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He is a developer of secure mobile devices.<br />Sirin Labs has been developing the first blockchain smartphone, and every product of this company is committed to using their own blockchain. They promote use of digital currencies and decentralization through SRN tokens.<br /><br />","companyTypes":["vendor"],"products":{},"vendoredProductsCount":1,"suppliedProductsCount":1,"supplierImplementations":[],"vendorImplementations":[],"userImplementations":[],"userImplementationsCount":0,"supplierImplementationsCount":0,"vendorImplementationsCount":0,"vendorPartnersCount":0,"supplierPartnersCount":0,"b4r":0,"categories":{"848":{"id":848,"title":"Multi-factor authentication","description":" Multi-factor authentication (MFA) is an authentication method in which a computer user is granted access only after successfully presenting two or more pieces of evidence (or factors) to an authentication mechanism: knowledge (something the user and only the user knows), possession (something the user and only the user has), and inherence (something the user and only the user is).\r\nTwo-factor authentication (also known as 2FA) is a type, or subset, of multi-factor authentication. It is a method of confirming users' claimed identities by using a combination of two different factors: 1) something they know, 2) something they have, or 3) something they are.\r\nA good example of two-factor authentication is the withdrawing of money from an ATM; only the correct combination of a bank card (something the user possesses) and a PIN (something the user knows) allows the transaction to be carried out.\r\nTwo other examples are to supplement a user-controlled password with a one-time password (OTP) or code generated or received by an authenticator (e.g. a security token or smartphone) that only the user possesses.\r\nTwo-step verification or two-step authentication is a method of confirming a user's claimed identity by utilizing something they know (password) and a second factor other than something they have or something they are. An example of a second step is the user repeating back something that was sent to them through an out-of-band mechanism. Or, the second step might be a six digit number generated by an app that is common to the user and the authentication system.","materialsDescription":" <span style=\"font-weight: bold;\">What is MFA?</span>\r\nMulti-factor authentication (MFA) combines two or more independent authentication factors. For example, suppose your website required your clients to enter something only they would know upon login (password), something they have (like a one-time smartphone authentication token provided by special software), and a biometric identifier (like a thumbprint). It is pretty hard for a mortgage cyber-attacker to have all three of those items, especially the biometric identifier.\r\n<span style=\"font-weight: bold;\">Why do I need MFA? What are the benefits?</span>\r\nPasswords are becoming increasingly easy to compromise. They can be stolen, “phished”, guessed, and hacked. New technology and hacking techniques combined with the limited pool of passwords most people use for multiple accounts increases vulnerability.\r\n<span style=\"font-weight: bold;\">How does MFA work?</span>\r\nMulti-factor authentication throws a few roadblocks in the hacker's pathway. Location factors are one way for a security system to identify a person's identity. For example, work schedules and location can determine whether a user is who he says he is. Time is another example of a security layer. If a person uses his phone at a job in the US, it is physically impossible for him to use it again from Europe 15 minutes later. These are especially helpful in online bank fraud and, by extension, mortgage company fraud.","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/icon_Multi-factor_authentication.png","alias":"multi-factor-authentication"},"856":{"id":856,"title":"Secure Communications","description":" <span style=\"font-weight: bold;\">Secure communication</span> is when two entities are communicating and do not want a third party to listen in. For that, they need to communicate in a way not susceptible to eavesdropping or interception. Secure communication includes means by which people can share information with varying degrees of certainty that third parties cannot intercept what was said. Other than spoken face-to-face communication with no possible eavesdropper, it is probably safe to say that no communication is guaranteed secure in this sense, although practical obstacles such as legislation, resources, technical issues (interception and encryption), and the sheer volume of communication serve to limit surveillance.\r\nWith many communications taking place over long distances and mediated by technology, and increasing awareness of the importance of interception issues, technology, and its compromise are at the heart of this debate.\r\n<span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">Encryption</span></span> is a method in which data is rendered hard to read by an unauthorized party. Since encryption methods are created to extremely hard to break, many communication methods either use deliberately weaker encryption than possible or have backdoors inserted to permit rapid decryption. In some cases, government authorities have required backdoors to be installed in secret. Many methods of encryption are also subject to "man in the middle" attack whereby a third party who can 'see' the establishment of the secure communication is made privy to the encryption method, this would apply for example to the interception of computer use at an ISP. Provided it is correctly programmed, sufficiently powerful, and the keys not intercepted, encryption would usually be considered secure.