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IBDRW100-EX

ATEX-Hutschienen-PC (C1D2-zertifiziert) mit Intel® Celeron® N2930

HAUPTMERKMALE

  • Gerät der Klasse 1, Division 2 und ATEX Zone 2, zertifiziert für den Einsatz in explosionsgefährdeten Bereichen
  • Entwickelt für die industrielle Automatisierung, DIN-Schienenanwendung
  • Intel® Celeron® N2930 Bay Trail-M Prozessor
  • 1 x RS232/422/485-Kommunikation, Umschaltung per Sprung
  • 4 x Giga-LAN, 1 x USB 3.0, 3 x USB 2.0, 1 x VGA, 1 x Line-Out, 1 x Stromanschluss
  • Lüfterloses, stromlinienförmiges Gehäuse für hocheffiziente Wärmeableitung
  • Ausgelegt für den Einsatz in einem breiten Temperaturbereich von -20 °C bis 60 °C
  • AWS loT Greengrass-zertifiziert

    CERTIFICATIONS

  • CUL
    Microsoft Azure
    MIL-STD 810G
    AWS
    ATEX & C1D2
    FCC
    CE

IBDRW100-EX

ATEX-Hutschienen-PC (C1D2-zertifiziert) mit Intel® Celeron® N2930
Übersicht
Spezifikation
Zubehör
Produkt-FAQs
Winmate DIN-Schienen-Box-PC IBDRW100-EX mit Explosionsschutz

DIN-Rail Dual-Zertifizierung für C1D2 und ATEX (EX-Serie)

ATEX Zone 2-zertifizierte Computer für die Ferndatenerfassung, Prozessvisualisierung und -steuerung


Winmate DIN-Schienen-Box-PC IBDRW100-EX mit erweiterter Leistung

Hohe Effizienz

Die Intel® Celeron® N2930 ist ein energieeffizienter Quad-Core-SoC für Einsteiger-Notebooks. Es ist mit 1,83 – 2,16 GHz getaktet und Teil der Bay Trail-M-Plattform. Dank des speziell optimierten 22-Nanometer-Low-Power-Prozesses (P1271) mit Tri-Gate-Transistoren wurden Leistung und Energieeffizienz im Vergleich zu früheren Intel® Atom® CPUs. Der N2930 unterstützt Quick Sync sowie Wireless Display.


Winmate DIN-Schienen-Box-PC IBDRW100-EX mit effizienter Wärmeableitung

Effiziente Wärmeableitung ohne Lüfter. Zuverlässig. Industriell

Die IBDRW-Serie ist robust gebaut und verfügt über große Temperatur- und Spannungsbetriebsbereiche, wodurch sie robust genug für den Einsatz in einer industriellen Umgebung ist.


Winmate DIN-Schienen-Box-PC IBDRW100-EX mit breitem Betriebstemperaturbereich

Bereit für anspruchsvolle Umgebungen

Din-Rail-Box-PCs sind so konstruiert, dass sie einfach zu installieren, zugänglich und zu warten sind. Die IBDRW-Serie verfügt über eine breite Palette an I/O-Unterstützung, die sich alle auf der Vorder- oder Oberseite des PCs befinden.

System Specification

Processor

Intel Celeron N2930 1.83GHz (up to 2.16GHz)

Memory

1 x SO-DIMM, DDR3L 1600 MHz, 4GB (Default)
8GB (Optional)

Storage

1 x mSATA SSD 128GB (Default)
256GB (Optional)
512GB (Optional)
1 x SATA III for 2.5" SSD/HDD (Optional)

Ethernet controller

4 x Intel® Ethernet Controller

Security

TPM (Optional)

Operating System

Windows 7 Embedded Systems (Optional)
Windows 10 IoT Enterprise (64 bit) (Optional)
Linux Ubuntu 20.04 (Optional)

WLAN

Support (Optional)

BT

Support (Optional)

Expansion Port

1 x mPCIe slot(for Wi-Fi)
1 x mPCIe slot(for SSD)

