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- Robotic automation company | CUBE CADTECH
ENCY Hyper can run completely independently — and this makes it perfect for everyday automationand also it is AI based robot programming software and it support rpbot from brands like FANUC,KUKA,ABB,STABULI and many more brands . It can handle complex tasks like : pick-and place, machine,tending,palletizing,packaging,assembly, nailing, milling, welding, polishing, coating, additive metal additive ,metal 3d printing ,metal cladding ENCY Hyper: hybrid programming of industrial robots Empowers every shop-floor operator with the capabilities of a professional robot platform. CONTACT US DOWNLOAD An incredibly simple workflow What is ENCY Hyper? ENCY Hyper Cell Mode Parts Mode Programming Mode Run Mode Cell Mode The robot cell can be created in ENCY MachineMaker, our digital twin builder, and then loaded into ENCY Hyper. Here, you can edit the robot cell — add or modify components and adjust layout parameters. Features: • Creation of parametric objects (table, box, machine, etc.) • Positioning of objects either interactively or by entering precise coordinates obtained through robot calibration • Specification of locations for parts and trays • Import of tray templates in DXF format with defined part placement positions Parts Mode In this mode, you define the parts. You can import a CAD model or build a parametric one directly. Then you set the gripping points and arrange the parts in the workspace — for example, on pallets or tables . Features: • Create parametric 3D part models or import existing CAD files • Works even without a CAD model — ideal for pick-and-place or machine tending tasks created directly next to the robot • Easily define initial part positions What is ENCY Hyper? ENCY Hyper brings the power of a professional robot platform to the hands of every operator on the shop floor. Key features: • Touchscreen-optimized interface • Block-based programming that requires no special expertise • Real-time robot control • Support for robots from various manufacturers • Built-in collision avoidance system • Full access to the advanced trajectory calculation engine of an offline CAD/CAM system • Cross-platform solution ENCY Hyper can run completely independently — and this makes it perfect for everyday automation. Applications: • pick-and-place • machine tending • palletizing • packaging • assembly • nailing ENCY Hyper Programming Mode You create your robot program visually by placing command blocks and connecting them in sequence. Once your sequence is ready, you can test it either in a virtual simulation or directly on the real robot — just press Live. Features: • No-code programming using drag-and drop blocks and parameter settings • Program debugging on a digital twin • Program debugging on the real robot • Part position calibration Run Mode When the program is ready, switch to Run Mode to execute it on the real robot. Here, you can control the speed, monitor the current task, and track the tool status — all in real time. All robot movements in the real cell are simultaneously reflected in the digital twin and displayed in the software interface. Features: • Program execution with speed control and instant stop capability. • Real-time status display: which part is in the machine, which is in the gripper, current operation step, number of processed parts, and robot uptime Find out more in this 10-minute video AI-enabled AI-powered vision automatically detects parts and their positions using a simple camera — no costly 3D scanners nee ded The system instantly updates the digital twin to match reality, saving time and setup effort Easy and Fast Calibration Calibration challenge Solution MachineMaker: zero code digital twin builder Create accurate digital twins of your production equipment: Design full robotic cells with all components Simulate robot functions in detail Generate error-free code with certified post processors Access the Robot Components library with major brands Build custom kinematic models quickly MachineMaker helps manufacturers and integrators replicate real-world setups virtually. While extensive Robot Components library includes a wide selection of industrial robot brands and various components to build virtual robotic cells. The high-quality simulations and detailed digital twins ensure precise planning and t esting before implementa tion. MachineMaker: zero code digital twin builder HYBRID PLATFORM Hybrid programming Online Offline ENCY Hyper is our next-generation software that unites all robot programming methods into a single hybrid platform ENCY HYPER VIDEO HYPER HYPER 播放影片 分享 整個頻道 此影片 Facebook Twitter Pinterest Tumblr 複製連結 複製的連結 Search videos 搜尋影片... 現在播放中 ENCY HYPER TESLA PICK AND PLACE 00:27 播放影片 現在播放中 ENCY HYPER CNC JOB PICK AND PLACE 00:26 播放影片 現在播放中 ROBOT WELDING 00:58 播放影片 現在播放中 HYPER LEGO PICK AND PLACE 00:28 播放影片 Configurations and applications ENCY Hyper ENCY Hyper can run completely independently — and this makes it perfect for everyday automation. pick-and-place machine tending palletizing packaging assembly nailing ENCY Hyper Max ENCY Hyper acts as the operator interface, while ENCY Robot works in the background, handling heavy calculations and trajectory generation. milling welding polishing coating additive Tested Tested Tested Who benefits from ENCY Hyper For robot integrators A ready-to-use solution compatible with multiple robot brands No need to develop or maintain custom software anymore The integrator can prepare a project for the customer, and the customer can later adapt it easily without returning to the integrator The customer doesn’t need to learn complex CAM software Complete robot cells can be designed using components from a large online library, with process simulation and demonstration capabilities For robot manufacturers Can be bundled with robots to provide customers a modern, flexible, and user-friendly programming solution — a strong value add There’s no need to develop or maintain custom software anymore A cross-platform application that can be installed on most industrial PCs, tablets, or even hand-held computers For robot operators Offers a visual programming approach appreciated by operators and automation engineers Eliminates complex teach pendant routines — complete workflows can be designed with simple drag-and-drop logic Ensures safety through full cell simulation and automatic collision avoidance For ENCY Robot users Serves as the perfect companion for users of ENCY Robot software Enables fine-tuning, testing, and execution of projects directly next to the real robot — without loss of data or time Supports integration with computer vision and real-time feedback from sensors and external devices Advantages of hybrid programming compared to Traditional online methods Zero downtime Real-time digital twin feedback Multi-brand compatibility Smart auto-calibration Fast changeovers Pure offline systems Real-world synchronization Minimal post-calibration Bi-directional workflow Lightweight deployment Adaptive learning AI-only tools Human-supervised intelligence Deterministic results Full process context Industrial reliability Collaborative hybrid mode ENCY Hyper keeps the user in the loop with the real robot — allowing the program to be executed and refined simultaneously. In simple terms, the platform connects to the robot controller online, enabling the engineer to test and adjust robot motions directly on the real robot while observing the results both in the virtual model and in the physical cell. Why ENCY Hyper? It’s not just another robot programming tool — it’s a new way of thinking about how humans and robots collaborate. • Unlike traditional online methods, ENCY Hyper lets you program safely and productively — while the robot keeps working. • Unlike pure offline systems, it doesn’t isolate programming from the real cell — you can adjust, calibrate, and improve on-site. • And unlike AI-only tools, it gives you full transparency and control — the human always stays in charge
- Buy ENCY HYPER in india | CUBE CADTECH
ENCY Hyper is a next-generation, touch-optimized hybrid programming system for industrial robots and auxiliary manufacturing equipment. Developed by ENCY Software, it unifies offline digital precision with real-time shop-floor control into a single, intuitive interface ENCY Hyper: hybrid programming of industrial robots Empowers every shop-floor operator with the capabilities of a professional robot platform. CONTACT US DOWNLOAD An incredibly simple workflow What is ENCY Hyper? ENCY Hyper Cell Mode Parts Mode Programming Mode Run Mode Cell Mode The robot cell can be created in ENCY MachineMaker, our digital twin builder, and then loaded into ENCY Hyper. Here, you can edit the robot cell — add or modify components and adjust layout parameters. Features: • Creation of parametric objects (table, box, machine, etc.) • Positioning of objects either interactively or by entering precise coordinates obtained through robot calibration • Specification of locations for parts and trays • Import of tray templates in DXF format with defined part placement positions Parts Mode In this mode, you define the parts. You can import a CAD model or build a parametric one directly. Then you set the gripping points and arrange the parts in the workspace — for example, on pallets or tables . Features: • Create parametric 3D part models or import existing CAD files • Works even without a CAD model — ideal for pick-and-place or machine tending tasks created directly next to the robot • Easily define initial part positions What is ENCY Hyper? ENCY Hyper brings the power of a professional robot platform to the hands of every operator on the shop floor. Key features: • Touchscreen-optimized interface • Block-based programming that requires no special expertise • Real-time robot control • Support for robots from various manufacturers • Built-in collision avoidance system • Full access to the advanced trajectory calculation engine of an offline CAD/CAM system • Cross-platform solution ENCY Hyper can run completely independently — and this makes it perfect for everyday automation. Applications: • pick-and-place • machine tending • palletizing • packaging • assembly • nailing ENCY Hyper Programming Mode You create your robot program visually by placing command blocks and connecting them in sequence. Once your sequence is ready, you can test it either in a virtual simulation or directly on the real robot — just press Live. Features: • No-code programming using drag-and drop blocks and parameter settings • Program debugging on a digital twin • Program debugging on the real robot • Part position calibration Run Mode When the program is ready, switch to Run Mode to execute it on the real robot. Here, you can control the speed, monitor the current task, and track the tool status — all in real time. All robot movements in the real cell are simultaneously reflected in the digital twin and displayed in the software interface. Features: • Program execution with speed control and instant stop capability. • Real-time status display: which part is in the machine, which is in the gripper, current operation step, number of processed parts, and robot uptime Find out more in this 10-minute video AI-enabled AI-powered vision automatically detects parts and their positions using a simple camera — no costly 3D scanners nee ded The system instantly updates the digital twin to match reality, saving time and setup effort Easy and Fast Calibration Calibration challenge Solution MachineMaker: zero code digital twin builder Create accurate digital twins of your production equipment: Design full robotic cells with all components Simulate robot functions in detail Generate error-free code with certified post processors Access the Robot Components library with major brands Build custom kinematic models quickly MachineMaker helps manufacturers and integrators replicate real-world setups virtually. While extensive Robot Components library includes a wide selection of industrial robot brands and various components to build virtual robotic cells. The high-quality simulations and detailed digital twins ensure precise planning and t esting before implementa tion. MachineMaker: zero code digital twin builder HYBRID PLATFORM Hybrid programming Online Offline ENCY Hyper is our next-generation software that unites all robot programming methods into a single hybrid platform ENCY HYPER VIDEO HYPER HYPER 播放影片 分享 整個頻道 此影片 Facebook Twitter Pinterest Tumblr 複製連結 複製的連結 Search videos 搜尋影片... 