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The macros listed in Table 3.2.20- 3.2.23 can be used to return real face variables in SI units. They are identified by the F_ prefix. Note that these variables are available only in the pressure-based solver. In addition, quantities that are returned are available only if the corresponding physical model is active. For example, species mass fraction is available only if species transport has been enabled in the Species Model dialog box in ANSYS FLUENT. Definitions for these macros can be found in the referenced header files (e.g., mem.h).
Face Centroid (
F_CENTROID)
The macro listed in Table 3.2.20 can be used to obtain the real centroid of a face. F_CENTROID finds the coordinate position of the centroid of the face f and stores the coordinates in the x array. Note that the x array is always one-dimensional, but it can be x[2] or x[3] depending on whether you are using the 2D or 3D solver.
The ND_ND macro returns 2 or 3 in 2D and 3D cases, respectively, as defined in Section 3.4.2. Section 2.3.15 contains an example of F_CENTROID usage.
Face Area Vector (
F_AREA)
F_AREA can be used to return the real face area vector (or `face area normal') of a given face f in a face thread t. See Section 2.7.3 for an example UDF that utilizes F_AREA.
By convention in ANSYS FLUENT, boundary face area normals always point out of the domain. ANSYS FLUENT determines the direction of the face area normals for interior faces by applying the right hand rule to the nodes on a face, in order of increasing node number. This is shown in Figure 3.2.1.
ANSYS FLUENT assigns adjacent cells to an interior face ( c0 and c1) according to the following convention: the cell out of which a face area normal is pointing is designated as cell C0, while the cell in to which a face area normal is pointing is cell c1 (Figure 3.2.1). In other words, face area normals always point from cell c0 to cell c1.
Flow Variable Macros for Boundary Faces
The macros listed in Table 3.2.22 access flow variables at a boundary face.
If you are struggling to get the software running or need a copy of the driver files, please leave a comment below or consult the Schneider Electric Technical Support Forum.
The XBTL1000 is legacy configuration software developed by Schneider Electric for its Magelis XBT range of Human-Machine Interface (HMI) terminals. Software Availability and Lifecycle
Commercial Status: The software was officially discontinued on December 31, 2022. Schneider Electric no longer accepts new offers for this reference, though after-sales services like repairs may continue until the product's end-of-life.
Official Downloads: While the software range is still listed on various regional Schneider Electric sites (e.g., UK, Ireland), direct installer downloads are often restricted or require contacting the Customer Care Center for assistance.
Latest Known Version: The most recent stable version is 4.51. Compatibility and Migration
Operating Systems: XBTL1000 is not compatible with Windows 10. It was designed for older environments; users are advised to use a Virtual Machine running Windows XP or Windows 7 to operate the software on modern PCs.
Successor Software: It has been largely superseded by Vijeo Designer. Existing XBTL1000 applications can often be migrated to Vijeo Designer (specifically version 5.1 SP2 or higher), though some manual adjustments may be required during the process. Key Capabilities
The XBT L1000 is a legacy configuration software developed by Schneider Electric (formerly Telemecanique) for programming and managing early generations of Magelis XBT Human-Machine Interface (HMI) terminals.
As a discontinued product, obtaining and running it on modern systems requires specific legacy support strategies. Software Download and Availability
As of December 31, 2022, Schneider Electric officially ended commercialization for XBT L1000.
Official Support: While no longer for sale, Schneider Electric still maintains product support pages where users can sometimes find the latest official version (V4.51) in the technical FAQ section or by contacting their Customer Care Center.
Compatibility: The software was originally designed for older Windows environments (Windows 3.1 through XP). It does not natively support Windows 10 or later versions.
Virtualization: To run XBT L1000 on modern PCs, Schneider Electric recommends using a Virtual Machine running Windows XP or Windows 7. Key Technical Capabilities
XBT L1000 serves as the primary tool for several critical industrial maintenance tasks: XBTL1000 - CONFIGURATION SOFTWARE - Schneider Electric
The XBT-L1000 is a legacy configuration and programming software suite developed by Schneider Electric for its Magelis XBT range of Human-Machine Interface (HMI) terminals. While highly significant in the history of industrial automation, the software was officially discontinued on December 31, 2022. Core Purpose & Capabilities
XBT-L1000 served as the primary tool for engineers to develop and manage operator interfaces for industrial processes. Its key functions included:
Application Design: Creating and editing operator screens with graphical or alphanumeric displays.
Process Management: Handling alarms, messages, recipes, and multi-lingual text.
Connectivity: Setting up communication drivers for PLCs using protocols like Modbus and Unitelway.
