- ASIC
- Battery management ICs
- Clocks and timing solutions
- ESD and surge protection devices
- Automotive Ethernet: Powering smart vehicles
- Evaluation Boards
- High reliability
- Isolation
- Memories
- Microcontroller
- Power
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- Security and smart card solutions
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- Automotive Ethernet Bridges
- Automotive Ethernet PHY for in-vehicle networking
- Automotive Ethernet Switches for in-vehicle networking
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- Defense
- High-reliability custom services
- New space
- Space
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- Embedded flash IP solutions
- Flash+RAM MCP solutions
- F-RAM (Ferroelectric RAM)
- NOR flash
- nvSRAM (non-volatile SRAM)
- PSRAM (Pseudostatic RAM)
- Radiation hardened and high-reliability memories
- RRAM Resistive Ram
- SRAM (static RAM)
- Wafer and die memory solutions
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- 32-bit FM Arm® Cortex® Microcontroller
- 32-bit AURIX™ TriCore™ microcontroller
- 32-bit PSOC™ Arm® Cortex® microcontroller
- 32-bit TRAVEO™ T2G Arm® Cortex® microcontroller
- 32-bit XMC™ industrial microcontroller Arm® Cortex®-M
- Legacy microcontroller
- MOTIX™ MCU | 32-bit motor control SoC based on Arm® Cortex®-M
- Sensing controllers
- Überblick
- AC-DC power conversion
- Automotive conventional powertrain ICs
- Class D audio amplifier ICs
- Contactless power and sensing ICs
- DC-DC converters
- Diodes and thyristors (Si/SiC)
- Gallium nitride (GaN)
- Gate driver ICs
- IGBTs – Insulated gate bipolar transistors
- Intelligent power modules (IPM)
- LED driver ICs
- Motor control ICs
- Power MOSFETs
- Power modules
- Power supply ICs
- Silicon carbide (SiC)
- Smart power switches
- Solid state relays
- Wireless charging ICs
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- Antenna cross switches
- Antenna tuners
- Bias and control
- Coupler
- Driver amplifiers
- High Reliability Discrete
- Low noise amplifiers (LNAs)
- RF diode
- RF switches
- RF transistors
- Wireless control receiver
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- Calypso® products
- CIPURSE™ products
- Contactless memories
- OPTIGA™ embedded security solutions
- SECORA™ security solutions
- Security controllers
- Smart card modules
- Smart solutions for government ID
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- ToF 3D image sensors
- Current sensors
- Gas sensors
- Inductive position sensors
- MEMS microphones
- Pressure sensors
- Radar sensors
- Magnetic position sensors
- Magnetic speed sensors
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- Bipolar transistors
- Diodes
- Small signal/small power MOSFET
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- Automotive transceivers
- Control communication
- Powerline communications
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- USB 2.0 peripheral controllers
- USB 3.2 peripheral controllers
- USB hub controllers
- USB PD high-voltage microcontrollers
- USB-C AC-DC and DC-DC charging solutions
- USB-C charging port controllers
- USB-C Power Delivery controllers
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- AIROC™ Automotive wireless
- AIROC™ Bluetooth® and multiprotocol
- AIROC™ connected MCU
- AIROC™ Wi-Fi + Bluetooth® combos
- Überblick
- Commercial off-the-shelf (COTs) memory portfolio
- Defense memory portfolio
- High-reliability power conversion and management
- Überblick
- NewSpace memory portfolio
- Radiation tolerant power
- Überblick
