperature cooling of oblong objects. Also the TMB series of cascade modules is supplemented with new models having enlarged cold side dimensions destined for low temperature cooling of large-geometry planar electro-optic components such as multi-element IR matrixes and charge coupled devices. We are also glad to inform our customers that we supplemented our TMC0 and TMB0 series with new high efficient cascades having TE pellets shortened to 0.3 mm, what ensures greatly enlarged cooling power. ADVANTAGES APPLICATIONS Increased temperature difference IR detectors and sensors Reduced input power X-Ray detectors Reduced feeding current igh sensitivity CCDs Economic space requirements Lasers and light-emitting diodes Increased heat flux density Fiber-optic and photonic equipment Short cool-down time PC boards and processors Reliable operation at elevated temperatures Coolers with ΔT up to 50C designed to specifications Micro chips, electronic packages Scientific instruments And lots of other electronic and photonic applications 5

6 CUSTOM MADE TE COOLERS AND SYSTEMS In this catalogue you will find over 900 TEC models with wide range of temperature differences and cooling power. But whatever variety of standard coolers is proposed, the need of new special designs permanently arises due to specific customer requests. We consider our primary strength to be in economical custom TE coolers and systems design and manufacture. Thermion offers a wide spectrum of custom thermoelectric devices: All types of miniature TECs configured to meet specified requirements Unique thermoelectric devices - sub-miniature TECs - high power density TECs - multi stage TECs with ΔT up to 50C - extremely fast response TECs - other thermoelectric devices with limit technical characteristics Modules mounted to headers RESEARC AND DEVELOPMENT Being R&D Company, Thermion participates in many scientific projects. The information about our scientific activity you can find at the section Scientific Efforts at Thermion s Web Site: Considerable theoretical and technological potential, presence of skilled specialists and possession of sufficient computer programs give our company an advantage to work at high scientific level. Please don t hesitate to contact us for solution of any your thermal problem. CONSULTING If you are not sure what TE cooler should be selected or you need custom made device designed to specifications, please address directly to Thermion Company. Our specialists will be glad to assist you in choosing / working out TEC meeting your demands. ASSEMBLIES Assemblies are available based on Thermion modules integrated into standard electronic housings (TO5, TO8, TO3, TO5, TO66, Butterfly) and custom designed packages. 6

7 TMC Series of Single Stage and Multi Stage TE Coolers The TMC series is a line of miniature conventionally configured thermoelectric heat pumps in modular form designed for photonic and electronic applications. The series includes 3 sub-series: TMC0 (single and multi stage), TMC06 (single and multi stage) and TMC0 (multi stage). Each sub-series is fabricated in several versions with TE leg lengths in the range from 0.5 to 2 mm. In such a way a great variety of TECs, covering wide range of temperature differences and heat-pumping capacities, is provided. Due to the use of high efficient TE materials, these modules ensure temperature differences several degrees greater as compared with the best analogous designs available at the market. This Thermion series includes row of new advanced configurations, which are generated as a result of our analysis of the most exquisite customer s demands. Among them is the TMC0 sub-series of cascade thermoelectric micro modules having advantage of reduced current, enlarged voltage and high ΔT. These modules with TE leg length shortened to 0.2 and 0.3 mm, having significantly increased cooling power density, are also available. 7

8 Thermion igh Power Density TE Coolers Thermion represents a new series of extremely short-legged thermoelectric micro modules with greatly enlarged cooling capacity. The units with TE leg length of 0.3 mm are available for cooling high power density electronic and electro-optic components. The use of aluminum nitride ceramic coupled with application of high quality TE materials enables achieving temperature differences as high as those for much larger standard commercial coolers. Another advantage of the modules is extremely short cool-down time. No. of couples (V) Dimensions Top Bottom TMC0-XXX-03 TE leg length 0.3mm eight -. mm (mm available), = A, =70±2 K TMC x x TMC x.8x TMC x.8.8x.8 TMC x.8.8x.8 TMC x6. 6.x6. TMC x6. 6.x6. TMC x8 8x8 TMC x9.6 8x9.6 TMC x x9.6 All the series of TMC0 multi-stage modules with TE leg 0.3 mm long is also available. This gives the advantage of 70% higher cooling capacity as compared with our most powerful standard TECs with TE legs 0.5 mm long. To provide further increase in heat flux density, TE legs shortening is accompanied with their dense packaging. 8

9 TMC0 Series Specification (Single-Stage): STANDARD TMC0-007-XX N=7 Top = Base = AxB = x, = V TMC0-058-XX N=58 Top = Base = AxB = 8x9.6, = 7 V TMC TMC TMC TMC TMC TMC0-0-XX N= Top = Base = AxB = x.8, TMC0-0-5 TMC0-0-2 TMC0-0-0 TMC TMC TMC0-07-XX N=7 Top = Base = AxB =.8x.8, TMC TMC TMC TMC TMC TMC0-023-XX N=23 Top = Base = AxB =.8x6., TMC TMC TMC TMC TMC TMC0-030-XX N=30 Top = Base = AxB = 6.x6., TMC TMC TMC TMC TMC TMC0-08-XX N=8 Top = Base = AxB = 8x8, =.3V = 2 V = 2.8 V = 3.6 V = 5.8 V TMC TMC TMC TMC TMC TMC0-070-XX N=70 Top = Base = AxB = 9.6x9.6, TMC TMC TMC TMC TMC = 8. V Definitions N Number of thermocouples T h ot side temperature Imax Current resulting in greatest T Umax Voltage at Tmax Maximum temperature difference Qmax Maximum cooling power (I =, T=0) Notes All dimensions are given in mm Data shown are for T h =30 o C rated at T=0, at other T cooling power should be defined as Q=Qmax (-T/Tmax) Modules height can be varied on account of substrates thickness TMC0 Series Single Stage Standard TMC TMC TMC TMC TMC All the series of TMC0 single-stage modules is available with 0.3 mm long TE legs. This gives an advantage of 70% higher cooling capacity as compared with the most powerful standard TECs with TE leg length of 0.5 mm. 9

