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This is software that supports the design and manufacturing of backlashless orthogonal axis reduction gears. It allows for the relief of one side of the drum-shaped worm lead groove, applying preload to the cam follower to achieve backlashless operation. The design can specify the twisting direction of the drum-shaped worm. It generates NC text data for the coordinates (X-Z-A-B) needed to process the drum-shaped worm. The A and B axes are rotational coordinates. It can create DXF files for the drum-shaped worm diagram, spider diagram, and assembly diagram. Additionally, it can produce DXF files for the worm body and three-dimensional lead groove to create solid models in 3D CAD.
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Free membership registrationThis is a design and manufacturing support software for roller gear indexed drives. You can select between single duel type, twin dwell type, right twist, and left twist for your design. The cam curves can be chosen from 22 types, and you can create any cam curve from a universal curve. The machining data is generated as text data for simultaneous 4-axis (X-Z-A-B) processing. It can create DXF files for cam diagrams, spider diagrams, and assembly diagrams. Additionally, it can create DXF files for cam bodies, cam grooves, and dwell sections compatible with FreeCAD, allowing you to drag and drop them into FreeCAD to create solid models.
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Free membership registrationThe design and manufacturing support software "TrochoidV8" for the new two-stage reduction trochoidal gear reducer assists in the design and manufacturing of a two-stage planetary differential reducer that uses an involute gear in the first stage and a trochoidal gear in the second stage. It supports the development of one-stage and two-stage reducers using involute and trochoidal gears by providing functions such as rotation simulation, tooth profile data storage, DXF file saving, design data text saving, and calculations of data such as pressure angle and radius of curvature.
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Free membership registrationThe design and manufacturing support software "TrochoidV7" for a two-stage trochoidal gear reducer assists in the design and manufacturing of a two-stage planetary differential reducer that uses an involute gear in the first stage and a trochoidal gear in the second stage. It is the first software of its kind that supports the development of a two-stage reducer using involute and trochoidal gears by providing features such as rotation simulation, tooth profile data storage, DXF file saving, design data text saving, and calculations for data such as pressure angle and radius of curvature.
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Free membership registrationThis is software that supports the design and production of planetary differential gear systems using trochoid gears. We are pleased to announce the upgrade of "TrochoidV5/V5C" and the new release of "TrochoidV6/V6C." In this upgrade, we have implemented processing for the outer diameter of large trochoid gears with a high number of differential teeth, allowing them to be displayed as a single gear. Additionally, we have added the ability to select between eccentric rotation and axial rotation reduction mechanisms, as well as a text-saving function for design data, significantly enhancing the support for production. Furthermore, "TrochoidV5/V5C" will continue to be available for sale.
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Free membership registrationThe trochoidal gear pump design support software is a program that assists in the design and manufacturing of internal gear pumps using trochoidal gears. It supports the development of internal gear-type trochoidal gear pumps by providing features such as rotation simulation, discharge volume calculation, tooth profile data storage, DXF file saving, design data text saving, and calculations for data such as pressure angle and radius of curvature.
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Free membership registrationWe support the design and manufacturing of displaced spur gears and helical gears. With simple operations, you can quickly perform displacement design and meshing simulations for spur and helical gears, create tooth profiles, generate DXF files, save tooth profile data coordinates, and conduct strength calculations according to JGMA standards.
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Free membership registrationWe support the design and manufacturing of spur gears and helical gears. With simple operations, you can quickly perform displacement design and meshing simulations for spur gears and helical gears, create tooth profiles, generate DXF files, save tooth profile data coordinates, and conduct strength calculations according to JGMA standards.
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Free membership registrationPL_Design" is software that supports the design and manufacturing of planetary gear reduction mechanisms. By simply inputting basic gear data, you can design a planetary gear mechanism. The design form allows for easy operations such as rotation simulations of planetary, solar, and star-type mechanisms, creation of tooth profile diagrams using racks, output of DXF files, and text saving of tooth profile data. This time, "PL_Design" has been upgraded with added functionality to support the design of "lateral displacement.
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Free membership registration"Cylindrical_Cam" is a design and manufacturing support software for cylindrical cams. You can design the basic cam mechanism while checking it in the mechanism preview using the data input form. The completed mechanism data can be saved to a file. Next, in the timing diagram creation form, you can create the cam's timing diagram and cam curve graph, completing the timing curve. The finished timing curve can also be saved to a file. In the design form, you can rotate the cam for drawing and perform a simulation of the mechanism's drive. You can output the cam shape and cam mechanism as DXF files, save bmp files, and export data such as cam tool center data, contour data, and tool correction data to text files.
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Free membership registration"Mechanical_Cam" is software that assists in the design and production of plate cams and groove cams, allowing for the combination of five types of link mechanisms: linear end, rocking end, radial method, tangent method, and sine method, based on the basic cam mechanism. It also enables the creation of timing diagrams and the generation of cam curves using 21 types of cam profiles, in addition to universal curves. Furthermore, it can calculate cam contour errors and determine optimal cam contour coordinates. The created mechanism data and timing curve data can be saved to files. It supports the design and production of plate cams, groove cams, and internal cams by allowing the saving of tool center and contour coordinate data of the designed shapes in text files or DXF files.
