dls – Übersetzung – Keybot-Wörterbuch

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  The direct laser solder...  
The aim of the pro­ject was to find, evalu­ate and re­com­mend new ap­plic­a­tion fields for an already ex­ist­ing tech­no­logy, as well as to setup a mar­ket entry strategy for the chosen, most prom­ising ap­plic­a­tion fields. A fi­nal re­com­mend­a­tion for the prac­tical im­ple­ment­a­tion will be given to al­low CERN to be able to take a well-­foun­ded de­cision with regards to the mar­ket entry strategy of DLS.
The aim of the project was to find, evaluate and recom­mend new appli­ca­tion fields for an already exis­ting tech­no­logy, as well as to setup a market entry stra­tegy for the chosen, most promi­sing appli­ca­tion fields. A final recom­men­da­tion for the prac­tical imple­men­ta­tion will be given to allow CERN to be able to take a well-­founded deci­sion with regards to the market entry stra­tegy of DLS.
  The direct laser solder...  
To sum it up, it is re­com­men­ded to choose the CdTe dental ima­ging mar­ket as the primary op­tion for CERNs DLS. Even though the dental x-Ray mar­ket size is still in its in­fancy, it will ex­per­i­ence con­stant growth not only in EU and NA but also in Asian mar­kets, and the high so­cial im­pact in the med­ical sector is a fun­da­mental re­quire­ment for the stra­tegic in­terest of CERN.
To sum it up, it is recom­mended to choose the CdTe dental imaging market as the primary option for CERNs DLS. Even though the dental x-Ray market size is still in its infancy, it will expe­ri­ence constant growth not only in EU and NA but also in Asian markets, and the high social impact in the medical sector is a funda­mental requi­re­ment for the stra­tegic inte­rest of CERN. Further­more, after DLS has been adopted in one field and was able to reach market matu­rity for a broader rollout, new x-Ray markets and other CdTe appli­ca­tion fields (like e.g. solar cells) can be tapped.
  The direct laser solder...  
To sum it up, it is re­com­men­ded to choose the CdTe dental ima­ging mar­ket as the primary op­tion for CERNs DLS. Even though the dental x-Ray mar­ket size is still in its in­fancy, it will ex­per­i­ence con­stant growth not only in EU and NA but also in Asian mar­kets, and the high so­cial im­pact in the med­ical sector is a fun­da­mental re­quire­ment for the stra­tegic in­terest of CERN.
To sum it up, it is recom­mended to choose the CdTe dental imaging market as the primary option for CERNs DLS. Even though the dental x-Ray market size is still in its infancy, it will expe­ri­ence constant growth not only in EU and NA but also in Asian markets, and the high social impact in the medical sector is a funda­mental requi­re­ment for the stra­tegic inte­rest of CERN. Further­more, after DLS has been adopted in one field and was able to reach market matu­rity for a broader rollout, new x-Ray markets and other CdTe appli­ca­tion fields (like e.g. solar cells) can be tapped.
  The direct laser solder...  
On the other hand, DLS could present the solu­tion for the bond­ing is­sues in CdTe de­tector man­u­fac­tur­ing, which would be­ne­fit sig­ni­fic­antly from its ef­fi­ciency. The Global dental ima­ging mar­ket ac­counts for € 1.516.6 mil­lion (2014).
On the other hand, DLS could present the solu­tion for the bonding issues in CdTe detector manu­fac­tu­ring, which would benefit signi­fi­cantly from its effi­ci­ency. The Global dental imaging market accounts for € 1.516.6 million (2014). The focus lies espe­cially on small players, which domi­nate the market of detector manu­fac­turers and are more likely to adopt the tech­no­logy. The impro­ve­ment of the DLS process in terms of usabi­lity, scala­bi­lity and time to market is obviously the same issue for medical appli­ca­tions, as for solar cells. We see nonethe­less high poten­tial for CdTe sensors due to the high incen­tive for the whole industry to invest in better and high preci­sion tech­no­logy, supported by social and public inte­rest.
  The direct laser solder...  
In the pro­cess of con­stant im­prove­ment of the per­form­ance of the track­ing sys­tem at the Large Had­ron Col­lider (LHC), CERN developed a new tech­no­logy de­noted as Dir­ect Laser Sol­der­ing (DLS), which con­sti­tutes a novel in­ter­con­nec­tion tech­no­logy to con­nect sil­icon chips to flex­ible prin­ted cir­cuits (FPC).
This project was part of the Insti­tute for Entre­pre­neurship and Inno­va­tion’s seminar course “New Busi­ness Deve­lop­ment”. The client was CERN (Conseil Européen pour la Recherche Nucléaire), the Euro­pean Orga­niza­tion for Nuclear Rese­arch with head­quar­ters in Geneve. In the process of constant impro­ve­ment of the perfor­mance of the tracking system at the Large Hadron Collider (LHC), CERN deve­l­oped a new tech­no­logy denoted as Direct Laser Solde­ring (DLS), which consti­tutes a novel inter­con­nec­tion tech­no­logy to connect silicon chips to flexible printed circuits (FPC). The new Direct Laser Solde­ring tech­no­logy contains a number of signi­fi­cant bene­fits in compa­rison to conven­tional chip bonding processes which have the poten­tial to revo­lu­tio­nize the state-of-t­he-art processes of today.
  The direct laser solder...  
On the other hand, DLS could present the solu­tion for the bond­ing is­sues in CdTe de­tector man­u­fac­tur­ing, which would be­ne­fit sig­ni­fic­antly from its ef­fi­ciency. The Global dental ima­ging mar­ket ac­counts for € 1.516.6 mil­lion (2014).
On the other hand, DLS could present the solu­tion for the bonding issues in CdTe detector manu­fac­tu­ring, which would benefit signi­fi­cantly from its effi­ci­ency. The Global dental imaging market accounts for € 1.516.6 million (2014). The focus lies espe­cially on small players, which domi­nate the market of detector manu­fac­turers and are more likely to adopt the tech­no­logy. The impro­ve­ment of the DLS process in terms of usabi­lity, scala­bi­lity and time to market is obviously the same issue for medical appli­ca­tions, as for solar cells. We see nonethe­less high poten­tial for CdTe sensors due to the high incen­tive for the whole industry to invest in better and high preci­sion tech­no­logy, supported by social and public inte­rest.