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Saturday, November 16, 2013
Monday, January 14, 2013
Latest IT Education At Oxford University
Latest IT Education At Oxford University
Latest IT Education At Oxford University
Latest IT Education At Oxford University
Latest IT Education At Oxford University
Latest IT Education At Oxford University
Latest IT Education At Oxford University
Latest IT Education At Oxford University
Latest IT Education At Oxford University
Tuesday, January 31, 2012
The New Magical 3D Drawing Pad
With more and more cool gadgest and new technology products coming into the market; now there is one for everyone, like this magical 3D drawing pad.
Magical notepad turns everything you write into 3D
- · Each page is a stereographic background
- · Write or draw on it in black ink
- · Put on the 3D glasses to see your writing float!
Seems like everything is 3D nowadays. Pretty soon we’ll be watching 3D movies, playing 3D video games on our 3D TVs, and typing emails on our 3D iPads. Then our cars will have 3D dashboard displays and our fast food menus will have french fries popping out of them like they’re ready to leap into our mouth. Mmmmmm… the Future is so tasty.
If you’ve ever wanted to work in 3D, but lack the artistic or computering know-how, we have a low-tech solution with the 3D Drawing Pad. Each page is a stereographic background for your writing or drawing. Put on the 3D specs and see your lines float above the page! The colored filters in the 3D specs allow each eye to only see the opposite color on the stereoscopic graph.
As the brain fuses the two graphs together our focal point is pushed backwards creating the illusion of depth. As your drawing in black ink is seen by both eyes it remains at its normal focal distance, appearing to float above the page.
Product Specifications
1. Write and draw in 3D on this magical notepad2. 3D Image will only appear when you write on the checkered part of the pad
3. Each page is a stereoscopic background
4. Write or draw on it in black ink (black works best)
5. Put on your 3D spaces to see your lines float above the page
6. 50 sheets per pad, plus one pair of 3D glasses
Latest Breakthrough in The Solar Cell Technology
Breakthrough in solar cell technology as claimed by Taiwan researchers. A team of Taiwanese and Swiss chemists has developed new dye components that it said can potentially enhance the efficiency of solar cells.
The National Science Council (NSC) said the dye can improve the efficiency of dye-sensitized photovoltaic (PV) cells, Taiwan ’s Central News Agency reported.
Such a feat can lead to very cheap solar cells and greatly contribute to the development of the photovoltaic industry, the CNA report quoted the NSC, which funded the research, as saying.
Nokia New Phone Concept-GEM
Nokia New Mobile Phone Concept (turning the entire handset into a touchscreen). Think of today’s mobile phone and the screen is an all-important feature – the interface between us and the device and probably the first thing most people want to know about when trying to decide their next phone.
But things could be very different in just a couple of years if this stunning concept device from the Nokia Research Centre is anything to go by.
It’s called the GEM, and it’s been produced to mark the NRC’s 25th anniversary, a quarter of a century that has seen a huge number of innovations emerging from the Espoo ideas centre, many of which have helped drive Nokia’s success over the year.
What makes the GEM so special is that it has no screen at all – or rather, the whole device is effectively a screen, able to drastically change appearance to suit whatever function or app you’re busy with at a given time.
Nokia senior design manager Jarkko Saunamäki hinted at some of the ways the GEM concept could revolutionise how we use our mobile devices: “now, when you launch an application like the camera, your mobile phone still looks like a mobile phone, but with GEM, when you launch the camera application, the whole phone looks like a camera,” he explained.
“It’s the ultimate customisable device. There is no default appearance. If you play a lot of games it will usually resemble a games pad, for example.”
The potential for such a device is practically limitless, from the advertising and marketing possibilities created from being able to turn every surface into a display to the interactivity you could engineer by having touch and vision working together so seamlessly.
Apple iPhone 6 will have Curved Glass Display
Do you think Apple iPhone 6 will have curved glass display? Based on a few recent surveys, the actualiPhone 6 will be having a display that’ll be made of curved glass instead of the conventional flat-glassed surface that we’ve seen for prior apple iphones.
