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Companies use SCADA systems to control equipment across their sites and to collect and record data about their operations. SCADA is not a specific technology, but a type of application. Any application that gets operating data about a system in order to control and optimise that system is a SCADA application. That application may be a petrochemical distillation process, a water filtration system, a pipeline compressor, or just about anything else.\r\nSCADA solutions typically come in a combination of software and hardware elements, such as programmable logic controllers (PLCs) and remote terminal units (RTUs). Data acquisition in SCADA starts with PLCs and RTUs, which communicate with plant floor equipment such as factory machinery and sensors. Data gathered from the equipment is then sent to the next level, such as a control room, where operators can supervise the PLC and RTU controls using human-machine interfaces (HMIs). HMIs are an important element of SCADA systems. They are the screens that operators use to communicate with the SCADA system.\r\n<p class=\"align-center\"><span style=\"font-weight: bold; \">The major components of a SCADA technology include:</span></p>\r\n<ul><li><span style=\"font-weight: bold;\">Master Terminal Unit (MTU).</span> It comprises a computer, PLC and a network server that helps MTU to communicate with the RTUs. MTU begins communication, collects and saves data, helps to interface with operators and to communicate data to other systems.</li><li><span style=\"font-weight: bold;\">Remote Terminal Unit (RTU).</span> RTU is used to collect information from these sensors and further sends the data to MTU. RTUs have the storage capacity facility. So, it stores the data and transmits the data when MTU sends the corresponding command.</li><li><span style=\"font-weight: bold;\">Communication Network (defined by its network topology).</span> In general, network means connection. When you tell a SCADA communication network, it is defined as a link between RTU in the field to MTU in the central location. The bidirectional wired or wireless communication channel is used for the networking purpose. Various other communication mediums like fiber optic cables, twisted pair cables, etc. are also used.</li></ul>\r\n<p class=\"align-center\"><span style=\"font-weight: bold; \">Objectives of Supervisory Control and Data Acquisition system</span></p>\r\n<ul><li><span style=\"font-weight: bold;\">Monitor:</span> SCADA control system continuously monitors the physical parameters</li><li><span style=\"font-weight: bold;\">Measure:</span> It measures the parameter for processing</li><li><span style=\"font-weight: bold;\">Data Acquisition:</span> It acquires data from RTU, data loggers, etc</li><li><span style=\"font-weight: bold;\">Data Communication:</span> It helps to communicate and transmit a large amount of data between MTU and RTU units</li><li><span style=\"font-weight: bold;\">Controlling:</span> Online real-time monitoring and controlling of the process</li><li><span style=\"font-weight: bold;\">Automation:</span> It helps for automatic transmission and functionality</li></ul>\r\n\r\n","materialsDescription":"<h1 class=\"align-center\">Who Uses SCADA?</h1>\r\nSCADA systems are used by industrial organizations and companies in the public and private sectors to control and maintain efficiency, distribute data for smarter decisions, and communicate system issues to help mitigate downtime. Supervisory control systems work well in many different types of enterprises because they can range from simple configurations to large, complex installations. They are the backbone of many modern industries, including:\r\n<ul><li>Energy</li><li>Food and beverage</li><li>Manufacturing</li><li>Oil and gas</li><li>Power</li><li>Recycling</li><li>Transportation</li><li>Water and waste water</li><li>And many more</li></ul>\r\nVirtually anywhere you look in today's world, there is some type of SCADA monitoring system running behind the scenes: maintaining the refrigeration systems at the local supermarket, ensuring production and safety at a refinery, achieving quality standards at a waste water treatment plant, or even tracking your energy use at home, to give a few examples. Effective SCADA systems can result in significant savings of time and money. Numerous case studies have been published highlighting the benefits and savings of using a modern SCADA software.\r\n<h1 class=\"align-center\">Benefits of using SCADA software</h1>\r\nUsing modern SCADA software provides numerous benefits to businesses, and helps companies make the most of those benefits. Some of these advantages include:\r\n<span style=\"font-weight: bold; \">Easier engineering:</span> An advanced supervisory control application such provides easy-to-locate tools, wizards, graphic templates and other pre-configured elements, so engineers can create automation projects and set parameters quickly, even if they don't have programming experience. In addition, you can also easily maintain and expand existing applications as needed. The ability to automate the engineering process allows users, particularly system integrators and original equipment manufacturers (OEM), to set up complex projects much more efficiently and accurately.\r\n<span style=\"font-weight: bold; \">Improved data management:</span> A high-quality SCADA system makes it easier to collect, manage, access and analyze your operational data. It can enable automatic data recording and provide a central location for data storage. Additionally, it can transfer data to other systems such as MES and ERP as needed. \r\n<span style=\"font-weight: bold; \">Greater visibility:</span> One of the main advantages of using SCADA software is the improvement in visibility into your operations. It provides you with real-time information about your operations and enables you to conveniently view that information via an HMI. SCADA monitoring can also help in generating reports and analyzing data.\r\n<span style=\"font-weight: bold; \">Enhanced efficiency:</span> A SCADA system allows you to streamline processes through automated actions and user-friendly tools. The data that SCADA provides allows you to uncover opportunities for improving the efficiency of the operations, which can be used to make long-term changes to processes or even respond to real-time changes in conditions.\r\n<span style=\"font-weight: bold; \">Increased usability:</span> SCADA systems enable workers to control equipment more quickly, easily and safely through an HMI. Rather than having to control each piece of machinery manually, workers can manage them remotely and often control many pieces of equipment from a single location. Managers, even those who are not currently on the floor, also gain this capability.