Expansion of production capacity at Gloster Infocommunications Ltd. (Q3920514): Difference between revisions
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As opposed to traditional production, digital production is more IT-focused. This means that production is made in a fully computed manner. Digital 3D CAD designs are created, they are checked and bug-fixed by software running on local hardware. The individual production instructions for the production machine shall be made in electronic format. The process is entirely paperless and highly optimised for efficiency. The manufacturing activity will be implemented through an innovative technology. Digital manufacturing is the process by which CAD or other data is used to control the additive manufacturing machine that produces usable components. Such parts may include, for example, the components of the products, the various means of production or replacement parts of the manufacturing tools (various accessories or parts). Digital production does not involve casting, machining or formatting. The products are not made by removing or forming the material, but by adding layers. The client machines used by designers are low-powered and thin clients. The planning capacity is provided by centralised servers. The idea is that designers can work remotely without having to provide expensive (and fast-moving) hardware tools. Another significant advantage of the solution is scalability: the infrastructure to be procured can serve the simultaneous work of up to 15-30 designers. At the end of the design process, we prepare a detailed, colorful, vector-based visual design for the customers. The 3-dimensional visual design is a un. it’s going through a “ordering” process. Its production is a “traditionally” hardware-intensive and slow process. With centralised infrastructure, rendering times can be significantly reduced. Another characteristic problem during production preparation is the question of saving/archiving. It is a common mistake that the producers save the files to the wrong location or not. If you are already working on the central infrastructure on a remote desktop, this error cannot occur. That’s where the files come from, we went there and archived from there. Virus control is also central — simpler and safer IT that supports the entire production. The hardware devices to be procured are powerful pression devices. Their lifetime extends beyond the maintenance period and their capacity is well enough to meet our current and future IT needs. The diesel aggregate to be procured is intended to ensure the continuity of production. The majority of production processes do not tolerate or are difficult to tolerate power outages. The IT hardware used to support production does not tolerate power outages to any extent. The continuous operation of the manufacturing devices is thus ensured. (English) | |||||||||||||||
Property / summary: As opposed to traditional production, digital production is more IT-focused. This means that production is made in a fully computed manner. Digital 3D CAD designs are created, they are checked and bug-fixed by software running on local hardware. The individual production instructions for the production machine shall be made in electronic format. The process is entirely paperless and highly optimised for efficiency. The manufacturing activity will be implemented through an innovative technology. Digital manufacturing is the process by which CAD or other data is used to control the additive manufacturing machine that produces usable components. Such parts may include, for example, the components of the products, the various means of production or replacement parts of the manufacturing tools (various accessories or parts). Digital production does not involve casting, machining or formatting. The products are not made by removing or forming the material, but by adding layers. The client machines used by designers are low-powered and thin clients. The planning capacity is provided by centralised servers. The idea is that designers can work remotely without having to provide expensive (and fast-moving) hardware tools. Another significant advantage of the solution is scalability: the infrastructure to be procured can serve the simultaneous work of up to 15-30 designers. At the end of the design process, we prepare a detailed, colorful, vector-based visual design for the customers. The 3-dimensional visual design is a un. it’s going through a “ordering” process. Its production is a “traditionally” hardware-intensive and slow process. With centralised infrastructure, rendering times can be significantly reduced. Another characteristic problem during production preparation is the question of saving/archiving. It is a common mistake that the producers save the files to the wrong location or not. If you are already working on the central infrastructure on a remote desktop, this error cannot occur. That’s where the files come from, we went there and archived from there. Virus control is also central — simpler and safer IT that supports the entire production. The hardware devices to be procured are powerful pression devices. Their lifetime extends beyond the maintenance period and their capacity is well enough to meet our current and future IT needs. The diesel aggregate to be procured is intended to ensure the continuity of production. The majority of production processes do not tolerate or are difficult to tolerate power outages. The IT hardware used to support production does not tolerate power outages to any extent. The continuous operation of the manufacturing devices is thus ensured. (English) / rank | |||||||||||||||