現在播放中 ENCY HYPER TESLA PICK AND PLACE 00:27 播放影片 現在播放中 ENCY HYPER CNC JOB PICK AND PLACE 00:26 播放影片 現在播放中 ROBOT WELDING 00:58 播放影片 現在播放中 HYPER LEGO PICK AND PLACE 00:28 播放影片 Configurations and applications ENCY Hyper ENCY Hyper can run completely independently — and this makes it perfect for everyday automation. pick-and-place machine tending palletizing packaging assembly nailing ENCY Hyper Max ENCY Hyper acts as the operator interface, while ENCY Robot works in the background, handling heavy calculations and trajectory generation. milling welding polishing coating additive Tested Tested Tested Who benefits from ENCY Hyper For robot integrators A ready-to-use solution compatible with multiple robot brands No need to develop or maintain custom software anymore The integrator can prepare a project for the customer, and the customer can later adapt it easily without returning to the integrator The customer doesn’t need to learn complex CAM software Complete robot cells can be designed using components from a large online library, with process simulation and demonstration capabilities For robot manufacturers Can be bundled with robots to provide customers a modern, flexible, and user-friendly programming solution — a strong value add There’s no need to develop or maintain custom software anymore A cross-platform application that can be installed on most industrial PCs, tablets, or even hand-held computers For robot operators Offers a visual programming approach appreciated by operators and automation engineers Eliminates complex teach pendant routines — complete workflows can be designed with simple drag-and-drop logic Ensures safety through full cell simulation and automatic collision avoidance For ENCY Robot users Serves as the perfect companion for users of ENCY Robot software Enables fine-tuning, testing, and execution of projects directly next to the real robot — without loss of data or time Supports integration with computer vision and real-time feedback from sensors and external devices Advantages of hybrid programming compared to Traditional online methods Zero downtime Real-time digital twin feedback Multi-brand compatibility Smart auto-calibration Fast changeovers Pure offline systems Real-world synchronization Minimal post-calibration Bi-directional workflow Lightweight deployment Adaptive learning AI-only tools Human-supervised intelligence Deterministic results Full process context Industrial reliability Collaborative hybrid mode ENCY Hyper keeps the user in the loop with the real robot — allowing the program to be executed and refined simultaneously. In simple terms, the platform connects to the robot controller online, enabling the engineer to test and adjust robot motions directly on the real robot while observing the results both in the virtual model and in the physical cell. Why ENCY Hyper? It’s not just another robot programming tool — it’s a new way of thinking about how humans and robots collaborate. • Unlike traditional online methods, ENCY Hyper lets you program safely and productively — while the robot keeps working. • Unlike pure offline systems, it doesn’t isolate programming from the real cell — you can adjust, calibrate, and improve on-site. • And unlike AI-only tools, it gives you full transparency and control — the human always stays in charge
- buy ency cam in india | 3 axis Milling | Swiss Lathe | Multiaxis | CUBE CADTECH
Ency CAM is a type of software used for Computer-Aided Manufacturing (CAM). It is a system that helps in automating manufacturing processes, particularly by controlling machine tools and CNC equipment can program toolpaths for a variety of CNC operations, including 2.5-axis, 3-axis, 5-axis indexed, and 5-axis continuous milling, mill-turn , swiss lathe ,lathe and more. Robotic Programming: A standout feature of Ency CAM is its robust support for offline robot programming ENCY: CAD/CAM for a new generation Delivering sophisticated CAM technology with an intuitive user interface and natural workflow CONTACT US DOWNLOAD ENCY - CAD/CAM for 2.5D and 3D milling DOWNLOAD Roughing waterline Sirface finishing Multi part project Simulation Hole machining FBM Countouring Rest material chamfer Colusion detection Finishing undercuts Roughing Waterline Roughing Waterline in ENCY offers adaptive and equidistant roughing strategies to ensure optimal material removal for complex parts, automatically selecting the best approach based on the geometry. Adaptive and Equidistant Strategies: The system intelligently applies adaptive or equidistant roughing strategies, depending on the specific features of the part, ensuring efficient material removal and constant tool engagement. Automated Strategy Selection for Diverse Geometries: Automatically selects the optimal approach for various part features such as closed and open pockets, wells, grooves, bosses, ribs, and slots, covering all key elements typically encountered in roughing operations. Stock-Aware Toolpath Calculation: Continuously updates the state of the stock material, generating efficient toolpaths that minimize air cutting and maximize material removal. Super-Fast Toolpath Calculation: ENCY’s advanced algorithms provide ultra-fast toolpath generation, significantly reducing the time needed to prepare roughing operations and accelerating overall