- Rad hard microwave and RF
- Radiation hardened power
- Space memory portfolio
- Überblick
- Parallel NOR flash
- SEMPER™ NOR flash family
- SEMPER™ X1 LPDDR flash
- Serial NOR flash
- Überblick
- FM0+ 32-bit Arm® Cortex®-M0+ microcontroller (MCU) families
-
FM3 32-bit Arm® Cortex®-M3 microcontroller (MCU) families
- Überblick
- FM3 CY9AFx1xK series Arm® Cortex®-M3 microcontroller (MCU)
- FM3 CY9AFx1xL/M/N series Arm® Cortex®-M3 microcontroller (MCU)
- FM3 CY9AFx2xK/L series Arm® Cortex®-M3 microcontroller (MCU)
- FM3 CY9AFx3xK/L series ultra-low leak Arm® Cortex®-M3 microcontroller (MCU)
- FM3 CY9AFx4xL/M/N series low power Arm® Cortex®-M3 microcontroller (MCU)
- FM3 CY9AFx5xM/N/R series low power Arm® Cortex®-M3 microcontroller (MCU)
- FM3 CY9AFxAxL/M/N series ultra-low leak Arm® Cortex®-M3 microcontroller (MCU)
- FM3 CY9BFx1xN/R high-performance series Arm® Cortex®-M3 microcontroller (MCU)
- FM3 CY9BFx1xS/T high-performance series Arm® Cortex®-M3 microcontroller (MCU)
- FM3 CY9BFx2xJ series Arm® Cortex®-M3 microcontroller (MCU)
- FM3 CY9BFx2xK/L/M series Arm® Cortex®-M3 microcontroller (MCU)
- FM3 CY9BFx2xS/T series Arm® Cortex®-M3 microcontroller (MCU)
-
FM4 32-bit Arm® Cortex®-M4 microcontroller (MCU) families
- Überblick
- FM4 CY9BFx6xK/L high-performance series Arm® Cortex®-M4F microcontroller (MCU)
- FM4 CY9BFx6xM/N/R high-performance series Arm® Cortex®-M4F microcontroller (MCU)
- FM4 S6E2C high-performance series Arm® Cortex®-M4F microcontroller (MCU)
- FM4 S6E2G series connectivity Arm® Cortex®-M4F microcontroller (MCU)
- FM4 S6E2H high-performance series Arm® Cortex®-M4F microcontroller (MCU)
- Überblick
-
32-bit TriCore™ AURIX™ – TC2xx
- Überblick
- AURIX™ family – TC21xL
- AURIX™ family – TC21xSC (wireless charging)
- AURIX™ family – TC22xL
- AURIX™ family – TC23xL
- AURIX™ family – TC23xLA (ADAS)
- AURIX™ family – TC23xLX
- AURIX™ family – TC264DA (ADAS)
- AURIX™ family – TC26xD
- AURIX™ family – TC27xT
- AURIX™ family – TC297TA (ADAS)
- AURIX™ family – TC29xT
- AURIX™ family – TC29xTT (ADAS)
- AURIX™ family – TC29xTX
- AURIX™ TC2x emulation devices
-
32-bit TriCore™ AURIX™ – TC3xx
- Überblick
- AURIX™ family - TC32xLP
- AURIX™ family – TC33xDA
- AURIX™ family - TC33xLP
- AURIX™ family – TC35xTA (ADAS)
- AURIX™ family – TC36xDP
- AURIX™ family – TC37xTP
- AURIX™ family – TC37xTX
- AURIX™ family – TC38xQP
- AURIX™ family – TC39xXA (ADAS)
- AURIX™ family – TC39xXX
- AURIX™ family – TC3Ex
- AURIX™ TC37xTE (emulation devices)
- AURIX™ TC39xXE (emulation devices)
- 32-bit TriCore™ AURIX™ – TC4x
- Überblick
- PSOC™ 4 Arm® Cortex®-M0/M0+
- PSOC™ 4 HV Arm® Cortex®-M0+
- PSOC™ 5 LP Arm® Cortex®-M3
- PSOC™ 6 Arm® Cortex®-M4/M0+
- PSOC™ Multitouch Arm® Cortex®-M0
- PSOC™ Control Arm® Cortex®-M33
- PSOC™ Fingerprint Arm® Cortex®-M0+
- PSOC™ Automotive 4: Arm® Cortex®-M0/M0+
- PSOC™ Edge Arm® Cortex® M55/M33
- Überblick
- 32-bit TRAVEO™ T2G Arm® Cortex® for body
- 32-bit TRAVEO™ T2G Arm® Cortex® for cluster
- Überblick
- 32-bit XMC1000 industrial microcontroller Arm® Cortex®-M0
- 32-bit XMC4000 industrial microcontroller Arm® Cortex®-M4
- XMC5000 Industrial Microcontroller Arm® Cortex®-M4F
- 32-bit XMC7000 Industrial Microcontroller Arm® Cortex®-M7
- Überblick
- Legacy 32-bit MCU
- Legacy 8-bit/16-bit microcontroller
- Other legacy MCUs
- Überblick
- AC-DC integrated power stage - CoolSET™
- AC-DC PWM-PFC controller
- Überblick
- Bridge rectifiers & AC switches
- CoolSiC™ Schottky diodes
- Diode bare dies
- Silicon diodes
- Thyristor / Diode Power Modules
- Thyristor soft starter modules
- Thyristor/diode discs
- Überblick
