[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"$f2fduox5y9si9r":3,"$f3cuodkmi3pys":95,"$f13cypio6dlew1":317,"newsroom-has-articles-en":375},{"data":4},[5,20,30,37,46,54,62,71,80,87],{"id":6,"status":7,"seminar_id":8,"image_main":9,"title":10,"subtitle":11,"slug":12,"short_description":13,"durationDays":14,"formats":15,"formatsOnRequest":19},1,"published","DC-21001","4ec0f043-60ac-4b01-a082-e9c8d2fefe41","Data Center – General Principles",null,"data-center-basic-principles","A fundamental overview of the essential terminologies, trades, key concepts, standards, trends, and best practices in the data center.",3,[16,17,18],"praesenz","live-webinar","videokurs",false,{"id":21,"status":7,"seminar_id":22,"image_main":23,"title":24,"subtitle":25,"slug":26,"short_description":27,"durationDays":28,"formats":29,"formatsOnRequest":19},2,"DC-21002","144bcbbd-cb3e-4ebc-9183-2f5b104b9072","Data Center Design & Implementation","according to EN 50600 and ISO\u002FIEC 22237","data-center-design-implementation","Best practices for designing and implementing data centers according to EN 50600 & ISO\u002FIEC 22237.",5,[16,17],{"id":14,"status":7,"seminar_id":31,"image_main":32,"title":33,"subtitle":11,"slug":34,"short_description":35,"durationDays":28,"formats":36,"formatsOnRequest":19},"DC-21003","b94540de-de24-4383-9c44-0c4207e91a14","Data Center Operations – Professional","data-center-operations-professional","Best practices and case studies provide a deep understanding of the necessary processes and systems to operate a data center efficiently and effectively.",[16,17],{"id":38,"status":7,"seminar_id":39,"image_main":40,"title":41,"subtitle":42,"slug":43,"short_description":44,"durationDays":28,"formats":45,"formatsOnRequest":19},4,"DC-21004","19eb687a-6272-4ff9-b872-2dbcaceb54fd","Deep Dive – Power Supply & Cooling","according to EN 50600","deep-dive-energy-supply-air-conditioning-en-50600","Best practices and case studies provide a deep understanding of the two major trades in the data center.",[16,17],{"id":28,"status":7,"seminar_id":47,"image_main":48,"title":49,"subtitle":50,"slug":51,"short_description":52,"durationDays":28,"formats":53,"formatsOnRequest":19},"DC-21006","5ce01d58-7ac1-494b-a8e1-3cc752d338b7","Data Center Migration","moving IT from an existing facility to a new build","data-center-migration","Navigate safely through the complex journey of data center migration.",[16],{"id":55,"status":7,"seminar_id":56,"image_main":57,"title":58,"subtitle":11,"slug":59,"short_description":60,"durationDays":28,"formats":61,"formatsOnRequest":19},6,"DC-21008","22658b8c-b308-4ce5-a485-be638aa25ebe","Data Center Sustainability & Efficiency","data-center-sustainability-efficiency","Legal foundations, criteria catalogs, developments, and technical solutions",[16],{"id":63,"status":7,"seminar_id":64,"image_main":65,"title":66,"subtitle":11,"slug":67,"short_description":68,"durationDays":6,"formats":69,"formatsOnRequest":70},7,"DC-21009","4c7858fc-30cf-4d07-8e96-cd2c03057f76","Update – EN 50600 and ISO\u002FIEC 22237‑x","update-en-50600-iso-iec-22237-x","The most important changes and differences from the previous standards of the EN 50600 series as well as the major differences between the European and international versions.",[16,17],true,{"id":72,"status":7,"seminar_id":73,"image_main":74,"title":75,"subtitle":76,"slug":77,"short_description":78,"durationDays":14,"formats":79,"formatsOnRequest":19},9,"DC-21010","d87cc210-19f8-4fc2-8ba3-3bfceb69817c","Energy Management According to ISO 50001","for data centers under Section 12 EnEfG","energy-management-din-en-50001","Legally compliant implementation of the Energy Efficiency Act for data centers",[16],{"id":81,"status":7,"seminar_id":82,"image_main":83,"title":84,"subtitle":11,"slug":85,"short_description":11,"durationDays":14,"formats":86,"formatsOnRequest":19},10,"DC-21011","814710db-8b32-40f8-8137-b0fea109c79b","Liquid Cooling, DC Power and High-Bandwidth Cabling","liquid-cooling-dc-power-high-bandwidth-cabling",[16],{"id":88,"status":7,"seminar_id":89,"image_main":90,"title":91,"subtitle":11,"slug":92,"short_description":93,"durationDays":6,"formats":94,"formatsOnRequest":19},8,"DCS-23001","83d21d07-5ee9-4726-a8a0-a32cec614e66","Data Center