\r\nEncryption can be implemented in a way that requires the use of encryption, i.e. if encrypted communication is impossible then no traffic is sent, or opportunistically. Opportunistic encryption is a lower security method to generally increase the percentage of generic traffic which is encrypted. This is analogous to beginning every conversation with "Do you speak Navajo?" If the response is affirmative, then the conversation proceeds in Navajo, otherwise, it uses the common language of the two speakers. This method does not generally provide authentication or anonymity but it does protect the content of the conversation from eavesdropping.\r\nAn Information-theoretic security technique known as physical layer encryption ensures that a wireless communication link is provably secure with communications and coding techniques.\r\n<span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">Steganography</span></span> ("hidden writing") is also the means by which data can be hidden within other more innocuous data. Thus a watermark proving ownership embedded in the data of a picture, in such a way it is hard to find or remove unless you know how to find it. Or, for communication, the hiding of important data (such as a telephone number) in apparently innocuous data (an MP3 music file). An advantage of steganography is plausible deniability, that is unless one can prove the data is there (which is usually not easy), it is deniable that the file contains any.\r\n<span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">Identity-based networks</span></span> are one of the tools to obtain security. Unwanted or malicious behavior is possible on the web since the internet is inherently anonymous. True identity-based networks replace the ability to remain anonymous and are inherently more trustworthy since the identity of the sender and recipient are known. (The telephone system is an example of an identity-based network.)\r\nRecently, <span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">anonymous networking</span></span> also has been used to secure communications. In principle, a large number of users running the same system can have communications routed between them in such a way that it is very hard to detect what the complete message is, which user sent it, and where it is ultimately coming from or going to. Examples are Crowds, Tor, I2P, Mixminion, various anonymous P2P networks, and others.\r\n<span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">Anonymous communication devices</span></span> are also one of the tools to obtain security. In theory, an unknown device would not be noticed, since so many other devices are in use. This is not altogether the case in reality, due to the presence of systems such as Carnivore and Echelon, which can monitor communications over entire networks and the fact that the far end may be monitored as before. Examples include payphones, Internet cafes, etc.\r\nPrograms offering more security are <span style=\"font-weight: bold;\">secure instant messaging, VoIP, secure email, IRC and webchat,</span> and so on.","materialsDescription":" <span style=\"font-weight: bold; \">What are the types of security?</span>\r\nSecurity can be broadly categorized under the following headings, with examples:\r\n<span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">1. Hiding the content or nature of a communication</span></span>\r\n<ul><li><span style=\"font-style: italic; \">Code</span> – a rule to convert a piece of information (for example, a letter, word, phrase, or gesture) into another form or representation (one sign into another sign), not necessarily of the same type. In communications and information processing, encoding is the process by which information from a source is converted into symbols to be communicated. Decoding is the reverse process, converting these code symbols back into information understandable by a receiver. One reason for coding is to enable communication in places where ordinary spoken or written language is difficult or impossible. For example, semaphore, where the configuration of flags held by a signaler or the arms of a semaphore tower encodes parts of the message, typically individual letters, and numbers. Another person standing a great distance away can interpret the flags and reproduce the words sent.</li><li><span style=\"font-style: italic; \">Encryption</span></li><li><span style=\"font-style: italic; \">Steganography</span></li><li><span style=\"font-style: italic; \">Identity-Based</span></li></ul>\r\n<span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">2. Hiding the parties to a communication – preventing identification, promoting anonymity</span></span>\r\n<ul><li>"Crowds" and similar anonymous group structures – it is difficult to identify who said what when it comes from a "crowd"</li><li>Anonymous communication devices – unregistered cellphones, Internet cafes</li><li>Anonymous proxies</li><li>Hard to trace routing methods – through unauthorized third-party systems, or relays</li></ul>\r\n<span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">3. Hiding the fact that communication takes place</span></span>\r\n<ul><li>"Security by obscurity" – similar to a needle in a haystack</li><li>Random traffic – creating random data flow to make the presence of genuine communication harder to detect and traffic analysis less reliable</li></ul>\r\nEach of the three is important, and depending on the circumstances any of these may be critical. For example, if a communication is not readily identifiable, then it is unlikely to attract attention for identification of parties, and the mere fact communication has taken place (regardless of content) is often enough by itself to establish an evidential link in legal prosecutions. It is also important with computers, to be sure where the security is applied, and what is covered.