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Free membership registration"Barrel_Cam" is software that supports the design and manufacturing of index barrel cams. 1. Allows selection of cam curves from 21 types of cam curves and universal curves. 2. Creates and displays graphs of displacement, velocity, acceleration, and inertial torque of the cam curve. 3. Designs relief (escape) for the groove entrances at both ends of the cam. 4. Enables the setting of cam follower handover. 5. Performs coordinate calculations using tool diameter correction functions based on tool diameter input. 6. Calculates and displays errors from linear interpolation of the cam profile. 7. Can design multi-groove barrel cams. 8. Can design right-hand and left-hand twisted barrel cams. 9. Displays the cam's rotation and engagement pressure angle and curvature radius in real time. 10. Saves tool center coordinate data (X, Y, A) in text file format. 11. Saves DXF files of cam diagrams, output spider diagrams, and assembly drawings. 12. Includes BMP file saving for drawing images and partial zoom functionality. 13. Displays and prints design data and cam curve graphs. 14. Creates modeling DXF data for FreeCAD.
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Free membership registrationThe parallel cam design and manufacturing support software is a tool that assists in the design and production of index parallel cam mechanisms. It allows the selection of cam curves from 21 types of cam profiles and universal curves. You can change the dimensionless time parameters of the cam curves. It creates and displays graphs of displacement, velocity, acceleration, and inertial torque of the cam curves. It includes design modifications for the cam tip (relief) and the cam base (relief). It performs coordinate calculations using a tool diameter correction function based on input tool diameter. It calculates and displays errors from linear interpolation of the cam profile. It can design both one-turn and half-turn parallel cams. The rotation of the cam and the engagement pressure angle and curvature radius are displayed in real-time. Tool center coordinate data (X, Y) can be saved in text file format. Cam drawings, output slider diagrams, and assembly drawings can be saved as DXF files. Drawing images can be saved as BMP files. It features a partial zoom function. It displays and prints design data and cam curve graphs. It also performs lowering calculations and displays error messages. With a variety of functions, it supports the design and production of index parallel cam mechanisms.
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Free membership registrationThe involute rack mechanism achieves a backlash-free engagement mechanism that is difficult to realize by combining pin gears and trochoidal rack tooth profiles. The design and manufacturing support software for pin gears and trochoidal racks performs high-precision coordinate calculations of the trochoidal rack tooth profile through modifications of the rack tooth shape based on simple input data and an automatic tooth shape error calculation program. You can check the engagement of the created rack and pin gear in a video on the design screen, and visually design the contact state by partially enlarging the engagement section. Additionally, the pressure angle and curvature radius at the engagement points can be displayed in real-time.
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Free membership registrationThe involute gear mechanism achieves a backlash-free engagement mechanism that is difficult to realize by combining pin gears and external trochoidal gears. The design and manufacturing support software for pin gears and trochoidal gears performs high-precision coordinate calculations of trochoidal tooth profiles through shape modifications and an automatic tooth profile error calculation program based on simple input data. You can confirm the engagement of the created gears by rotating them on the design screen, and you can also visually design the contact state by partially enlarging the engagement area. Additionally, the pressure angle and curvature radius at the engagement points can be displayed in real-time.
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Free membership registrationThe involute gear mechanism achieves a backlash-free engagement mechanism that is difficult to realize by combining pin gears and internal trochoidal gears. The design and manufacturing support software for pin gears and trochoidal gears performs high-precision coordinate calculations for internal trochoidal tooth profiles through simple input data, tooth shape modifications, and an automatic tooth shape error calculation program. You can confirm the engagement of the created gears by rotating them on the design screen, and you can visually design the contact state by partially enlarging the engagement area. Additionally, the pressure angle and curvature radius at the engagement points can be displayed in real-time.
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Free membership registrationThe involute gear mechanism achieves a backlash-free meshing mechanism that is difficult to realize with traditional involute gears by combining pin gears and internal trochoidal gears. The design and manufacturing support software for pin gears and internal trochoidal gears allows for easy data input to modify tooth profiles and performs high-precision coordinate calculations for internal trochoidal tooth profiles through an automatic tooth profile error calculation program. You can confirm the meshing of the created gears by rotating them on the design screen, and you can visually design the contact state by partially enlarging the meshing area. Additionally, the pressure angle and radius of curvature at the meshing points can be displayed in real-time.
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Free membership registrationThe involute rack mechanism achieves a backlash-free engagement mechanism that is difficult to realize by combining a pin rack and a trochoidal gear. The design and manufacturing support software for the pin rack and trochoidal gear performs high-precision coordinate calculations for the trochoidal gear through modifications of the rack tooth profile and an automatic tooth profile error calculation program based on simple input data. You can check the engagement of the created pin rack and trochoidal gear in a video on the design screen, or visually design the contact state by partially enlarging the engagement section. Additionally, the pressure angle and radius of curvature at the engagement points can be displayed in real-time.
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