10 TMC0 Series Specification (Single-Stage): OPTIONS TMC0-00-XX N= AxB = x, CxB = x, =0.8 V TMC TMC TMC TMC TMC TMC0-008-XX N=8 AxB = x, CxB =.8x, =0. V TMC TMC TMC TMC TMC TMC0-02-XX N=2 AxB = x.8, CxB =.8x.8, Umax=. V TMC0-060-XX N=60 AxB = 8x9.6, CxB = 9.6x9.6, =7.2 V TMC TMC TMC TMC TMC All the series of TMC0 single-stage (Option) modules is available with 0.3 mm long TE legs. This gives an advantage of 70% higher cooling capacity as compared with the most powerful standard TECs with TE leg length of 0.5 mm. TMC0 Series Single Stage - Option TMC TMC TMC TMC TMC TMC0-08-XX N=8 AxB =.8x.8, CxB = 6.x.8, = 2.2 V TMC TMC TMC TMC TMC TMC0-02-XX N=2 AxB =.8x6., CxB = 6.x6., = 2.9 V TMC TMC TMC TMC TMC TMC0-032-XX N=32 AxB = 6.x6., CxB = 8x6., =3.8 V TMC TMC TMC TMC TMC Definitions N Number of thermocouples T h ot side temperature Imax Current resulting in greatest T Umax Voltage at Tmax Maximum temperature difference Qmax Maximum cooling power (I =, T=0) Notes All dimensions are given in mm Data shown are for T h =30 o C rated at T=0, at other T cooling power should be defined as Q=Qmax (-T/Tmax) Modules height can be varied on account of substrates thickness 0

11 TMC 06 Series Specification (Single-Stage): STANDARD TMC XX N=7, Top = Base = AxB = x, TMC TMC TMC TMC TMC TMC06-0-XX N= Top = Base = AxB = x6, TMC TMC TMC TMC TMC TMC06-07-XX N=7 Top = Base = AxB = 6x6, = V =.3 V = 2 V TMC XX N=58 Top = Base = AxB = 0x2, TMC TMC TMC TMC TMC TMC XX N=70, Top = Base = AxB = 2x2, TMC TMC TMC TMC TMC =7 V = 8. V TMC06 Series Single Stage - Standard TMC TMC TMC TMC TMC TMC XX N=23 Top = Base = AxB = 6x8, =2.8 V TMC TMC TMC TMC TMC TMC XX N=30 Top = Base = AxB = 8x8, TMC TMC TMC TMC TMC TMC06-08-XX N=8, Top = Base = AxB = 0x0, TMC TMC TMC TMC TMC =3.6 V =5.8V Definitions N Number of thermocouples T h ot side temperature Imax Current resulting in greatest T Umax Voltage at Tmax Maximum temperature difference Qmax Maximum cooling power (I =, T=0) Notes All dimensions are given in mm Data shown are for T h =30 o C rated at T=0, at other T cooling power should be defined as Q=Qmax (-T/Tmax) Modules height can be varied on account of substrates thickness

12 TMC06 Series Specification (Single-Stage): OPTIONS TMC XX N= AxB=2x, CxB = x, =0.8 V TMC TMC TMC TMC TMC TMC XX N=8 AxB = x, CxB = 6x TMC TMC TMC TMC TMC TMC06-02-XX N=2 AxB = x6, CxB = 6x6 TMC TMC TMC TMC TMC TMC06-08-XX N=8 AxB = 6x6, CxB = 8x =0. V =. V = 2.2 V TMC XX N=60, AxB = 0x2, CxB = 2x2, =7.2 V TMC TMC TMC TMC TMC TMC06 Series Single Stage Option TMC TMC TMC TMC TMC TMC XX N=32, AxB = 8x8, CxB = 0x8 TMC TMC TMC TMC TMC TMC XX N=50, AxB = 0x0, CxB = 2x0, TMC TMC TMC TMC TMC =3.8V =6 V Definitions N T h Imax Umax Tmax Qmax Notes Number of thermocouples ot side Temperature Current resulting in greatest T Voltage at Maximum temperature difference Maximum cooling power (I =, T=0) All dimensions are given in mm Data shown are for T h =30 o C rated at T=0, at other T cooling power should be defined as Q=Qmax (-T/Tmax) Modules height can be varied on account of substrates thickness 2

13 TMC0 Series Specification (Multi-Stage) 2-Stage TECs 2TMC0-02-XX AxB: x, CxD:.8x.8 Umax=.8 V 2TMC TMC TMC TMC TMC TMC0-039-L AxB:.8x.8, CxD: 6.x6. Umax=V 2TMC TMC TMC TMC TMC TMC0-0-XX NEW! AxB:.8x.8, CxD: 6.x6. Umax=V 2TMC TMC TMC TMC TMC TMC0-059-XX NEW! AxB:.8x.8, CxD: 8x8 Umax=5.5 V 2TMC TMC TMC TMC TMC TMC0-065-XX NEW! AxB:.8x.8, CxD: 8x8 Umax=5.6 V 2TMC TMC TMC TMC TMC TMC0-067-XX NEW! AxB:.8x9.6, CxD: 6.x9.6 Umax=5. V 2TMC TMC TMC TMC TMC TMC0-08-XX (Option 2TMC0-083-XX) NEW! AxB: 6.x6., CxD: 8x9.6 (Option 9.6x9.6) Umax=6.9 V 2TMC TMC TMC TMC TMC All the series of TMC0 multi-stage modules is available with 0.3 mm long TE legs. This gives an advantage of 70% higher cooling capacity as compared with the most powerful standard TECs with TE leg length of 0.5 mm. 2TMC0-093-XX NEW! AxB: 6.x6., CxD: 9.6x9.6, Umax=8.V 2TMC TMC TMC TMC TMC TMC0-0-XX NEW! AxB: 6.x6., CxD: 9.6x9.6 Umax=8.2 V 2TMC TMC TMC TMC TMC Stage TECs 3TMC0-050-XX NEW! AxB:x, CxD: 6.x6. Umax=3. V 3TMC TMC TMC TMC TMC TMC0-070-XX NEW! AxB: x, CxD: 8x8 Umax=5.3 V 3TMC TMC TMC TMC TMC TMC0-88-XX NEW! AxB: x.8 (.8x.8 available), CxD: 8x9.6 Umax=6.5 V 3TMC TMC TMC TMC TMC TMC0-090-L NEW! AxB:.8x.8, CxD: 8x9.6 Umax=6.V 3TMC TMC TMC TMC TMC TMC0-2-XX AxB: x.8 (.8x.8 available), CxD: 9.6x9.6 Umax=8V 3TMC TMC TMC TMC TMC Drawing, notes and definitions the same as for TMC06 multistage series (page 5) 3

