IBM 1116 manual Set up to print, Print to a queue on a Windows NT server

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3Establish an FTP session with the print server. Expect the print server to return its current firmware level (such as 2.5.15).

ftp 157.184.8.231

4Using the FTP “put” command, print a file. This file can be PCL or PostScript emulations, PDF, HTML, or any other printer language the printer understands. If the file prints, this confirms the TCP/IP protocol is working properly in the print server.

put mytest.ps or put mytest.txt

5Check the port settings on the printer object. For example, in Windows 95 do the following:

a Click Start, Settings, Printers, select the printer object; click File, Properties, Details tab, Port Settings button.

b Check all parameters on the Print Server Settings tab and the TCP/IP Settings tab. You can change some of the values from this tab. Others, like TCP/IP address, you cannot change from this tab.

c If a parameter is wrong but you cannot change it from here, you must delete the port, fix the problem, and then add the port back.

6Check all the settings in the print server. Type the MarkNet IP address in the URL address field of your browser (for example, http://157.184.8.231), which takes you to the MarkNet resident web page.

7If you have trouble printing from an application, the problem might be the way your workstation or application is set up.

a Try printing from some other application. If the job prints from the second application, the problem is with the first application.

b Make sure you are using the current version of the driver for the problem application.

8Try printing again.

Step 2: Set up to print

There are many ways to send a network print job including FTP, TFTP, LPR/LPD, point-and-print (IP) and various queue-based methods.

Print to a queue on a Windows NT server

To use this method, you must have at least one server running Windows NT Server software and TCP/ IP.

Use direct IP printing if all you want to do is print directly to a network printer. If you need to centrally manage your network printers, see instructions for shared printing.

If all you want is basic printer functionality, you can use a system printer driver and a system IP port, such as an LPR or a Standard TCP/IP port. Using a system printer driver and a system port lets you maintain a consistent user interface for use with all the printers on your network.

To get the fullest range of printer functionality, including a job status window and printer alerts, you need to install a custom driver and create a Network Port.