\r\n<span style=\"font-weight: bold; \">What are the methods used to "break" security?</span>\r\n<span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Bugging</span></span>\r\nThe placing covertly of monitoring and/or transmission devices either within the communication device, or in the premises concerned.\r\n<span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Computers (general)</span></span>\r\nAny security obtained from a computer is limited by the many ways it can be compromised – by hacking, keystroke logging, backdoors, or even in extreme cases by monitoring the tiny electrical signals given off by keyboard or monitors to reconstruct what is typed or seen (TEMPEST, which is quite complex).\r\n<span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Laser audio surveillance</span></span>\r\nSounds, including speech, inside rooms, can be sensed by bouncing a laser beam off a window of the room where a conversation is held and detecting and decoding the vibrations in the glass caused by the sound waves.\r\n<span style=\"font-weight: bold; \">What are the systems offering partial security?</span>\r\n<span style=\"font-weight: bold; \">Anonymous cellphones.</span> Cellphones can easily be obtained, but are also easily traced and "tapped". There is no (or only limited) encryption, the phones are traceable – often even when switched off – since the phone and SIM card broadcast their International Mobile Subscriber Identity (IMSI). It is possible for a cellphone company to turn on some cellphones when the user is unaware and use the microphone to listen in on you, and according to James Atkinson, a counter-surveillance specialist cited in the same source, "Security-conscious corporate executives routinely remove the batteries from their cell phones" since many phones' software can be used "as-is", or modified, to enable transmission without user awareness and the user can be located within a small distance using signal triangulation and now using built-in GPS features for newer models. Transceivers may also be defeated by jamming or Faraday cage.\r\nSome cellphones (Apple's iPhone, Google's Android) track and store users' position information so that movements for months or years can be determined by examining the phone.\r\n<span style=\"font-weight: bold; \">Landlines.</span> Analog landlines are not encrypted, it lends itself to being easily tapped. Such tapping requires physical access to the line which can be easily obtained from a number of places, e.g. the phone location, distribution points, cabinets and the exchange itself. Tapping a landline in this way can enable an attacker to make calls that appear to originate from the tapped line.\r\n<span style=\"font-weight: bold;\">Anonymous Internet.</span> Using a third-party system of any kind (payphone, Internet cafe) is often quite secure, however, if that system is used to access known locations (a known email account or 3rd party) then it may be tapped at the far end, or noted, and this will remove any security benefit obtained. Some countries also impose mandatory registration of Internet cafe users.\r\nAnonymous proxies are another common type of protection, which allows one to access the net via a third party (often in a different country) and make tracing difficult. Note that there is seldom any guarantee that the plaintext is not tappable, nor that the proxy does not keep its own records of users or entire dialogs. As a result, anonymous proxies are a generally useful tool but may not be as secure as other systems whose security can be better assured. Their most common use is to prevent a record of the originating IP, or address, being left on the target site's own records. Typical anonymous proxies are found at both regular websites such as Anonymizer.com and spynot.com, and on proxy sites which maintain up to date lists of large numbers of temporary proxies in operation.\r\nA recent development on this theme arises when wireless Internet connections ("Wi-Fi") are left in their unsecured state. The effect of this is that any person in range of the base unit can piggyback the connection – that is, use it without the owner being aware. Since many connections are left open in this manner, situations where piggybacking might arise (willful or unaware) have successfully led to a defense in some cases, since it makes it difficult to prove the owner of the connection was the downloader or had knowledge of the use to which unknown others might be putting their connection. An example of this was the Tammie Marson case, where neighbors and anyone else might have been the culprit in the sharing of copyright files. Conversely, in other cases, people deliberately seek out businesses and households with unsecured connections, for illicit and anonymous Internet usage, or simply to obtain free bandwidth.\r\n<span style=\"font-weight: bold;\">Programs offering more security.</span>\r\n<span style=\"font-weight: bold;\"><span style=\"font-style: italic;\">Secure instant messaging</span></span> – Some instant messaging clients use end-to-end encryption with forwarding secrecy to secure all instant messages to other users of the same software. Some instant messaging clients also offer end-to-end encrypted file transfer support and group messaging.