Passport","data-center-passport","Basic understanding of data centers, structure, components, and trades. Orientation and behavioral guidelines for working in data centers.",[17],{"id":81,"status":7,"seminar_id":82,"image_main":83,"title":84,"subtitle":11,"slug":85,"slugs":96,"short_description":11,"current_price":98,"speakers":99,"seminar_dates":100,"page":125,"facts":314,"video_courses":316},{"de":97,"en":85},"liquid-cooling-gleichstrom-hochbandbreiten-verkabelung",4195,[],{"currentLocale":101,"otherLocales":102},[],[103,112,119],{"id":104,"language":105,"seminar_type":106,"fully_booked":19,"few_seats":19,"date_start":107,"date_end":108,"start":109,"end":110,"location":111},"0e3cc3fa-4715-493e-87c2-7ab56dbf2085","de","in-person","01\u002F12\u002F2026","03\u002F12\u002F2026","2026-12-01","2026-12-03","Munich",{"id":113,"language":105,"seminar_type":106,"fully_booked":19,"few_seats":19,"date_start":114,"date_end":115,"start":116,"end":117,"location":118},"33a594b1-b5da-421d-9ff3-dbcbaa6a2c87","06\u002F04\u002F2027","08\u002F04\u002F2027","2027-04-06","2027-04-08","Frankfurt am Main",{"id":120,"language":105,"seminar_type":106,"fully_booked":19,"few_seats":19,"date_start":121,"date_end":122,"start":123,"end":124,"location":111},"2d80201f-f297-4fa4-82e1-ff7ce8169d9e","23\u002F11\u002F2027","25\u002F11\u002F2027","2027-11-23","2027-11-25",{"source":126,"heroOverline":127,"heroSubtitle":128,"glance":129,"why":145,"imageWhy":163,"audience":164,"depth":11,"goals":188,"modules":196,"standards":240,"practice":265,"process":268,"prerequisites":280,"faq":283,"seo":311},"directus","Seminar for data center managers, specialist planners, facility managers, and IT managers","Designing and operating data centers for AI and HPC: liquid cooling, DC power, and high-bandwidth cabling as one system",{"lead":130,"statement":131,"items":132},"In three days, you learn how data centers with high power densities are designed and operated: which cooling option works at which rack power, what DC power distribution changes in the power supply, how cabling keeps pace with 400 Gb\u002Fs and more, and which processes and responsibilities operation requires.","You can then make decisions at the interfaces between the disciplines \u003Cstrong>based on evidence\u003C\u002Fstrong>, instead of weighing manufacturer data against each other.",[133,136,139,142],{"title":134,"text":135},"Three disciplines, one system","The seminar covers the three disciplines that can no longer be designed separately at high power densities: cooling, power supply, and cabling.",{"title":137,"text":138},"Cooling, power, and cabling","You learn at which rack power air cooling reaches its limit and which type of liquid cooling works then, how water temperature classes, coolant distribution units, and water quality determine design and operation, what DC power distribution changes compared with an AC power supply with double conversion, and how cabling for 400 Gb\u002Fs and more is coordinated with the power supply and cooling.",{"title":140,"text":141},"Operation at the interfaces","The seminar concludes with operation, monitoring, and responsibilities at the interfaces.",{"title":143,"text":144},"Exercises and a case study","You work in exercises and on a case study; all trainers come from real projects.",{"overline":146,"lead":147,"statement":148,"text":149,"items":150},"Why Liquid Cooling, DC Power and High-Bandwidth Cabling?","In enterprise data centers with mixed IT, power has been at 5 kW to 10 kW per rack for years, and an air-cooled rack in a conventional server and storage environment carries 8 kW to 12 kW.","At high power densities, the recommendation to coordinate cabling early becomes \u003Cstrong>a prerequisite\u003C\u002Fstrong>, because pipework, busbars, and cable pathways share the same space and transmission channels for 400 and 800 Gb\u002Fs have their own rules.","This is exactly where the seminar comes in. It treats the three disciplines as one system, with evidence from the standard, manufacturer data, and ongoing projects. This saves you weighing manufacturer data for three disciplines against each other yourself and protects you from decisions at the interfaces that can only be corrected with considerable effort after