production. Adaptive Feedrate: Dynamically adjusts the feed rate based on cutting conditions, ensuring optimal tool load. It enhances efficiency by accelerating in lighter material zones and slowing down in tougher areas, improving both machining time and tool lifespan. Hole Machining Learn More Fast and Error-Free NC Programming: Interactive Interface: ENCY simplifies the creation of hole machining programs with its intuitive and user-friendly interface. Automatic Hole Recognition: Automatically detects and categorizes holes in 3D models, ensuring precise and efficient programming. Safety Features Current Stock Monitoring: ENCY ensures the safety of operations by accounting for the current state of the workpiece, automatically identifying the top level of the hole for accurate drilling depth. Safe Transitions: When drilling at different levels, ENCY provides safe transitions between operations, avoiding collisions and ensuring smooth tool movement across varying depths. Drilling Cycles The following cycles are supported within the hole machining operations: Simple Drilling, Drilling with Dwell, Chip Removing, Chip Breaking, Tapping ,Bore, Thread Milling, Hole Pocketing, Tapping with Chip Removing, Tapping with Chip Breaking, Groove Boring Flexible Output Canned Cycles or Longhand: Export NC programs in either simplified canned cycles or detailed longhand for customized control. Interactive Hole Pattern Creation Pattern Creation in Interface: Quickly design hole patterns directly within the interface, ensuring accurate placement across complex geometries. FBM hole machining FBM Drilling: Processing Hundreds of Holes in a Few Clicks Automatic Hole Recognition and Grouping: ENCY’s Feature-Based Machining (FBM) technology instantly detects and groups hundreds of holes within the model, allowing for efficient and streamlined programming. Automated Multi-Step Process Creation: With just a few clicks, ENCY automatically generates the complete machining process for multi-stage hole operations, handling tasks like drilling, reaming, tapping, and more, ensuring optimal toolpath efficiency and accuracy. This automation allows for rapid setup and execution of complex hole machining operations, saving significant time and effort. Countouring 2D and 2.5D Contours A versatile, multi-purpose operation designed for handling both simple and complex toolpaths. This operation also supports 2.5D contouring, enabling machining across multiple Z-levels in a single operation. Interactive toolpath editing within the 3D view allows real-time adjustments for precise control. Key features include: Z-cleanup for smooth vertical surfaces, Helical machining for efficient material removal, Roughing and finishing passes for optimized machining, Smart contour sorting to streamline toolpaths, Corner smoothing for sharp edges, Tabs functionality for secure part handling, A specialized T-slot feature for undercuts, Optional output with or without CRC (Cutter Radius Compensation) commands. This operation provides maximum flexibility and precision, making it perfect for both basic and advanced contour machining tasks. Rest material, chamfers, deburring Rest material, chamfers, deburring Rest material operations in ENCY provide precise control over leftover material after roughing, improving both efficiency and accuracy. Rest material toolpaths target areas where previous operations couldn’t reach, ensuring no material is left unmachined. Rest material: Targets unmachined areas left by previous roughing passes, ensuring all material is removed for a complete and precise finish. Pencil machining: Refines sharp corners and tight spaces, delivering detailed precision on complex geometries. Chamfering: Adds beveled edges to improve part finish, enhance assembly compatibility, and reduce sharp edges for safety. Chamfering_1 Screenshot-10-19-2024-16.39.18-640x1138 Chamfering_1 1/2 Safe machine-aware toolpath calculation ENCY, as a machine-aware CAD/CAM solution, calculates actual machine movements rather than just the tool movement around the part. This approach ensures safe and precise machining by accounting for the specific behavior and limitations of the machine. Here’s how ENCY optimizes safety and efficiency: Considers machine axes travel limits. Detects the shape and orientation of the tool holder. Tracks the current state of the workpiece during machining. Accounts for fixture positions to avoid interference. Prevents collisions by simulating and verifying movements in real time. Enhances machine safety throughout the process. Result: Achieve worry-free machining with optimal efficiency, reducing risks and ensuring precision at every step. Surface finishing Finishing operations Waterline Finishing: Creates smooth, parallel toolpaths that follow the contour of the surface. Ideal for parts with steep walls, ensuring consistent surface quality. Plane Finishing: Used for flat surfaces, this method generates toolpaths that move in a linear direction, providing a polished finish across level areas. Scallop Finishing: A more advanced technique that follows the surface’s curvature, maintaining a constant step height between tool passes. This is perfect for creating smooth, detailed surfaces on complex 3D geometries. 