\r\n<span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">VoIP</span></span> – Some VoIP clients implement ZRTP and SRTP encryption for calls.\r\n<span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">Secure email</span></span> – some email networks are designed to provide encrypted and/or anonymous communication. They authenticate and encrypt on the users own computer, to prevent transmission of plain text, and mask the sender and recipient. Mixminion and I2P-Bote provide a higher level of anonymity by using a network of anonymizing intermediaries, similar to how Tor works, but at a higher latency.\r\n<span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">IRC and webchat</span></span> – Some IRC clients and systems use client-to-server encryption such as SSL/TLS. This is not standardized.","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/diseno-plano-de-icon.png","alias":"secure-communications"}},"branches":"Information Technology","companySizes":"101 to 500 Employees","companyUrl":"http://www.sirinlabs.com/","countryCodes":[],"certifications":[],"isSeller":true,"isSupplier":false,"isVendor":true,"presenterCodeLng":"","seo":{"title":"SIRIN LABS","keywords":"","description":" Sirin Labs was founded in 2013 by the managing partner of the Israeli Singulariteam venture fund Moshe Hogeg and the entrepreneur from Kazakhstan Kenes Rakishev. He is a developer of secure mobile devices.<br />Sirin Labs has been developing the first blockch","og:title":"SIRIN LABS","og:description":" Sirin Labs was founded in 2013 by the managing partner of the Israeli Singulariteam venture fund Moshe Hogeg and the entrepreneur from Kazakhstan Kenes Rakishev. He is a developer of secure mobile devices.<br />Sirin Labs has been developing the first blockch","og:image":"https://old.roi4cio.com/uploads/roi/company/SIRIN-LABS.png"},"eventUrl":"","vendorPartners":[],"supplierPartners":[],"vendoredProducts":[{"id":6381,"logoURL":"https://old.roi4cio.com/fileadmin/user_upload/Sirin_Labs.png","logo":true,"scheme":false,"title":"Sirin Labs Sirin OS","vendorVerified":0,"rating":"0.00","implementationsCount":0,"suppliersCount":0,"supplierPartnersCount":0,"alias":"sirin-labs-sirin-os","companyTitle":"SIRIN LABS","companyTypes":["vendor"],"companyId":7036,"companyAlias":"sirin-labs","description":"<b>IS THE WORLD'S MOST SECURE BLOCKCHAIN OS FOR MOBILE DEVICES </b>\r\nSIRIN LABS’ propietary operating system will give FINNEY™ users an easy-to-use Android experience with the Play Store and the apps it contains. What sets SIRIN OS™ apart is the enhanced security of the entire device and the built-in cold wallet accessible via the Safe Screen. Users will have a familiar experience along with an extension beyond the Android OS to ensure the blockchain and wallet security. These factors will enable FINNEY™ to hearld in mass adoption of blockchain technology. \r\n<b>TOKEN CONVERSION SERVICE </b>\r\nFINNEY™ will provide users with our proprietary Token Conversion Service, which enables the seamless and automatic exchange between supported tokens and coins, eliminating the need to visit external exchanges. \r\n<b>SRN THE TOKEN</b>\r\nThe SIRIN Token (SRN) is a utility token, whose purpose is to be used as the cornerstone of the SIRIN LABS ecosystem, which currently consists of the SIRIN OS, FINNEY smartphone, SIRIN Decentralized Application (DApp) Store, and the SIRIN LABS brick-and-mortar stores. ","shortDescription":"The only operating system secure enough for storing and using cryptocurrency in a mobile environment\r\n\r\n","type":null,"isRoiCalculatorAvaliable":false,"isConfiguratorAvaliable":false,"bonus":100,"usingCount":0,"sellingCount":0,"discontinued":0,"rebateForPoc":0,"rebate":0,"seo":{"title":"Sirin Labs Sirin OS","keywords":"","description":"<b>IS THE WORLD'S MOST SECURE BLOCKCHAIN OS FOR MOBILE DEVICES </b>\r\nSIRIN LABS’ propietary operating system will give FINNEY™ users an easy-to-use Android experience with the Play Store and the apps it contains. What sets SIRIN OS™ apart is the enhanced secur","og:title":"Sirin Labs Sirin OS","og:description":"<b>IS THE WORLD'S MOST SECURE BLOCKCHAIN OS FOR MOBILE DEVICES </b>\r\nSIRIN LABS’ propietary operating system will give FINNEY™ users an easy-to-use Android experience with the Play Store and the apps it contains. What sets SIRIN OS™ apart is the enhanced secur","og:image":"https://old.roi4cio.com/fileadmin/user_upload/Sirin_Labs.png"},"eventUrl":"","translationId":6381,"dealDetails":null,"roi":null,"price":null,"bonusForReference":null,"templateData":[],"testingArea":"","categories":[{"id":856,"title":"Secure Communications","alias":"secure-communications","description":" <span style=\"font-weight: bold;\">Secure communication</span> is when two entities are communicating and do not want a third party to listen in. For that, they need to communicate in a way not susceptible to eavesdropping or interception. Secure communication includes means by which people can share information with varying degrees of certainty that third parties cannot intercept what was said. Other than spoken face-to-face communication with no possible eavesdropper, it is probably safe to say that no communication is guaranteed secure in this sense, although practical obstacles such as legislation, resources, technical issues (interception and encryption), and the sheer volume of communication serve to limit surveillance.\r\nWith many communications taking place over long distances and mediated by technology, and increasing awareness of the importance of interception issues, technology, and its compromise are at the heart of this debate.