construction.",[151,154,157,160],{"title":152,"text":153},"AI and HPC systems","Systems for HPC and AI are far above this: 30 kW is common there, 80 kW to 120 kW per rack are being implemented, and individual processors and accelerators reach a power dissipation of 700 W.",{"title":155,"text":156},"Cooling option by rack power","From around 35 kW per rack, enclosed cabinets and rear door coolers help; up to around 75 kW, hybrid liquid cooling works; above that begins the range of fully liquid-cooled systems. The guide values come from the seminar materials of DCE academy. Liquid cooling is not automatically a decision for efficiency: whether it pays off depends on density, available space, technical feasibility, and waste heat reuse.",{"title":158,"text":159},"Losses in double conversion","With cooling, the other two disciplines change as well. A UPS with double conversion reaches an efficiency of around 95 to 96%; the losses arise in the two conversions, and DC power distribution addresses exactly that point.",{"title":161,"text":162},"Size early, coordinate early","EN 50600-2-2 requires the power supply to be sized with an allowance for future growth and higher power density. EN 50600-2-4 recommends designing the cabling early and in coordination with the power supply and environmental control.","ba66303d-ab17-493f-86db-a84e00200c2c",{"items":165,"note":187},[166,169,172,175,178,181,184],{"title":167,"text":168},"Data center managers and operations managers","who provide space for AI or HPC systems and have to decide on cooling, power supply, and cabling together.",{"title":170,"text":171},"Specialist planners and engineers for electrical engineering, cooling, and cabling","who design a new build, an extension, or a retrofit of a data center for high power densities.",{"title":173,"text":174},"Facility managers and building services technicians","who operate water circuits, coolant distribution units, power distribution, and cable pathways and are responsible for the interface with IT.",{"title":176,"text":177},"IT managers and administrators","who procure AI or HPC systems and represent their requirements for water temperature, power, and bandwidth to building services.",{"title":179,"text":180},"Energy officers and energy managers","who assess efficiency and waste heat reuse as power density increases.",{"title":182,"text":183},"Quality managers and internal auditors","who check the design, commissioning, and operation of such systems.",{"title":185,"text":186},"Manufacturers and sales staff of infrastructure components","who discuss the overall system with planners and operators.","\u003Cp>\u003Cstrong>Prior knowledge of the disciplines of a data center helps\u003C\u002Fstrong>; if you want to build it up, you will find it in the seminar Data Center – General Principles. The seminar Deep Dive – Power Supply &amp; Cooling covers power supply and cooling in depth.\u003C\u002Fp>\n",[189,190,191,192,193,194,195],"assess the rack power of your data center today and for the next three to five years and derive the cooling option from it: air cooling, rear door and in-row coolers, closed cabinet, hybrid liquid cooling, full liquid cooling, or immersion;","apply the ASHRAE water temperature classes from W17 to W+ as a design grid and match operation with the IT manufacturer’s data on pressure, flow rate, differential pressure, and temperature change;","separate water circuits and assign responsibility for them: coolant distribution units per rack, per row, or for the building, water quality, additives, dew point margin, leak detection, and the residual heat that remains in the air;","size the power supply for high power densities according to EN 50600-2-2, name the conversion stages and their losses, and assess DC power distribution as an option for your data center;","design cabling early and in coordination according to EN 50600-2-4: Availability Classes of the cabling, fiber for 400 and 800 Gb\u002Fs, loss budgets, cross-connects, and cable pathways that share space with pipework and busbars;","assess cost-effectiveness not only through PUE, but through usable waste heat, space productivity, avoided retrofits, and operational risk;","set up operation: agree on requirements for water quality, pressure, and