3D Helical Finishing: A continuous, spiraling toolpath that moves along the 3D geometry, ideal for cylindrical or rounded shapes. It provides smooth surface finishes and reduces the risk of visible tool marks. Morph Finishing: Designed for intricate shapes, this method blends toolpaths between different curves or surfaces, ensuring a seamless transition and a high-quality finish on complex parts. Finishing_waterline_1 Plane_1-640x1138 Finishing_waterline_1 1/2 Multi-part projects Sequential machining with WIP (Workpiece in Progress): ENCY allows sequential machining where the workpiece is transferred between operations, retaining its intermediate state (WIP). This simplifies the process for handling complex parts. Part Copies: Easily create multiple copies of the same part in a project, automating the production of identical parts and reducing programming time. Simultaneous production of different parts: ENCY supports the machining of several different parts within a single project, improving production flexibility and optimizing machine usage. Tombstone machining: The system enables setting up multiple workpieces on a tombstone fixture for simultaneous machining, greatly reducing production time and increasing machine efficiency. Sorting features to optimize multi-part machining: By operation type: Sorts machining operations based on the type, such as roughing, finishing, or drilling, to streamline workflow and tool changes. By tool: Groups operations that use the same tool to minimize tool changes, reducing machine downtime. By part or fixture: Organizes machining by specific parts or fixtures, ensuring an efficient sequence when working with multiple workpieces. By WIP state: Allows sorting operations based on the state of the workpiece in progress, ensuring smooth transitions between sequential operations. Multipart_1_part_copies-480x853 Multipart__2_Tombstone-480x853 Multipart_sorting-480x853 Multipart_1_part_copies-480x853 1/4 Ultra precise material removal simulation ENCY delivers precise and seamless simulation for all machining processes, including milling. The software provides accurate visualization of material removal, while fully simulating the machine’s kinematics through its digital twin. This includes advanced detection features such as: Collision detection, Axis travel over-limit detection, Part gauge control, Tool contact with the workpiece during rapid movements, Excessive plunge angle detection. ENCY is featuring two simulation engines: Voxel Simulation (default): Ultra-fast, highly accurate, and ideal for most machining cases, offering real-time material removal previews. Solid Simulation: Ultra-precise and slower, designed for high-quality surface modeling with visualization of scallop height as small as 0.01mm. By offering a comprehensive and highly accurate simulation environment, ENCY empowers users to optimize workflows, reduce downtime, and prevent costly mistakes before production begins. This ensures smoother, error-free manufacturing with confidence in the final output. Finishing undercuts Undercuts machining The undercut waterline operation is designed for machining parts with complex undercut features, delivering precise toolpaths and high-quality surface finishes. It supports a variety of specialized tools: Supported Tools: Dove mill, Slot mill, Lollipop mill, Two-angle mill, Round groove mill, Sharp chamfer mill, Rounded chamfer mill, Indexable chamfer mill, Barrel mill, Lens barrel mill, Taper barrel mill. Key Features: Roughing Passes: Utilize equidistant and adaptive strategies for efficient material removal, Adaptive Step for Constant Scallop Height: Ensures uniform surface quality, reducing manual finishing work, Precision on Complex Geometries: Achieves detailed machining in hard-to-reach areas, such as undercuts, with minimized cycle times. Undercuts Undercuts_2 Undercuts 1/2 ENCY - CAD/CAM for Lathe DOWNLOAD Specialized Turning Cycles lathe machining operations Simulation and Verification Geometric Modeling & Import Specialized Turning Cycles The software includes dedicated cycles that simplify complex manual jobs : Roughing & Finishing : Supports canned cycles for longitudinal, transverse, and contour turning. Threading : Includes a comprehensive library for standard threads (Metric, Unified, etc.) and custom pitches. Grooving/Parting : Specialized logic for "peck" grooving to manage chip breaking. Part-off . Executes the cut off the processed part from the leftover material of the workpiece, while also machining the back face of the part. The system generates the working cycle's contour as a vertical line connecting the outer and inner diameters of the workpiece on the part's right or left side. Lathe Facing Lathe Thearding Lathe ID Grooving Lathe Facing 1/7 Geometric Modeling & Import Ency-CAM allows for quick 2D wireframe creation specifically tailored for lathe profiles (OD/ID, faces, and grooves). CAD Compatibility: It supports standard formats like IGES, DXF, STEP,SolidWorks (.sldasm, .sldprt), SolidEdge (.asm, .par, .psm, .pwd), and Rhinoceros (.3dm),Parasolid (.x_t, .x_b), IGES (.igs, .iges), and STL (.stl), DXF (.dxf), PostScript (.ps), and Encapsulated PostScript (.eps) VRML (.vrl) and DWG. Profile Recognition: The software can automatically identify the boundaries of a part profile to generate toolpaths quickly. Simulation and Verification Before sending code to the machine, Ency-CAM provides: 2D/3D Wireframe Verification: To check for basic path accuracy. Solid Simulation: A visual representation of the material removal process to identify potential crashes or gouges. lathe machining operations CAM system represents the machining process as a sequence of operations. The sequence can contain any number of operations of various kind. Each operation uses it's particular methods to form toolpath and accepts individual set of parameters. The list of available operations is defined by the system configuration . All lathe operations placed in one group "Lathe" inside the list of all operation . ENCY Rotary: 4-axis CAD/CAM DOWNLOAD Roughing Strategies for Rotary Machining Finishing Strategies for Rotary Machining Colusion detection Flexible axis Auto spiral step Roughing Waterline Rotary Roughing The rotary roughing strategy is optimized for removing large volumes of material in rotary machining operations. It generates robust toolpaths that follow the rotary axis, ensuring effective material removal while preserving stability. This strategy is particularly suited for initial machining stages, where the focus is on shaping the workpiece quickly and efficiently. Equidistant Strategy The equidistant roughing strategy ensures uniform