14 TMC06 Series Specification (Multi-Stage) 2-Stage 2TMC XX AxB = 2.5x2.5, CxD = x Umax=2 V 2TMC TMC TMC TMC TMC TMC06-00-XX AxB = x, CxD = x Umax=2 V 2TMC TMC TMC TMC TMC TMC06-02-XX MOD AxB = x, CxD = 6x6, Umax=.8 V 2TMC TMC TMC TMC TMC TMC XX NEW! AxB = 6x6, CxD = 8x8 Umax= V 2TMC TMC TMC TMC TMC TMC06-0-XX AxB = 6x6 (x6 available), CxD = 8x8 Umax= V 2TMC TMC TMC TMC TMC TMC XX NEW! AxB = x6 (6x6 available), CxD = 0x0 Umax= 5.5 V 2TMC TMC TMC TMC TMC Notes All dimensions are given in mm Data shown are for T h =30 o C rated at T=0, at other T cooling power should be defined as Q= (-T/ ) Options are given in brackets 2TMC XX NEW! AxB = 6x6, CxD = 0x0 Umax= 5.6 V 2TMC TMC TMC TMC TMC TMC XX NEW! AxB = 6x2, CxD = 8x2 Umax=5. V 2TMC TMC TMC TMC TMC TMC06-08-XX (Option 2TMC XX) AxB = 8x8, CxD = 0x2 (Option 2x2), Umax=6.8 V 2TMC TMC TMC TMC TMC TMC XX NEW! AxB = 8x8, CxD = 2x2 Umax= 8.2 V 2TMC TMC TMC TMC TMC TMC06-0-XX NEW! AxB = 8x8, CxD = 2x2 Umax= 8.2 V 2TMC TMC TMC TMC TMC Definitions T h ot side temperature Current resulting in greatest T Voltage at Maximum temperature difference Maximum cooling power (I=, T=0)

15 Continuation TMC06 Series Specification (Multi-Stage) 3-Stage 3TMC06-02-XX AxB = 2.5x2.5, CxD = 6x6, Umax=.8V 3TMC TMC TMC TMC TMC TMC XX (Option 3TMC06-05-XX) NEW! AxB = x, CxD = 8x8 (Option 0x8) Umax =3. V 3TMC TMC TMC TMC TMC TMC XX NEW! AxB = AxB=x, CxD = 0x0 Umax =5.3 V 3TMC TMC TMC TMC TMC TMC XX AxB = x6 (6x6), CxD = 0x2 Umax=6.V 3TMC TMC TMC TMC TMC TMC XX NEW! AxB = 6x6, CxD = 0x2 Umax=6. V 3TMC TMC TMC TMC TMC TMC06-2-XX AxB = x6 (6x6), CxD = 2x2 Umax=7.9 V 3TMC TMC TMC TMC TMC TMC06 Series Multi-Stage - Standard TMC06 Series Multi-Stage - Option Notes All dimensions are given in mm Data shown are for T h =30 o C rated at T=0, at other T cooling power should be defined as Q= (-T/ ) Options are given in brackets Definitions N Number of thermocouples T h ot side temperature Current resulting in greatest T Voltage at Maximum temperature difference Maximum cooling power (I=, T=0) 5

16 2-Stage * TMC0 Series Specification (Multi-Stage) 2TMC0-067-XX NEW! AxB = 9x8 (2x8), CxD = 2x8 =5. V 2TMC TMC TMC TMC TMC TMC0-070-XX NEW! AxB = 9x9, CxD = 5x5, =5.5 V 2TMC TMC TMC TMC TMC TMC0-08-XX AxB = 2x2, CxD = 5x8 = 6.8 V 2TMC TMC TMC TMC TMC TMC0-093-XX NEW! AxB = 2x2, CxD = 8x8 = 8.2 V 2TMC TMC TMC TMC TMC TMC0-0-XX NEW! AxB = 2x2, CxD = 8x8 = 8.2 V 2TMC TMC TMC TMC TMC TMC0-35-XX NEW! AxB = 5x5, CxD = 2x2 =.3 V 2TMC TMC TMC TMC TMC * eights can be varied to specification on account of substrates thickness Notes All dimensions are given in mm Data shown are for T h =30 o C rated at T=0, at other T cooling power should be defined as Q=Qmax (-T/Tmax) 3-Stage * 3TMC0-080-XX NEW! AxB = 9x9 (6x9 available) CxD = 5x5 =5.3 V 3TMC TMC TMC TMC TMC TMC0-088-XX AxB = 9x9 (6x9 available) CxD = 5x8 = 6.5 V 3TMC TMC TMC TMC TMC TMC0-2-XX AxB= 6x9 (9x9 available) CxD= 8x8, = 7.9 V 3TMC TMC TMC TMC TMC TMC0-68-XX AxB= 9x2 (2x2 available) CxD= 2x2, = V 3TMC TMC TMC TMC TMC TMC Stage * TMC0-78-XX NEW! AxB = 6x9 (9x9 available), CxD = 2x2, = 0. V TMC TMC TMC TMC TMC TMC0 Series Multi Stage 6

17 7

18 NEW! TMB Series of Multi-Stage TECs with Enlarged Top Surface This Thermion series is designed specially for cooling CCDs, multielement matrixes of IR detectors, focal plain arrays and other planar electrooptic elements which have relatively large surface and require low temperatures for their operation. Over 60 cascade configurations having identical or near identical top and bottom dimensions are available now. Inspite of enlarged cold side area, these coolers provide temperature differences even higher than those for traditional pyramidal cascade TECs. This Thermion s series is permanently supplemented with new advanced configurations in response to the most refined customer s needs. Such are the TECs 2TMB0-02-C2, 2TMB0-066-A2, 2TMB0-092-A3, 5TMB06-3- A22, 5TMB0-6-B222 and many others. 8