Simulation: Allowing engineers to simulate and test projects on a PC before transferring them to physical panels. Download & Versioning xbt l1000 software download
Because the software is no longer commercially available, users often rely on legacy support links or archived versions:
Latest Version: The most widely cited version for maintenance is v4.51, which was released around 2009.
Official Archived Downloads: Some regional sites like Schneider Electric Brasil have historically hosted zip files (e.g., XBTL1000 V4.51.zip) for existing users.
Legacy Resources: Documentation and older software versions may still be available through the general Schneider Electric Download Center. Compatibility & Modern Usage
Running XBT-L1000 on modern hardware requires specific technical workarounds:
OS Support: The software does not natively support Windows 10 or later. It was designed for Windows XP and Windows 7 environments.
Virtualization: Schneider Electric recommends using a Virtual Machine (VM) running Windows XP or 7 to operate the software on a Windows 10/11 PC.
Migration: Most applications can be migrated to newer platforms. For example, XBTL1000 applications can often be imported and converted into Vijeo Designer v5.1 SP2 and subsequently upgraded to even newer versions. Hardware Requirements for Transfer
To upload or download programs between a PC and an HMI terminal (like the XBT-F), you typically need: XBTL1000 - CONFIGURATION SOFTWARE - Schneider Electric
This overview examines the XBT L1000 configuration software, its status as a legacy tool, and the current landscape for maintenance and replacement. Introduction to XBT L1000
XBT L1000 is a legacy configuration and programming suite developed by Schneider Electric (formerly under the Telemecanique brand) for the Magelis XBT series of Human-Machine Interface (HMI) terminals. It was designed to allow engineers to:
Design operator screens and graphical interfaces for industrial monitoring. Manage alarms, messages, and multilingual text.
Configure communication drivers for PLCs using protocols like Modbus, Uni-Telway, and Ethernet TCP/IP.
Simulate projects on a PC before transferring them to physical hardware. Availability and Download Status
The software is currently considered obsolete, with commercialization having officially ended on December 31, 2022.
Official Sources: While largely discontinued, some regional Schneider Electric sites (such as Schneider Electric Brasil) have previously hosted specific versions like V4.51 for download via technical support FAQs.
Third-Party Sites: Platforms like Software Informer and various industrial forums list download requests, but these are unofficial and may lack security verification.
Media: Historically, the software was distributed via diskettes (e.g., "Disk 1") or CD-ROMs. Technical Compatibility and Requirements
As legacy software, XBT L1000 faces significant hurdles on modern systems: XBTL1000 - CONFIGURATION SOFTWARE - Schneider Electric If you are struggling to get the software
is a legacy configuration software developed by Schneider Electric Magelis XBT
range of human-machine interface (HMI) terminals. It is used to design operator screens, manage alarms, handle recipes, and set up communication protocols for industrial automation systems. Software Overview & Features
: Design and program alphanumeric and matrix HMI terminals to communicate with PLCs and other controllers. Supported Terminals : Compatible with older Magelis models including , and hand-held
: Supports standard industrial communication protocols such as Uni-Telway Ethernet TCP/IP Profibus DP Functionality
: Allows engineers to create dialogue pages (application and alarm pages), simulate projects on a PC, and generate documentation for maintenance. EU Automation Download & Availability Official Source : The software can be found on the Schneider Electric Download Center by searching for "XBTL1000 - CONFIGURATION SOFTWARE". Current Status : This product was officially discontinued on December 31, 2022 . While it has been superseded by newer software like Vijeo Designer
, it remains essential for maintaining older installed systems. Latest Version : The most recent stable release is Schneider Electric System Compatibility Operating Systems
: XBTL1000 was designed for older Windows environments. It is natively compatible with Windows XP and earlier versions. Modern PCs does not support Windows 10 or Windows 11 directly . To run the software on modern hardware, Schneider Electric recommends using a Virtual Machine running Windows XP or Windows 7. Basic Usage Steps
How do I configure text display in Vijeo Designer ? - Schneider Electric
XBT L1000 is a legacy configuration software from Schneider Electric used to program and manage older Magelis XBT Human-Machine Interface (HMI) terminals. As of April 2026, the software is officially discontinued. Key Software Details
Purpose: Design operator screens, manage alarms, handle recipes, and set up communication drivers (e.g., Modbus) for industrial automation.
Compatibility: Originally designed for Windows XP and Windows 7. It does not natively support Windows 10 or later. Latest Version: Version 4.51 (released around 2009). How to Download and Install
Because XBT L1000 is no longer commercially available, obtaining it requires looking at legacy support or secondary sources:
Official Support: Schneider Electric’s website lists the product as discontinued. For legitimate downloads, users are encouraged to contact their local Schneider Electric Customer Care Center.
