Hansheng Automation (Dongguan) Co., Ltd. is one of the most experienced manufacturers and suppliers of cam indexing table in China. If you're going to wholesale bulk cost-effective cam indexing table made in China, welcome to get pricelist and quotation from our factory. Also, customized service and OEM&ODM service are available.
In the world of precision manufacturing, we speak with data: Our Cam Indexing Tables offer a standard accuracy of ±30 arc seconds, with customizations up to ±15 arc seconds. Hollow Rotary Actuators offer a standard accuracy of ≤15 arc seconds, with customizations up to ≤10 arc seconds. Our planetary reducers offer ultra-precision backlash of ≤1 arc minute for P0, ≤2 arc minutes for P1, and ≤3 arc minutes for P2. Our harmonic reducers offer a standard backlash of ≤10 arc seconds, with customizations up to ≤5 arc seconds. Combined with ISO/DIN/GB Grade 5 gear machining (module 0.1-5.0, tooth top diameter 3mm-300mm), CNC capabilities for ±0.002mm ultra-mirror finishes, and castings with precision tolerances of ±0.03mm (maximum machining dimensions of 3800, 1500, and 1200mm), we provide equipment manufacturers, end-user factories, and distributors with comprehensive solutions, from core transmission components to precision manufacturing.
Cam indexing table is an important device for moving workpieces in a production line by repeated indexing. We have 8 types, namely DS axis type, DF flange axis type, DE flange axis type, DT table type, DA slim table type, DSU flange lifting type, DFN flange axis lifting type, PU Paradex type. Below are the introduction and characteristics of each type of cam indexer.
Models and Features
DS Shaft Model
Usually found in automated systems to offer cyclically accurate angular indexing, the DS shaft output (DS shaft model) is a mechanical device for exact indexing and placement. Mostly utilized in applications needing timing and angular control, its major characteristic is its capacity to produce smooth, exact output motion over a given fit between the cam and mandrel.

DS Shaft Model and Main Technical Data

Feature
1. This series of machine is a typical traditional mandrel modeling, the output shaft has a small rotational inertia, so it is suitable for high-speed rotary action.
2. The processing and installation of the mounting parts with gears, couplings or coupling disks, need to pay special attention to the tolerance of the hole diameter (+0.015/-0) and the tolerance of the keyway (+0.015/-0).
3. Its use in conveyor belt drive, gear drive, backlash-free couplings combined with the drive of the majority of cases.
DF Flange Shaft Model
Usually speaking, the DF flange shaft model globoidal cam indexers describes a bearing design combining flange and shaft constructions for mechanical transmission systems. In mechanical devices, DF (Flange Shaft) typically serves in connection, sustaining, or transmission of power. Usually including one or more holes that might be tightened to other parts or components using bolts, its flange portion Usually directly attached to gear, sprockets, pulleys, etc., the shaft component rotates to transfer force or motion.
feature
Flange engineering
Usually flat or slightly grooved, the flange component makes connecting other parts through bolts simple. The aim is to increase the stability of the link and lower possible vibration or loosening problems during running.
Axis design
Usually built with accuracy based on the transmitted load's size, the shaft component boasts a specific strength and wear resistance. Common shaft materials are alloys, steel, etc., which can resist great torque or load.
Relevant situations
Particularly in conditions requiring great accuracy and stability, the DF Flange Shaft type is extensively applied in industries including automation equipment, precision machinery, and transmission systems.
This system's key benefits are low running noise and effective power transmission as well as simplicity of installation and maintenance.

DF Flange Shaft and Main Technical Data

DE Flange Shaft Model
Another kind of bearing design used in mechanical transmission systems is the DE Flange Shaft Model, whose "DE" could either reflect a particular design type or naming standard. Though it may have different specific structure and application, the DE Flange Shaft still consists in flange and shaft portions, same as the DF Flange Shaft model.
Differences from DF
While both DE Flange Shaft and DF Flange Shaft have comparable flange shaft designs, their detail design may vary particularly in terms of load-bearing capacity, size, installation criteria, and so on. Higher loads or more specialized working situations, for instance, may call for DE Flange Shaft, which also boasts stronger durability and load-bearing capabilities. Some standard naming guidelines additionally allow DE to refer to a specific design, field of use, or installation technique.
feature
Design of Flanges
Usually used to link several components or secure to other support systems, the DE Flange segment may have varying diameters and forms. Usually a flat or ring-shaped component, a flange is fixable to other parts (like gears, drive shafts, etc.) by bolts to guarantee a close fit between the parts.
Different application criteria might occasionally affect the hole position and connection technique of flanges; so, one can design with several or single holes for various installation techniques.
Shaft Designs
Usually having great strength and wear resistance, the shaft component of DE Flange Shaft is appropriate for working settings requiring bearing bigger loads, greater speeds, or more complex conditions.
To match other components such gears, couplings, etc., the design of the shaft could incorporate various surface treatments, size criteria, and installation techniques.