19 TMB0 Series of Cascade TECs with Enlarged Top Surface 2-Stage 2 TMB0-00-X2 AxB = x, CxD = x, 2 TMB0-00-B2 2 TMB0-00-A2.0 2 TMB0-05-X2 AxB = x, CxD =.8x.8, 2 TMB0-05-B2 2 TMB0-05-A2.0 2 TMB0-09-X2 AxB = x, CxD =.8x.8, 2 TMB0-09-B2 2 TMB0-09-A2.0 2 TMB0-02-X2 AxB =.8x.8, CxD =.8x.8, 2 TMB0-02-С2 2 TMB0-02-B2 2 TMB0-02-A2.0 2 TMB0-037-X3 AxB = 6.x6., CxD = 6.x6. 2 TMB0-037-B3 2 TMB0-037-A Umax=5 V Umax=.35 V 99 Umax=.85 V 0 03 Umax=.85 V Umax= V TMB0-02-X2 NEW! AxB = 6.x6., CxD = 6.x6., Umax=3.6 V 2 TMB0-02-C2 2 TMB0-02-B2 2 TMB0-02-A TMB0-03-X2 NEW! AxB = 8x8 (6.x8), CxD = 8x8 (6.x8) Umax=3.6 V 2 TMB0-03-C2 2 TMB0-03-B2 2 TMB0-03-A TMB0-07-X3 NEW! AxB = 6.x8 (8x8), CxD = 6.x6. (8x8) Umax=.5 V 2 TMB0-07-B3 2 TMB0-07-A3 2 TMB0-066-X2 AxB = 8x8, CxD = 8x8, 2 TMB0-066-C2 2 TMB0-066-B2 2 TMB0-066-A2 2 TMB0-080-X2 AxB = 8x9.6, CxD = 8x9.6, 2 TMB0-080-C2 2 TMB0-080-B2 2 TMB0-080-A Umax=5.7 V Umax=6.9 V Stage 2 TMB0-092-X2 NEW! AxB = 9.6x9.6, CxD = 9.6x9.6, Umax=8. V 2 TMB0-092-С2 2 TMB0-092-B2 2 TMB0-092-A2.0 2 TMB0-092-X3 AxB = 9.6x9.6, CxD = 9.6x9.6, 2 TMB0-092-B3 2 TMB0-092-A3 3-Stage 5 3 TMB0-0-X2 AxB = x, CxD =6.x6., 3 TMB0-0-C2 3 TMB0-0-B2 3 TMB0-0-A Umax=8. V 0 00 Umax= V TMB0-0-X23 NEW! AxB =6.x6., CxD = 8x8, Umax=5. V 3 TMB0-0-B23 3 TMB0-0-A23 3 TMB0-088-X3 AxB = 6.x6., CxD = 8x9.6, 3 TMB0-088-B3 3 TMB0-088-A Umax=6.6 V TMB0-00-X3 AxB = 6.x6., CxD = 9.6x9.6, Umax=7.8 V 3 TMB0-00-B3 3 TMB0-00-A TMB0-3-X2 NEW! AxB = 6.x6., CxD =9.6X9.6, Umax=8 V 3 TMB0-3-C2 3 TMB0-3-B2 3 TMB0-3-A TMB0--X3 NEW! AxB = 6.x9.6, CxD = 9.6x9.6, Umax=8.3 V 3 TMB0--B3 3 TMB0--A Notes All dimentions are given in mm Data shown are for T h =30 o C rated at T=0, at other T cooling power should be defined as Q=Qmax (-T/Tmax) 9

20 -Stage TMB0-099-X2 NEW! AxB = x, CxD = 8X9.6, Umax=6.5 V TMB0-099-C2 TMB0-099-B2 TMB0-099-A TMB0-09-X22 NEW! AxB =.8x.8, CxD = 8X9.6, Umax=6.6 V TMB0-09-C22 TMB0-09-B22 TMB0-09-A TMB0-2-X22 NEW! AxB =.8x.8, CxD = 9.6X9.6, Umax=7.6 V TMB0-2-C22 TMB0-2-B22 TMB0-2-A TMB0-2-X23 NEW! AxB =.8x.8 (6.x.8), CxD = 9.6X9.6, Umax=7.6 V TMB0-2-B23 TMB0-2-A TMB Series Multi-stage Definitions T h ot side temperature Current resulting in greatest T Voltage at Maximum temperature difference Maximum cooling power (I=, T=0) 20

21 TMB06 Series of Cascade TECs with Enlarged Top Surface 2-Stage 2 TMB06-05-X2 NEW! AxB = x, CxD = x6 Umax=.35 V 2 TMB06-05-C2 2 TMB06-05-B2 2 TMB06-05-A TMB06-09-X2 NEW! AxB = x, CxD = 6x6 Umax=.8 V 2 TMB06-09-C2 2 TMB06-09-B2 2 TMB06-09-A TMB06-02-X2 NEW! AxB = 6x6, CxD = 6x6 Umax=.8 V 2 TMB06-02-С2 2 TMB06-02-B2 2 TMB06-02-A2 2 TMB X3 AxB = 8x8, CxD = 8x8 2 TMB B3 2 TMB A3 2 TMB06-03-X2 NEW! AxB = 8x0 (0x0), CxD = 8x0 (0x0), Umax= 3.6V 2 TMB06-03-C2 2 TMB06-03-B2 2 TMB06-03-A TMB06-07-X3 AxB = 8x0 (0x0), CxD = 8x0 (0x0) Umax=.5V 2 TMB06-07-B3 2 TMB06-07-A Umax= V TMB06-02-X2 NEW! AxB = 8x8, CxD = 8x8 Umax= 3.6 V 2 TMB06-02-C2 2 TMB06-02-B2 2 TMB06-02-A TMB X2 AxB = 0x0, CxD = 0x0 Umax= 5.8V 2 TMB C2 2 TMB B2 2 TMB A TMB X2 AxB = 0x2, CxD = 0x2 Umax= 6.8V 2 TMB C2 2 TMB B2 2 TMB A TMB X2 NEW! AxB = 2x2, CxD = 2x2 Umax=8. V 2 TMB С2 2 TMB B2 2 TMB A2 2 TMB X3 AxB = 2x2, CxD = 2x2 2 TMB B3 2 TMB A3 3-Stage 3 TMB06-0-X2 AxB = x, CxD = 8x8 3 TMB06-0-C2 3 TMB06-0-B2 3 TMB06-0-A Umax=8. V 0 00 Umax= V TMB06-0-X23 NEW! AxB =8x8, CxD =0x0 Umax=5.5 V 3 TMB06-0-B23 3 TMB06-0-A TMB X3 AxB = 8x8, CxD = 0x2 Umax=6.6 V 3 TMB B3 3 TMB A TMB06-00-X3 AxB = 8x8, CxD = 2x2 Umax=7.8 V 3 TMB06-00-B3 3 TMB06-00-A TMB06-3-X2 NEW! AxB = 8x8, CxD = 2X2 Umax=8 V 3 TMB06-3-C2 3 TMB06-3-B2 3 TMB06-3-A TMB06--X3 NEW! AxB = 8x2, CxD = 2X2 Umax=8.2 V 3 TMB06--B3 3 TMB06--A