Mechanical

Dimension

139 x 65.4 x 152 mm

Weight

1.5 kg

Mounting

Din-Rail mounting

Enclosure

Aluminum Housing

Cooling System

Fanless Design

Environment

Operating Humidity

10% to 90% RH, Non-Condensing

Operating Temperature

-20°C to 60°C

Storage Temperature

-40°C to 80°C

Shock

(Default)
MIL-STD-810G Method 516.6 Procedure I (Optional)

Vibration

MIL-STD-810G Method 514.6 Procedure I

Certification

Certification

CE, FCC

UL 508
CSA C22.2 No.142-m1987
UL 60950-1
CSA C22.2 No. 60950-1-07
EN 62368-1

Class I, Div.2, Groups A,B,C,D
-20 <= Tamb <= 60
Meet Standards
ANSI/ISA-12.12.01-2013-6-03
CAN/CSA C22.2 No. 213-M1987

ATEX II 3G Ex nA IIC T4 Gc
-20 <= Tamb <= 60
Meet Standards
EN 60079-0, EN 60079-15

IO Ports

USB Port

1 x USB3.2 Gen1x1 (Type-A)
3 x USB2.0 (Type-A)

Serial Port

1 x RS232/422/485 DB9 connector (Default RS232)
1 x Isolated RS422/485 DB9 connector (Default RS422)

LAN

4 x Giga LAN RJ45 Connector
(one of them is disabled if WLAN module is added)

Video

1 x VGA DB15 connector

Audio

Mic in
Line in
Line out

Expansion Port

1 x mPCIe slot(for SSD)
1 x mPCIe slot(for Wi-Fi module)

Indicator

1 x LED Indicator for power
1 x LED Indicator for storage

DIDO

1 x Isolated 5V 9-in/9-out DIO with 20-Pin Terminal block (Default)
1 x Isolated 30V 9-in/8-out DIO with 20-Pin Terminal block (Optional)
1 x Isolated 30V 10-in/7-out DIO with 20-Pin Terminal block (Optional)
1 x Isolated 30V 11-in/6-out DIO with 20-Pin Terminal block (Optional)
1 x Isolated 30V 12-in/5-out DIO with 20-Pin Terminal block (Optional)

Power Input

1 x Isolated 9~36V DC with 3-Pin Terminal Block

Control

Button

1 x Reset Button

Accessory

Accessory

1 x 100~240V AC to DC Adapter
1 x Power Cord
2 x Terminal Block 10 pin fconnector for DIDO
1 x Open Wire Cable
1 x Terminal Block 3 pin to 2.5Ø Female Adapter Cable
1 x Din Rail Mounting kits
1 x Cable Holder kits

Power

Power Rating

9V to 36V DC with isolation, 3-Pin Terminal Block

Adapter

12V 36W

OPTIONAL ACCESSORIES

DIN Rail Mounting Clip

DIN Rail Mounting Clip

Model Name: DR-MC

Part Number: 90ME01000000

Cable Holder Kit

Cable Holder Kit

Model Name: DR-CH

Part Number: 98K000A000E0

  • Was ist der Winmate IBDRW100-EX?

    Der IBDRW100-EX ist ein Embedded-PC für DIN-Schienen, der speziell für den Einsatz in explosionsgefährdeten Bereichen zertifiziert ist. Er verfügt über Zertifizierungen der Klasse 1, Division 2 (C1D2) und ATEX Zone 2, sodass er sicher in Umgebungen betrieben werden kann, in denen brennbare Gase oder Dämpfe vorhanden sein können.

  • Wie unterscheidet sich das Modell „Standard -EX” vom nicht zertifizierten Modell „-EL”?

    Der Unterschied liegt in der Einhaltung der Sicherheitsvorschriften.

    • -EL (Entry Level): Nur für den allgemeinen industriellen Gebrauch. Es wirkt als Zündquelle und darf nicht in Gefahrenbereichen verwendet werden.
    • -EX (Explosionsgeschützt): Entwickelt, um Funken zu verhindern und die Oberflächentemperatur zu begrenzen. Es ist gesetzlich vorgeschrieben für die Sicherheit in Zone 2-Bereichen.
  • Wie unterscheidet es sich von der Version „-EX-P“?