\r\n<span style=\"font-weight: bold; \">Reduced downtime:</span> A SCADA system can detect faults at an early stage and push instant alerts to the responsible personnel. Powered by predictive analytics, a SCADA system can also inform you of a potential issue of the machinery before it fails and causes larger problems. These features can help improve the overall equipment effectiveness (OEE) and reduce the amount of time and cost on troubleshooting and maintenance.\r\n<span style=\"font-weight: bold;\">Easy integration:</span> Connectivity to existing machine environments is key to removing data silos and maximizing productivity. \r\n<span style=\"font-weight: bold;\">Unified platform:</span>All of your data is also available in one platform, which helps you to get a clear overview of your operations and take full advantage of your data. All users also get real-time updates locally or remotely, ensuring everyone on your team is on the same page.<br /><br />","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/SCADA__-_Supervisory_Control_And_Data_Acquisition.png","alias":"scada-supervisory-control-and-data-acquisition"}},"companySizes":"101 to 500 Employees","companyUrl":"http://www.highseclabs.com/","countryCodes":[],"certifications":[],"isSeller":true,"isSupplier":true,"isVendor":true,"presenterCodeLng":"","seo":{"title":"High Sec Labs (HSL)","keywords":"","description":"\r\nHigh Sec Labs (HSL) develops high-quality, cyber-defense solutions in the field of network and peripheral isolation.\r\nThe company, headquartered in Caesarea Industry and Business Park, Israel, was founded in 2008 and has a second manufacturing site in the Un","og:title":"High Sec Labs (HSL)","og:description":"\r\nHigh Sec Labs (HSL) develops high-quality, cyber-defense solutions in the field of network and peripheral isolation.\r\nThe company, headquartered in Caesarea Industry and Business Park, Israel, was founded in 2008 and has a second manufacturing site in the Un","og:image":"https://old.roi4cio.com/uploads/roi/company/HSL_logo.png"},"eventUrl":"","vendorPartners":[],"supplierPartners":[],"vendoredProducts":[{"id":3311,"logoURL":"https://old.roi4cio.com/fileadmin/user_upload/IMG_SK81DU-3_SIDE_FRONT.jpg","logo":true,"scheme":false,"title":"Secure 8-port dual-head KVM Switches","vendorVerified":0,"rating":"0.00","implementationsCount":0,"suppliersCount":0,"supplierPartnersCount":0,"alias":"secure-8-port-dual-head-kvm-switches","companyTitle":"High Sec Labs (HSL)","companyTypes":["supplier","vendor"],"companyId":5158,"companyAlias":"high-sec-labs-hsl","description":"<span style=\"color: rgb(97, 97, 97); \">Keyboard Video Mouse (KVM) switch offered by HSL allows securely sharing keyboard, video, mouse, audio and USB peripherals between multiple computers while maintaining the highest isolation.<br /></span>\r\n<span style=\"color: rgb(97, 97, 97); \">Obviate the need for purchasing and installing dedicated, per-computer peripheral sets.<br /><br /></span>\r\n<ul><li><span style=\"font-weight: bold;\"><span style=\"color: rgb(97, 97, 97); \">NIAP Common Criteria PP3.0 Certification</span></span><p><span style=\"color: rgb(97, 97, 97); \">HSL KVMs qualify to the latest NIAP Common Criteria Protection Profile version 3.0 (PP3.0) certification for peripheral Sharing Switch (PSS) devices.</span></p><p> </p></li></ul>\r\n<ul><li><span style=\"font-weight: bold;\"><span style=\"color: rgb(97, 97, 97); \">Securely share peripherals across different security domains</span></span><p><span style=\"color: rgb(97, 97, 97); \">Securely share peripherals between computers that belong to different security classifications levels while keeping the highest possible data separation security.</span></p><p> </p></li></ul>\r\n<ul><li><span style=\"color: rgb(97, 97, 97); \"><span style=\"font-weight: bold;\">Prevent information leaks</span></span><span style=\"color: rgb(97, 97, 97); \"></span><br /><p><span style=\"color: rgb(97, 97, 97); \">Obstacle threats derived from sharing and switching of vulnerable, untrusted or unauthorized peripheral devices. Block peripheral exploits, information leaks, eavesdropping, signal transmission, computer malware, hardware and firmware tampering by enforcing multilayered security mechanisms.</span></p><p> </p></li></ul>\r\n<ul><li><span style=\"color: rgb(97, 97, 97); \"><span style=\"font-weight: bold;\">Filter USB Peripherals</span></span><span style=\"font-weight: bold;\"><span style=\"color: rgb(97, 97, 97); \"></span></span><br /><span style=\"color: rgb(97, 97, 97); \">Block unauthorized USB devices while allowing secure switching of smart card and biometric authentication devices between computers. Whitelist and blacklist specific USB devices based on VID/PID characteristics.</span><span style=\"color: rgb(97, 97, 97); \"></span></li></ul>\r\n\r\n<ul><li><span style=\"font-weight: bold;\"><span style=\"color: rgb(97, 97, 97); \">Multi Monitor Support</span></span><br /><span style=\"color: rgb(97, 97, 97); \">Dual head KVM models provide flexible presentation options by supporting duplicate and extend view modes to fit any use case scenario.</span><span style=\"color: rgb(97, 97, 97); \"></span></li></ul>","shortDescription":"SECURE 8-PORT DUAL-HEAD KVM SWITCHES - peripheral device for securely sharing keyboard, video, mouse, audio and USB devices to make it easy to work with multiple computers.","type":null,"isRoiCalculatorAvaliable":false,"isConfiguratorAvaliable":false,"bonus":100,"usingCount":19,"sellingCount":13,"discontinued":0,"rebateForPoc":0,"rebate":0,"seo":{"title":"Secure 8-port dual-head KVM Switches","keywords":"","description":"<span style=\"color: rgb(97, 97, 97); \">Keyboard Video Mouse (KVM) switch offered by HSL allows securely sharing keyboard, video, mouse, audio and USB peripherals between multiple computers while maintaining the highest isolation.<br /></span>\r\n<span style=\"col","og:title":"Secure 8-port dual-head KVM Switches","og:description":"<span style=\"color: rgb(97, 97, 97); \">Keyboard Video Mouse (KVM) switch offered by HSL allows securely sharing keyboard, video, mouse, audio and USB peripherals between multiple computers while maintaining the highest isolation.<br /></span>\r\n<span style=\"col","og:image":"https://old.roi4cio.com/fileadmin/user_upload/IMG_SK81DU-3_SIDE_FRONT.jpg"},"eventUrl":"","translationId":3312,"dealDetails":null,"roi":null,"price":null,"bonusForReference":null,"templateData":[],"testingArea":"","categories":[{"id":540,"title":"Security Hardware","alias":"security-hardware","description":"Hardware security as a discipline originated out of cryptographic engineering and involves hardware design, access control, secure multi-party computation, secure key storage, ensuring code authenticity and measures to ensure that the supply chain that built the product is secure, among other things.