22 -Stage TMB X2 NEW! AxB = x, CxD = 0X2 TMB C2 TMB B2 TMB A Umax=6.5 V TMB06-06-X2 NEW! AxB = 6x0, CxD = 0X2 Umax=6.7 V TMB06-06-B2 TMB06-06-A TMB06-09-X22 NEW! AxB = 6x6, CxD = 0X2 Umax=6.7 V TMB06-09-C22 TMB06-09-B22 TMB06-09-A TMB06-2-X22 NEW! AxB = 6x6, CxD = 2X2 Umax=7.5 V TMB06-2-C22 TMB06-2-B22 TMB06-2-A TMB06-2-X23 NEW! AxB = 6x6 (8x8), CxD = 2X2 Umax=7.6 V TMB06-2-B23 TMB06-2-A TMB06-2-X2 NEW! AxB = 6x0, CxD = 2X2 Umax=7.9 V TMB06-2-B2 TMB06-2-A Stage 5 TMB06-3-X22 NEW! AxB = 6x6, CxD = 0X2 Umax=6. V 5 TMB06-3-B22 5 TMB06-3-A22 Definitions TMB Series Multi-stage T h ot side temperature Current resulting in greatest T Voltage at Maximum temperature difference Maximum cooling power (I=, T=0) 22

23 TMB0 Series of Cascade TECs with Enlarged Top Surface 2-Stage 2 TMB0-03-X2 NEW! AxB = 2x5 (5x5), CxD = 2x5 (5x5) Umax=V 2 TMB0-03-D2 2 TMB0-03-C2 2 TMB0-03-B2 2 TMB0-03-A TMB0-07-X3 NEW! AxB = 2x5 (5x5), CxD = 2x5 (5x5) Umax=.V 2 TMB0-07-B3 2 TMB0-07-A3 2 TMB0-066-X2 AxB = 5x5, CxD =5x5 2 TMB0-066-D2 2 TMB0-066-C2 2 TMB0-066-B2 2 TMB0-066-A =5.7 V TMB0-080-X2 NEW! AxB = 5x8, CxD = 5x8 Umax= 6.9 V 2 TMB0-080-D2 2 TMB0-080-C2 2 TMB0-080-B2 2 TMB0-080-A TMB0-092-X2 NEW! AxB = 8x8, CxD = 8x8 Umax= 8. V 2 TMB0-092-D2 2 TMB0-092-C2 2 TMB0-092-B2 2 TMB0-092-A TMB0-092-X3 AxB = 8x8, CxD = 8x8 Umax= 8.3 V 2 TMB0-092-B3 2 TMB0-092-A TMB0-22-X2 NEW! AxB = 2x2, CxD = 2x2 Umax=. V 2 TMB0-22-D2 2 TMB0-22-C2 2 TMB0-22-B2 2 TMB0-22-A TMB0-22-X3 NEW! AxB = 2x2, CxD = 2x2 Umax=. V 2 TMB0-22-B3 2 TMB0-22-A TMB0-3-X3 NEW! AxB = 2x2, CxD = 2x2 Umax=.5 V 2 TMB0-3-B3 2 TMB0-3-A Stage 3 TMB0-0-X23 NEW! AxB = 2x2, CxD =5x5 Umax=5.5 V 3 TMB0-0-B23 3 TMB0-0-A23 3 TMB0-088-X3 AxB = 2x2, CxD = 5x8 3 TMB0-088-B3 3 TMB0-088-A Umax=6.6 V TMB0-00-X3 AxB = 2x2 (5x5), CxD = 8x8 Umax=7.8 V 3 TMB0-00-B3 3 TMB0-00-A TMB0-3-X2 AxB = 2x2 (5x5), CxD = 8x8 Umax=8 V 3 TMB0-3-D2 3 TMB0-3-C2 3 TMB0-3-B2 3 TMB0-3-A TMB0--X3 NEW! AxB = 2x8, CxD =8X8 Umax=8. V 3 TMB0--B3 3 TMB0--A TMB0-39-X2 NEW! AxB = 5x5, CxD = 8x2 Umax=9.2 V 3 TMB0-39-D2 3 TMB0-39-C2 3 TMB0-39-B2 3 TMB0-39-A TMB0-50-X2 NEW! AxB = 5x5, CxD = 2x2 Umax= V 3 TMB0-50-D2 3 TMB0-50-C2 3 TMB0-50-B2 3 TMB0-50-A