\r\n<span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">Encryption</span></span> is a method in which data is rendered hard to read by an unauthorized party. Since encryption methods are created to extremely hard to break, many communication methods either use deliberately weaker encryption than possible or have backdoors inserted to permit rapid decryption. In some cases, government authorities have required backdoors to be installed in secret. Many methods of encryption are also subject to "man in the middle" attack whereby a third party who can 'see' the establishment of the secure communication is made privy to the encryption method, this would apply for example to the interception of computer use at an ISP. Provided it is correctly programmed, sufficiently powerful, and the keys not intercepted, encryption would usually be considered secure.\r\nEncryption can be implemented in a way that requires the use of encryption, i.e. if encrypted communication is impossible then no traffic is sent, or opportunistically. Opportunistic encryption is a lower security method to generally increase the percentage of generic traffic which is encrypted. This is analogous to beginning every conversation with "Do you speak Navajo?" If the response is affirmative, then the conversation proceeds in Navajo, otherwise, it uses the common language of the two speakers. This method does not generally provide authentication or anonymity but it does protect the content of the conversation from eavesdropping.\r\nAn Information-theoretic security technique known as physical layer encryption ensures that a wireless communication link is provably secure with communications and coding techniques.\r\n<span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">Steganography</span></span> ("hidden writing") is also the means by which data can be hidden within other more innocuous data. Thus a watermark proving ownership embedded in the data of a picture, in such a way it is hard to find or remove unless you know how to find it. Or, for communication, the hiding of important data (such as a telephone number) in apparently innocuous data (an MP3 music file). An advantage of steganography is plausible deniability, that is unless one can prove the data is there (which is usually not easy), it is deniable that the file contains any.\r\n<span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">Identity-based networks</span></span> are one of the tools to obtain security. Unwanted or malicious behavior is possible on the web since the internet is inherently anonymous. True identity-based networks replace the ability to remain anonymous and are inherently more trustworthy since the identity of the sender and recipient are known. (The telephone system is an example of an identity-based network.)\r\nRecently, <span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">anonymous networking</span></span> also has been used to secure communications. In principle, a large number of users running the same system can have communications routed between them in such a way that it is very hard to detect what the complete message is, which user sent it, and where it is ultimately coming from or going to. Examples are Crowds, Tor, I2P, Mixminion, various anonymous P2P networks, and others.\r\n<span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">Anonymous communication devices</span></span> are also one of the tools to obtain security. In theory, an unknown device would not be noticed, since so many other devices are in use. This is not altogether the case in reality, due to the presence of systems such as Carnivore and Echelon, which can monitor communications over entire networks and the fact that the far end may be monitored as before. Examples include payphones, Internet cafes, etc.\r\nPrograms offering more security are <span style=\"font-weight: bold;\">secure instant messaging, VoIP, secure email, IRC and webchat,</span> and so on.","materialsDescription":" <span style=\"font-weight: bold; \">What are the types of security?</span>\r\nSecurity can be broadly categorized under the following headings, with examples:\r\n<span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">1. Hiding the content or nature of a communication</span></span>\r\n<ul><li><span style=\"font-style: italic; \">Code</span> – a rule to convert a piece of information (for example, a letter, word, phrase, or gesture) into another form or representation (one sign into another sign), not necessarily of the same type. In communications and information processing, encoding is the process by which information from a source is converted into symbols to be communicated. Decoding is the reverse process, converting these code symbols back into information understandable by a receiver. One reason for coding is to enable communication in places where ordinary spoken or written language is difficult or impossible. For example, semaphore, where the configuration of flags held by a signaler or the arms of a semaphore tower encodes parts of the message, typically individual letters, and numbers. Another person standing a great distance away can interpret the flags and reproduce the words sent.