flow, turn sampling, filtration, maintenance intervals, and leak monitoring into processes, and document the interface between building services and IT in the same way in design, commissioning, and service.",{"lead":197,"items":198},"The five modules follow the path from power density to operation: from the question of where air cooling reaches its limit, through liquid cooling, power supply, and cabling as three disciplines of one system, to the processes that hold it together in operation.",[199,207,216,224,232],{"title":200,"intro":201,"points":202},"Power density and cooling concept","Heat load is moving from room level to chip and rack level: rising power dissipation of processors combined with falling permissible case temperatures brings air cooling to a practical limit in dense HPC and AI systems. The module places rack power levels, cooling options, and decision situations.",[203,204,205,206],"Power density in figures: mixed IT at 5 kW to 10 kW per rack, air-cooled up to 8 kW to 12 kW, HPC from 30 kW, AI with 80 kW to 120 kW per rack; power dissipation of individual processors up to 700 W","Cooling landscape by rack power and number of racks: room cooling, row cooling, cabinet cooling, direct liquid cooling; transition stages up to around 35 kW and 75 kW","Four routes from air to liquid: rear door, in-row, and overhead coolers; closed cabinet; cold plates directly on the processor, graphics processor, accelerator, memory, and power supply unit; immersion in single-phase or two-phase dielectric fluid","When the decision is made: new build, extension, HPC and AI projects; the drivers are density, available space, technical feasibility, and waste heat reuse, not PUE alone",{"title":208,"intro":209,"points":210},"Designing and operating liquid cooling","With liquid cooling, the focus is not on the room air but on the interface between facility water and IT. The module leads from the water temperature class through the coolant distribution unit to water quality and waste heat.",[211,212,213,214,215],"ASHRAE water temperature classes (W17 to W+): maximum supply temperature as a common design grid for manufacturers, planners, and operators; W32 as a pragmatic target range in Europe; W45 and higher for waste heat reuse with a narrower choice of hardware","Circuits and responsibilities: coolant distribution unit (CDU) between the facility water system and the technology cooling system, per rack, per row, or building-wide; without a CDU, building services take over water quality and dew point margin","Water as an operating medium: corrosion and oxygen, biological growth, pH value and conductivity, additives only with the manufacturer’s approval; material mix, hoses, seals, and filtration matched to temperature and pH level","Managing risks: condensation, leakage, pressure, flow, and differential pressure; residual heat from power supply units, memory, and the surroundings that is still removed by air","Efficiency and waste heat: pump power compared with fan power, device fans at 5 to 10% of IT power with air cooling, year-round free cooling, waste heat directly or via a heat pump into the heating network; cost-effectiveness beyond PUE: usable waste heat, space productivity, avoided retrofits, operational risk",{"title":217,"intro":218,"points":219},"Power supply and DC power","More power per rack requires a different power supply and power distribution. The module connects the requirements of EN 50600-2-2 with the conversion stages between grid, UPS, battery, and IT.",[220,221,222,223],"Sizing according to EN 50600-2-2: maximum IT load with an allowance for growth and higher power density, load of environmental control, additional loads and losses; Availability Classes and granularity levels of power distribution","AC power supply with double conversion: rectifier, battery, inverter, efficiency of around 95 to 96%, losses from the two conversions","DC power distribution as an alternative: eliminated conversion stages, DC bus and battery storage, network types and protection concepts; assessment for new builds and existing facilities","Power distribution in the computer room at high power densities: busbars, power distribution units, metering and monitoring per granularity