24 -Stage TMB0-099-X2 NEW! AxB = 6x6, CxD = 5X8 TMB0-099-D2 TMB0-099-C2 TMB0-099-B2 TMB0-099-A Umax=6. V TMB0-06-X2 NEW! AxB = 9x5, CxD = 5X8 Umax=6.6 V TMB0-06-B2 TMB0-06-A TMB0-09-X22 NEW! AxB = 9x9, CxD = 5X8 Umax=6.6 V TMB0-09-D22 TMB0-09-C22 TMB0-09-B22 TMB0-09-A TMB0-2-X22 NEW! AxB =9x9, CxD =8X8 Umax=7.6 V TMB0-2-D22 TMB0-2-C22 TMB0-2-B22 TMB0-2-A TMB0-2-X23 NEW! AxB = 9x9 (2x2), CxD =8X8 Umax=7.6 V TMB0-2-C23 TMB0-2-B23 TMB0-2-A TMB0-2-X2 NEW! AxB = 9x5, CxD =8X8 Umax=7.8 V TMB0-2-B2 TMB0-2-A TMB0-7-X22 NEW! AxB = 9x2 (2x2), CxD = 8X2 Umax=9 V TMB0-7-D22 TMB0-7-C22 TMB0-7-B22 TMB0-7-A TMB0-7-X23 NEW! AxB = 2x2, CxD = CxD=8X2 Umax=9 V TMB0-7-C23 TMB0-7-B23 TMB0-7-A TMB0-78-X2 NEW! AxB = 9x2 (2x2), CxD = 2X2 Umax=0.5 V TMB0-78-D2 TMB0-78-C2 TMB0-78-B2 TMB0-78-A Stage 5 TMB0-3-X22 NEW! AxB = 9x9, CxD = 5X8 Umax=6. V 5 TMB0-3-B22 5 TMB0-3-A TMB0-6-X22 NEW! AxB = 9x9, CxD = 2X2 Umax=0.2 V 5 TMB0-6-B22 5 TMB0-6-A TMB0-83-X22 NEW! AxB = 9x9, CxD = 2X2 Umax=0.5 V 5 TMB0-83-D22 5 TMB0-83-C22 5 TMB0-83-B22 5 TMB0-83-A eights can be varied to the specification on account of substrates thickness TMB Series Multi-stage Notes - All dimensions are given in mm - Data shown are for T h =30 o C - rated at T=0, at other T cooling powers should be defined as Q=Qmax (-T/Tmax) Definitions T h ot side temperature Current resulting in greatest T Voltage at Maximum temperature difference Maximum cooling power (I=, T=0) 2

25 25

26 TML Series of Linear Single-Stage TECs TML series of linear modules is destined for cooling lengthened heat sources such as semiconductor laser arrays, multi-element detectors, rectangular microchips and other oblong electronic and electro-optic elements. 26

27 TML0 Series of Linear Modules (Single-Stage) TML0-9.6x-XX N=22 LxW = 9.6x Umax=2.6 V TML0-9.6x-5 TML0-9.6x-2 TML0-9.6x-0 TML0-9.6x-08 TML0-9.6x TML0-9.6x.8-XX N=3 LxW = 9.6x.8 Umax=. V TML0-9.6x.8-5 TML0-9.6x.8-2 TML0-9.6x.8-0 TML0-9.6x.8-08 TML0-9.6x TML0-9.6x6.-XX N=6 LxW = 9.6x6. Umax=5.5 V TML0-9.6x6.-5 TML0-9.6x6.-2 TML0-9.6x6.-0 TML0-9.6x6.-08 TML0-9.6x TML0-6.x-XX N=7 LxW = 6.x Umax= V TML0-6.x-5 TML0-6.x-2 TML0-6.x-0 TML0-6.x-08 TML0-6.x TML0-6.x2.-XX N= LxW = 6.x2. Umax=.3 V TML0-6.x2.-5 TML0-6.x2.-2 TML0-6.x2.-0 TML0-6.x2.-08 TML0-6.x TML0-6.x-XX N=5 LxW = 6.x Umax=.8 V TML0-6.x-5 TML0-6.x-2 TML0-6.x-0 TML0-6.x-08 TML0-6.x TML0-8x-XX N=9 LxW = 8x Umax= V TML0-8x-5 TML0-8x-2 TML0-8x-0 TML0-8x-08 TML0-8x TML0-8x.8-XX N=28 LxW = 8x.8 Umax=3. V TML0-8x.8-5 TML0-8x.8-2 TML0-8x.8-0 TML0-8x.8-08 TML0-8x TML0-8x6.-XX N=38 LxW = 8x6. Umax=.5 V TML0-8x6.-5 TML0-8x6.-2 TML0-8x6.-0 TML0-8x6.-08 TML0-8x TML0-.8x-XX N=5 LxW =.8x Umax=0.6 V TML0-.8x-5 TML0-.8x-2 TML0-.8x-0 TML0-.8x-08 TML0-.8x TML0-.8x2.-XX N=8 LxW =.8x2. Umax=0. V TML0-.8x-5 TML0-.8x-2 TML0-.8x-0 TML0-.8x-08 TML0-.8x TML0 Linear Series W L.0 Single Stage Note: Option with wire direction perpendicular to that shown at the figure is available. 27

28 TML06 Series of Linear Modules (Single Stage) TML06-2x2-XX N= LxW = 2x2 Umax=.3 V TML06-2x TML06-2x2-2.7 TML06-2x TML06-2x TML06-2x TML06-2x-XX N=22 LxW = 2x Umax=2.6 V TML06-2x TML06-2x-2 3 TML06-2x TML06-2x-08 9 TML06-2x TML06-2x6-XX N=3 LxW = 2x6 Umax=. V TML06-2x TML06-2x TML06-2x TML06-2x TML06-2x TML06-2x8-XX N=6 LxW = 2x8 Umax=5.5 V TML06-2x TML06-2x8-2.8 TML06-2x TML06-2x TML06-2x K) Qmax TML06-8x2-XX N=7 LxW = 8x2 Umax= V TML06-8x TML06-8x TML06-8x TML06-8x TML06-8x TML06-8x-XX N=5 LxW = 8x Umax=.8 V TML06-8x TML06-8x-2.59 TML06-8x TML06-8x-08 TML06-8x K) TML06-0x2-XX N=9 LxW = 0x2 Umax=. V TML06-0x TML06-0x TML06-0x TML06-0x TML06-0x TML06-0x-XX N=9 LxW = 0x Umax= V TML06-0x TML06-0x TML06-0x-0.9 TML06-0x TML06-0x TML06-0x6-XX N=28 LxW = 0x6 Umax=3. V TML06-0x TML06-0x TML06-0x TML06-0x TML06-0x TML06-0x8-XX N=38 LxW = 0x8 Umax=.5 V TML06-0x TML06-0x TML06-0x8-0.9 TML06-0x TML06-0x K) TML06-6x2-XX N=5 LxW = 6x2 Umax=0.6 V Qmax TML06-6x TML06-6x TML06-6x TML06-6x TML06-6x TML Linear Series W L Single Stage Note: Option with wire direction perpendicular to that shown at the figure is available. 28