The actual Nexus S, however, currently offers curved glass however, many analysts think that they haven’t place any effort towards marketing which include in order to customers.It’s definitely far too early to consider this particular rumour concerning the iPhone 6 and the possibility of this improving to a curved glass screen, so make sure to take this particular with a grain of salt (for now at least)
Although iphone 6 is quite a while away from being launched, the rumor-mill doesn’t fail to make sure you the imaginations about Apple’s ultimate sixth-generation smartphone.According to the report given by DigiTimes, a number of supply-chain manufacturers that work along with Apple state that the tech-giant has requested that they prepare for the eventual manufacture of
curved-glass for the iPhone 6.
Apple company is known to assist their supply-chain manufacturers with the paying for expensive equipment for the manufacture of iPhone accessories as well as parts.This information to their producers might be related to comparable are convinced that claims which Apple company has purchased glass-polishing gear for their suppliers and that they’re looking for a competitive advantage through helping their own suppliers speed up the familiarization and training procedure by helping them with this kind of expenses.
iPhone 6 Rumored In order to Feature A Curved Glass ScreenExactly the same statement continued to claim that each The brand new htc as well as Samsung want to launch curved-glass mobile phones too, so this may well be a competition to the top location for these businesses.
The actual Nexus S, however, currently offers curved glass however, many analysts think that they haven’t place any effort towards marketing which include in order to customers.It’s definitely far too early to consider this particular rumour concerning the iPhone 6 and the possibility of this improving to a curved glass screen, so make sure to take this particular with a grain of salt (for now at least)
Saturday, December 3, 2011
OSI Reference Model (OSI)
OSI Reference Model (OSI)
The International Organization for Standardization (ISO) developed the Open System Interconnection (OSI) Reference Model to describe how information is transferred from one machine to another machine from the point when a user enters information using a keyboard and mouse to when that information is converted to electrical or light signals transferred along a piece of wire or radio waves transferred through the air. It is important to understand that the OSI Reference Model describes concepts and terms in a general manner and that many network protocols such as IP and IPX fail to fit nicely into scheme explained in OSI model. Therefore the OSI Reference Model is most often used as a teaching and troubleshooting tool. By understanding the basics of the OSI Reference Model you can apply these to real protocols to gain a better understanding of them as well as to more easily troubleshoot problems.
OSI Reference Model (OSI)
Layer 6 Presentation
Layer 5 Session
Layer 4 Transport
Layer 3 Network
Layer 2 Data link
Layer 1 Physical
(1)Application Layer
The top (seventh) layer of the OSI Reference Model is the application layer. It provides the user interface. Example of TCP/IP applications include telnet, FTP, HTTP, and SMTP. The seventh layer or topmost layer of the OSI Reference Model is the application layer. It provides the interface that a person user to interact with the application. The interface can be command-line interface (CLI) whereas a web browser uses a graphical interface. In the OSI Reference Model the application layer refers to applications that are network-aware. There are thousands of computer application across a network. This situation is changing rapidly however . Five years ago there was a distinct line between application that could and could not perform network functions. A good example of this was word processing programs like Microsoft word they were built to perform one process: word processing. Today however many applications Microsoft word for instance
Have embedded objects that do not necessarily have to be on the same computer are telnet FTP web browsers and e-mail.
(2)Presentation Layer
The sixth layer of the OSI Reference Model is the presentation layer. The presentation layer is responsible for defining how information is presented to the user in the interface that they are using. This layer defines how various forms of text graphics video or audio information are presented to the user. For example text is represented in two different forms: ASCI and EBCDIC. ASCII (the American Standard Code for on formation interchange used by most devices today) uses seven bits to represent characters. EBCDIC (Extended Binary- Coded Decimal Interchange Code developed by IBM) is still used in mainframe environments to represent characters. Text can also b shaped by different elements such as font underline italic and bold. There are different standards for representing graphical information BMP, GIF, JPEG, TIFF and others. This variety of standards is also true of audio (WAV and MIDI ) and video (WMV, AVI, and MPEG). There are literally hundreds of standards for representing information that a user sees in their application. Probably one of the best examples of applications that have a very clear presentation function is a web browser since it has many special marking codes that define how data should be represented to the user. The presentation layer can also provide encryption to secure data from the application layer however this is not common with today methods of security since this type of encryption is performed in software and required a lot of CPU cycles to perform.