- Automotive gate driver ICs
- Isolated Gate Driver ICs
- Level-Shift Gate Driver ICs
- Low-Side Drivers
- Transformer Driver ICs
- Überblick
- AC-DC LED driver ICs
- Ballast IC
- DC-DC LED driver IC
- LED dimming interface IC
- Linear LED driver IC
- LITIX™ - Automotive LED Driver IC
- NFC wireless configuration IC with PWM output
- VCSEL driver
- Überblick
- 32-bit PSOC™ Control Arm® Cortex®-M33 MCU
- iMOTION™ Integrated motor control solutions
- MOTIX™ MCU | 32-bit motor control SoC based on Arm® Cortex®-M
- MOTIX™ motor control ICs for BLDC motors
- MOTIX™ motor control ICs for brushed DC motors
- MOTIX™ multi half-bridge ICs for servo and stepper motors
- Überblick
- Automotive MOSFET
- Dual MOSFETs
- MOSFET (Si & SiC) Modules
- N-channel depletion mode MOSFET
- N-channel power MOSFETs
- P-channel power MOSFETs
- Silicon carbide CoolSiC™ MOSFETs
- Small signal/small power MOSFET
- Überblick
- Automotive transceivers
- OPTIREG™ linear voltage regulators (LDO)
- OPTIREG™ PMIC
- OPTIREG™ switcher
- OPTIREG™ System Basis Chips (SBC)
- Überblick
-
High-side switches
- Überblick
- Classic PROFET™ 12V | Automotive smart high-side switch
- Classic PROFET™ 24V | Automotive smart high-side switch
- Power PROFET™ + 12/24/48V | Automotive smart high-side switch
- PROFET™ + 12V | Automotive smart high-side switch
- PROFET™ + 24V | Automotive smart high-side switch
- PROFET™ + 48V | Automotive smart high-side switch
- PROFET™ +2 12V | Automotive smart high-side switch
- PROFET™ Industrial | Smart high-side switch
- PROFET™ Load Guard 12V | Automotive smart high-side switch
- PROFET™ Wire Guard 12V | Automotive smart high-side switch
- Low-side switches
- Multichannel SPI Switches & Controller
- Überblick
- Radar sensors for automotive
- Radar sensors for IoT
- Überblick
- EZ-USB™ CX3 MIPI CSI2 to USB 3.0 camera controller
- EZ-USB™ FX10 & FX5N USB 10Gbps peripheral controller
- EZ-USB™ FX20 USB 20 Gbps peripheral controller
- EZ-USB™ FX3 USB 5 Gbps peripheral controller
- EZ-USB™ FX3S USB 5 Gbps peripheral controller with storage interface
- EZ-USB™ FX5 USB 5 Gbps peripheral controller
- EZ-USB™ SD3 USB 5 Gbps storage controller
- EZ-USB™ SX3 FIFO to USB 5 Gbps peripheral controller
- Überblick
- EZ-PD™ CCG3 USB type-C port controller PD
- EZ-PD™ CCG3PA USB-C and PD
- EZ-PD™ CCG3PA-NFET USB-C PD controller
- EZ-PD™ CCG7x consumer USB-C Power Delivery & DC-DC controller
- EZ-PD™ PAG1: power adapter generation 1
- EZ-PD™ PAG2: Power Adapter Generation 2
- EZ-PD™ PAG2-PD USB-C PD Controller
- Überblick
- EZ-PD™ ACG1F one-port USB-C controller
- EZ-PD™ CCG2 USB Type-C port controller
- EZ-PD™ CCG3PA Automotive USB-C and Power Delivery controller
- EZ-PD™ CCG4 two-port USB-C and PD
- EZ-PD™ CCG5 dual-port and CCG5C single-port USB-C PD controllers
- EZ-PD™ CCG6 one-port USB-C & PD controller
- EZ-PD™ CCG6_CFP and EZ-PD™ CCG8_CFP Dual-Single-Port USB-C PD
- EZ-PD™ CCG6DF dual-port and CCG6SF single-port USB-C PD controllers
- EZ-PD™ CCG7D Automotive dual-port USB-C PD + DC-DC controller
- EZ-PD™ CCG7S Automotive single-port USB-C PD solution with a DC-DC controller
- EZ-PD™ CCG7SAF Automotive Single-port USB-C PD + DC-DC Controller + FETs
- EZ-PD™ CCG8 dual-single-port USB-C PD
- EZ-PD™ CMG1 USB-C EMCA controller
- EZ-PD™ CMG2 USB-C EMCA controller with EPR
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- Defense applications
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- 48 V systems for EVs & mild hybrids
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- Automotive body electronics & power distribution