\r\nA hardware security module (HSM) is a physical computing device that safeguards and manages digital keys for strong authentication and provides cryptoprocessing. These modules traditionally come in the form of a plug-in card or an external device that attaches directly to a computer or network server.\r\nSome providers in this discipline consider that the key difference between hardware security and software security is that hardware security is implemented using "non-Turing-machine" logic (raw combinatorial logic or simple state machines). One approach, referred to as "hardsec", uses FPGAs to implement non-Turing-machine security controls as a way of combining the security of hardware with the flexibility of software.\r\nHardware backdoors are backdoors in hardware. Conceptionally related, a hardware Trojan (HT) is a malicious modification of an electronic system, particularly in the context of an integrated circuit.\r\nA physical unclonable function (PUF) is a physical entity that is embodied in a physical structure and is easy to evaluate but hard to predict. Further, an individual PUF device must be easy to make but practically impossible to duplicate, even given the exact manufacturing process that produced it. In this respect, it is the hardware analog of a one-way function. The name "physically unclonable function" might be a little misleading as some PUFs are clonable, and most PUFs are noisy and therefore do not achieve the requirements for a function. Today, PUFs are usually implemented in integrated circuits and are typically used in applications with high-security requirements.\r\nMany attacks on sensitive data and resources reported by organizations occur from within the organization itself.","materialsDescription":"<span style=\"font-weight: bold;\">What is hardware information security?</span>\r\nHardware means various types of devices (mechanical, electromechanical, electronic, etc.), which solve information protection problems with hardware. They impede access to information, including through its disguise. The hardware includes: noise generators, surge protectors, scanning radios and many other devices that "block" potential channels of information leakage or allow them to be detected. The advantages of technical means are related to their reliability, independence from subjective factors and high resistance to modification. The weaknesses include a lack of flexibility, relatively large volume and mass and high cost. The hardware for information protection includes the most diverse technical structures in terms of operation, device and capabilities, which ensure the suppression of disclosure, protection against leakage and counteraction to unauthorized access to sources of confidential information.\r\n<span style=\"font-weight: bold;\">Where is the hardware used to protect information?</span>\r\nHardware information protection is used to solve the following problems:\r\n<ul><li>conducting special studies of technical means of ensuring production activity for the presence of possible channels of information leakage;</li><li>identification of information leakage channels at various objects and in premises;</li><li>localization of information leakage channels;</li><li>search and detection of industrial espionage tools;</li><li>countering unauthorized access to confidential information sources and other actions.</li></ul>\r\n<span style=\"font-weight: bold;\">What is the classification of information security hardware?</span>\r\nAccording to the functional purpose, the hardware can be classified into detection tools, search tools and detailed measurements and active and passive countermeasures. At the same time, according to their technical capabilities, information protection tools can be general-purpose, designed for use by non-professionals in order to obtain preliminary (general) estimates, and professional complexes that allow for a thorough search, detection and precision measurement of all the characteristics of industrial espionage equipment. As an example of the former, we can consider a group of IP electromagnetic radiation indicators, which have a wide range of received signals and rather low sensitivity. As a second example - a complex for the detection and direction finding of radio bookmarks, designed to automatically detect and locate radio transmitters, radio microphones, telephone bookmarks and network radio transmitters.<br /><br />","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/icon_Security_Hardware.png"},{"id":511,"title":"Peripherals","alias":"peripherals","description":" Computer peripherals are the devices you use to expand your system's functionality and are not essential for the computer to work. Many peripherals are external devices that give you a way to input information. For example, you might use a mouse or trackpad to navigate the screen, a keyboard to type text or a microphone to record audio. Other peripherals are output devices that let you see, print or listen to something, such as monitors, printers, and speakers. While debatable since they are key components for a functional computer, internal devices like hard drives and memory may be considered peripherals.\r\nKeyboards, mice, touchpads and other Human Interface Devices are very common peripherals of computer systems. A HID is a peripheral that lets the computer use input data or interact with the computer. HIDs are always considered peripheral devices because it is possible for a computer to operate and do countless jobs without the need for human interaction. You can disconnect an HID from a computer and replace it with a new one without affecting the core functionality of the system.\r\nData storage devices are hardware devices capable of holding information and include system RAM, internal hard drives, external hard drives, solid-state drives, flash drives, memory cards, and cassettes. Any type of storage device that connects outside of the computer, or isn't necessary for the computer to run, is considered a peripheral. For example, you can connect and disconnect external hard drives, flash drives and memory cards without disabling the computer. However, system RAM and internal hard drives straddle the peripheral line. While the motherboard and CPU have small amounts of built-in memory, alone, they are not enough to utilize most of the computer's capabilities.\r\nUnless a computer operates in a self-contained situation, without any need for human interaction, it's necessary for the computer to convey information to the user. The computer uses peripheral devices like monitors, speakers and screen readers to translate the system's binary data stream into something people can understand and interact with. Computer peripheral devices encompass all devices that the system uses to output data, including printers. The data output devices aren't essential for the computer to operate, they're just needed to make the system useful.