</li><li><span style=\"font-style: italic; \">Encryption</span></li><li><span style=\"font-style: italic; \">Steganography</span></li><li><span style=\"font-style: italic; \">Identity-Based</span></li></ul>\r\n<span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">2. Hiding the parties to a communication – preventing identification, promoting anonymity</span></span>\r\n<ul><li>"Crowds" and similar anonymous group structures – it is difficult to identify who said what when it comes from a "crowd"</li><li>Anonymous communication devices – unregistered cellphones, Internet cafes</li><li>Anonymous proxies</li><li>Hard to trace routing methods – through unauthorized third-party systems, or relays</li></ul>\r\n<span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">3. Hiding the fact that communication takes place</span></span>\r\n<ul><li>"Security by obscurity" – similar to a needle in a haystack</li><li>Random traffic – creating random data flow to make the presence of genuine communication harder to detect and traffic analysis less reliable</li></ul>\r\nEach of the three is important, and depending on the circumstances any of these may be critical. For example, if a communication is not readily identifiable, then it is unlikely to attract attention for identification of parties, and the mere fact communication has taken place (regardless of content) is often enough by itself to establish an evidential link in legal prosecutions. It is also important with computers, to be sure where the security is applied, and what is covered.\r\n<span style=\"font-weight: bold; \">What are the methods used to "break" security?</span>\r\n<span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Bugging</span></span>\r\nThe placing covertly of monitoring and/or transmission devices either within the communication device, or in the premises concerned.\r\n<span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Computers (general)</span></span>\r\nAny security obtained from a computer is limited by the many ways it can be compromised – by hacking, keystroke logging, backdoors, or even in extreme cases by monitoring the tiny electrical signals given off by keyboard or monitors to reconstruct what is typed or seen (TEMPEST, which is quite complex).\r\n<span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Laser audio surveillance</span></span>\r\nSounds, including speech, inside rooms, can be sensed by bouncing a laser beam off a window of the room where a conversation is held and detecting and decoding the vibrations in the glass caused by the sound waves.\r\n<span style=\"font-weight: bold; \">What are the systems offering partial security?</span>\r\n<span style=\"font-weight: bold; \">Anonymous cellphones.</span> Cellphones can easily be obtained, but are also easily traced and "tapped". There is no (or only limited) encryption, the phones are traceable – often even when switched off – since the phone and SIM card broadcast their International Mobile Subscriber Identity (IMSI). It is possible for a cellphone company to turn on some cellphones when the user is unaware and use the microphone to listen in on you, and according to James Atkinson, a counter-surveillance specialist cited in the same source, "Security-conscious corporate executives routinely remove the batteries from their cell phones" since many phones' software can be used "as-is", or modified, to enable transmission without user awareness and the user can be located within a small distance using signal triangulation and now using built-in GPS features for newer models. Transceivers may also be defeated by jamming or Faraday cage.\r\nSome cellphones (Apple's iPhone, Google's Android) track and store users' position information so that movements for months or years can be determined by examining the phone.\r\n<span style=\"font-weight: bold; \">Landlines.</span> Analog landlines are not encrypted, it lends itself to being easily tapped. Such tapping requires physical access to the line which can be easily obtained from a number of places, e.g. the phone location, distribution points, cabinets and the exchange itself. Tapping a landline in this way can enable an attacker to make calls that appear to originate from the tapped line.\r\n<span style=\"font-weight: bold;\">Anonymous Internet.</span> Using a third-party system of any kind (payphone, Internet cafe) is often quite secure, however, if that system is used to access known locations (a known email account or 3rd party) then it may be tapped at the far end, or noted, and this will remove any security benefit obtained. Some countries also impose mandatory registration of Internet cafe users.\r\nAnonymous proxies are another common type of protection, which allows one to access the net via a third party (often in a different country) and make tracing difficult. Note that there is seldom any guarantee that the plaintext is not tappable, nor that the proxy does not keep its own records of users or entire dialogs. As a result, anonymous proxies are a generally useful tool but may not be as secure as other systems whose security can be better assured. Their most common use is to prevent a record of the originating IP, or address, being left on the target site's own records. Typical anonymous proxies are found at both regular websites such as Anonymizer.com and spynot.com, and on proxy sites which maintain up to date lists of large numbers of temporary proxies in operation.\r\nA recent development on this theme arises when wireless Internet connections ("Wi-Fi") are left in their unsecured state. The effect of this is that any person in range of the base unit can piggyback the connection – that is, use it without the owner being aware. Since many connections are left open in this manner, situations where piggybacking might arise (willful or unaware) have successfully led to a defense in some cases, since it makes it difficult to prove the owner of the connection was the downloader or had knowledge of the use to which unknown others might be putting their connection. An example of this was the Tammie Marson case, where neighbors and anyone else might have been the culprit in the sharing of copyright files. Conversely, in other cases, people deliberately seek out businesses and households with unsecured connections, for illicit and anonymous Internet usage, or simply to obtain free bandwidth.