29 TML0 Series of Linear Modules (Single Stage) TML0-2x6-XX TML0-8x3-XX N=26 LxW=2x6 Umax=3. V N= LxW=8x3 Umax=.3 V TML0-2x6-20. TML0-2x TML0-2x TML0-2x TML0-2x TML0-2x TML0-2x9-XX N=0 LxW=2x9 Umax=.8 V TML0-2x TML0-2x TML0-2x TML0-2x TML0-2x TML0-2x TML0-2x2-XX N=5 LxW=2x2 Umax=6.5 V TML0-2x TML0-2x TML0-2x TML0-2x TML0-2x TML0-2x TML0-2x5-XX N=68 LxW=2x5 Umax=8. V TML0-2x TML0-2x TML0-2x TML0-2x TML0-2x TML0-2x TML0-2x8-XX N=82 LxW=2x8 Umax=9.8 V TML0-2x TML0-2x TML0-2x TML0-2x TML0-2x TML0-2x TML0-2x2-XX N= LxW=2x2 Umax=.5 V TML0-2x TML0-2x TML0-2x TML0-2x TML0-2x TML0-2x TML0-8x TML0-8x TML0-8x3-2.3 TML0-8x TML0-8x TML0-8x TML0-8x6-XX N=22 LxW=8x6 Umax=2.6 V TML0-8x6-20. TML0-8x TML0-8x TML0-8x TML0-8x TML0-8x TML0-8x9-XX N=3 LxW=8x9 Umax=. V TML0-8x9-20. TML0-8x TML0-8x TML0-8x TML0-8x TML0-8x TML0-8x2-XX N=6 LxW=8x2 Umax=5.5 V TML0-8x TML0-8x TML0-8x TML0-8x TML0-8x TML0-8x TML0-8x5-XX N=58 LxW=8x5 Umax=7 V TML0-8x TML0-8x TML0-8x TML0-8x TML0-8x TML0-8x TML0-8x8-XX N=70 LxW=8x8 Umax=8. V TML0-8x8-20. TML0-8x TML0-8x TML0-8x TML0-8x TML0-8x

30 TML0-5x3-XX N=9 LxW=5x3 Umax=. V TML0-5x3-20. TML0-5x TML0-5x TML0-5x TML0-5x TML0-5x TML0-5x6-XX N=9 LxW=5x6 Umax= V TML0-5x6-20. TML0-5x TML0-5x TML0-5x TML0-5x TML0-5x TML0-5x9-XX N=28 LxW=5x9 Umax= V TML0-5x TML0-5x TML0-5x TML0-5x TML0-5x TML0-5x TML0-5x2-XX N=38 LxW=5x2 Umax=.6 V TML0-5x TML0-5x TML0-5x TML0-5x TML0-5x TML0-5x TML0-5x5-XX N=8 LxW=5x3 Umax=5.8 V TML0-5x TML0-5x TML0-5x2-2.3 TML0-5x TML0-5x TML0-5x Note: W L Option with wire direction perpendicular to that shown at the figure is available. Definitions N Number of thermocouples ot side temperature T h Current resulting in greatest T Voltage at Maximum temperature difference Notes Maximum cooling power (I=, T=0) All dimensions are given in mm Data shown are for T h =30 o C rated at T=0, at other T cooling power should be defined as Q= (-T/ ) Options are given in brackets 30

31 3

32 NEW TLB Series of Linear Cascade TECs Thermion introduces a NEW line of high efficient liner cascade modules having advantage of identical top and bottom substrate dimensions and enlarged T value. Over 00 new cascade configurations are available based on TLB0, TLB06 and TLB0 subseries. 32

33 TLB0 Series of Linear Cascade TECs with Enlarged Top Surface (NEW) 2-Stage 2TLB0-9.6x-X2 NEW! LxW = 9.6x Umax= 2.55 V 2TLB0-9.6x-C2 2TLB0-9.6x-B2 2TLB0-9.6x-A TLB0-9.6x.8-X2 NEW! LxW = 9.6x.8 Umax= V 2TLB0-9.6x.8-C2 2TLB0-9.6x.8-B2 2TLB0-9.6x.8-A TLB0-9.6x6.-X2 NEW! LxW = 9.6x6. Umax= 5.5 V 2TLB0-9.6x6.-C2 2TLB0-9.6x6.-B2 2TLB0-9.6x6.-A Stage 3TLB0-9.6x.8-X2 NEW! LxW = 9.6x.8 Umax= 3.8 V 3TLB0-9.6x.8-A TLB0-9.6x6.-X22 NEW! LxW = 9.6x6. Umax= 5.3 V 3TLB0-9.6x6.-C22 3TLB0-9.6x6.-B22 3TLB0-9.6x6.-A TLB0-9.6x6.-X23 NEW! LxW = 9.6x6. Umax= 5.3 V 3TLB0-9.6x6.-B23 3TLB0-9.6x6.-A TLB0-9.6x6.-X2 NEW! LxW = 9.6x6. Umax= 5.3 V 3TLB0-9.6x6.-A TLB0-8x-X2 NEW! LxW = 8x Umax= 2. V 2TLB0-8x-C2 2TLB0-8x-B2 2TLB0-8x-A TLB0-8x.8-X2 NEW! LxW = 8x.8 Umax= V 2TLB0-8x.8-C2 2TLB0-8x.8-B2 2TLB0-8x.8-A TLB0-8x.8-X2 NEW! LxW = 8x.8 Umax= V 3TLB0-8x.8-A TLB Series Multi-stage TOP = BASE L 2TLB0-6.x-X2 NEW! LxW = 6.x Umax= V 2TLB0-6.x-C2 2TLB0-6.x-B2 2TLB0-6.x-A W + - Notes All dimensions are given in mm Data shown are for T h =30 o C rated at T=0, at other T cooling power should be defined as Q=Qmax (-T/Tmax) Modules height can be varied on account of substrates thickness Definitions T h Temperature of TEC hot side Imax Current resulting in greatest T Umax Voltage at Tmax Maximum temperature difference Qmax Maximum cooling power (I =, T=0) 33

