The Process Explorer display consists of two sub-windows. The topwindow always shows a list of the currently active processes, includingthe names of their owning accounts, whereas the information displayed inthe bottom window depends on the mode that Process Explorer is in: ifit is in handle mode you'll see the handles that the process selected inthe top window has opened; if Process Explorer is in DLL mode you'llsee the DLLs and memory-mapped files that the process has loaded.Process Explorer also has a powerful search capability that willquickly show you which processes have particular handles opened or DLLsloaded.

Honeywell’s Process Instrument Explorer software runs on a pocket PC, desktop or laptop and allows the user to quickly set up and configure UDC2500/3200/3500 controllers. Users can create/edit configurations live or offline via RS-485, Ethernet or infrared communications. It takes only a few seconds to upload or download a configuration to an instrument. Users can save the configuration file for review, modification or archiving.


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Manage remote processes and control remote computers. Remote Process Explorer replaces Windows Task Manager with a much more advanced version. Remote Process Explorer allows monitoring all local and remote processes through a single user interface,

Wikipedia Explorer is a Wikipedia client for Windows. The installation process is a little bit complicated, but once you install all the .NET frameworks needed, the application runs really good. This client connects to wikipedia.

Explorer Suite is a package of utilities including a PE Editor called CFF Explorer and a process viewer. NTCore's package of utilities is fully .NET supported internally.

Process Instrument Explorer software helps you configure Honeywell UDC2500, UDC3200, and UDC3500 universal digital controllers using a PC or a pocket PC, providing access to the same setup and maintenance information available on the instrument's front panel interface. You can upload or download instrument configurations for review, modification, or archiving. PIE communicates with the controller over Modbus RTU thru the controller RS-485 port, Modbut CTP through the Ethernet port, or using a wireless infrared Interface (may require an RS-232 to IR cable).

Instrument Explorer is a configuration and test tool which allows immediate communication with a range of Mantracourt instruments. This allows you to quickly establish communications and verify connections.

Once the desired instrument has been selected you can setup the communications parameters required and then view a virtual instrument control panel where all of the instruments parameters and commands are displayed and allow interaction. This will allow you to view the current instrument parameters including and interactively modify read/writable parameters, just by entering the new value in the appropriate text field and hitting Return.

Using Instrument Explorer allows to to quickly verify instrument communications or configure an instrument without having to first write your own code. Support for new instruments can be added as and when the drivers are released.

Contact the supplier of your software. They will advise you and pass you to the instrument manufacturer where applicable. Remember that Instrument Explorer is supplied with on-line help, just press F1 to get help on the currently open window.

The CniDMFuiProvider::Initialize plug-in caused an exception in the CmxExecutionThreadPool::DoWorkNonUI function in the MAX process. What is mean. I cannot access NI MAX after I ignore this message, I will have to kill the process.

Highly skilled workers in the instrumentation/electrical craft who perform at or above a CCST/EPRI level II or equivalent. Responsibilities include but are not limited to the removal, repair, installation, troubleshooting, & diagnosis of process instrumentation & electrical systems. Employee may mentor or train other instrumentation/electrical employees. Employee will work under minimal supervision where the primary objective is safe production.

+ Removal, repair, installation, troubleshooting and diagnosis of process instrumentation and electrical systems for process optimization. May mentor or train other technicians and electrical workers.

+ Associates degree or Trade School Certification in the related field **and** two (2) years experience performing maintenance and repair of industrial automation, instrumentation, and electrical systems

The estimated pay range for this role is currently **$30.00 - $41.00/hour** . This range reflects base salary only and does not include bonus payments, benefits or retirement contributions. Actual base pay is determined by experience, qualifications, skills and other job-related factors. This role is eligible for additional discretionary and incentive payment considerations based on company and individual performance. More details will be shared during the hiring process. To view an example of a Total Rewards Estimate for this role click here: **Total Rewards Estimate**

Another potential issue is that if there is an extra "node" process running. Close Resource Explorer. Check Task Manager or Activity Monitor and look for node. If one is running, kill it. Start Resource Explorer.