\r\nAny type of peripheral card, like a graphics card, sound card, network card or controller card, is considered a peripheral. Most modern non-storage based internal storage devices use the Peripheral Component Internet and PCI Express connection standards. The connection standard name itself implies that what ever hardware uses it is a peripheral device. While peripheral devices are necessary for things like displaying video output and communicating with other computers on a network, the computer can still operate without them.","materialsDescription":" <span style=\"font-weight: bold;\">What is a peripheral device?</span>\r\nA peripheral is a hardware input device or output device that gives a computer additional functionality. Peripheral devices, however, are not essential for the computer to perform its basic tasks; they can be thought of as an enhancement to the user's experience.\r\n<span style=\"font-weight: bold;\">What are computer peripheral examples?</span>\r\nBelow are examples of computer peripherals that could be used with a computer. None of these devices are required by a computer but gives the computer additional capabilities. For example, the sound card gives a computer to play sounds and although it might be boring to have a computer with no sound or music the computer would still work without one.\r\n<ul><li>Digital camera and digital camcorder;</li><li>Joystick;</li><li>Keyboard;</li><li>Microphone;</li><li>Mouse;</li><li>Monitor, touch screen, projector, or other display devices;</li><li>Printer;</li><li>Plotter;</li><li>Scanner;</li><li>Sound card;</li><li>Speakers;</li><li>Projector;</li><li>Tape drive.</li></ul>\r\n<span style=\"font-weight: bold;\">Why are the keyboard and mouse a peripheral?</span>\r\nMany computer users are surprised to learn that a computer can run without a keyboard and a mouse. Both of these devices are not required for a computer to run, which is why they're considered peripherals. In fact, many of the servers at data centers have no keyboard or mouse and are often managed remotely.\r\n<span style=\"font-weight: bold;\">What peripheral devices come with a computer?</span>\r\nWhen you buy a new desktop computer, it comes with a keyboard, mouse, sound card, power plug, and may also include a monitor. A laptop computer includes everything, so it only includes a power cord.","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/icon_Perifirals.png"},{"id":59,"title":"SCADA - Supervisory Control And Data Acquisition","alias":"scada-supervisory-control-and-data-acquisition","description":"<span style=\"font-weight: bold; \">SCADA</span> stands for <span style=\"font-weight: bold; \">Supervisory Control and Data Acquisition</span>, a term which describes the basic functions of a SCADA system. Companies use SCADA systems to control equipment across their sites and to collect and record data about their operations. SCADA is not a specific technology, but a type of application. Any application that gets operating data about a system in order to control and optimise that system is a SCADA application. That application may be a petrochemical distillation process, a water filtration system, a pipeline compressor, or just about anything else.\r\nSCADA solutions typically come in a combination of software and hardware elements, such as programmable logic controllers (PLCs) and remote terminal units (RTUs). Data acquisition in SCADA starts with PLCs and RTUs, which communicate with plant floor equipment such as factory machinery and sensors. Data gathered from the equipment is then sent to the next level, such as a control room, where operators can supervise the PLC and RTU controls using human-machine interfaces (HMIs). HMIs are an important element of SCADA systems. They are the screens that operators use to communicate with the SCADA system.\r\n<p class=\"align-center\"><span style=\"font-weight: bold; \">The major components of a SCADA technology include:</span></p>\r\n<ul><li><span style=\"font-weight: bold;\">Master Terminal Unit (MTU).</span> It comprises a computer, PLC and a network server that helps MTU to communicate with the RTUs. MTU begins communication, collects and saves data, helps to interface with operators and to communicate data to other systems.</li><li><span style=\"font-weight: bold;\">Remote Terminal Unit (RTU).</span> RTU is used to collect information from these sensors and further sends the data to MTU. RTUs have the storage capacity facility. So, it stores the data and transmits the data when MTU sends the corresponding command.</li><li><span style=\"font-weight: bold;\">Communication Network (defined by its network topology).</span> In general, network means connection. When you tell a SCADA communication network, it is defined as a link between RTU in the field to MTU in the central location. The bidirectional wired or wireless communication channel is used for the networking purpose. Various other communication mediums like fiber optic cables, twisted pair cables, etc. are also used.</li></ul>\r\n<p class=\"align-center\"><span style=\"font-weight: bold; \">Objectives of Supervisory Control and Data Acquisition system</span></p>\r\n<ul><li><span style=\"font-weight: bold;\">Monitor:</span> SCADA control system continuously monitors the physical parameters</li><li><span style=\"font-weight: bold;\">Measure:</span> It measures the parameter for processing</li><li><span style=\"font-weight: bold;\">Data Acquisition:</span> It acquires data from RTU, data loggers, etc</li><li><span style=\"font-weight: bold;\">Data Communication:</span> It helps to communicate and transmit a large amount of data between MTU and RTU units</li><li><span style=\"font-weight: bold;\">Controlling:</span> Online real-time monitoring and controlling of the process</li><li><span style=\"font-weight: bold;\">Automation:</span> It helps for automatic transmission and functionality</li></ul>\r\n\r\n","materialsDescription":"<h1 class=\"align-center\">Who Uses SCADA?</h1>\r\nSCADA systems are used by industrial organizations and companies in the public and private sectors to control and maintain efficiency, distribute data for smarter decisions, and communicate system issues to help mitigate downtime. Supervisory control systems work well in many different types of enterprises because they can range from simple configurations to large, complex installations. They are the backbone of many modern industries, including:\r\n<ul><li>Energy</li><li>Food and beverage</li><li>Manufacturing</li><li>Oil and gas</li><li>Power</li><li>Recycling</li><li>Transportation</li><li>Water and waste water</li><li>And many more</li></ul>\r\nVirtually anywhere you look in today's world, there is some type of SCADA monitoring system running behind the scenes: maintaining the refrigeration systems at the local supermarket, ensuring production and safety at a refinery, achieving quality standards at a waste water treatment plant, or even tracking your energy use at home, to give a few examples. Effective SCADA systems can result in significant savings of time and money. Numerous case studies have been published highlighting the benefits and savings of using a modern SCADA software.