Legacy Resource Portals: Some Schneider Electric regional sites, such as Schneider Electric Brasil, have historically hosted the V4.51 zip file in their FAQ sections for existing users.
Third-Party Informers: Sites like Software Informer often list legacy versions (like 4.5), though users should verify these for safety and license compliance. Running on Modern Systems
Since the software is not compatible with modern Windows versions, Schneider Electric recommends using a Virtual Machine (VM) running Windows XP or Windows 7 to ensure stability and proper driver function. Migration and Replacement
While there is no direct one-to-one replacement for the software itself, applications created for XBT F terminals can often be migrated to newer Vijeo Designer applications for use on more modern hardware like XBT GT or HMIGTO series. XBTL1000 - CONFIGURATION SOFTWARE - Schneider Electric
XBT L1000 is the legacy configuration software formerly used for the Schneider Electric Magelis XBT HMI range. As of December 31, 2022, the software has reached its end of commercialization. Official Status and Availability
Schneider Electric officially discontinued XBT L1000 and has not provided a direct software replacement. Because it is obsolete, it is no longer available for standard download on the official Schneider Electric website. Users seeking the software typically must: Search for "XLS100" or "XLS1000" in the software library
Contact Customer Support: Schneider Electric advises contacting their Customer Care Center for assistance with legacy product references.
Search for Physical Media: The software was originally distributed via installation discs. In industrial settings, these are often kept in archives or provided by system integrators. System Compatibility
If you manage to obtain the software, be aware of significant modern compatibility issues:
Operating Systems: XBT L1000 was designed for older environments like Windows XP and Windows 7. It does not officially support Windows 10.
Workaround: To run it on modern PCs, Schneider Electric recommends using a Virtual Machine (VM) configured with Windows XP or Windows 7. Migration and Alternatives
For users looking to modernize their systems, Schneider Electric has moved toward the Harmony range (formerly Magelis) and Vijeo Designer software.
Conversion Services: While end-users cannot perform a direct automated migration, Schneider Electric offers a "Switch2Vijeo" service to help migrate XBT L1000 applications to Vijeo Designer.
Hardware Replacement: The Magelis HMI GTO range is considered the nearest modern equivalent for many older XBT terminals. Common Technical Tasks
Retrieving Projects: If you need to pull a program from an existing HMI, you will need the XBT L1000 software and either a serial cable or a PCMCIA card reader to import compiled .XDF files into the software.
Simulation: The software includes a feature to simulate applications without a connected PLC by adjusting settings in the "Dialogue Table" menu.
Search for "XLS100" or "XLS1000" in the software library. Look for the latest version available (check the release notes to ensure it covers the specific firmware version of your panel).
Downloading the software is only half the battle; establishing communication is the other.
"Legacy Meets Logic: Sourcing and Using Pro-face XBT L1000 Programming Software Properly"
The XBT L1000 software was released during the Windows XP era. This creates modern compatibility challenges.
| Software Version | Compatible Windows OS | Notes | |----------------------|----------------------------|------------| | Vijeo Designer Lite v1.x | Windows 98, NT 4.0, 2000 | No modern support | | Vijeo Designer Lite v2.1 | Windows XP, Vista (32-bit) | Works on Win7 32-bit | | Vijeo Designer Lite v3.2 | Windows 7 (32/64-bit) | Limited Win10 compatibility |
In the world of industrial automation, Human-Machine Interfaces (HMIs) are the critical link between operators and machinery. Among the legacy workhorses of this field is the Schneider Electric XBT L1000—a compact, monochrome graphic terminal known for its durability in harsh environments. However, as technology evolves, one question persists among maintenance technicians and system integrators: Where can I find a safe, reliable XBT L1000 software download?
This article provides a complete, step-by-step roadmap for obtaining, installing, and configuring the correct software for the XBT L1000. We will cover the official software suite (Vijeo Designer Lite), compatibility with modern Windows OS, common pitfalls, and legal alternatives for legacy support.
Once you have obtained the installer file, follow these steps:
See Section 2.7.3 for an example UDF that utilizes some of these macros.
Flow Variable Macros at Interior and Boundary Faces
The macros listed in Table 3.2.23 access flow variables at interior faces and boundary faces.
F_FLUX can be used to return the real scalar mass flow rate through a given face f in a face thread t. The sign of F_FLUX that is computed by the ANSYS FLUENT solver is positive if the flow direction is the same as the face area normal direction (as determined by F_AREA - see Section 3.2.4), and is negative if the flow direction and the face area normal directions are opposite. In other words, the flux is positive if the flow is out of the domain, and is negative if the flow is in to the domain.
Note that the sign of the flux that is computed by the solver is opposite to that which is reported in the ANSYS FLUENT GUI (e.g., the Flux Reports dialog box).