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I was happy to find out that Keeper uses a secure cloud infrastructure to host its customers’ data. These codes can be used to log in to my account if I lose access to my phone and I’m unable to access my Authenticator app. When I set it up with Google Authenticator, 8 backup codes were generated on the Keeper app for my safekeeping. I like that Keeper has a backup method when you set up 2FA.
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You can use it to approve authentication requests with a tap on your smartwatch (Apple Watch or Android Wear device) or when you manually enter the code on your device. It uses secure tokens stored in the Keeper Vault to generate time-based login access codes that work with smart wearables. After that, I scanned the QR code on the desktop app and was instantly connected.Īfter setting up Authenticator login, I was got an extra layer of security On my dashboard, I navigated to “Settings”, “Security”, “Two-Factor Authenticator” and toggled the “Google and Microsoft Authenticator” button on.

Linking Keeper with my Google Authenticator app was easy. Whichever method you choose, the setup process is seamless. This scam occurs when a hacker steals your phone number and uses it to get your SMS OTPs. I wouldn’t recommend using SMS authentication, however, because it is vulnerable to SIM swap scams.
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You can also use hardware security keys such as YubiKey, biometric login (FaceID, Touch ID, and Fingerprint), Keeper DNA (Apple Watch), Windows Hello, and SMS. It supports multi-factor authentication options like two-factor authentication (2FA) using Google and Microsoft Authenticator.

I was pleased to see that Keeper offers different layers of security features. With this, I don’t have to worry about hackers or cybercriminals stealing my passwords in my vault. Financial institutions and military organizations trust AES encryption to keep sensitive data safe. Since encryption occurs at the device level, not even Keeper engineers can decrypt the data in my vault. Keeper uses industry-standard AES 256-Bit encryption and keys are generated locally on my device, securing all my passwords and sensitive data. This way, even if a hacker gets hold of this encryption key, it will be impossible to restore it to your raw master password. PBKDF2 is a key derivation function that converts your master password to a 256-bit encryption key with 100,000 iterations, a way of hashing your master password multiple times. In addition to using a strong master password, I was impressed to see that Keeper encrypts your master password using PBKDF2-HMAC-SHA256. Hence, you should create a really strong master password. It is important to ensure that your password isn’t vulnerable to data breaches. A master password is like a regular password, only that it is not stored on any password database and is known only by you. I created a master password for all my data stored on Keeper.
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It works with a team of third-party security experts to identify and patch any potential security-associated risks.

Additionally, I was very impressed to find out that Keeper has partnered with BugCrowd to identify likely security vulnerabilities in its system. Therefore, my data remains safe from cybercriminals. This assures me that my data is being protected with industry-standard security protocols. It has undergone third-party security audits, uses certified cryptography, and hosts your data with trusted cloud infrastructure providers. I like that Keeper is also security policy compliant. This ensures that the private information in my vault continues to stay safe and won’t fall into the wrong hands. I was quite happy to see that it offers an extra layer of protection using multi-factor authentication features like biometric login and TOTP. It has a zero-knowledge security framework that utilizes secure encryption keys generated locally on your device. Keeper operates a trustworthy security architecture.