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- Chassis control & safety
- Electric vehicle drivetrain system
- EV thermal management system
- Internal combustion drivetrain systems
- In-vehicle infotainment & HMI
- Light electric vehicle solutions
- Überblick
- Adapters and chargers
- Complete system solutions for smart TVs
- Mobile device and smartphone solutions
- Multicopters and drones
- Power tools
- Semiconductor solutions for home entertainment applications
- Smart conference systems
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- Adapters and chargers
- Asset Tracking
- Battery formation and testing
- Electric forklifts
- Battery energy storage (BESS)
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- Industrial automation
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- Industrial robots system solutions for Industry 4.0
- LED lighting system design
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- Power tools
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- Traction
- Uninterruptible power supplies (UPS)
- Überblick
- Data center and AI data center solutions
- Edge computing
- Telecommunications infrastructure
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- Battery formation and testing
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- Hydrogen
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- Solid-state circuit breaker
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- Device authentication and brand protection
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- Domestic robots
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- PC accessories
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- Battery management systems (BMS)
- Connectivity
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- Automotive auxiliary systems
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- Body control modules (BCM)
- Comfort & convenience electronics
- Zonal DC-DC converter 48 V-12 V
- Zone control unit
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- Automotive animated LED lighting system
- Automotive LED front single light functions
- Automotive LED rear single light functions
- Full LED headlight system - multi-channel LED driver
- LED drivers (electric two- & three-wheelers)
- LED pixel light controller - supply & communication
- Static interior ambient LED light
- Überblick
- Active suspension control
- Airbag system
- Automotive braking solutions
- Automotive steering solutions
- Chassis domain control
- Reversible seatbelt pretensioner
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Automotive BMS
- Überblick
- Automotive battery cell monitoring & balancing
- Automotive battery control unit (BCU)
- Automotive battery isolated communication
- Automotive battery management system (BMS) - 12 V to 24 V
- Automotive battery management system (BMS) - 48 V
- Automotive battery management system (BMS) - high-voltage
- Automotive battery pack monitoring
- Automotive battery passport & event logging
- Automotive battery protection & disconnection
- Automotive current sensing & coulomb counting
- BMS (electric two- & three-wheelers)
- EV charging
- EV inverters
- EV power conversion & OBC
- FCEV powertrain system
- Überblick
- Automatic transmission hydraulic system
- Belt starter generator 48 V – inverter ISG
- Diesel direct injection
- Double-clutch transmission electrical control
- Double-clutch transmission hydraulic control
- Gasoline direct injection
- Multi-port fuel injection
- Small 1-cylinder combustion engine solution