\r\n<h1 class=\"align-center\">Benefits of using SCADA software</h1>\r\nUsing modern SCADA software provides numerous benefits to businesses, and helps companies make the most of those benefits. Some of these advantages include:\r\n<span style=\"font-weight: bold; \">Easier engineering:</span> An advanced supervisory control application such provides easy-to-locate tools, wizards, graphic templates and other pre-configured elements, so engineers can create automation projects and set parameters quickly, even if they don't have programming experience. In addition, you can also easily maintain and expand existing applications as needed. The ability to automate the engineering process allows users, particularly system integrators and original equipment manufacturers (OEM), to set up complex projects much more efficiently and accurately.\r\n<span style=\"font-weight: bold; \">Improved data management:</span> A high-quality SCADA system makes it easier to collect, manage, access and analyze your operational data. It can enable automatic data recording and provide a central location for data storage. Additionally, it can transfer data to other systems such as MES and ERP as needed. \r\n<span style=\"font-weight: bold; \">Greater visibility:</span> One of the main advantages of using SCADA software is the improvement in visibility into your operations. It provides you with real-time information about your operations and enables you to conveniently view that information via an HMI. SCADA monitoring can also help in generating reports and analyzing data.\r\n<span style=\"font-weight: bold; \">Enhanced efficiency:</span> A SCADA system allows you to streamline processes through automated actions and user-friendly tools. The data that SCADA provides allows you to uncover opportunities for improving the efficiency of the operations, which can be used to make long-term changes to processes or even respond to real-time changes in conditions.\r\n<span style=\"font-weight: bold; \">Increased usability:</span> SCADA systems enable workers to control equipment more quickly, easily and safely through an HMI. Rather than having to control each piece of machinery manually, workers can manage them remotely and often control many pieces of equipment from a single location. Managers, even those who are not currently on the floor, also gain this capability.\r\n<span style=\"font-weight: bold; \">Reduced downtime:</span> A SCADA system can detect faults at an early stage and push instant alerts to the responsible personnel. Powered by predictive analytics, a SCADA system can also inform you of a potential issue of the machinery before it fails and causes larger problems. These features can help improve the overall equipment effectiveness (OEE) and reduce the amount of time and cost on troubleshooting and maintenance.\r\n<span style=\"font-weight: bold;\">Easy integration:</span> Connectivity to existing machine environments is key to removing data silos and maximizing productivity. \r\n<span style=\"font-weight: bold;\">Unified platform:</span>All of your data is also available in one platform, which helps you to get a clear overview of your operations and take full advantage of your data. All users also get real-time updates locally or remotely, ensuring everyone on your team is on the same page.<br /><br />","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/SCADA__-_Supervisory_Control_And_Data_Acquisition.png"}],"characteristics":[],"concurentProducts":[],"jobRoles":[],"organizationalFeatures":[],"complementaryCategories":[],"solutions":[],"materials":[],"useCases":[],"best_practices":[],"values":[],"implementations":[]}],"suppliedProducts":[{"id":3311,"logoURL":"https://old.roi4cio.com/fileadmin/user_upload/IMG_SK81DU-3_SIDE_FRONT.jpg","logo":true,"scheme":false,"title":"Secure 8-port dual-head KVM Switches","vendorVerified":0,"rating":"0.00","implementationsCount":0,"suppliersCount":0,"supplierPartnersCount":0,"alias":"secure-8-port-dual-head-kvm-switches","companyTitle":"High Sec Labs (HSL)","companyTypes":["supplier","vendor"],"companyId":5158,"companyAlias":"high-sec-labs-hsl","description":"<span style=\"color: rgb(97, 97, 97); \">Keyboard Video Mouse (KVM) switch offered by HSL allows securely sharing keyboard, video, mouse, audio and USB peripherals between multiple computers while maintaining the highest isolation.<br /></span>\r\n<span style=\"color: rgb(97, 97, 97); \">Obviate the need for purchasing and installing dedicated, per-computer peripheral sets.<br /><br /></span>\r\n<ul><li><span style=\"font-weight: bold;\"><span style=\"color: rgb(97, 97, 97); \">NIAP Common Criteria PP3.0 Certification</span></span><p><span style=\"color: rgb(97, 97, 97); \">HSL KVMs qualify to the latest NIAP Common Criteria Protection Profile version 3.0 (PP3.0) certification for peripheral Sharing Switch (PSS) devices.</span></p><p> </p></li></ul>\r\n<ul><li><span style=\"font-weight: bold;\"><span style=\"color: rgb(97, 97, 97); \">Securely share peripherals across different security domains</span></span><p><span style=\"color: rgb(97, 97, 97); \">Securely share peripherals between computers that belong to different security classifications levels while keeping the highest possible data separation security.</span></p><p> </p></li></ul>\r\n<ul><li><span style=\"color: rgb(97, 97, 97); \"><span style=\"font-weight: bold;\">Prevent information leaks</span></span><span style=\"color: rgb(97, 97, 97); \"></span><br /><p><span style=\"color: rgb(97, 97, 97); \">Obstacle threats derived from sharing and switching of vulnerable, untrusted or unauthorized peripheral devices. Block peripheral exploits, information leaks, eavesdropping, signal transmission, computer malware, hardware and firmware tampering by enforcing multilayered security mechanisms.</span></p><p> </p></li></ul>\r\n<ul><li><span style=\"color: rgb(97, 97, 97); \"><span style=\"font-weight: bold;\">Filter USB Peripherals</span></span><span style=\"font-weight: bold;\"><span style=\"color: rgb(97, 97, 97); \"></span></span><br /><span style=\"color: rgb(97, 97, 97); \">Block unauthorized USB devices while allowing secure switching of smart card and biometric authentication devices between computers. Whitelist and blacklist specific USB devices based on VID/PID characteristics.