material removal by maintaining a constant distance between toolpaths. This delivers consistent cutting conditions, reducing stress on the tool and the machine while creating a balanced roughing process. It’s ideal for achieving predictable results and setting up a smooth transition to finishing. Adaptive Strategy The adaptive roughing strategy dynamically adjusts the toolpath to maintain optimal cutting engagement, minimizing air cuts and reducing tool wear. This approach enables high-speed rotary machining with greater efficiency, allowing for rapid material removal while maintaining precision and control. These advanced roughing strategies in ENCY provide comprehensive solutions for rotary machining, enabling users to handle diverse machining requirements with precision and efficiency. Rotary_roughing Rotary_adaptive Rotary_pocketing_equid Rotary_roughing 1/3 Safe machine-aware toolpath calculation ENCY, as a machine-aware CAD/CAM solution, calculates actual machine movements rather than just the tool movement around the part. This approach ensures safe and precise machining by accounting for the specific behavior and limitations of the machine. Here’s how ENCY optimizes safety and efficiency: Considers machine axes travel limits. Detects the shape and orientation of the tool holder. Tracks the current state of the workpiece during machining. Accounts for fixture positions to avoid interference. Prevents collisions by simulating and verifying movements in real time. Enhances machine safety throughout the process. Result: Achieve worry-free machining with optimal efficiency, reducing risks and ensuring precision at every step. Finishing Strategies for Rotary Machining Rotary Finishing Operation This strategy is focused on achieving precise, high-quality finishes by generating toolpaths along the rotary axis. It follows the natural contours of the workpiece to deliver a smooth, polished surface with minimal tool marks. Rotary finishing is ideal for cylindrical and symmetrical parts requiring superior surface quality. Rotary Waterline Rotary waterline finishing generates horizontal slices along the rotary axis, maintaining constant Z-height for each pass. This approach is particularly effective for parts with steep vertical surfaces or consistent curvature, ensuring uniform material removal and excellent surface finishes. 4D Surface The 4D surface strategy provides advanced multi-axis finishing capabilities for complex geometries. By leveraging the rotary axis in combination with the machine’s linear axes, it achieves a smooth and precise finish on intricate surfaces that traditional strategies struggle to handle. This method is ideal for high-precision components with challenging designs. 4D Morph 4D morph smoothly transitions toolpaths between two defined curves or boundaries, adapting perfectly to the geometry of the part. This strategy minimizes visible tool marks and ensures a seamless blend across surfaces, making it the go-to choice for parts with complex curves or aesthetic requirements. These advanced finishing strategies in ENCY are designed to handle a wide range of rotary machining tasks, ensuring exceptional surface quality and accuracy in even the most intricate designs. Flexible axis The “Flexible axis” feature enables rotary machining of complex-shaped parts, such as balusters. Auto spiral step The Auto Spiral Step feature automatically adjusts the machining toolpath to match the pitch of a spiral, streamlining the programming process for parts like augers and screws. ENCY: CAD/CAM for 5-axis machining DOWNLOAD 5-axis machining with ENCY Proprietary module for impeller machining 5D toolpaths Colusion detection 5-axis machining with ENCY True Machine-Aware Programming Toolpaths are generated with full awareness of the machine’s kinematics, limitations, and specific configurations. This ensures collision-free motion, optimal cutting conditions, and maximum utilization of the machine’s capabilities. Supported Kinematics Supports a wide range of kinematic configurations, including head-head, table-table, and head-table setups. The system adapts to each machine’s unique structure, allowing for accurate and efficient 5-axis machining. TCPM, RTCP, TPW Support With Tool Center Point Management (TCPM), Rotary Tool Center Point (RTCP) support and Tilted Working Plane with LCS (TWP), tool orientation adjustments are seamless, minimizing tool deflection and improving surface finish quality. Check Holder Real-time holder collision detection ensures that the tool assembly clears all workpiece and fixture obstructions, preventing potential crashes. C-Axis Singularity Avoidance Intelligent toolpath planning mitigates C-axis singularities, ensuring stable motion and preventing erratic tool behavior during machining. Safe machine-aware toolpath calculation ENCY, as a machine-aware CAD/CAM solution, calculates actual machine movements rather than just the tool movement around the part. This approach ensures safe and precise machining by accounting for the specific behavior and limitations of the machine. Here’s how ENCY optimizes safety and efficiency: Considers machine axes travel limits. Detects the shape and orientation of the tool holder. Tracks the current state of the workpiece during machining. Accounts for fixture positions to avoid interference. Prevents collisions by simulating and verifying movements in real time. Enhances machine safety throughout the process. Result: Achieve worry-free machining with optimal efficiency, reducing risks and ensuring precision at every step. 5D toolpaths 5D Surface Machining A high-precision finishing strategy for complex freeform surfaces where consistent tool orientation is critical.Dynamically adjusts tool angles to maintain optimal cutting conditions.Ideal for aerospace, automotive, and medical applications.Produces smooth, high-quality surfaces with minimal post-processing. Swarf Machining Uses the side of the tool to efficiently cut along ruled surfaces, making it perfect for components with long, sweeping geometries.Maintains consistent tool engagement, reducing cutting forces and tool wear.Suitable for turbine blades, impellers, and composite parts.Delivers high-accuracy results with fewer passes. 