level",{"title":225,"intro":226,"points":227},"Cabling for high bandwidths","EN 50600-2-4 recommends designing cabling at an early stage and coordinating it with the building, power supply, environmental control, and security systems. The module shows what transmission channels for 400 and 800 Gb\u002Fs require of design and installation.",[228,229,230,231],"Availability Classes of the cabling according to EN 50600-2-4, matched to the classes of power supply and cooling; cross-connect with cable management, bend radius control, and slack storage","Fiber for high bandwidths: singlemode and multimode in the data center, parallel optics for 400 and 800 Gb\u002Fs, loss budgets and connectors, migration of services from 10 through 100 to 800 Gb\u002Fs","Cable pathways at high power densities: separation of fiber and copper data cables according to EN 50174-2, pathway systems with capacity and bend radius control, raised access floor without obstructing airflow, coordination with pipework and busbars","Cabinets and racks: growth reserves, cable routing, and ventilation and cooling of the equipment according to EN 50600-2-4 and EN 50600-2-3",{"title":233,"intro":234,"points":235},"Operation, monitoring, and responsibilities","A liquid cooling project is not just a cooling project, but an IT, hydraulics, energy, and operations project at the same time. The module turns the design into processes, monitoring, and clear responsibilities.",[236,237,238,239],"Agreeing on requirements: water quality, pressure, flow, differential pressure, and temperature changes between building services and IT; manufacturer approvals for coolants and additives","Moving into operation: sampling, filtration, maintenance intervals, leak monitoring, monitoring of conductivity, pH value, and oxygen","Documenting the interface: the same description in design, commissioning, and service; the manufacturer’s service and warranty limits; weight, connections, and CDU integration","Responsibilities between facility management, IT, and service providers; monitoring of power, cooling, and cabling as the basis for KPIs and proof",[241,244,247,250,253,256,259,262],{"title":242,"text":243},"EN 50600-1 General concepts","Availability Classes as a common framework for power supply, environmental control, and cabling",{"title":245,"text":246},"EN 50600-2-2","Power supply and distribution, sizing with an allowance for growth and power density, granularity levels",{"title":248,"text":249},"EN 50600-2-3","Environmental control, supply pathways for temperature-controlled fluids, dew point",{"title":251,"text":252},"EN 50600-2-4","Telecommunications cabling infrastructure, early coordination, Availability Classes, cable pathways, cabinets",{"title":254,"text":255},"EN 50173-5","Generic cabling in data centers, transmission channels",{"title":257,"text":258},"EN 50174-2","Installation of cabling, separation of fiber and copper data cables",{"title":260,"text":261},"EN 50600-4-2, 4-6, and 4-7","PUE, Energy Reuse Factor, and Cooling Efficiency Ratio as KPIs",{"title":263,"text":264},"ASHRAE classes for liquid cooling","W17 to W+ as a design grid between manufacturers, planners, and operators",{"source":266,"text":267},"From EN 50600-2-2, Subclause 6.2.1.1, and EN 50600-2-4, Subclause 5.1:","\u003Cp>The power supply of a data center is to be sized for the maximum planned IT load, with an allowance for future growth and technological developments, including higher power density. Cabling should be designed early and in coordination with the power supply and cooling.\u003C\u002Fp>\n\u003Cp>If you know the rack power of the coming years, you size the power supply, cooling, and cable pathways once; if you estimate it, you redesign later.\u003C\u002Fp>\n\u003Cp>This saves you a retrofit during operation when the first AI space arrives and protects you from a cooling concept that the hardware manufacturer no longer approves.