    Der Unterschied liegt in der Funktionalität und den Kosten.

    • -EX (Standard): Als reines Datengateway oder Steuergerät konzipiert. Es ist die kostengünstige Wahl für grundlegende Überwachungsaufgaben.
    • -EX-P (Erweitert): Enthält in der Regel zusätzliche Funktionen wie PoE (Power over Ethernet) zur Stromversorgung von Kameras oder bestimmte isolierte E/A, was die Kosten erhöht.
  • Welcher Prozessor treibt den IBDRW100-EX an?

    Er wird von einem Intel® Celeron® N2930 (Bay Trail) Quad-Core-Prozessor angetrieben.

    • Warum dieser CPU? Sein geringer Stromverbrauch (7,5 W) ist für explosionsgefährdete Bereiche von entscheidender Bedeutung. Weniger Strom bedeutet weniger Wärme, wodurch die strengen T-Code-Anforderungen (Temperature Rating) für die Explosionsschutzzertifizierung leichter zu erfüllen sind.
  • Wie lautet die Standardkonfiguration für Arbeitsspeicher und Speicher?

    • Arbeitsspeicher: Integrierte 4 GB DDR3L (für Vibrationsfestigkeit verlötet).
    • Speicher: Unterstützt mSATA-SSD oder 2,5-Zoll-SSD.
    • Empfehlung: Kombinieren Sie dieses Gerät immer mit industriellen SSDs für einen breiten Temperaturbereich, um sicherzustellen, dass der Speicher denselben extremen Bedingungen standhält wie der PC selbst.
  • Ist für die Installation ein spezielles Gehäuse erforderlich?

    In den meisten Zone 2/Division 2-Anwendungen ist kein schweres Ex-d-Gehäuse erforderlich. Der IBDRW100-EX ist als Komponente zertifiziert, die direkt in einem standardmäßigen industriellen Schaltschrank (mit grundlegender IP-Schutzart) innerhalb des Gefahrenbereichs installiert werden kann.

  • Welche E/A-Schnittstellen bietet das Standardmodell -EX?

    Es bietet die für die industrielle Automatisierung erforderlichen Anschlüsse:

    • 1 x Gigabit-LAN: Für die Netzwerkkommunikation mit dem Kontrollraum.
    • 4 x USB: Für die lokale Wartung oder Peripheriegeräte (nicht während des Betriebs in explosionsgefährdeten Bereichen abziehen).
    • 1 x RS232/422/485: Für den Anschluss an SPS, Durchflussmesser oder Drucksensoren.
    • 1 x VGA: Für die lokale Anzeigeausgabe.
  • Wie lautet der Betriebstemperaturbereich?

    Es wurde für extreme Umgebungen entwickelt und unterstützt einen breiten Betriebstemperaturbereich von -20 °C bis 60 °C. Dadurch eignet es sich für Außengehäuse auf Ölplattformen oder Pipelines.

  • Wie wird das Gerät mit Strom versorgt?

    Es unterstützt einen breiten Eingangsspannungsbereich von 9 V bis 36 V Gleichstrom. Der Stromanschluss erfolgt über einen 3-poligen Anschlussblock, der eine sichere, verriegelbare Verbindung bietet und ein versehentliches Trennen (Funkenbildung) aufgrund von Vibrationen verhindert.

  • Was sind die typischen Anwendungsbereiche für dieses Modell?