The Process Explorer is an analysis tool to use when taking an exploratory approach. It starts with showing the most frequent activities and connections. You can add further additional activities to the graph and analyze their impact on the process. Any number of Event Logs can be visualized together to understand the relationships between multiple processes.

To configure a basic process explorer, you must define the event logs you wish to visualize in the component. Ensure that prior to creating a process explorer component you have the event logs defined in the eventLogsMetadata section of the Knowledge Model.

In the multi-object Process Explorer, the process is visualized as objects and their corresponding activities. An activity impacting multiple objects is shown only once and the objects intersect at these common activities.

The TA Instrument Explorer Window is a customizable graphical user interface for TA Messaging Agent (TAMA). It enables users to setup, view and control any instruments currently connected to the supplied private Ethernet Hub or a Local Area Network (LAN). The TA Instrument Explorer is also used to monitor the status of data transmission from the instrument to any controller via the Data File Acceptor (DFA).

This button is used to view all the instruments currently online. This window displays the Name, Temperature, State and Location for each instrument currently connected to the private Ethernet Switch or LAN.

This button is used to view instrument information. This window displays the Instrument's Name, Location, Model, current version of instrument software installed (Inst. Ver.), Physical Address, Serial No., IP Address, Update Time (and Date), name of controller computer (Master Name), Installed Options, and the number of connections (NOC) for each instrument connected to the private Ethernet Hub or LAN.

Click this button to view the Data File Acceptor (DFA) Status for all instruments. This window displays the status of data transmission from instruments to the controller as well as the Instrument Name, Number of Bytes Received, Data File Acceptor (DFA) State, Time and Date Information Last Updated, IP Address, and the Data File Path for each instrument that is sending data to the controller.

Use the two drop-down menus to sort the instruments connected online based on location or instrument type in the TA Instruments Explorer. To display all of the instruments, select All Locations or All Types.

To access the TA Instrument Explorer Pop-up menu, right click on the instrument icon (e.g., ) in the Online Instrument View or right click on an instrument row in the Instrument Information View as shown in the figure below.

TA Message Agent (TAMA) is a Windows Service Program that operates behind-the-scenes to control various instrument functions. When you select Connect to Remote TA Message Agent (TAMA) from the menu a window is displayed to allow you to change to a remote TAMA.

Select Locate instrument with default IP address to find an instrument that has just had its IP address reset to the default IP address 172.23.160.31 and does not appear in the TA Instrument Explorer. After choosing this menu item a window will be displayed containing instructions that you need to follow.

Temperatures on the Sun/hot side of the sunshield will reach a maximum of approximately 383K or approximately 230 degrees F and on the cold mirror/instruments side of the sunshield, a minimum of approximately 36K or around -394 degrees F. Due to the engineering of the sunshield, this incredible transition takes place across a distance of approximately six feet.

Webb will continue to travel to the second Lagrange point (L2) for another two weeks, at which point it will enter a large orbit around the L2 point. The following five months will be used to cool the telescope to operating temperature, fine-tune the mirror alignment, and calibrate the instruments.

After all individual mirror segment deployments are completed, the detailed optical mirror alignment process begins which is about a 3 month process. In parallel, as temperatures cool enough, instrument teams will turn on their instruments and begin each instrument's commissioning process.

The adjacent image tracks the progress of the individual primary mirror segments (A,B,C) and the secondary (SM) mirror as they move upward 12.5mm from their stowed launch position to a deployed state where they are ready for the mirror alignment process. View a full screen copy.

The primary mirror segments were driven 12.5 millimeters away from the telescope structure. Using six motors that deploy each segment approximately half the length of a paper clip, these actuators clear the mirrors from their launch restraints and give each segment enough space to later be adjusted in other directions to the optical starting position for the upcoming wavefront alignment process. The 18 radius of curvature (ROC) actuators were moved from their launch position as well. The ROC actuators individually shape the curvature of each beryllium mirror segment to set the initial parabolic shape of the primary mirror. 006ab0faaa

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