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Property / summary: As opposed to traditional production, digital production is more IT-focused. This means that production is made in a fully computed manner. Digital 3D CAD designs are created, they are checked and bug-fixed by software running on local hardware. The individual production instructions for the production machine shall be made in electronic format. The process is entirely paperless and highly optimised for efficiency. The manufacturing activity will be implemented through an innovative technology. Digital manufacturing is the process by which CAD or other data is used to control the additive manufacturing machine that produces usable components. Such parts may include, for example, the components of the products, the various means of production or replacement parts of the manufacturing tools (various accessories or parts). Digital production does not involve casting, machining or formatting. The products are not made by removing or forming the material, but by adding layers. The client machines used by designers are low-powered and thin clients. The planning capacity is provided by centralised servers. The idea is that designers can work remotely without having to provide expensive (and fast-moving) hardware tools. Another significant advantage of the solution is scalability: the infrastructure to be procured can serve the simultaneous work of up to 15-30 designers. At the end of the design process, we prepare a detailed, colorful, vector-based visual design for the customers. The 3-dimensional visual design is a un. it’s going through a “ordering” process. Its production is a “traditionally” hardware-intensive and slow process. With centralised infrastructure, rendering times can be significantly reduced. Another characteristic problem during production preparation is the question of saving/archiving. It is a common mistake that the producers save the files to the wrong location or not. If you are already working on the central infrastructure on a remote desktop, this error cannot occur. That’s where the files come from, we went there and archived from there. Virus control is also central — simpler and safer IT that supports the entire production. The hardware devices to be procured are powerful pression devices. Their lifetime extends beyond the maintenance period and their capacity is well enough to meet our current and future IT needs. The diesel aggregate to be procured is intended to ensure the continuity of production. The majority of production processes do not tolerate or are difficult to tolerate power outages. The IT hardware used to support production does not tolerate power outages to any extent. The continuous operation of the manufacturing devices is thus ensured. (English) / qualifier | |||||||||||||||
point in time: 8 February 2022
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Revision as of 17:16, 8 February 2022
Project Q3920514 in Hungary
Language | Label | Description | Also known as |
---|---|---|---|
English | Expansion of production capacity at Gloster Infocommunications Ltd. |
Project Q3920514 in Hungary |
Statements
79,610,000 forint
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435,247.868 Euro
0.0027336256 Euro
14 December 2021
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159,220,000.0 forint
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50.0 percent
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2 March 2018
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2 July 2018
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Gloster Infokommunikációs Kft
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A digitális gyártás szemben a hagyományos gyártással sokkal inkább informatikai fókuszú. Ezt azt jelenti, hogy gyártás előkészítés teljes egészében kompjuterizált módon történik. Digitális készülnek el 3D CAD tervek, azok ellenőrzését és hibajavítását is helyi hardveren futó szoftver végzi. Elektronikus formátumban készülnek el a gyártógép számára az egyes gyártási utasítások. A folyamat teljes egészében papírmentes, és jelentős mértékben optimalizált a hatékonyság érdekében. A gyártási tevékenység megvalósítására egy innovatív technológia keretében kerül sor. A digitális gyártás az a folyamat, amely során CAD- vagy más adatok segítségével történik a felhasználható alkatrészeket készítő additív gyártást végző gép vezérlése. Ilyen alkatrészek lehetnek például a termékek elemei a különféle