    • Bohrlochkopfüberwachung: Erfassung von Druck- und Durchflussdaten direkt an der Ölquelle.
    • Überwachung von Chemikalientanks: Anbindung an Füllstandssensoren in Chemikalienlagerbereichen.
    • Daten-Gateway für Raffinerien: Konvertierung von älteren seriellen Daten (RS485) in Ethernet (MQTT) innerhalb der Zone-2-Bereiche der Raffinerie.
ATEX DIN Rail PC (C1D2 Certified) with Intel® Celeron® N2930: The Ultimate Solution for Hazardous Area Applications Hazardous area applications present unique challenges that require specialized equipment designed to operate in hazardous environments. In this context, the ATEX DIN Rail PC (C1D2 Certified) with Intel® Celeron® N2930 stands out as a top-of-the-line solution for hazardous area applications. With its Class 1, Division 2 & ATEX Zone 2 device certification, AWS IoT Greengrass certification, and fanless, streamlined enclosure, this device is a game-changer for industrial automation in hazardous environments. What is the ATEX DIN Rail PC (C1D2 Certified) with Intel® Celeron® N2930? The ATEX DIN Rail PC (C1D2 Certified) with Intel® Celeron® N2930 is a high-performance computing device designed for use in hazardous area applications. The device features a Class 1, Division 2 & ATEX Zone 2 device certification, ensuring maximum safety and reliability in hazardous environments. The device is designed for industrial automation and DIN Rail applications, providing a flexible and versatile solution for a range of industrial applications. Features of ATEX DIN Rail PC (C1D2 Certified) with Intel® Celeron® N2930 The ATEX DIN Rail PC (C1D2 Certified) with Intel® Celeron® N2930 comes with a range of features that make it an ideal solution for hazardous area applications. The device features one RS232 / 422 / 485 communication port, switchable by jump, allowing for flexible configuration and compatibility with a wide range of industrial devices. It is also AWS IoT Greengrass certified, providing a highly secure and reliable computing solution for hazardous area applications. In addition, the ATEX DIN Rail PC (C1D2 Certified) with Intel® Celeron® N2930 is rated for wide temperature use, operating reliably in temperatures ranging from -20˚C to 60˚C. The device's fanless, streamlined enclosure ensures highly efficient heat dissipation, ensuring maximum reliability and longevity. Applications of ATEX DIN Rail PC (C1D2 Certified) with Intel® Celeron® N2930 The ATEX DIN Rail PC (C1D2 Certified) with Intel® Celeron® N2930 is an ideal solution for a wide range of hazardous area applications. Its Class 1, Division 2 & ATEX Zone 2 device certification, secure computing, and versatile communication options make it ideal for use in oil and gas facilities, chemical plants, and other hazardous environments. The device's streamlined enclosure and fanless design ensure reliable and silent operation, making it an excellent solution for noise-sensitive environments. Benefits of ATEX DIN Rail PC (C1D2 Certified) with Intel® Celeron® N2930 The ATEX DIN Rail PC (C1D2 Certified) with Intel® Celeron® N2930 provides numerous benefits for businesses looking to enhance their hazardous area applications. Its certification, secure computing, and versatile communication options ensure maximum safety, efficiency, and productivity, leading to cost savings and improved bottom lines. The device's fanless design and streamlined enclosure provide reliable and silent operation, making it a highly durable and long-lasting solution. ATEX DIN Rail PC (C1D2 Certified) with Intel® Celeron® N2930 is a top-of-the-line solution for hazardous area applications. Its certification, secure computing, and versatile communication options make it an ideal solution for a wide range of hazardous area applications. The device's fanless design and streamlined enclosure. ATEX (Atmosphères Explosibles) is a European Union directive that specifies the standards for equipment used in hazardous environments. ATEX-certified equipment is designed to prevent the ignition of explosive gases or dust, making it safe to use in hazardous areas. An ATEX DIN Rail PC is a computer that meets the ATEX standards for use in explosive environments and is designed to be mounted on a DIN rail. Advantages of ATEX DIN Rail PCs: Safety: The most significant advantage of an ATEX DIN Rail PC is safety. These computers are designed to operate in environments where explosive gases or dust are present, and they are designed to prevent ignition of these substances. This means that they are safe to use in hazardous environments, reducing the risk of accidents or injuries. Space-Saving: ATEX DIN Rail PCs are designed to be mounted on a DIN rail, which is a standard component used in many industrial applications. This makes them easy to install and saves valuable space in control cabinets or other equipment enclosures. Durability: ATEX DIN Rail PCs are built to withstand harsh environments, including extreme temperatures, humidity, and vibration. They are typically constructed with rugged materials, such as stainless steel or aluminum, and are designed to