</span><span style=\"color: rgb(97, 97, 97); \"></span></li></ul>\r\n\r\n<ul><li><span style=\"font-weight: bold;\"><span style=\"color: rgb(97, 97, 97); \">Multi Monitor Support</span></span><br /><span style=\"color: rgb(97, 97, 97); \">Dual head KVM models provide flexible presentation options by supporting duplicate and extend view modes to fit any use case scenario.</span><span style=\"color: rgb(97, 97, 97); \"></span></li></ul>","shortDescription":"SECURE 8-PORT DUAL-HEAD KVM SWITCHES - peripheral device for securely sharing keyboard, video, mouse, audio and USB devices to make it easy to work with multiple computers.","type":null,"isRoiCalculatorAvaliable":false,"isConfiguratorAvaliable":false,"bonus":100,"usingCount":19,"sellingCount":13,"discontinued":0,"rebateForPoc":0,"rebate":0,"seo":{"title":"Secure 8-port dual-head KVM Switches","keywords":"","description":"<span style=\"color: rgb(97, 97, 97); \">Keyboard Video Mouse (KVM) switch offered by HSL allows securely sharing keyboard, video, mouse, audio and USB peripherals between multiple computers while maintaining the highest isolation.<br /></span>\r\n<span style=\"col","og:title":"Secure 8-port dual-head KVM Switches","og:description":"<span style=\"color: rgb(97, 97, 97); \">Keyboard Video Mouse (KVM) switch offered by HSL allows securely sharing keyboard, video, mouse, audio and USB peripherals between multiple computers while maintaining the highest isolation.<br /></span>\r\n<span style=\"col","og:image":"https://old.roi4cio.com/fileadmin/user_upload/IMG_SK81DU-3_SIDE_FRONT.jpg"},"eventUrl":"","translationId":3312,"dealDetails":null,"roi":null,"price":null,"bonusForReference":null,"templateData":[],"testingArea":"","categories":[{"id":540,"title":"Security Hardware","alias":"security-hardware","description":"Hardware security as a discipline originated out of cryptographic engineering and involves hardware design, access control, secure multi-party computation, secure key storage, ensuring code authenticity and measures to ensure that the supply chain that built the product is secure, among other things.\r\nA hardware security module (HSM) is a physical computing device that safeguards and manages digital keys for strong authentication and provides cryptoprocessing. These modules traditionally come in the form of a plug-in card or an external device that attaches directly to a computer or network server.\r\nSome providers in this discipline consider that the key difference between hardware security and software security is that hardware security is implemented using "non-Turing-machine" logic (raw combinatorial logic or simple state machines). One approach, referred to as "hardsec", uses FPGAs to implement non-Turing-machine security controls as a way of combining the security of hardware with the flexibility of software.\r\nHardware backdoors are backdoors in hardware. Conceptionally related, a hardware Trojan (HT) is a malicious modification of an electronic system, particularly in the context of an integrated circuit.\r\nA physical unclonable function (PUF) is a physical entity that is embodied in a physical structure and is easy to evaluate but hard to predict. Further, an individual PUF device must be easy to make but practically impossible to duplicate, even given the exact manufacturing process that produced it. In this respect, it is the hardware analog of a one-way function. The name "physically unclonable function" might be a little misleading as some PUFs are clonable, and most PUFs are noisy and therefore do not achieve the requirements for a function. Today, PUFs are usually implemented in integrated circuits and are typically used in applications with high-security requirements.\r\nMany attacks on sensitive data and resources reported by organizations occur from within the organization itself.","materialsDescription":"<span style=\"font-weight: bold;\">What is hardware information security?</span>\r\nHardware means various types of devices (mechanical, electromechanical, electronic, etc.), which solve information protection problems with hardware. They impede access to information, including through its disguise. The hardware includes: noise generators, surge protectors, scanning radios and many other devices that "block" potential channels of information leakage or allow them to be detected. The advantages of technical means are related to their reliability, independence from subjective factors and high resistance to modification. The weaknesses include a lack of flexibility, relatively large volume and mass and high cost. The hardware for information protection includes the most diverse technical structures in terms of operation, device and capabilities, which ensure the suppression of disclosure, protection against leakage and counteraction to unauthorized access to sources of confidential information.\r\n<span style=\"font-weight: bold;\">Where is the hardware used to protect information?</span>\r\nHardware information protection is used to solve the following problems:\r\n<ul><li>conducting special studies of technical means of ensuring production activity for the presence of possible channels of information leakage;</li><li>identification of information leakage channels at various objects and in premises;</li><li>localization of information leakage channels;</li><li>search and detection of industrial espionage tools;</li><li>countering unauthorized access to confidential information sources and other actions.</li></ul>\r\n<span style=\"font-weight: bold;\">What is the classification of information security hardware?</span>\r\nAccording to the functional purpose, the hardware can be classified into detection tools, search tools and detailed measurements and active and passive countermeasures. At the same time, according to their technical capabilities, information protection tools can be general-purpose, designed for use by non-professionals in order to obtain preliminary (general) estimates, and professional complexes that allow for a thorough search, detection and precision measurement of all the characteristics of industrial espionage equipment. As an example of the former, we can consider a group of IP electromagnetic radiation indicators, which have a wide range of received signals and rather low sensitivity. As a second example - a complex for the detection and direction finding of radio bookmarks, designed to automatically detect and locate radio transmitters, radio microphones, telephone bookmarks and network radio transmitters.