- Small engine starter kit
- Transfer case brushed DC
- Transfer case brushless DC (BLDC)
- Überblick
- Automotive head unit
- Automotive USB-C power & data solution
- Automotive instrument cluster
- Automotive telematics control unit (TCU)
- Center information display (CID)
- High-performance cockpit controller
- In-cabin wireless charging
- Smart instrument cluster (electric two- & three-wheelers)
- Überblick
- E-bike solutions
- Two- & three-wheeler solutions
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- Audio amplifier solutions
- Complete system solutions for smart TVs
- Distribution audio amplifier unit solutions
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- PoE audio amplifier unit solutions
- Portable speaker solutions
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- Remote control
- Smart speaker designs
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- Data center and AI data center solutions
- Digital input/output (I/O) modules
- DIN rail power supply solutions
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- 48 V intermediate bus converter (IBC)
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- Server power supply
- SmartNIC cards
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- AC-DC power conversion for telecommunications infrastructure
- DC-DC power conversion for telecommunications infrastructure
- FPGA in wired and wireless telecommunications applications
- Satellite communications
- Power system reliability modeling
- RF front end components for telecommunications infrastructure
- Überblick
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AC-DC power conversion
- Überblick
- AC-DC auxiliary power supplies
- AC-DC power conversion for telecommunications infrastructure
- Adapters and chargers
- Automotive LED lighting systems
- Complete system solutions for smart TVs
- Desktop power supplies
- EV charging
- Industrial power supplies
- PoE power sourcing equipment (PSE)
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- Power supply health monitoring
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- CAPSENSE™ Controllers Code Examples
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- DEEPCRAFT™ AI Hub
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DEEPCRAFT™ Ready Models
- Überblick
- DEEPCRAFT™ Ready Model for Baby Cry Detection
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- DEEPCRAFT™ Ready Model for Factory Alarm Detection
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Infineon tritt der EEBus Initiative e.V. bei und unterstützt dadurch die Standardisierung von Energiemanagementsystemen
Infineon tritt der EEBus Initiative e.V. bei und unterstützt dadurch die Standardisierung von Energiemanagementsystemen
Market News
München – 4. Oktober 2022 – Weltweit wächst der Anteil volatiler erneuerbarer Energiequellen, gleichzeitig nimmt die Elektrifizierung der Mobilität zu. Die Verbesserung der Systemintegration von Energieverbrauchern aus allen Sektoren ist ein wichtiger Schritt, diese Trends zu unterstützen. Dafür ist aber ein ganzheitlicher Ansatz erforderlich: von der grünen Stromerzeugung über eine stabile und effiziente Netzinfrastruktur bis hin zu Speicherung und Verbrauch. Das bidirektionale Laden leistet hierbei einen wichtigen Beitrag. Es ermöglicht beispielsweise, den in der Batterie eines Elektrofahrzeugs gespeicherten Strom bei Bedarf zur Versorgung des Stromnetzes oder von Haushaltsgeräten zu nutzen. Allerdings benötigen Energieerzeuger und Endgeräte eine standardisierte Sprache, um miteinander kommunizieren zu können.