\r\n<span style=\"font-weight: bold;\">Programs offering more security.</span>\r\n<span style=\"font-weight: bold;\"><span style=\"font-style: italic;\">Secure instant messaging</span></span> – Some instant messaging clients use end-to-end encryption with forwarding secrecy to secure all instant messages to other users of the same software. Some instant messaging clients also offer end-to-end encrypted file transfer support and group messaging.\r\n<span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">VoIP</span></span> – Some VoIP clients implement ZRTP and SRTP encryption for calls.\r\n<span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">Secure email</span></span> – some email networks are designed to provide encrypted and/or anonymous communication. They authenticate and encrypt on the users own computer, to prevent transmission of plain text, and mask the sender and recipient. Mixminion and I2P-Bote provide a higher level of anonymity by using a network of anonymizing intermediaries, similar to how Tor works, but at a higher latency.\r\n<span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">IRC and webchat</span></span> – Some IRC clients and systems use client-to-server encryption such as SSL/TLS. This is not standardized.","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/diseno-plano-de-icon.png"},{"id":43,"title":"Data Encryption","alias":"data-encryption","description":"<span style=\"font-weight: bold;\">Data encryption</span> translates data into another form, or code, so that only people with access to a secret key (formally called a decryption key) or password can read it. Encrypted data is commonly referred to as ciphertext, while unencrypted data is called plaintext. Currently, encryption is one of the most popular and effective data security methods used by organizations. \r\nTwo main types of data encryption exist - <span style=\"font-weight: bold;\">asymmetric encryption</span>, also known as public-key encryption, and <span style=\"font-weight: bold;\">symmetric encryption</span>.<br />The purpose of data encryption is to protect digital data confidentiality as it is stored on computer systems and transmitted using the internet or other computer networks. The outdated data encryption standard (DES) has been replaced by modern encryption algorithms that play a critical role in the security of IT systems and communications.\r\nThese algorithms provide confidentiality and drive key security initiatives including authentication, integrity, and non-repudiation. Authentication allows for the verification of a message’s origin, and integrity provides proof that a message’s contents have not changed since it was sent. Additionally, non-repudiation ensures that a message sender cannot deny sending the message.\r\nData protection software for data encryption can provide encryption of devices, email, and data itself. In many cases, these encryption functionalities are also met with control capabilities for devices, email, and data. \r\nCompanies and organizations face the challenge of protecting data and preventing data loss as employees use external devices, removable media, and web applications more often as a part of their daily business procedures. Sensitive data may no longer be under the company’s control and protection as employees copy data to removable devices or upload it to the cloud. As a result, the best data loss prevention solutions prevent data theft and the introduction of malware from removable and external devices as well as web and cloud applications. In order to do so, they must also ensure that devices and applications are used properly and that data is secured by auto-encryption even after it leaves the organization.\r\nEncryption software program encrypts data or files by working with one or more encryption algorithms. Security personnel use it to protect data from being viewed by unauthorized users.\r\nTypically, each data packet or file encrypted via data encryption programs requires a key to be decrypted to its original form. This key is generated by the software itself and shared between the data/file sender and receiver. Thus, even if the encrypted data is extracted or compromised, its original content cannot be retrieved without the encryption key. File encryption, email encryption, disk encryption and network encryption are widely used types of data encryption software.<br /><br />","materialsDescription":"<h1 class=\"align-center\"><span style=\"font-weight: normal;\">What is Encryption software?</span></h1>\r\nEncryption software is software that uses cryptography to prevent unauthorized access to digital information. Cryptography is used to protect digital information on computers as well as the digital information that is sent to other computers over the Internet.There are many software products which provide encryption. Software encryption uses a cipher to obscure the content into ciphertext. One way to classify this type of software is by the type of cipher used. Ciphers can be divided into two categories: <span style=\"font-weight: bold;\">public key ciphers</span> (also known as asymmetric ciphers), and <span style=\"font-weight: bold;\">symmetric key ciphers</span>. Encryption software can be based on either public key or symmetric key encryption.\r\nAnother way to classify crypto software is to categorize its purpose. Using this approach, software encryption may be classified into software which encrypts "<span style=\"font-weight: bold;\">data in transit</span>" and software which encrypts "<span style=\"font-weight: bold;\">data at rest</span>". Data in transit generally uses public key ciphers, and data at rest generally uses symmetric key ciphers.