\u003C\u002Fp>\n",[269,272,274,277],{"title":270,"text":271},"Seminar times and materials","Three seminar days in person. The first seminar day usually starts at 10:00, the following days at 09:00; the seminar ends at around 17:00. You receive the seminar materials as a PDF in the language in which the seminar is held.",{"title":143,"text":273},"Short inputs alternate with exercises, calculation exercises, and discussions; a case study of a data center with high power densities brings the three disciplines together at their interfaces.",{"title":275,"text":276},"In person","Drinks, coffee, and lunch are included, and there is time to talk with the other participants and with the trainers, who have real project experience.",{"title":278,"text":279},"Exam and certificate","After the seminar, you receive the link to the online exam by email and have one week to take it. When you pass, you receive the seminar certificate, which does not expire and can be verified publicly; you will find the seminar materials and the certificate in DCE Campus.",{"summary":281,"text":282},"none","\u003Cp>Knowledge of the disciplines of a data center, especially power supply and cooling, helps with the exercises; if you want to build it up, you will find it in the seminar Data Center – General Principles, and in depth in the seminar Deep Dive – Power Supply &amp; Cooling.\u003C\u002Fp>\n",[284,287,290,293,296,299,302,305,308],{"question":285,"answer":286},"At what power density does a data center need liquid cooling?","\u003Cp>As a guide value from the seminar materials of DCE academy: an air-cooled rack carries 8 kW to 12 kW, enclosed cabinets and rear door coolers are sufficient up to around 35 kW, hybrid liquid cooling with water-cooled processors and memory up to around 75 kW, and above that begins the range of fully liquid-cooled systems. The decision depends not only on density, but also on available space, technical feasibility, and waste heat reuse. In the seminar, you assess your own rack power for the next three to five years.\u003C\u002Fp>\n",{"question":288,"answer":289},"What is a coolant distribution unit (CDU), and does my data center need one?","\u003Cp>A coolant distribution unit separates the building’s water circuit from the IT cooling circuit and controls supply temperature and flow. It also clarifies responsibilities: without a CDU, building services have to ensure water quality and dew point margin themselves. Whether a CDU per rack, per row, or for the entire building makes sense depends on the number of racks and the concept; the seminar covers the criteria.\u003C\u002Fp>\n",{"question":291,"answer":292},"What role does DC power play in the seminar?","\u003Cp>DC power stands for the power supply at high power densities: a UPS with double conversion reaches an efficiency of around 95 to 96% because alternating current is converted into direct current and back again. DC power distribution eliminates conversion stages. The seminar assesses it as an option, with sizing according to EN 50600-2-2, DC bus and battery storage, network types, and protection concepts; there is no product specification.\u003C\u002Fp>\n",{"question":294,"answer":295},"What does high-bandwidth cabling mean in practice?","\u003Cp>Transmission channels for 400 and 800 Gb\u002Fs, which in data centers run mainly over fiber with parallel optics. Loss budgets, connectors, cross-connects, and the choice between singlemode and multimode matter here. EN 50600-2-4 recommends designing cabling early and coordinating it with the power supply and cooling; at high power densities, cable pathways, pipework, and busbars share the same space.\u003C\u002Fp>\n",{"question":297,"answer":298},"Do I need prior knowledge?","\u003Cp>No formal prerequisites. Knowledge of the disciplines of a data center helps with the exercises; the seminar Data Center – General Principles teaches it in three days, and the seminar Deep Dive – Power Supply &amp; Cooling covers power supply and cooling in depth in five days.\u003C\u002Fp>\n",{"question":300,"answer":301},"How does the seminar differ from Deep Dive – Power Supply & Cooling?","\u003Cp>In its focus on high power densities. The seminar Deep Dive – Power Supply &amp; Cooling covers both disciplines broadly over five days, from thermodynamics and refrigeration to network types, UPS, and metering technology, and gives an insight into liquid cooling. Liquid Cooling, DC Power and High-Bandwidth Cabling concentrates on data centers for AI and HPC over three days and adds cabling as the third discipline.