(3)Session Layer
The fifth layer of the OSI Reference Model is the session layer. The session layer is responsible for initiating the setup and teardown of connections. In order to perform these functions the session layer must determine whether data stays local to a computer or must be obtained or sent to a remote networking device. In the later case the session layer initiates the connection. The session layer is also responsible for differentiating among multiple network connections ensuring that data is sent across the correct connection as well as taking data from a connection and forwarding it to the correct application. The actual mechanics of this process however are implemented at the transport layer. To set up connections or tear down connections the session layer communicates with the transport layer. Remote Procedure Call (PRC) is an example of an IP session protocol the Network File System (NFS) which uses RPC is an example application at this layer.
Transport Layer
The fourth layer of the OSI Reference Model is the transport layer. The transport layer is responsible for the actual mechanics of a connection where it can provide both reliable and unreliable delivery of data. For reliable connections the transport layer is responsible for error detection and correction: When an error is detected the transport layer will resend the data thus providing the correction. For unreliable connections the transport layer provides only error detection error correction is left up to one of the higher layers (typically the application layer). In this sense unreliable connections attempted to provide a best effort delivery if the data makes it there that great and if it dose not oh well! Example of a reliable transport protocol are TCP/IP Transmission Control Protocol (TCP) and IPX SPX (Sequenced Packet Exchange) protocol. TCP/IP User Datagram Protocol (UDP) is an example of a protocol that uses unreliable connections. Actually IPX and IP themselves are example of protocols that provide unreliable connections even though they operate at the network and not transport layer. In IPX case if a reliable connection is needed SPX is used. For IP if a reliable connection is mechanics is discussed in more depth in the section Transport Layer later in this chapter.
Network Layer
The third layer of the OSI Reference Model is network layer. The network layer provides quite a few functions. First it provides for a logical topology of your network using logical or layer 3 addresses. These addresses are used to group machines together. As you will see in chapter 3 these addresses have two components a network component and a host component. The network component is used to group devices together. Layer 3 addresses allow devices that are on the same or different media types to communicate with each other. Media types define types of connections such as Ethernet Token Ring or serial. These are discussed in the section Data Link Layer later in this chapter. To move information between devices that have different network numbers a router is used. Routers use information in the logical address to make intelligent decisions about how to reach a destination. Routing is discussed in more depth in chapter 9, 10 and 11. Examples of network layer protocols include Apply Talk DEC net IPX, TCP/IP (or IP for short), Vines and XNS. The network layer is discussed in much more depth in the section Network Layer later in this chapter.
Data Link Layer
The second layer in the OSI Reference Model is the data link layer. Whereas the network layer provides for logical addresses for devices the data link layer provides for physical or hardware addresses. These hardware addresses are commonly called Media Access Control (MAC) addresses. The data link layer also defines how a networking device access the media that it is connected as well as defining the media frame type. This include the fields and components of the data link layer or layer 2 frame. This communication is only for devices on the same data link layer media type (or same piece of wire). To traverse media types Ethernet to Token Ring for instance typically a router is used. The data link layer is also responsible for taking bits (binary 1 and o) from the physically layer and reassembling them into the original data link layer frame. The data link layer dose error detection and will discard bad frames. It typically does not perform error correction as TCP/IP TCP protocol does however some data link layer protocols do support error correction functions. Examples of data link layer protocols and standards for local area network (LAN) connections include IEEE 802.3 and 802.5 Ethernet II and ANSI FDDI. Example of WAN connections include ATM Frame Relay HDLC (High Level Data Link Control) SLIP (Serial Line Internet Protocol ) and X.25. Bridges switches and network interface controllers or cards (NIC) are the primary networking devices functioning the data link layer which is discussed in more depth in the section Data Link Layer later in this chapter.