34 TLB06 Series of Linear Cascade TECs with Enlarged Top Surface (NEW) 2-Stage 2 TLB06-2x-X2 NEW! LxW = 2x Umax= 2.6 V 2 TLB06-2x-C2 2 TLB06-2x-B2 2 TLB06-2x-A TLB06-2x6-X2 NEW! LxW = 2x6 Umax= V 2 TLB06-2x6-C2 2 TLB06-2x6-B2 2 TLB06-2x6-A TLB06-2x8-X2 NEW! LxW = 2x8 Umax= 5.5 V 2 TLB06-2x8-C2 2 TLB06-2x8-B2 2 TLB06-2x8-A TLB06-0x-X2 NEW! L W = 0x Umax= 2. V 2 TLB06-0x-C2 2 TLB06-0x-B2 2 TLB06-0x-A TLB06-0x6-X2 NEW! LxW = 0x6 Umax= V 2 TLB06-0x6-C2 2 TLB06-0x6-B2 2 TLB06-0x6-A Stage 3 TLB06-2x6-X2 NEW! LxW = 2x6 Umax=3.8 V 3 TLB06-2x6-B2 3 TLB06-2x6-A TLB06-2x8-X22 NEW! LxW = 2x8 Umax=5.3 V 3 TLB06-2x8-C22 3 TLB06-2x8-B22 3 TLB06-2x8-A TLB06-2x8-X23 NEW! LxW = 2x8 Umax=5.3 V 3 TLB06-2x8-B23 3 TLB06-2x8-A TLB06-2x8-X2 NEW! LxW = 2x8 Umax= 5.3 V 3 TLB06-2x8-B2 3 TLB06-2x8-A TLB06-0x6-X2 NEW! LxW = 0x6 Umax= V 3 TLB06-0x6-B2 3 TLB06-0x6-A2 TLB Series TOP = BASE.55 2 Multi-stage L 2 TLB06-8x-X2 NEW! LxW = 8x Umax= V 2 TLB06-8x-C2 2 TLB06-8x-B2 2 TLB06-8x-A W + - Notes All dimensions are given in mm Data shown are for T h =30 o C rated at T=0, at other T cooling power should be defined as Q=Qmax (-T/Tmax) Modules height can be varied on account of substrates thickness Definitions T h Temperature of TEC hot side Imax Current resulting in greatest T Umax Voltage at Tmax Maximum temperature difference Qmax Maximum cooling power (I =, T=0) 3

35 TLB0 Series of Cascade TECs with Enlarged Top Surface NEW! 2-Stage 2 TLB0-2x9-X2 NEW! LxW = 2x9 Umax= V 2 TLB0-2x9-D2 2 TLB0-2x9-C2 2 TLB0-2x9-B2 2 TLB0-2x9-A TLB0-2x2-X2 NEW! LxW = 2x2 Umax=6. V 2 TLB0-2x2-D2 2 TLB0-2x2-C2 2 TLB0-2x2-B2 2 TLB0-2x2-A TLB0-2x5-X2 NEW! LxW = 2x5 Umax=8. V 2 TLB0-2x5-D2 2 TLB0-2x5-C2 2 TLB0-2x5-B2 2 TLB0-2x5-A TLB0-8x6-X2 NEW! LxW = 8x6 Umax= 2.5 V 2 TLB0-8x6-D2 2 TLB0-8x6-C2 2 TLB0-8x6-B2 2 TLB0-8x6-A TLB0-8x9-X2 NEW! LxW = 8x9 Umax= V 2 TLB0-8x9-D2 2 TLB0-8x9-C2 2 TLB0-8x9-B2 2 TLB0-8x9-A TLB0-8x2-X2 NEW! LxW = 8x2 Umax=5.5 V 2 TLB0-8x2-D2 2 TLB0-8x2-C2 2 TLB0-8x2-B2 2 TLB0-8x2-A TLB0-5x6-X2 NEW! LxW = 5x6 Umax= 2 V 2 TLB0-5x6-D2 2 TLB0-5x6-C2 2 TLB0-5x6-B2 2 TLB0-5x6-A TLB0-5x9-X2 NEW! LxW = 5x9 Umax= V 2 TLB0-5x9-D2 2 TLB0-5x9-C2 2 TLB0-5x9-B2 2 TLB0-5x9-A Stage 3 TLB0-2x2-X23 NEW! LxW = 2x2 Umax= 6.3 V 3 TLB0-2x2-B23 3 TLB0-2x2-A TLB0-2x5-X23 NEW! LxW = 2x5 Umax= 7.7 V 3 TLB0-2x5-B23 3 TLB0-2x5-A TLB0-8x9-X2 NEW! LxW = 8x9 Umax=3.9 V 3 TLB0-8x9-B2 3 TLB0-8x9-A TLB0-8x2-X2 NEW! LxW = 8x2 Umax= 5.6 V 2 TLB0-8x2-B2 2 TLB0-8x2-A TLB0-8x2-X22 NEW! LxW = 8x2 Umax= 5. V 2 TLB0-8x2-C22 2 TLB0-8x2-B22 2 TLB0-8x2-A TLB0-8x2-X23 NEW! LxW = 8x2 Umax= 5.3 V 2 TLB0-8x2-B23 2 TLB0-8x2-A TLB0-5x9-X2 NEW! LxW = 5x9 Umax= V 3 TLB0-5x9-B2 3 TLB0-5x9-A eights can be varied to specification on account of substrates thickness TLB Series Multi-stage W TOP = BASE L

36 36

37 Ordering Information Quotations: Prices: Discounts: Terms: Payment: Warranty: Written or verbal are valid for 60 days from the date of the quotation For catalog stock items are listed in Thermion s price list. Custom orders will be priced per provided specifications Are available for volume purchases CPT: named place of destination via DL unless otherwise is specially provided in writing. All shipping charges will be prepaid and added to the invoice unless otherwise is specified For all invoices net 30 days, by transfer into Thermion Company nominated account Thermion Company guarantees that all products will meet the specification. Material found defective will be repaired or replaced at no charge. Thermion Company is not responsible for product damage resulting from accident or lack of reasonable care. For all of our products, we will understand the requirements of our customers and conform to these requirements without exception For more information please contact us: 9/, Tenistaya St., Odessa 65009, Ukraine Phone/Fax: (82) Phone/Fax: (8) s: semeniouk@thermion.tenet.odessa.ua 37

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