ZyXEL ZyWALL 5 User Guide - Page 399

Certificates

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CHAPTER 20 Certificates 20.1 Overview The ZyWALL can use certificates (also called digital IDs) to authenticate users. Certificates are based on public-private key pairs. A certificate contains the certificate owner's identity and public key. Certificates provide a way to exchange public keys for use in authentication. 20.1.1 What You Can Do in the Certificate Screens • Use the My Certificate screens (see Section 20.2 on page 401) to generate and export self-signed certificates or certification requests and import the ZyWALL's CA-signed certificates. • Use the Trusted CA screens (see Section 20.6 on page 413) to save the certificates of trusted CAs to the ZyWALL. You can also export the certificates to a computer. • Use the Trusted Remote Hosts screens (see Section 20.9 on page 419) to import selfsigned certificates from trusted remote hosts. • Use the Directory Servers screen (see Section 20.12 on page 424) to configure a list of addresses of directory servers (that contain lists of valid and revoked certificates). 20.1.2 What You Need to Know About Certificates A Certification Authority (CA) issues certificates and guarantees the identity of each certificate owner. There are commercial certification authorities like CyberTrust or VeriSign and government certification authorities. You can use the ZyWALL to generate certification requests that contain identifying information and public keys and then send the certification requests to a certification authority. When using public-key cryptology for authentication, each host has two keys. One key is public and can be made openly available; the other key is private and must be kept secure. Public-key encryption in general works as follows. 1 Tim wants to send a private message to Jenny. Tim generates a public-private key pair. What is encrypted with one key can only be decrypted using the other. 2 Tim keeps the private key and makes the public key openly available. 3 Tim uses his private key to encrypt the message and sends it to Jenny. 4 Jenny receives the message and uses Tim's public key to decrypt it. 5 Additionally, Jenny uses her own private key to encrypt a message and Tim uses Jenny's public key to decrypt the message. ZyWALL 5/35/70 Series User's Guide 399

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ZyWALL 5/35/70 Series User’s Guide
399
C
HAPTER
20
Certificates
20.1
Overview
The ZyWALL can use certificates (also called digital IDs) to authenticate users. Certificates
are based on public-private key pairs. A certificate contains the certificate owner’s identity and
public key. Certificates provide a way to exchange public keys for use in authentication.
20.1.1
What You Can Do in the Certificate Screens
Use the
My Certificate
screens (see
Section 20.2 on page 401
) to generate and export
self-signed certificates or certification requests and import the ZyWALL’s CA-signed
certificates.
Use the
Trusted CA
screens (see
Section 20.6 on page 413
) to save the certificates of
trusted CAs to the ZyWALL. You can also export the certificates to a computer.
Use the
Trusted Remote Hosts
screens (see
Section 20.9 on page 419
) to import self-
signed certificates from trusted remote hosts.
Use the
Directory Servers
screen (see
Section 20.12 on page 424
) to configure a list of
addresses of directory servers (that contain lists of valid and revoked certificates).
20.1.2
What You Need to Know About Certificates
A Certification Authority (CA) issues certificates and guarantees the identity of each
certificate owner. There are commercial certification authorities like CyberTrust or VeriSign
and government certification authorities. You can use the ZyWALL to generate certification
requests that contain identifying information and public keys and then send the certification
requests to a certification authority.
When using public-key cryptology for authentication, each host has two keys. One key is
public and can be made openly available; the other key is private and must be kept secure.
Public-key encryption in general works as follows.
1
Tim wants to send a private message to Jenny. Tim generates a public-private key pair.
What is encrypted with one key can only be decrypted using the other.
2
Tim keeps the private key and makes the public key openly available.
3
Tim uses his private key to encrypt the message and sends it to Jenny.
4
Jenny receives the message and uses Tim’s public key to decrypt it.
5
Additionally, Jenny uses her own private key to encrypt a message and Tim uses Jenny’s
public key to decrypt the message.