Physical Layer
The first or bottommost layer of the OSI Reference Model is the physical layer. The physical layer is responsible for the physical mechanics of a network connection which include the following:
- The type of interface used on the networking device.
- The type of cable used for connecting devices.
- The connectors used on each end of the cable.
- The pin-outs used for each of the connections on the cable.
The type of interface is commonly called a NIC A NIC can be a physical card that you put into a computer like a 100BaseT Ethernet card or a fixed interface on a switch like a 100BaseTX port on a Cisco Catalyst 1900 series switch. The physical layer is also responsible for how binary information is converted to a physical layer signal. For example if the cable uses copper as a transport medium the physical defines how binary 1 s and 0 s are converted into an electrical signal by using different voltage
Password Recovery Procedure for the Cisco 7200 Series Routers
Password Recovery Procedure for the Cisco 7200 Series Routers
Introduction
This document describes how to recover the enable password and the enable secret passwords. These passwords protect access to privileged EXEC and configuration modes. The enable password password can be recovered, but the enable secret password is encrypted and must be replaced with a new password. Use the procedure described in this document in order to replace the enable secret password.
There are no specific requirements for this document.
The information in this document is based on these hardware versions:
- Cisco 3600 Series Router
- Cisco 3800 Series Router
The information in this document was created from the devices in a specific lab environment. All of the devices used in this document started with a cleared (default) configuration. If your network is live, make sure that you understand the potential impact of any command.
Refer to Password Recovery Procedures for information on how to recover passwords for related products.
Refer to Cisco Technical Tips Conventions for information on document conventions.
Follow these steps in order to recover your password:
- Attach a terminal or PC with terminal emulation to the console port of the router.
Use these terminal settings:
- 9600 baud rate
- No parity
- 8 data bits
- 1 stop bit
- No flow control
Refer to these documents for information on how to cable and connect a terminal to the console port or the AUX port:
- Cabling Guide for Console and AUX Ports
- Connecting a Terminal to the Console Port on Catalyst Switches
- Connect a Terminal to Catalyst 2948G-L3, 4908G-L3, and 4840G Series Switches
- If you can access the router, type show version at the prompt, and record the configuration register setting. See Example of Password Recovery Procedure in order to view the output of a show version command
Note: The configuration register is usually set to 0x2102 or 0x102. If you can no longer access the router (because of a lost login or TACACS password), you can safely assume that your configuration register is set to 0x2102.
- Use the power switch in order to turn off the router, and then turn the router back on.
Important Notes:
- In order to simulate this step on a Cisco 6400, pull out and then plug in the Node Route Processor (NRP) or Node Switch Processor (NSP) card.
- In order to simulate this step on a Cisco 6x00 with NI-2, pull out and then plug in the NI-2 card.
- Press Break on the terminal keyboard within 60 seconds of power up in order to put the router into ROMMON.
If the break sequence does not work, refer to Standard Break Key Sequence Combinations During Password Recovery for other key combinations.
- Type confreg 0x2142 at the rommon 1> prompt in order to boot from Flash.
This step bypasses the startup configuration where the passwords are stored.
- Type reset at the rommon 2> prompt.
The router reboots, but ignores the saved configuration.
- Type no after each setup question, or press Ctrl-C in order to skip the initial setup procedure.
- Type enable at the Router> prompt.
You are in enable mode and should see the Router# prompt.
- Type configure memory or copy startup-config running-config in order to copy the nonvolatile RAM (NVRAM) into memory.
Important: Do not type copy running-config startup-config or write. These commands erase your startup configuration.
- Type show running-config.
The show running-config command shows the configuration of the router. In this configuration, the shutdown command appears under all interfaces, which indicates all interfaces are currently shut down. In addition, the passwords (enable password, enable secret, vty, console passwords) are in either an encrypted or unencrypted format. You can reuse unencrypted passwords. You must change encrypted passwords to a new password.
