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我们通常使用的标准电子邮件是一种非常不安全的信息传输技术。移动设备,如黑莓,无线通信是非常脆弱的,没有额外的安全层。在发送邮件之前,可以很容易地被拦截,因为它们没有被加密。他们被传送为可读文本,任何第三方都可以通过邮件,这是被截获的收件人和发件人的知识。文件附件的照片也不加密的传输时,发送从黑莓手机。
PGP是发送邮件的密封的信封,也不可能为任何未经授权的人读取的内容里面的真实世界的等效。黑莓的PGP加密的虚拟领域做同样的事情。
谁使用黑莓PGP服务?
这种加密服务发现一个广泛的用户,从安全意识的个人公共和私人公司,包括政府机构。黑莓设备的实施和支持PGP框架是理想的。这是一个常见的加密解决方案,为企业和个人。
PGP的工作如何?
PGP是一个久经考验的加密技术被证明是安全的。它允许用户使用一个更好的加密标准的黑莓电子邮件帐户。我们使用标准的PGP加密RSA 4096位平台与AES 256。
在PGP加密,公钥用于非对称加密。两键用于这种加密的信息,一个加密信息,并破译它的其他。公开密钥,与密钥不同,是在发送者和接收者之间进行交换的。RSA算法实现这些功能。
Why BlackBerry encryption PGP services
The standard email we generally use is an extremely insecure technique of transmitting information. Wireless communication from a mobile device, like BlackBerry, is much vulnerable without an extra security layer. Messages can be easily intercepted as they are not encrypted automatically before they are sent. They are transmitted as readable text and any third party can go through a mail, which is intercepted without the knowledge of both the recipient and sender. File attachments like photos are also transmitted unencrypted when sent from a Blackberry mobile device.
PGP is the real world equivalent of sending a mail sealed in envelopes so that it will not be possible for any unauthorized person to read the content inside it. BlackBerry PGP encryption does the same thing in the virtual sphere.
Who uses BlackBerry PGP services?
This encryption service finds a wide swathe of subscribers, from security conscious individuals to public as well as private companies, including government bodies. BlackBerry devices are ideal for implementing and supporting a PGP framework. It is a common encryption solution for both businesses and individuals.
How does PGP work?
PGP is a tried and tested encryption technique which is proven to be secured. It permits users to employ a better encryption standard on BlackBerry email accounts. We use the standard PGP platform encryption RSA 4096 bits partnered with AES 256.
In PGP encryption, a public key is used for asymmetric cryptography. Two keys are used for this kind of encrypted information, one to encipher information, and the other to decipher it. The public key, unlike the secret key, is exchanged between the sender and the recipient. The RSA algorithm performs these functions.
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