6D Contour Machining A highly versatile multi-axis strategy for machining complex contours with full 6D control.Supports both 5-axis (5D) and 6-axis (6D) tool trajectories for ultimate flexibility.Interactive editing allows adjustments to the TCP and tool axis orientation at every point of the toolpathPerfect for high-performance engineering components, where absolute control over tool movement is required.Supports multi-axis curve projection 5D_Surface_1 - Copy 5D_Surface_3 Swarf_1 5D_Surface_1 - Copy 1/4 Proprietary module for impeller machining Why ENCY for Impeller Machining? Proprietary multi-axis strategies – Developed in-house to handle the unique challenges of impeller manufacturing. Optimized for precision – Intelligent toolpath generation ensures a perfect balance between efficiency and accuracy. Collision-free toolpaths – Advanced algorithms prevent holder and tool collisions while maintaining optimal engagement. Adaptive control – Dynamic lead angle adjustment and tool orientation for smoother transitions. Designed for complex parts – From aerospace to energy industries, ENCY is built for high-performance machining. Smart Toolpath Generation Roughing & Finishing Strategies – Dedicated strategies for material removal and high-quality blade surface finishing. Morph Between Hub and Shroud – Smooth tool transitions between critical surfaces. Offset-Based Strategies – Controlled surface offsetting for precision machining. Advanced Collision Avoidance Holder and Tool Check – Real-time toolpath adjustment to prevent collisions. Automatic Lead and Tilt Adjustments – Dynamic tool orientation for optimized cutting angles. ENCY for swiss lathes programming DOWNLOAD ENCY for Swiss-type machines in action Interactive workflows Milling operations Automatic channels synchronization Interactive workflows Turning operations Interactive Workflows for Turning Enhance your turning operations with intuitive and interactive workflows designed for your needs. With real-time editing, you can: Easily fine-tune parameters for precise results. Adjust tool paths and cutting strategies for greater flexibility. Streamline the creation and refinement of operations, saving time and effort. These tools empower you to achieve higher precision and efficiency in your turning workflows. Available Turning Operations Our system supports a wide range of Swiss-type turning operations, including: Facing OD Turning ID Boring Threading (OD & ID) Grooving (OD & ID) Cut-off Drilling Reaming Tapping Peck Drilling Live Tooling (Milling on Lathes) ENCY for Swiss-type machines in action ENCY CAM provides a specialized module for Swiss-type lathes, focusing on the unique mechanical requirements of sliding headstock machines. Unlike standard lathes, Swiss machining requires synchronized control between the headstock, guide bushing, and various tool posts. Key Features for Swiss Machining Sliding Headstock Support: Manages the Z-axis movement of the workpiece through the guide bushing to maintain high precision on long, slender parts. Multi-Channel Synchronization: Allows for simultaneous machining (e.g., turning on the main spindle while cross-drilling or working on the back spindle). Guide Bushing Management: Specialized cycles to ensure the cutting force remains close to the support point, preventing part deflection. Pinch Turning & Milling: Supports "balanced" operations where two tools engage the workpiece at once to increase material removal rates or improve stability. Operational Workflow Machine Kinematics: You define the specific configuration of the Swiss lathe (number of spindles, tool slides, and rotary axes). Synchronization Manager: Use a visual timeline to coordinate wait codes ($M$-codes) between the main and sub-spindles. Simulation: A full 3D digital twin simulation is critical for Swiss lathes to detect potential collisions in the tight working envelope of the machine. Automatic channels synchronization Automatic Channels Synchronization is a cutting-edge feature that enhances the efficiency of Swiss-type CNC machines. This functionality ensures seamless coordination between multiple machining channels, enabling simultaneous operations without conflicts. Key benefits include: Optimized Workflow: By automatically aligning operations across channels, the system reduces idle times and maximizes machine productivity. Improved Precision: Synchronization minimizes errors that can arise from manual coordination, ensuring consistent and accurate results. Simplified Programming: The automated system removes the need for complex manual adjustments, allowing operators to focus on fine-tuning rather than troubleshooting. This feature is particularly valuable for high-complexity parts, where multiple tools and channels need to work in perfect harmony. With automatic synchronization, your Swiss-type CNC machines operate at peak efficiency, delivering faster cycle times and superior quality. Milling operations Take control of your milling operations with workflows tailored for your projects. Real-time visualization and editing enable you to: Select tools and adjust paths with confidence. Visualize milling processes in detail for better decision-making. Simplify complex tasks, reducing iteration times and improving accuracy. With these capabilities, you can deliver exceptional results in every swiss-lathe project. Full Range of Milling Operations ENCY supports the entire spectrum of milling operations, from simple 2D contouring and drilling to advanced 5-axis continuous machining: 2D Machining – Contouring, slotting, pocketing, drilling, tapping, chamfering, and engraving. 3D Machining – Roughing waterline, surface milling, rest machining, and high-speed finishing. 