termelőeszközök vagy a gyártási eszközök cserealkatrészei (különféle tartozékok vagy alkatrészek). A digitális gyártás során nem kerül sor öntésre, megmunkálásra vagy formázásra. A termékek nem az anyag eltávolításával vagy formázásával, hanem rétegenkénti hozzáadásával készülnek. A tervezők által használt kliens gépek kis teljesítményű un. vékonykliensek. A tervezéshez szükséges kapacitást a központosított szerverek biztosítják. Lényege, hogy a tervezők akár távmunkában is dolgozhatnak anélkül, hogy drága(és gyorsan elavuló) hardver eszközökkel kéne őket ellátni. A megoldás másik jelentős előnye a skálázhatóság: a beszerzendő infrastruktúrával akár 15-30 tervező egyidejű munkája is kiszolgálható. A tervezési folyamat végén egy részletgazdag, színes, vektoros (a „végtelenségig” nagyítható) látványtervet készítünk a megrendelőknek. A 3 dimenziós látványterv egy un. „renderelési” folyamaton megy át. Ennek előállítása „hagyományosan” hardverigényes és lassú folyamat. A központosított infrastruktúra segítségével a renderelési idők jelentősen csökkenthetők. A gyártás-előkészítés során egy másik jellemző probléma a mentés / archiválás kérdése. Gyakori hiba, hogy a termelésben részt vevők a fájlokat nem vagy nem megfelelő helyre mentik. Ha távoli asztalon eleve a központi infrastruktúrán dolgoznak ez a hiba nem fordulhat elő. Eleve ott keletkeznek a fájlok, oda mentünk és onnan archiválunk. Központi a vírus ellenőrzés is - egyszerűbb és biztonságosabb a teljes gyártást támogató informatika. A beszerzendő hardvereszközök nagy teljesítményű presszionálás eszközök. Élettartamuk túlmutat a fenntartási időszakon, illetve kapacitásuk bőven elegendő a jelenlegi és a jövőbeni informatikai igényeink kiszolgálására. A beszerzendő dízel agregát a termelés folyamatosságát hivatott szolgálni. A gyártási eljárások többsége nem vagy csak nehezen tolerálja az áramszünetet. A termelés támogatásához használt informatikai hardverek semmilyen mértékben nem tolerálják az áramszünetet. A gyártáshoz használt eszközök folyamatos üzembiztos működése ily módon biztosított. (Hungarian)
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As opposed to traditional production, digital production is more IT-focused. This means that production is made in a fully computed manner. Digital 3D CAD designs are created, they are checked and bug-fixed by software running on local hardware. The individual production instructions for the production machine shall be made in electronic format. The process is entirely paperless and highly optimised for efficiency. The manufacturing activity will be implemented through an innovative technology. Digital manufacturing is the process by which CAD or other data is used to control the additive manufacturing machine that produces usable components. Such parts may include, for example, the components of the products, the various means of production or replacement parts of the manufacturing tools (various accessories or parts). Digital production does not involve casting, machining or formatting. The products are not made by removing or forming the material, but by adding layers. The client machines used by designers are low-powered and thin clients. The planning capacity is provided by centralised servers. The idea is that designers can work remotely without having to provide expensive (and fast-moving) hardware tools. Another significant advantage of the solution is scalability: the infrastructure to be procured can serve the simultaneous work of up to 15-30 designers. At the end of the design process, we prepare a detailed, colorful, vector-based visual design for the customers. The 3-dimensional visual design is a un. it’s going through a “ordering” process. Its production is a “traditionally” hardware-intensive and slow process. With centralised infrastructure, rendering times can be significantly reduced. Another characteristic problem during production preparation is the question of saving/archiving. It is a common mistake that the producers save the files to the wrong location or not. If you are already working on the central infrastructure on a remote desktop, this error cannot occur. That’s where the files come from, we went there and archived from there. Virus control is also central — simpler and safer IT that supports the entire production. The hardware devices to be procured are powerful pression devices. Their lifetime extends beyond the maintenance period and their capacity is well enough to meet our current and future IT needs. The diesel aggregate to be procured is intended to ensure the continuity of production. The majority of production processes do not tolerate or are difficult to tolerate power outages. The IT hardware used to support production does not tolerate power outages to any extent. The continuous operation of the manufacturing devices is thus ensured. (English)
8 February 2022
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Erdőkövesd, Heves
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Identifiers
GINOP-1.2.2-16-2017-00363
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