<br /><br />","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/icon_Security_Hardware.png"},{"id":511,"title":"Peripherals","alias":"peripherals","description":" Computer peripherals are the devices you use to expand your system's functionality and are not essential for the computer to work. Many peripherals are external devices that give you a way to input information. For example, you might use a mouse or trackpad to navigate the screen, a keyboard to type text or a microphone to record audio. Other peripherals are output devices that let you see, print or listen to something, such as monitors, printers, and speakers. While debatable since they are key components for a functional computer, internal devices like hard drives and memory may be considered peripherals.\r\nKeyboards, mice, touchpads and other Human Interface Devices are very common peripherals of computer systems. A HID is a peripheral that lets the computer use input data or interact with the computer. HIDs are always considered peripheral devices because it is possible for a computer to operate and do countless jobs without the need for human interaction. You can disconnect an HID from a computer and replace it with a new one without affecting the core functionality of the system.\r\nData storage devices are hardware devices capable of holding information and include system RAM, internal hard drives, external hard drives, solid-state drives, flash drives, memory cards, and cassettes. Any type of storage device that connects outside of the computer, or isn't necessary for the computer to run, is considered a peripheral. For example, you can connect and disconnect external hard drives, flash drives and memory cards without disabling the computer. However, system RAM and internal hard drives straddle the peripheral line. While the motherboard and CPU have small amounts of built-in memory, alone, they are not enough to utilize most of the computer's capabilities.\r\nUnless a computer operates in a self-contained situation, without any need for human interaction, it's necessary for the computer to convey information to the user. The computer uses peripheral devices like monitors, speakers and screen readers to translate the system's binary data stream into something people can understand and interact with. Computer peripheral devices encompass all devices that the system uses to output data, including printers. The data output devices aren't essential for the computer to operate, they're just needed to make the system useful.\r\nAny type of peripheral card, like a graphics card, sound card, network card or controller card, is considered a peripheral. Most modern non-storage based internal storage devices use the Peripheral Component Internet and PCI Express connection standards. The connection standard name itself implies that what ever hardware uses it is a peripheral device. While peripheral devices are necessary for things like displaying video output and communicating with other computers on a network, the computer can still operate without them.","materialsDescription":" <span style=\"font-weight: bold;\">What is a peripheral device?</span>\r\nA peripheral is a hardware input device or output device that gives a computer additional functionality. Peripheral devices, however, are not essential for the computer to perform its basic tasks; they can be thought of as an enhancement to the user's experience.\r\n<span style=\"font-weight: bold;\">What are computer peripheral examples?</span>\r\nBelow are examples of computer peripherals that could be used with a computer. None of these devices are required by a computer but gives the computer additional capabilities. For example, the sound card gives a computer to play sounds and although it might be boring to have a computer with no sound or music the computer would still work without one.\r\n<ul><li>Digital camera and digital camcorder;</li><li>Joystick;</li><li>Keyboard;</li><li>Microphone;</li><li>Mouse;</li><li>Monitor, touch screen, projector, or other display devices;</li><li>Printer;</li><li>Plotter;</li><li>Scanner;</li><li>Sound card;</li><li>Speakers;</li><li>Projector;</li><li>Tape drive.</li></ul>\r\n<span style=\"font-weight: bold;\">Why are the keyboard and mouse a peripheral?</span>\r\nMany computer users are surprised to learn that a computer can run without a keyboard and a mouse. Both of these devices are not required for a computer to run, which is why they're considered peripherals. In fact, many of the servers at data centers have no keyboard or mouse and are often managed remotely.\r\n<span style=\"font-weight: bold;\">What peripheral devices come with a computer?</span>\r\nWhen you buy a new desktop computer, it comes with a keyboard, mouse, sound card, power plug, and may also include a monitor. A laptop computer includes everything, so it only includes a power cord.","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/icon_Perifirals.png"},{"id":59,"title":"SCADA - Supervisory Control And Data Acquisition","alias":"scada-supervisory-control-and-data-acquisition","description":"<span style=\"font-weight: bold; \">SCADA</span> stands for <span style=\"font-weight: bold; \">Supervisory Control and Data Acquisition</span>, a term which describes the basic functions of a SCADA system. Companies use SCADA systems to control equipment across their sites and to collect and record data about their operations. SCADA is not a specific technology, but a type of application. Any application that gets operating data about a system in order to control and optimise that system is a SCADA application. That application may be a petrochemical distillation process, a water filtration system, a pipeline compressor, or just about anything else.\r\nSCADA solutions typically come in a combination of software and hardware elements, such as programmable logic controllers (PLCs) and remote terminal units (RTUs). Data acquisition in SCADA starts with PLCs and RTUs, which communicate with plant floor equipment such as factory machinery and sensors. Data gathered from the equipment is then sent to the next level, such as a control room, where operators can supervise the PLC and RTU controls using human-machine interfaces (HMIs). HMIs are an important element of SCADA systems. They are the screens that operators use to communicate with the SCADA system.\r\n<p class=\"align-center\"><span style=\"font-weight: bold; \">The major components of a SCADA technology include:</span></p>\r\n<ul><li><span style=\"font-weight: bold;\">Master Terminal Unit (MTU).</span> It comprises a computer, PLC and a network server that helps MTU to communicate with the RTUs. MTU begins communication, collects and saves data, helps to interface with operators and to communicate data to other systems.</li><li><span style=\"font-weight: bold;\">Remote Terminal Unit (RTU).</span> RTU is used to collect information from these sensors and further sends the data to MTU. RTUs have the storage capacity facility. So, it stores the data and transmits the data when MTU sends the corresponding command.</li><li><span style=\"font-weight: bold;\">Communication Network (defined by its network topology).