\u003C\u002Fp>\n",{"question":303,"answer":304},"Is the seminar available as a live webinar or video course?","\u003Cp>Not at present; the seminar is held as an in-person seminar in German, in English on request. The dates with location are listed under the seminar dates.\u003C\u002Fp>\n",{"question":306,"answer":307},"Is the seminar vendor-neutral?","\u003Cp>Yes. DCE academy does not sell products and does not represent any manufacturer; no products are sold in the seminar. Its aim is to pass on knowledge and train people well, with experts who know their subject from ongoing projects.\u003C\u002Fp>\n",{"question":309,"answer":310},"Which certificate will I receive?","\u003Cp>After passing the exam, you receive a seminar certificate from DCE academy. You receive the link to the online exam by email after the seminar and have one week to take it. The certificate does not expire and can be verified publicly.\u003C\u002Fp>\n",{"title":312,"description":313},"Liquid Cooling, DC Power and High-Bandwidth Cabling seminar","Liquid cooling, DC power, and cabling for 400 Gb\u002Fs: design and operate data centers with high power densities. Three days, in person.",{"durationDays":14,"formats":315,"formatsOnRequest":19,"isNew":70,"pathwayPosition":11},[16],[],{"data":318},[319,332,344,355,365],{"id":320,"status":7,"sort":6,"slug":321,"position":322,"cv":323,"linkedin":324,"phone":325,"signature_email":326,"first_name":327,"last_name":328,"avatar":329,"profile":330},"9eff7954-eeab-4a8f-96d7-fd578be1b1b1","thomas-wawra","CEO","\u003Cp>Dipl. Ing. Thomas Wawra gr&uuml;ndete 2007 die DCE academy und entwickelte Sie zum f&uuml;hrenden Anbieter von herstellerneutralen Schulungen im Bereich Rechenzentrum basierend auf der Norm EN 50600. Als Sponsor unterst&uuml;tzt er aktiv die Internationalisierung der Norm zur ISO 22237 und referiert weltweit auf Kongressen zu Normierungsfragen.\u003C\u002Fp>\n\u003Cp>In den Jahren 2002 bis 2006 war Thomas Wawra Gesamtverantwortlicher f&uuml;r das Auslandsgesch&auml;ft der Venali Inc., Miami, USA. In dieser Zeit leitete er den gesamten Bereich Vertrieb und baute strategische Partnerschaften mit Unternehmen wie, Microsoft und SAP erfolgreich auf. Davor bekleidete er die Position des Gesch&auml;ftsf&uuml;hrers der Venali Europe GmbH, einem Start Up Unternehmen im Bereich Secure Messaging. In dieser Rolle trug er ebenfalls ma&szlig;geblich zum Erfolg des Unternehmens bei und er&ouml;ffnete im Zeitraum von 1996 bis 2007 die Niederlassungen in London, Singapur und Deutschland. Zudem zeichnete er f&uuml;r die Konzipierung und Umsetzung des gesamten Vertriebskonzeptes verantwortlich und war an der Sicherung der Finanzierung durch die Gewinnung von Venture Capital-Gebern sowie Business Angels wesentlich beteiligt.\u003C\u002Fp>\n\u003Cp>Thomas Wawra ist diplomierter Maschinenbauingenieur der Technischen Universit&auml;t M&uuml;nchen.\u003C\u002Fp>","https:\u002F\u002Fwww.linkedin.com\u002Fin\u002Fthomas-wawra-a780425\u002F","+49 163 6010442","thomas.wawra@dce-academy.com","Thomas","Wawra","0afd33cf-4d17-49f6-9dfa-f71b65dc15db",{"kind":331,"slug":321},"team",{"id":333,"status":7,"sort":21,"slug":334,"position":335,"cv":336,"linkedin":337,"phone":338,"signature_email":339,"first_name":340,"last_name":341,"avatar":342,"profile":343},"adc4834c-325d-45ca-bb3e-d3eeb380b962","sebastian-galleitner","CMO & CTO","\u003Cp>Sebastian Galleitner verfügt über mehr als 25 Jahre Expertise im strategischen Marketing und in der Entwicklung digitaler Lösungen. Als Chief Marketing Officer der DCE academy verantwortet er die gesamte Kommunikationsstrategie und Markenführung der Academy.\u003C\u002Fp>\u003Cp>Sein fachlicher Hintergrund umfasst umfangreiche Erfahrung in der Konzeption und Umsetzung komplexer Marketingstrategien für technologieorientierte Unternehmen. Diese Fachkompetenz ergänzt ideal die herstellerunabhängige, technische Expertise der DCE academy im Rechenzentrumsbereich.\u003C\u002Fp>\u003Cp>In seiner Funktion sorgt er dafür, dass die präzisen Schulungsangebote ihre Zielgruppen erreichen und die DCE academy als führende Autorität für Rechenzentrumsexpertise wahrgenommen wird. Dabei setzt er auf eine systematische, faktenbasierte Kommunikation, die den hohen Qualitätsanspruch der Ausbildungen widerspiegelt.