\r\nSymmetric key ciphers can be further divided into stream ciphers and block ciphers. Stream ciphers typically encrypt plaintext a bit or byte at a time, and are most commonly used to encrypt real-time communications, such as audio and video information. The key is used to establish the initial state of a keystream generator, and the output of that generator is used to encrypt the plaintext. Block cipher algorithms split the plaintext into fixed-size blocks and encrypt one block at a time. For example, AES processes 16-byte blocks, while its predecessor DES encrypted blocks of eight bytes.<br />There is also a well-known case where PKI is used for data in transit of data at rest.\r\n<h1 class=\"align-center\"><span style=\"font-weight: normal;\">How Data Encryption is used?</span></h1>\r\nThe purpose of data encryption is to deter malicious or negligent parties from accessing sensitive data. An important line of defense in a cybersecurity architecture, encryption makes using intercepted data as difficult as possible. It can be applied to all kinds of data protection needs ranging from classified government intel to personal credit card transactions. Data encryption software, also known as an encryption algorithm or cipher, is used to develop an encryption scheme which theoretically can only be broken with large amounts of computing power.\r\nEncryption is an incredibly important tool for keeping your data safe. When your files are encrypted, they are completely unreadable without the correct encryption key. If someone steals your encrypted files, they won’t be able to do anything with them.\r\nThere different types of encryption: hardware and software. Both offer different advantages. So, what are these methods and why do they matter?\r\n<h1 class=\"align-center\"><span style=\"font-weight: normal;\">Software Encryption</span></h1>\r\n<p class=\"align-left\">As the name implies, software encryption uses features of encryption software to encrypt your data. Cryptosoft typically relies on a password; give the right password, and your files will be decrypted, otherwise they remain locked. With encryption enabled, it is passed through a special algorithm that scrambles your data as it is written to disk. The same software then unscrambles data as it is read from the disk for an authenticated user.</p>\r\n<p class=\"align-left\"><span style=\"font-weight: bold;\">Pros.</span>Crypto programs is typically quite cheap to implement, making it very popular with developers. In addition, software-based encryption routines do not require any additional hardware.<span style=\"font-weight: bold;\"></span></p>\r\n<p class=\"align-left\"><span style=\"font-weight: bold;\">Cons.</span>Types of encryption software is only as secure as the rest of your computer or smartphone. If a hacker can crack your password, the encryption is immediately undone.<br />Software encryption tools also share the processing resources of your computer, which can cause the entire machine to slow down as data is encrypted/decrypted. You will also find that opening and closing encrypted files is much slower than normal because the process is relatively resource intensive, particularly for higher levels of encryption</p>\r\n<h1 class=\"align-center\"><span style=\"font-weight: normal;\">Hardware encryption</span></h1>\r\n<p class=\"align-left\">At the heart of hardware encryption is a separate processor dedicated to the task of authentication and encryption. Hardware encryption is increasingly common on mobile devices. <br />The encryption protection technology still relies on a special key to encrypt and decrypt data, but this is randomly generated by the encryption processor. Often times, hardware encryption devices replace traditional passwords with biometric logons (like fingerprints) or a PIN number that is entered on an attached keypad<span style=\"font-weight: bold;\"></span></p>\r\n<p class=\"align-left\"><span style=\"font-weight: bold;\">Pros.</span>Hardware offers strong encryption, safer than software solutions because the encryption process is separate from the rest of the machine. This makes it much harder to intercept or break. </p>\r\n<p class=\"align-left\">The use of a dedicated processor also relieves the burden on the rest of your device, making the encryption and decryption process much faster.<span style=\"font-weight: bold;\"></span></p>\r\n<p class=\"align-left\"><span style=\"font-weight: bold;\">Cons.</span>Typically, hardware-based encrypted storage is much more expensive than a software encryption tools. <br />If the hardware decryption processor fails, it becomes extremely hard to access your information.<span style=\"font-weight: bold;\"></span></p>\r\n<p class=\"align-left\"><span style=\"font-weight: bold;\">The Data Recovery Challenge. </span>Encrypted data is a challenge to recover. Even by recovering the raw sectors from a failed drive, it is still encrypted, which means it is still unreadable. </p>\r\n<p class=\"align-left\">Hardware encrypted devices don’t typically have these additional recovery options. Many have a design to prevent decryption in the event of a component failure, stopping hackers from disassembling them. The fastest and most effective way to deal with data loss on an encrypted device is to ensure you have a complete backup stored somewhere safe. For your PC, this may mean copying data to another encrypted device. For other devices, like your smartphone, backing up to the Cloud provides a quick and simple economy copy that you can restore from. 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