be resistant to water, dust, and other contaminants. This makes them ideal for use in industrial environments, where equipment is often subjected to extreme conditions. Reliability: ATEX DIN Rail PCs are designed to be reliable, with features such as shock and vibration resistance, and redundant power supplies. They are also designed to be easy to maintain, with hot-swappable components and remote monitoring capabilities. This means that they can be quickly and easily repaired or replaced if there is a problem, minimizing downtime and maximizing productivity. Versatility: ATEX DIN Rail PCs are versatile and can be used in a variety of applications. They are commonly used in the oil and gas industry, chemical plants, and other hazardous environments. They can also be used in other industries, such as transportation and logistics, where rugged and durable equipment is required. Easy Integration: ATEX DIN Rail PCs are designed to be easy to integrate into existing systems, with features such as multiple communication interfaces and compatibility with popular industrial protocols. This makes it easy to connect them to other equipment in a control system, such as sensors or actuators. Conclusion: ATEX DIN Rail PCs are an essential component in many hazardous environments, providing reliable and safe computing power in areas where explosive gases or dust are present. Their safety, space-saving, durability, reliability, versatility, and easy integration features make them ideal for use in a variety of applications, including the oil and gas industry, chemical plants, and transportation and logistics. If you're looking for a rugged and reliable computer for use in a hazardous environment, consider an ATEX DIN Rail PC. In hazardous environments where explosive gases, vapors, or dust are present, it is crucial to have reliable and certified devices that prioritize safety without compromising efficiency. Class 1, Division 2 & ATEX Zone 2 certified devices are specifically designed to meet the stringent safety requirements of hazardous areas. In this article, we will explore the features, benefits, and applications of these devices, emphasizing their suitability for industrial automation and DIN Rail applications, where safety and performance are paramount. Section 1: Ensuring Safety with Class 1, Division 2 & ATEX Zone 2 Certification Class 1, Division 2 & ATEX Zone 2 certifications are internationally recognized safety standards for electrical equipment used in hazardous locations. These certifications ensure that devices are designed and tested to operate safely in potentially explosive atmospheres. By using Class 1, Division 2 & ATEX Zone 2 certified devices, businesses can mitigate the risk of ignition and protect personnel and equipment from potential hazards. Section 2: Designed for Industrial Automation Class 1, Division 2 & ATEX Zone 2 certified devices are specifically designed for industrial automation applications in hazardous areas. These devices feature rugged enclosures, robust construction, and advanced protection measures to withstand harsh operating conditions. They can reliably perform critical automation functions such as data acquisition, control, and monitoring, enhancing operational efficiency and productivity in hazardous industrial environments. Section 3: Suitable for DIN Rail Applications DIN Rail applications require compact and easily mountable devices that can be integrated seamlessly into existing systems. Class 1, Division 2 & ATEX Zone 2 certified devices are designed to be DIN Rail mountable, providing a convenient and space-efficient solution for hazardous area applications. Their compact form factor and DIN Rail compatibility make them ideal for use in control cabinets, panels, and other DIN Rail-mounted installations. Section 4: Robust and Reliable Performance Class 1, Division 2 & ATEX Zone 2 certified devices are built to withstand the challenging conditions of hazardous environments. They are engineered to resist temperature variations, vibrations, moisture, and corrosive substances commonly found in industrial settings. These devices ensure reliable performance and minimize downtime, even in the most demanding environments, contributing to increased operational efficiency and reduced maintenance costs. Section 5: Wide Range of Applications in Hazardous Areas Class 1, Division 2 & ATEX Zone 2 certified devices find applications in various industries that require safe and efficient operations in hazardous areas. They are commonly used in oil and gas, petrochemical, chemical manufacturing, pharmaceutical, and mining industries, among others. These devices enable automation, data acquisition, and control in areas where explosive gases, vapors, or combustible dust pose risks. Section 6: Seamless Integration and Connectivity Options Class 1, Division 2 & ATEX Zone 2 certified devices offer seamless integration into existing systems. They are equipped with a variety of connectivity options such as Ethernet, serial ports, USB, and wireless communication, allowing for flexible integration