Als Lösungsanbieter ist die Infineon Technologies AG an einer standardisierten Kommunikation für die gesamte Kette der Energiesteuerung interessiert. Deshalb ist das Unternehmen nun der EEBus Initiative beigetreten, die sich für die Standardisierung von Schnittstellen einsetzt. Diese ermöglicht eine einheitliche Kommunikation zwischen Energieerzeugern und Endgeräten. Die Initiative bringt internationale Unternehmen und Verbände aus verschiedenen Bereichen wie energierelevante Geräte und Systeme, Energieversorgung und Netzbetrieb sowie Informations- und Kommunikationstechnologie zusammen. Infineon ist das erste Halbleiterunternehmen, das sich der Initiative anschließt.
„Das Prinzip eines einheitlichen Energie-Ökosystems war von Anfang an die Grundphilosophie der EEBus Initiative. Wir bieten eine offene Lösung für alle Marktteilnehmer statt einer weiteren proprietären Insellösung“, sagt Dr. Robert Böhm, Geschäftsführer der EEBus Initiative e.V. „Mit EEBus entwickeln und standardisieren wir im Auftrag der Industrie eine dynamisch flexible Schnittstelle und stellen einen globalen Standard für die Kommunikation bereit.“
„Die kontinuierliche und kollaborative Abstimmung der Mitglieder auf Augenhöhe in den Arbeitsgruppen schafft eine einheitliche und herstellerunabhängige Kommunikationslösung, die für bidirektionales Laden und ein dezentrales Stromnetz unerlässlich ist“, sagt Andreas Urschitz, Chief Marketing Officer von Infineon. „Mit dem besonderen Fokus von EEBus auf Energiemanagement können bidirektionale Endgeräte einfach und effizient in das Smart Grid integriert werden.“
EEBus als einheitlicher Standard
EEBus ist eine herstellerunabhängige und standardisierte Sprache für den Austausch von energie- und anwendungsrelevanten Informationen. Die standardbasierte Sprache kann kostenlos genutzt werden und ermöglicht die reibungslose Funktion aller Geräte, auch bei Energieengpässen, sowie die Bereitstellung von Plug-and-Play-Lösungen für private und gewerbliche Anwendungen.
Die EEBus Initiative unterscheidet generell zwischen dem Inhalt, nämlich dem Datenmodell, das übertragen wird, und der Art der Übertragung beziehungsweise dem Kommunikationsweg. Das EEBus-Datenmodell „SPINE“ (Smart Premises Interoperable Neutral-Message Exchange) kann über viele Kommunikationswege und -protokolle transportiert werden. Ein mögliches Transportprotokoll ist das IP-basierte „SHIP“ (Smart Home IP), das auf weit verbreiteten RFCs basiert und in einer bestehenden IP-Infrastruktur verwendet werden kann. Um maximale Flexibilität zu erreichen, basiert die EEBus-Architektur auf dem Smart Grid Architecture Model (SGAM) und bietet Lösungen für mehrere Schichten.
Unabhängig von den bisher verwendeten Kommunikationstechnologien oder der Branchenzugehörigkeit können Unternehmen SPINE nutzen, um ihre Dienste oder Plattformen anzubieten und potenziell Millionen von energierelevanten Geräten zu steuern oder als Gerätehersteller ihre eigenen Produkte intelligent und interoperabel mit einem größeren Ökosystem zu verbinden. Weitere Informationen über die EEBus Initiative e.V. sind erhältlich unter www.eebus.org.
Mehr Informationen zum Beitrag von Infineon im Bereich Energieeffizienz: www.infineon.com/green-energy.
Pressefotos
Standards Smart Home
Als Lösungsanbieter ist Infineon an einer standardisierten Kommunikation für die gesamte Kette der Energiesteuerung interessiert. Deshalb ist das Unternehmen nun der EEBus Initiative beigetreten, die sich für die Standardisierung von Schnittstellen einsetzt. Diese ermöglicht eine einheitliche Kommunikation zwischen Energieerzeugern und Endgeräten.
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Information Number : INFXX202210-001