- Type configure terminal.
The hostname(config)# prompt appears.
- Type enable secret <password> in order to change the enable secret password. For example:
13. hostname(config)#enable secret cisco
14.
- Issue the no shutdown command on every interface that you use.
If you issue a show ip interface brief command, every interface that you want to use should display up up.
- Type config-register <configuration_register_setting>. Where configuration_register_setting is either the value you recorded in step 2 or 0x2102 . For example:
17. hostname(config)#config-register 0x2102
18.
- Press Ctrl-z or end in order to leave the configuration mode.
The hostname# prompt appears.
- Type write memory or copy running-config startup-config in order to commit the changes.
This section provides an example of the password recovery procedure. This example was created with a Cisco 2600 Series Router. Even if you do not use a Cisco 2600 Series Router, this output provides an example of what you should experience on your product.
Router>enable
Password:
Password:
Password:
% Bad secrets
Router>show version
Cisco Internetwork Operating System Software
IOS (tm) C2600 Software (C2600-IS-M), Version 12.0(7)T, RELEASE SOFTWARE (fc2)
Copyright (c) 1986-1999 by cisco Systems, Inc.
Compiled Tue 07-Dec-99 02:21 by phanguye
Image text-base: 0x80008088, data-base: 0x80C524F8
ROM: System Bootstrap, Version 11.3(2)XA4, RELEASE SOFTWARE (fc1)
Router uptime is 3 minutes
System returned to ROM by abort at PC 0x802D0B60
System image file is "flash:c2600-is-mz.120-7.T"
cisco 2611 (MPC860) processor (revision 0x202) with 26624K/6144K bytes of memory.
Processor board ID JAB031202NK (3878188963)
M860 processor: part number 0, mask 49
Bridging software.
X.25 software, Version 3.0.0.
Basic Rate ISDN software, Version 1.1.
2 Ethernet/IEEE 802.3 interface(s)
2 Serial(sync/async) network interface(s)
1 ISDN Basic Rate interface(s)
32K bytes of non-volatile configuration memory.
8192K bytes of processor board System flash partition 1 (Read/Write)
8192K bytes of processor board System flash partition 2 (Read/Write)
Configuration register is 0x2102
Router>
!--- The router was just powercycled, and during bootup a
!--- break sequence was sent to the router.
!
*** System received an abort due to Break Key ***
signal= 0x3, code= 0x500, context= 0x813ac158
PC = 0x802d0b60, Vector = 0x500, SP = 0x80006030
rommon 1 > confreg 0x2142
You must reset or power cycle for new config to take effect
rommon 2 > reset
System Bootstrap, Version 11.3(2)XA4, RELEASE SOFTWARE (fc1)
Copyright (c) 1999 by cisco Systems, Inc.
TAC:Home:SW:IOS:Specials for info
C2600 platform with 32768 Kbytes of main memory
program load complete, entry point: 0x80008000, size: 0x6fdb4c
Self decompressing the image : ###############################
##############################################################
##############################################################
##############################################################
############################### [OK]
Restricted Rights Legend
Use, duplication, or disclosure by the Government is
subject to restrictions as set forth in subparagraph
(c) of the Commercial Computer Software - Restricted
Rights clause at FAR sec. 52.227-19 and subparagraph
(c) (1) (ii) of the Rights in Technical Data and Computer
Software clause at DFARS sec. 252.227-7013.
cisco Systems, Inc.
170 West Tasman Drive
San Jose, California 95134-1706
Cisco Internetwork Operating System Software
IOS (tm) C2600 Software (C2600-IS-M), Version 12.0(7)T, RELEASE SOFTWARE (fc2)
Copyright (c) 1986-1999 by cisco Systems, Inc.
Compiled Tue 07-Dec-99 02:21 by phanguye
Image text-base: 0x80008088, data-base: 0x80C524F8
cisco 2611 (MPC860) processor (revision 0x202) with 26624K/6144K bytes of memory.
