X-Micro Tech IEEE 802.11b user manual Bssid

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USER’S MANUAL OF X-MICRO WLAN 11b BROADBAND ROUTER

Version: 2.6

 

 

 

SSID

It shows the SSID of this X-Micro WLAN 11b

 

 

Broadband Router.

 

 

The SSID is the unique name of X-Micro WLAN 11b

 

Broadband Router and shared among its service area, so

 

all devices attempts to join the same wireless network

 

can identify it.

 

Channel Number

It shows the wireless channel connected currently.

Encryption

It shows the status of encryption function.

 

Associated Clients

It shows the number of connected clients (or stations,

 

PCs).

 

BSSID

It shows the BSSID address of the X-Micro WLAN 11b

 

Broadband Router. BSSID is a six-byte address.

 

LAN configuration

 

 

IP Address

It shows the IP address of LAN interfaces of X-Micro

 

WLAN 11b Broadband Router.

 

Subnet Mask

It shows the IP subnet mask of LAN interfaces of

 

X-Micro WLAN 11b Broadband Router.

 

Default Gateway

It shows the default gateway setting for LAN interfaces

 

outgoing data packets.

 

DHCP Server

It shows the DHCP server is enabled or not.

 

MAC Address

It shows the MAC address of LAN interfaces of X-Micro

 

WLAN 11b Broadband Router.

 

WAN configuration

 

 

Attain IP Protocol

It shows how the X-Micro WLAN 11b Broadband Router

 

gets the IP address. The IP address can be set manually to

 

a fixed one or set dynamically by DHCP server or attain

 

IP by PPPoE connection.

 

IP Address

It shows the IP address of WAN interface of X-Micro

 

WLAN 11b Broadband Router.

 

Subnet Mask

It shows the IP subnet mask of WAN interface of

 

 

X-Micro WLAN 11b Broadband Router.

 

Default Gateway

It shows the default gateway setting for WAN interface

 

outgoing data packets.

 

MAC Address

It shows the MAC address of WAN interface of X-Micro

 

WLAN 11b Broadband Router.

 

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Contents Ieee 802.11b Wlan 11b Broadband Router Ieee 802.11b Trademarks Terminology Table of Contents Frequently Asked Questions FAQ Product Specifications Package contentsFront Panel Description Product FeaturesWAN ACT LED Rear Panel Description Antenna Reset WAN LAN PowerSoftware Installation Hardware InstallationSoftware configuration For OS of Microsoft Windows NT Description Connect to the X-Micro Wlan 11b Broadband RouterBssid Wireless Basic Settings Shared Key or Auto selection Wireless Advanced SettingsClick to select the Long Preamble or Short Preamble Wireless Security SetupTKIP? Screen snapshot Set WEP Key ItemDescription Wireless Access ControlWDS Setup LAN Interface Setup Screen snapshot LAN Interface Setup Static IP WAN Interface SetupDNS Address assigned automatically from a Dhcp server If you select the PPPoE and Connect on Demand Are Continuous, Connect on Demand and Manual threePPTPOnly in Firmware-1.6x Firewall Port Filtering Comments ProtocolFirewall IP Filtering Firewall MAC Filtering Firewall Port Forwarding Firewall DMZ Port RangeComment DMZ Host IP Address StatisticsSent Packets Upgrade FirmwareSelect File Save/ Reload SettingsPassword Setup User Name What are ISM bands? What and how to find my PC’s IP and MAC address?What is Wireless LAN? How does wireless networking work?What is ESSID? What is BSSID?What is WEP? What are the Open System and Shared Key authentications?What is Beacon Interval? What is RTS Request To Send Threshold?What is Preamble Type? What is Ssid Broadcast?What is Wi-Fi Protected Access WPA? What is Inter-Access Point Protocol IAPP? What is 802.1x Authentication?What is Temporal Key Integrity Protocol TKIP? What is Advanced Encryption Standard AES?What is Universal Plug and Play uPNP? What is Maximum Transmission Unit MTU Size?What is Clone MAC Address?

IEEE 802.11b specifications

X-Micro Tech's IEEE 802.11b standard represents a significant advancement in wireless networking technology, forming part of the IEEE 802.11 family designated for wireless local area networks (WLAN). Introduced in the late 1990s, the 802.11b standard was a precursor to modern wireless technologies, bringing considerable improvements in speed, range, and reliability.

One of the main features of IEEE 802.11b is its data transmission capability, achieving speeds of up to 11 Mbps. While this may seem modest by today's standards, it was a groundbreaking advancement that allowed users to access the internet and share files wirelessly at previously unattainable speeds. Additionally, 802.11b supports lower data rates—5.5 Mbps and 2 Mbps—which enhance reliability and range, allowing devices further from the access point to maintain connections.

The technology operates in the 2.4 GHz frequency band, a characteristic that facilitates better penetration through walls and physical barriers. However, this frequency band is also shared with other appliances, such as microwaves and Bluetooth devices, which can lead to interference. Despite this, the standard incorporates a robust form of modulation, specifically complementary code keying (CCK), which enhances its resilience against such interference.

Another significant aspect of IEEE 802.11b is its capacity for extended range. Under optimal conditions, devices can communicate over distances of up to 300 feet indoors and up to 1,000 feet outdoors. This extended range was particularly useful in homes and offices, promoting seamless integration of devices into networks without the cumbersome wiring typically associated with traditional networking.

Security has always been a critical concern in wireless communications. IEEE 802.11b introduced Wired Equivalent Privacy (WEP) for basic data protection. However, limitations in WEP led to the development of more secure protocols such as WPA and WPA2 in later iterations of wireless standards.

In summary, X-Micro Tech's IEEE 802.11b standard laid the groundwork for modern wireless networking. Its key features, such as a maximum data rate of 11 Mbps, compatibility with the 2.4 GHz frequency band, and extended range capabilities, revolutionized network access in homes and businesses. Even as technology has evolved, the impact of 802.11b can still be felt, serving as a building block for subsequent wireless advancements, making it a significant milestone in the history of networking technology.