DE Flange Shaft Model and Main Technical Data

DT Table Model
The size design characteristics of this series of models are similar to the desktop functions of the platform. They can withstand extremely large axial loads and vertical radial pressures during driving operation. There is a protruding fixed disk surface and a large-diameter hollow shaft at the output end, which can be matched with dynamic and static automation equipment. The electrical, oil, and gas pipelines of the power source can be set in the hollow hole. This series of models is widely used in various mechanisms and industrial machinery of heavy loads, direct connection automation equipment, etc. for synchronous automation and intermittent operation
feature
Its output platform is quite rigid and its diameter is rather big.
The table's height is low; a somewhat strong hollow fixed shaft attached to the table's center
and the possibility to link side of the shell accessories directly. It is a perfect assembly chassis for rotating automated assembly machinery, processing equipment, and automated packaging machinery that demand several process tasks so it can run indexes requiring several stops.

DT Table Model and Main Technical Data

DA Ultra-thin Table Model
Designed particularly for precision indexing and angle control, the DA Ultrathin Table Model is an ultra-thin caliper or rotating platform. Usually utilized in applications requiring limited space or small volume, its "DA" normally reflects a specific series or model identifier; the Ultrathin Table reflects its "ultra-thin" construction. This model seeks to offer high-precision rotation or indexing capabilities while preserving an incredibly small construction fit for uses in confined environments including laboratory equipment, precision machinery, and automation tools.
What is the difference between DT and DA ?
DA fits for installation in small areas since it is thinner than DT. DA splitters are fit for installation with the output end facing upwards; DA of the same type can sustain more load torque than DT.
feature
Slim Architecture
The DA Ultra Tin Table Model is quite thin compared to conventional revolving platforms or dividers, which qualifies for uses with little space. For instance, it can be included into smaller automation systems or applied for research tools needing ultra-thin platforms.
Division with great accuracy
Usually with a division accuracy of less than 1 degree, this device can offer rather exact angle control, fit for high-precision machining, assembly, or measurement jobs.
robust
Although these devices are intended to be ultra-thin, they usually use high-strength materials and optimized constructions to guarantee great load capacity and long-term stability even in small volumes.
Low noise functioning
The DA Ultra Tin Table Model is appropriate for uses requiring quiet working situations since its small design and high-precision mechanical fit help to produce reduced noise levels.
flexible strategies for control
Usually offering manual or digital control options, this divider offers remote control via external devices such PLC, computer control systems, etc., so guaranteeing simple operation and high automation.

DA Ultra-thin Table Model and Main Technical Data

PU Paradex Model
Two plate cams mounted to the input shaft and a spider supporting the cam follower to the output shaft form Cam Indexing Table, sometimes known as Paradex mode uses a plane cam mechanism whereby the follower constricting the 2 plate on the input side acts to transfer rotation to the output shaft.
High-precision rotating positioning tools with many industrial uses are Paradex models. These indexers accurately and repeatedly index a shaft or workpiece to specified angular positions using a cam-actuated mechanism.
feature
High division of accuracy
Usually offering quite high indexing accuracy, the PU Paradex model is appropriate for uses with exact indexing accuracy criteria. Usually aiming at a submetric level-that is, less than 0.01 degrees-the angle control for every rotation guarantees great-precision positioning.
Great load capacity
The tool is fit for heavy-duty machining or large equipment since it is built with high load criteria in mind and can offer exact indexing while withstanding high workloads.
Quick operation
PU. Usually with great rotational speeds, Paradex models are fit for effective control in high-speed machining or automated manufacturing lines since they can keep stability and accuracy throughout high-speed operations.
Modular architecture
Usually using a modular architecture, this division system makes integration with other devices and control systems easier to accomplish particular production or operational requirements.
Versatility
Apart from the fundamental indexing capability, the PU Paradex Model may additionally incorporate rotational, positional, and speed control features that would alternate between several running modes as necessary.

PU Paradex Model and Main Technical Data

Being producers of cam indexers, we can offer not only premium goods but also a wide spectrum of tailored services, technical advice, installation and commissioning, after-sales support and other offerings. By means of these services, we may assist clients in solving particular challenges in their applications, increase their manufacturing efficiency and product quality, and guarantee the long-term steady running of machinery. These offerings can strengthen consumers' brand competitiveness and confidence and dependability.
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