\u003C\u002Fp>\u003Cp>Vor seiner Tätigkeit für die DCE academy hat Sebastian Galleitner erfolgreich Marketingstrategien für namhafte Unternehmen in der Finanz- und Automobilbranche entwickelt und ist mit den besonderen Anforderungen technisch anspruchsvoller B2B-Kommunikation bestens vertraut.\u003C\u002Fp>\u003Cp>Die Verbindung aus methodischem Marketing-Know-how und Verständnis für technische Zusammenhänge ermöglicht es ihm, die komplexen Inhalte der Schulungen zielgruppengerecht aufzubereiten und den besonderen Wert der praxisorientierten Wissensvermittlung zu kommunizieren.\u003C\u002Fp>","https:\u002F\u002Fwww.linkedin.com\u002Fin\u002Fsebastian-galleitner\u002F","+491749793327","sebastian.galleitner@dce-academy.com","Sebastian","Galleitner","d168850c-990d-467a-8150-97954ef803ef",{"kind":331,"slug":334},{"id":345,"status":7,"sort":14,"slug":346,"position":347,"cv":348,"linkedin":349,"phone":11,"signature_email":350,"first_name":351,"last_name":352,"avatar":353,"profile":354},"dd1bebf0-6d1f-4262-9ec4-524ed59d3901","juergen-strate","Chief Education & Alliance Officer","\u003Cp>J&uuml;rgen Strate, Dipl.-Ing. der Versorgungstechnik, war als Direktor f&uuml;r Sales &amp; Strategic Business Development f&uuml;r den Gesch&auml;ftsbereich Site and Facilities Services D\u002FA\u002FCH der IBM Deutschland GmbH verantwortlich.&nbsp;\u003C\u002Fp>\n\u003Cp>Er war seit 1990 Mitarbeiter der IBM Deutschland.&nbsp; Herr Strate begann seine Karriere bei IBM als Spezialist f&uuml;r Anlagentechnik im Bereich Chemische Verfahrenstechnik im IBM Halbleiterwerk B&ouml;blingen\u002FSindelfingen. Anschlie&szlig;end wechselte er in den IBM Bereich Industry Solution verbunden mit der Qualifizierung zum IT-Systemingenieur.\u003C\u002Fp>\n\u003Cp>Seit 1998 geh&ouml;rte er dem Gesch&auml;ftsbereich Site and Facilities Services der IBM an.&nbsp; In verschiedenen Rollen verf&uuml;gt er seit mehr als 25 Jahren &uuml;ber umfangreiche Erfahrung in der Beratung, Planung und Realisierung von Rechenzentren unter Sicherheits- und Verf&uuml;gbarkeitsaspekten. Hierzu geh&ouml;rte auch eine umfassende und professionelle Begleitung von der Rechenzentrumsstrategie &uuml;ber Planung und Realisierung bis zur Indienstsetzung von Rechenzentren. Er hat den Gesch&auml;ftsbereich Site and Facilities Services f&uuml;r IBM mitgestaltet und aufgebaut sowie die Entwicklung standardisierter Rechenzentrumsl&ouml;sungen f&uuml;r den Mittelstand sowie von Enterprise Datacentern vorangetrieben. Ein besonderer Fokus lag in der Ausgestaltung von energieeffizienten L&ouml;sungen sowie der Einhaltung von aktuellen Standards, insbesondere der DIN EN 50600.\u003C\u002Fp>\n\u003Cp>Herr Strate war als Keynote-Speaker und Referent auf Fachveranstaltungen pr&auml;sent. Er &uuml;bte in enger Zusammenarbeit mit der DCE academy die Referentent&auml;tigkeit zu verschiedenen fachlichen Themen im Rechenzentrumsbereich aus.\u003C\u002Fp>\n\u003Cp>IBM Site and Facilities Services plante und realisierte als General&uuml;bernehmer schl&uuml;sselfertig sichere, hochverf&uuml;gbare, modulare, skalierbare, innovative und energieeffiziente Rechenzentren.\u003C\u002Fp>\n\u003Cp>Seit 2021 ist Herr Strate freiberuflich als Referent \u002F Dozent f&uuml;r die DCE academy t&auml;tig.&nbsp;\u003C\u002Fp>","https:\u002F\u002Fwww.linkedin.com\u002Fin\u002Fjuergen-strate\u002F","juergen.strate@dce-academy.com","Jürgen","Strate","48a241a8-9ea1-44ff-94dc-ea0fc76ab74b",{"kind":331,"slug":346},{"id":356,"status":7,"sort":38,"slug":357,"position":358,"cv":359,"linkedin":11,"phone":11,"signature_email":360,"first_name":361,"last_name":362,"avatar":363,"profile":364},"e3ce035f-250a-427e-9219-ed262d272263","victor-dadson","Business Development Manager","","victor.dadson@dce-academy.com","Victor","Dadson","9985058e-5846-4308-b2ac-66b60b9f2428",{"kind":331,"slug":357},{"id":366,"status":7,"sort":28,"slug":367,"position":368,"cv":359,"linkedin":369,"phone":11,"signature_email":370,"first_name":371,"last_name":372,"avatar":373,"profile":374},"398a42f3-c77f-4db0-b75a-d82a47ed9c3f","kelly-grispen","Sales","https:\u002F\u002Fwww.linkedin.com\u002Fin\u002Fkelly-g-990229230\u002F","kelly.grispen@dce-academy.com","Kelly","Grispen","fc4d5b35-af11-48d3-b8c2-5b162ce02fe0",{"kind":331,"slug":367},{"meta":376},{"total":377,"page":6,"pageSize":6},0]