Processor board ID JAB031202NK (3878188963)
M860 processor: part number 0, mask 49
Bridging software.
X.25 software, Version 3.0.0.
Basic Rate ISDN software, Version 1.1.
2 Ethernet/IEEE 802.3 interface(s)
2 Serial(sync/async) network interface(s)
1 ISDN Basic Rate interface(s)
32K bytes of non-volatile configuration memory.
8192K bytes of processor board System flash partition 1 (Read/Write)
8192K bytes of processor board System flash partition 2 (Read/Write)
--- System Configuration Dialog ---
Would you like to enter the initial configuration dialog? [yes/no]: n
Press RETURN to get started!
00:00:19: %LINK-3-UPDOWN: Interface BRI0/0, changed state to up
00:00:19: %LINK-3-UPDOWN: Interface Ethernet0/0, changed state to up
00:00:19: %LINK-3-UPDOWN: Interface Ethernet0/1, changed state to up
00:00:19: %LINK-3-UPDOWN: Interface Serial0/0, changed state to down
00:00:19: %LINK-3-UPDOWN: Interface Serial0/1, changed state to down
00:00:20: %LINEPROTO-5-UPDOWN: Line protocol on Interface BRI0/0,
changed state to down
00:00:20: %LINEPROTO-5-UPDOWN: Line protocol on Interface Ethernet0/0,
changed state to up
Router>
00:00:20: %LINEPROTO-5-UPDOWN: Line protocol on Interface Ethernet0/1,
changed state to up
00:00:20: %LINEPROTO-5-UPDOWN: Line protocol on Interface Serial0/0,
changed state to down
00:00:20: %LINEPROTO-5-UPDOWN: Line protocol on Interface Serial0/1,
changed state to down
00:00:50: %SYS-5-RESTART: System restarted --
Cisco Internetwork Operating System Software
IOS (tm) C2600 Software (C2600-IS-M), Version 12.0(7)T, RELEASE SOFTWARE (fc2)
Copyright (c) 1986-1999 by cisco Systems, Inc.
Compiled Tue 07-Dec-99 02:21 by phanguye
00:00:50: %LINK-5-CHANGED: Interface BRI0/0,
changed state to administratively down
00:00:52: %LINK-5-CHANGED: Interface Ethernet0/0,
changed state to administratively down
00:00:52: %LINK-5-CHANGED: Interface Serial0/0,
changed state to administratively down
00:00:52: %LINK-5-CHANGED: Interface Ethernet0/1,
changed state to administratively down
00:00:52: %LINK-5-CHANGED: Interface Serial0/1,
changed state to administratively down
00:00:53: %LINEPROTO-5-UPDOWN: Line protocol on Interface Ethernet0/0,
changed state to down
00:00:53: %LINEPROTO-5-UPDOWN: Line protocol on Interface Ethernet0/1,
changed state to down
Router>
Router>enable
Router#copy startup-config running-config
Destination filename [running-config]?
1324 bytes copied in 2.35 secs (662 bytes/sec)
Router#
00:01:24: %LINEPROTO-5-UPDOWN: Line protocol on Interface BRI0/0:1,
changed state to down
00:01:24: %LINEPROTO-5-UPDOWN: Line protocol on Interface BRI0/0:2,
changed state to down
Router#configure terminal
Enter configuration commands, one per line. End with CNTL/Z.
Router(config)#enable secret < password >
Router(config)#^Z
00:01:54: %SYS-5-CONFIG_I: Configured from console by console
Router#show ip interface brief
Interface IP-Address OK? Method Status Protocol
Ethernet0/0 10.200.40.37 YES TFTP administratively down down
Serial0/0 unassigned YES TFTP administratively down down
BRI0/0 193.251.121.157 YES unset administratively down down
BRI0/0:1 unassigned YES unset administratively down down
BRI0/0:2 unassigned YES unset administratively down down
Ethernet0/1 unassigned YES TFTP administratively down down
Serial0/1 unassigned YES TFTP administratively down down
Loopback0 193.251.121.157 YES TFTP up up
Router#configure terminal
Enter configuration commands, one per line. End with CNTL/Z.