</span> In general, network means connection. When you tell a SCADA communication network, it is defined as a link between RTU in the field to MTU in the central location. The bidirectional wired or wireless communication channel is used for the networking purpose. Various other communication mediums like fiber optic cables, twisted pair cables, etc. are also used.</li></ul>\r\n<p class=\"align-center\"><span style=\"font-weight: bold; \">Objectives of Supervisory Control and Data Acquisition system</span></p>\r\n<ul><li><span style=\"font-weight: bold;\">Monitor:</span> SCADA control system continuously monitors the physical parameters</li><li><span style=\"font-weight: bold;\">Measure:</span> It measures the parameter for processing</li><li><span style=\"font-weight: bold;\">Data Acquisition:</span> It acquires data from RTU, data loggers, etc</li><li><span style=\"font-weight: bold;\">Data Communication:</span> It helps to communicate and transmit a large amount of data between MTU and RTU units</li><li><span style=\"font-weight: bold;\">Controlling:</span> Online real-time monitoring and controlling of the process</li><li><span style=\"font-weight: bold;\">Automation:</span> It helps for automatic transmission and functionality</li></ul>\r\n\r\n","materialsDescription":"<h1 class=\"align-center\">Who Uses SCADA?</h1>\r\nSCADA systems are used by industrial organizations and companies in the public and private sectors to control and maintain efficiency, distribute data for smarter decisions, and communicate system issues to help mitigate downtime. Supervisory control systems work well in many different types of enterprises because they can range from simple configurations to large, complex installations. They are the backbone of many modern industries, including:\r\n<ul><li>Energy</li><li>Food and beverage</li><li>Manufacturing</li><li>Oil and gas</li><li>Power</li><li>Recycling</li><li>Transportation</li><li>Water and waste water</li><li>And many more</li></ul>\r\nVirtually anywhere you look in today's world, there is some type of SCADA monitoring system running behind the scenes: maintaining the refrigeration systems at the local supermarket, ensuring production and safety at a refinery, achieving quality standards at a waste water treatment plant, or even tracking your energy use at home, to give a few examples. Effective SCADA systems can result in significant savings of time and money. Numerous case studies have been published highlighting the benefits and savings of using a modern SCADA software.\r\n<h1 class=\"align-center\">Benefits of using SCADA software</h1>\r\nUsing modern SCADA software provides numerous benefits to businesses, and helps companies make the most of those benefits. Some of these advantages include:\r\n<span style=\"font-weight: bold; \">Easier engineering:</span> An advanced supervisory control application such provides easy-to-locate tools, wizards, graphic templates and other pre-configured elements, so engineers can create automation projects and set parameters quickly, even if they don't have programming experience. In addition, you can also easily maintain and expand existing applications as needed. The ability to automate the engineering process allows users, particularly system integrators and original equipment manufacturers (OEM), to set up complex projects much more efficiently and accurately.\r\n<span style=\"font-weight: bold; \">Improved data management:</span> A high-quality SCADA system makes it easier to collect, manage, access and analyze your operational data. It can enable automatic data recording and provide a central location for data storage. Additionally, it can transfer data to other systems such as MES and ERP as needed. \r\n<span style=\"font-weight: bold; \">Greater visibility:</span> One of the main advantages of using SCADA software is the improvement in visibility into your operations. It provides you with real-time information about your operations and enables you to conveniently view that information via an HMI. SCADA monitoring can also help in generating reports and analyzing data.\r\n<span style=\"font-weight: bold; \">Enhanced efficiency:</span> A SCADA system allows you to streamline processes through automated actions and user-friendly tools. The data that SCADA provides allows you to uncover opportunities for improving the efficiency of the operations, which can be used to make long-term changes to processes or even respond to real-time changes in conditions.\r\n<span style=\"font-weight: bold; \">Increased usability:</span> SCADA systems enable workers to control equipment more quickly, easily and safely through an HMI. Rather than having to control each piece of machinery manually, workers can manage them remotely and often control many pieces of equipment from a single location. Managers, even those who are not currently on the floor, also gain this capability.\r\n<span style=\"font-weight: bold; \">Reduced downtime:</span> A SCADA system can detect faults at an early stage and push instant alerts to the responsible personnel. Powered by predictive analytics, a SCADA system can also inform you of a potential issue of the machinery before it fails and causes larger problems. These features can help improve the overall equipment effectiveness (OEE) and reduce the amount of time and cost on troubleshooting and maintenance.\r\n<span style=\"font-weight: bold;\">Easy integration:</span> Connectivity to existing machine environments is key to removing data silos and maximizing productivity. \r\n<span style=\"font-weight: bold;\">Unified platform:</span>All of your data is also available in one platform, which helps you to get a clear overview of your operations and take full advantage of your data. All users also get real-time updates locally or remotely, ensuring everyone on your team is on the same page.<br /><br />","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/SCADA__-_Supervisory_Control_And_Data_Acquisition.png"}],"characteristics":[],"concurentProducts":[],"jobRoles":[],"organizationalFeatures":[],"complementaryCategories":[],"solutions":[],"materials":[],"useCases":[],"best_practices":[],"values":[],"implementations":[]}],"partnershipProgramme":null}},"aliases":{},"links":{},"meta":{},"loading":false,"error":null},"implementations":{"implementationsByAlias":{},"aliases":{},"links":{},"meta":{},"loading":false,"error":null},"agreements":{"agreementById":{},"ids":{},"links":{},"meta":{},"loading":false,"error":null},"comparison":{"loading":false,"error":false,"templatesById":{},"comparisonByTemplateId":{},"products":[],"selectedTemplateId":null},"presentation":{"type":null,"company":{},"products":[],"partners":[],"formData":{},"dataLoading":false,"dataError":false,"loading":false,"error":false},"catalogsGlobal":{"subMenuItemTitle":""}}