with other devices and networks. This connectivity enables efficient data exchange, remote monitoring, and centralized control, enhancing overall system performance and operability. Section 7: Conclusion Class 1, Division 2 & ATEX Zone 2 certified devices provide a reliable and certified solution for hazardous area applications in industrial automation and DIN Rail installations. These devices ensure safety without compromising efficiency, meeting the stringent requirements of hazardous environments. With their robust construction, reliable performance, and seamless integration capabilities, they contribute to enhanced operational efficiency, reduced risks, and increased productivity in industries where safety is of utmost importance. Why Class 1, Division 2 & ATEX Zone 2 Device Certification is Essential for Hazardous Area Applications? In hazardous environments where flammable gases, vapors, or dust are present, safety is of paramount importance. To ensure the utmost protection against potential hazards, it is crucial to use devices that meet stringent safety standards. This SEO article aims to highlight the significance of Class 1, Division 2, and ATEX Zone 2 device certification for hazardous area applications. Compliance with Regulatory Standards Class 1, Division 2 (in the United States) and ATEX Zone 2 (in Europe) certifications are internationally recognized standards that define the requirements for electrical equipment used in potentially explosive atmospheres. These certifications ensure that devices meet specific safety criteria and are designed to prevent the ignition of flammable substances. By using certified devices, businesses can demonstrate compliance with regulatory standards and avoid legal issues or potential safety hazards. Protection against Explosive Atmospheres Hazardous areas pose a significant risk of explosions due to the presence of flammable substances. Class 1, Division 2, and ATEX Zone 2 device certifications guarantee that the equipment has been rigorously tested and approved for use in such environments. These certifications ensure that devices are constructed with materials and components that minimize the risk of sparks, arcs, or excessive heat that could ignite flammable gases or dust. By using certified devices, businesses can protect their workers, equipment, and facilities from potentially catastrophic incidents. Robust Construction and Design Class 1, Division 2, and ATEX Zone 2 certified devices undergo stringent testing to ensure their suitability for use in hazardous environments. These devices are constructed with robust materials that can withstand the conditions present in explosive atmospheres, including temperature variations, corrosion, and mechanical stress. The design of certified devices includes features such as sealed enclosures, specialized wiring, and flameproof or explosion-proof housings, which prevent the escape of sparks or hot surfaces that could trigger an explosion. Enhanced Safety Features Certified devices are equipped with additional safety features to further mitigate the risks associated with hazardous areas. These features may include overcurrent protection, thermal sensors, fault detection mechanisms, and grounding or bonding options. By incorporating these safety measures, certified devices provide an extra layer of protection against electrical faults, excessive heat, or abnormal operating conditions, reducing the likelihood of accidents or explosions. Reliability and Durability Hazardous area environments can be harsh and demanding, subjecting devices to extreme temperatures, humidity, corrosive substances, and mechanical vibrations. Class 1, Division 2, and ATEX Zone 2 certified devices are designed and tested to withstand these challenging conditions. By using certified devices, businesses can ensure the reliability and durability of their equipment, reducing the risk of downtime, maintenance issues, and costly replacements. International Compatibility Class 1, Division 2 and ATEX Zone 2 certifications have global recognition, allowing businesses to use certified devices across different regions and markets. This international compatibility simplifies the procurement process and ensures consistent safety standards regardless of the geographical location. Whether a business operates in the United States, Europe, or other parts of the world, utilizing certified devices eliminates the need for multiple equipment standards and ensures a unified approach to safety in hazardous areas. When it comes to hazardous area applications, the importance of Class 1, Division 2, and ATEX Zone 2 device certification cannot be overstated. These certifications ensure compliance with regulatory standards, protect against explosive atmospheres, guarantee robust construction and design, offer enhanced safety features, provide reliability and durability, and enable international compatibility. By utilizing certified devices, businesses can prioritize the safety of their personnel, equipment, and facilities, mitigating the risks associated with potentially