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Contents User’s Reference Argecy Computer Corporation User’s Reference Argecy Computer Corporation Table of contents Loading labels Iii Argecy Computer Corporation Printer overview About your printerUse this feature When you want to Using the operator panel Operator panel has 6 lights and 1 operator panel buttonArgecy Computer Corporation From a Windows computer Canceling a print jobFrom the printer operator panel From a Macintosh computerSetting up a print job Printing from a Windows environmentArgecy Computer Corporation Printing from a Macintosh computer Choosing the right print media Media Size Weight Capacity Media types and sizesPrinter media sources Argecy Computer Corporation Loading paper TrayArgecy Computer Corporation Manual feed Argecy Computer Corporation Optional tray Corner bucklers Argecy Computer Corporation Loading transparencies Argecy Computer Corporation Manual feed Argecy Computer Corporation Loading envelopes Manual feed Argecy Computer Corporation Loading labels Argecy Computer Corporation Manual feed Argecy Computer Corporation Loading card stock Manual feed Argecy Computer Corporation Printing on both sides of the paper Short Edge means the pages are bound along the short edge Conserving supplies Replacing the print cartridge Removing the old print cartridgeInstalling the new print cartridge Fuser Clearing jams Remove the print cartridge it may be warm Argecy Computer Corporation Argecy Computer Corporation Reinstall the tray and resume printing Understandinglightsthe operator panel Argecy Computer Corporation Secondary error code Toner low Argecy Computer Corporation What this light sequence means Argecy Computer Corporation Argecy Computer Corporation Printer is flushing corrupted print data Argecy Computer Corporation Argecy Computer Corporation Print the other side of your duplex print job Argecy Computer Corporation Argecy Computer Corporation Printer flash memory is full Argecy Computer Corporation Printer memory is full Printer has received a page that is too complex to print Toner is low and the toner alarm is set to on Argecy Computer Corporation Argecy Computer Corporation Printer has a service error and printing has stopped Solving print quality problems Problem What to doCartridge Printer or the computer Loading Paper From the special function menu, select Hex Trace mode to Resetting user defaults Using the special function menuRestoring factory defaults Enter the special function menuUsing Hex Trace mode Using print quality test pages Advanced troubleshooting modeAdvanced troubleshooting Argecy Computer Corporation Factory default Argecy Computer Corporation Default Argecy Computer Corporation USB NPA Mode is set to Auto, the factory default Auto CRLF/LFCR is set to Off, the factory default Connect the hardware Print a network setup Setting up the network printerEnvironments we support Set the IP address, netmask and gateway Configure and printPrint Server TCP/IP Setup Utility RequirementsInstallation TroubleshootingStatic ARP entry and telnet Set up to print Print to a queue on a Windows NT serverPart 1 Install printer drivers and TCP/IP network support Set up IP printing on Windows NT 4.0/2000Part 2 Create a Network Port Set up IP printing on Windows 95/98/Me Part 2 Create a Network Port Install a shared printer on a Windows NT 4.0/2000 server Part 1 Installing printer drivers and TCP/IP network supportPart 2 Creating a Network Port Part 3 Sharing the printer on the networkInstall a shared printer on network clients Setting up clients point and printSetting up clients peer-to-peer Novell NetWare Choosing NPRINTER/RPRINTER or Pserver Nprinter in IntraNetWare NDSDisadvantage of using Pserver in NDS Advantages of using Pserver in NDSPserver in IntraNetWare NDS Rprinter in NetWare Rprinter vs. Pserver in NetWarePserver in NetWare Queue-based printing Finding the default AppleTalk nameAppleTalk Creating a desktop printer iconChanging the zone Changing the printer nameLaserWriter 8 environment LaserWriter 8.4.1 and later Updating printer hardwareLaserWriter 8 environment prior to LaserWriter QuickDraw GX environmentPrint server light patterns Normal conditionsError conditions Edition notice TrademarksSafety information Electronic emission notices Industry Canada compliance statementEuropean Community EC directives conformity German acoustics statementAvis de conformité aux normes d’Industrie Canada Japanese Vcci notice United Kingdom Telecommunications ActLaser notice Index Dhcp113 114 Argecy Computer Corporation Part Number 53P9570

1116 specifications

The IBM 1116 is a renowned mini-computer that was introduced in the mid-1970s, symbolizing a significant leap forward in computing technology during that era. It was primarily designed for scientific and engineering applications, showcasing IBM's commitment to developing versatile and powerful computing solutions.

One of the standout features of the IBM 1116 is its ability to execute a wide range of instructions, accommodating various programming needs. The architecture of the 1116 was based on the System/360, which allowed it to leverage existing software and programming languages, such as Fortran, COBOL, and assembler. This compatibility made it easier for businesses to transition to the new system without having to develop new software from scratch.

The 1116 came equipped with a robust memory architecture, supporting up to 64 KB of core memory that could be expanded with additional memory modules. This expandability was crucial for businesses, as it allowed them to scale their computing resources in accordance with their growing computational needs. The system also featured floating-point hardware, which enabled efficient calculations required in scientific tasks, improving performance significantly for users engaged in data analysis and simulation.

In terms of I/O capabilities, the IBM 1116 supported various devices, including magnetic tapes, disk drives, and printers, which enhanced its versatility in different operational settings. Its design emphasized modularity, enabling easy upgrades and maintenance, which was a significant advantage for organizations looking to optimize their IT infrastructure.

The IBM 1116 also boasted a user-friendly operating environment. It supported multiprogramming, which allowed multiple users to run different jobs simultaneously. This capability significantly improved resource utilization and reduced downtime, making the system more efficient.

Overall, the IBM 1116 represented a perfect blend of versatility, expandability, and processing power. Its compatibility with existing software and a wide array of peripherals made it a vital asset for organizations in diverse industries. While it may seem obsolete today, the IBM 1116's influence is still felt in modern computing, showcasing the enduring legacy of IBM’s innovative designs during the mini-computer revolution. The characteristics and technologies embedded in the IBM 1116 paved the way for future advancements in computing, illustrating its historical significance in the evolution of information technology.