4-Axis Machining – Rotary roughing and finishing, side drilling, and simultaneous tool movements. 5-Axis Continuous Machining – Complex surface milling, helical cutting, and multiaxes contouring. Why CAM Software ENCY CAM is a modern, high-performance CAD/CAM programming ecosystem built to handle everything from standard 2.5-axis machining up to complex, simultaneous 5-axis CNC programming. In elite industries like F1 Motorsports, where fractions of a millisecond matter, components must be hyper-lightweight, extremely strong, and machined to micro-level tolerances. F1 engine blocks, impellers, turbochargers, and cylinder heads feature intricate geometries and are made from tough aerospace alloys (like titanium and Inconel). How ENCY CAM Simplifies F1 Motorsports Component Manufacturing F1 powertrains demand perfection under extreme stress. ENCY CAM directly addresses these manufacturing challenges: 1. Machining Complex Geometries (Impellers & Turbochargers) F1 engines rely heavily on forced induction. Machining the thin, curved blades of a turbocharger impeller requires simultaneous 5-axis movement. ENCY CAM includes a dedicated Impeller and Blisk module that automates blade, hub, and fillet finishing into a single unified operation. It manages tool axis orientation without needing manual auxiliary CAD geometry, preventing the tool from gouging adjacent blades. 2. Eliminating Collisions on Expensive Alloys F1 engine components are machined from incredibly expensive raw billets. A single machine crash can ruin a prototype and delay race-day deployment. ENCY CAM’s Machine-Aware Technology runs real-time check-holder and fixture tracking. If a multi-axis toolpath brings the spindle head dangerously close to the custom engine fixture, the software automatically recalculates the tool vector to avoid a crash. 3. Achieving Flawless Surface Finishes To maximize fluid and airflow efficiency inside F1 engine ports and combustion chambers, surface friction must be near zero. ENCY’s Swarf Machining and advanced multi-axis finishing strategies maintain a constant cutting angle. This prevents tool chatter and deflection, yielding smooth freeform surfaces that drastically reduce the need for manual polishing. 4. Protecting Tools in Tough Metals (Titanium/Inconel) Engine components must withstand intense heat and pressure, requiring rigid alloys that are notoriously brutal on cutting tools. ENCY’s Adaptive Roughing ensures the CNC machine never takes too deep of a bite. By maintaining uniform tool load and optimal chip thickness, it prevents sudden tool breakage and significantly extends tool life—keeping production continuous. 5. Drastically Reducing Lead Times F1 is a race against the clock, with upgrades developed weekly. Traditional CAM software often involves a tedious loop of programming, simulating, finding an error, and restarting. Because ENCY uses the machine's exact digital twin right from the start, it eliminates these programming loops, cutting programming time by up to 50% and ensuring parts make it from the design desk to the track in record time. AI CAM Software AI is entering CAM — but not as a chatbot. ENCY Software launches the closed beta of AI Superagent — the first agentic AI assistant built for a true AI-first CAM workflow. AI Superagent works inside ENCY like a CAM programmer: → analyzes 3D models → builds machining strategies → creates operations & runs calculations → checks simulations and refines results It can also continue work on existing projects — not from scratch, but from where you left off. And most importantly: this is not about replacing engineers. It’s a new collaboration model: AI executes → human sets goals, guides, and evaluates. ENCY: CAD/CAM for a new generation Delivering sophisticated CAM technology with an intuitive user interface and natural workflow State-of-UI 3-aixs toolpath HSM Machine simulation Multiaxis Additive material removal simulation Collaboration Mill-turn Applications 2.5x and 3x mill production of mold and dies and any other part of 3 axis machine Rotary Production of screw, blades ,gear wheels, baluster Mill-turn Turning and milling combined in one setu Multiaxis index (3+2) and simultaneous 5 axis milling for turbine ,blade, ports Lathe Turning and boring, threading, trimming, drilling, reaming HSM and adaptive High speed and adaptive toolpaths for quick material removal with extended tool life Swiss ans MTM Swiss-type machine and MTM with synchronization 5-6D cutting CNC programming of cutting, trimming, 6D knife cutting. Mill, laser, water, plasma, knife Additive in3D -5D Cladding with advance layer thickness EDM 2 – 4 axis strategies for wire EDM machining 2D cutting Programming of laser, waterjet, plasma, oxy-fuel cutting and knife cutting G-code based simulation G-code verification in ENCY CAM Probing cycles Probing cycles for Milling and Lathe Machines Highlights A wide range of machining strategies from 2D to 5D Parametric CAD interactive NC-code simulation and verification A State-of-art interface Crisp at 4K screens Open API Technological independence Why Ency Cam 播放影片 播放影片 00:31 播放影片 播放影片 00:16 播放影片 播放影片 00:56 播放影片 播放影片 02:19 播放影片 播放影片 00:22 播放影片 播放影片 00:16 播放影片 播放影片 00:12 播放影片 播放影片 00:36 Solidworks Ency Certified Gold Product Ency Certified Gold Product Certified Gold Products are best-in-class, third-party software solutions designed specifically for SOLIDWORKS. A SOLIDWORKS committee ensures that these products can effectively perform the designated tasks and have the necessary resources to keep the solution synchronized when changes occur to the SOLIDWORKS data. Certified Gold Products offer seamless integration, allowing all operations to take place within the SOLIDWORKS interface, and adhere to a comprehensive set of user interface guidelines to ensure a familiar and intuitive experience for users. Download ENCY CAM Trail Free 30 Days version with online on Boarding DOWNLOAD CONTACT US