Router(config)#interface Ethernet0/0
Router(config-if)#no shutdown
Router(config-if)#
00:02:14: %LINK-3-UPDOWN: Interface Ethernet0/0, changed state to up
00:02:15: %LINEPROTO-5-UPDOWN: Line protocol on Interface Ethernet0/0,
changed state to up
Router(config-if)#interface BRI0/0
Router(config-if)#no shutdown
Router(config-if)#
00:02:26: %LINK-3-UPDOWN: Interface BRI0/0:1, changed state to down
00:02:26: %LINK-3-UPDOWN: Interface BRI0/0:2, changed state to down
00:02:26: %LINK-3-UPDOWN: Interface BRI0/0, changed state to up
00:02:115964116991: %ISDN-6-LAYER2UP: Layer 2 for Interface BR0/0,
TEI 68 changed to up
Router(config-if)#^Z
Router#
00:02:35: %SYS-5-CONFIG_I: Configured from console by console
Router#copy running-config startup-config
Destination filename [startup-config]?
Building configuration...
[OK]
Router#show version
Cisco Internetwork Operating System Software
IOS (tm) C2600 Software (C2600-IS-M), Version 12.0(7)T, RELEASE SOFTWARE (fc2)
Copyright (c) 1986-1999 by cisco Systems, Inc.
Compiled Tue 07-Dec-99 02:21 by phanguye
Image text-base: 0x80008088, data-base: 0x80C524F8
ROM: System Bootstrap, Version 11.3(2)XA4, RELEASE SOFTWARE (fc1)
Router uptime is 3 minutes
System returned to ROM by abort at PC 0x802D0B60
System image file is "flash:c2600-is-mz.120-7.T"
cisco 2611 (MPC860) processor (revision 0x202)
with 26624K/6144K bytes of memory.
Processor board ID JAB031202NK (3878188963)
M860 processor: part number 0, mask 49
Bridging software.
X.25 software, Version 3.0.0.
Basic Rate ISDN software, Version 1.1.
2 Ethernet/IEEE 802.3 interface(s)
2 Serial(sync/async) network interface(s)
1 ISDN Basic Rate interface(s)
32K bytes of non-volatile configuration memory.
8192K bytes of processor board System flash partition 1 (Read/Write)
8192K bytes of processor board System flash partition 2 (Read/Write)
Configuration register is 0x2142
Router#configure terminal
Enter configuration commands, one per line. End with CNTL/Z.
Router(config)#config-register 0x2102
Router(config)#^Z
00:03:20: %SYS-5-CONFIG_I: Configured from console by console
Router#show version
Cisco Internetwork Operating System Software
IOS (tm) C2600 Software (C2600-IS-M), Version 12.0(7)T, RELEASE SOFTWARE (fc2)
Copyright (c) 1986-1999 by cisco Systems, Inc.
Compiled Tue 07-Dec-99 02:21 by phanguye
Image text-base: 0x80008088, data-base: 0x80C524F8
ROM: System Bootstrap, Version 11.3(2)XA4, RELEASE SOFTWARE (fc1)
Router uptime is 3 minutes
System returned to ROM by abort at PC 0x802D0B60
System image file is "flash:c2600-is-mz.120-7.T"
cisco 2611 (MPC860) processor (revision 0x202)
with 26624K/6144K bytes of memory.
Processor board ID JAB031202NK (3878188963)
M860 processor: part number 0, mask 49
Bridging software.
X.25 software, Version 3.0.0.
Basic Rate ISDN software, Version 1.1.
2 Ethernet/IEEE 802.3 interface(s)
2 Serial(sync/async) network interface(s)
1 ISDN Basic Rate interface(s)
32K bytes of non-volatile configuration memory.
8192K bytes of processor board System flash partition 1 (Read/Write)
8192K bytes of processor board System flash partition 2 (Read/Write)
Configuration register is 0x2142 (will be 0x2102 at next reload)
Router#
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