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stage Product List and Ranking from 124 Manufacturers, Suppliers and Companies | IPROS GMS

Last Updated: Aggregation Period:Mar 18, 2026~Apr 14, 2026
This ranking is based on the number of page views on our site.

stage Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Mar 18, 2026~Apr 14, 2026
This ranking is based on the number of page views on our site.

  1. PI Japan Kanagawa//Electronic Components and Semiconductors
  2. 神津精機 Kanagawa//Optical Instruments
  3. ミラック光学 Tokyo//Testing, Analysis and Measurement
  4. 4 シグマ光機 Tokyo//Testing, Analysis and Measurement
  5. 5 オーテックス Tokyo//Electronic Components and Semiconductors

stage Product ranking

Last Updated: Aggregation Period:Mar 18, 2026~Apr 14, 2026
This ranking is based on the number of page views on our site.

  1. Reproducibility of up to 0.1μm! High-precision linear stage, 1-axis L-836. PI Japan
  2. Positioning accuracy inspection of general machine tools. 高橋レーザー計測 高橋レーザー計測
  3. Ultra-high precision 6-axis alignment stage "RSTZ Series" 神津精機
  4. 4 Ultra-thin XYθ (alignment) stage "NAF3C series" ヒーハイスト 本社・埼玉工場
  5. 4 Rotary Pump DUO Series / 2-Stage Type 伯東 本社

stage Product List

691~713 item / All 713 items

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[V-855] Maximum 800mm Linear Stage for Electronic Component Mounting

Linear motor stage with a maximum stroke of 800mm, achieving high-speed and high-precision transport.

In the field of electronic component assembly, improving productivity and stabilizing quality are crucial. Particularly in component transport on assembly lines, a balance between high-speed operation and high-precision positioning is required. Limitations in transport speed and positional deviations due to vibrations can affect assembly accuracy and production efficiency. The V-855 is a high-speed linear stage that employs direct drive using a linear motor. With a maximum speed of 4,000 mm/s (4 m/s) and a high-precision linear encoder, it achieves both high-speed transport and high-precision positioning simultaneously. Additionally, it supports a long stroke of up to 800 mm and high loads (up to 600 N), making it suitable for high-speed transport applications in electronic component assembly and inspection equipment. 【Usage Scenarios】 - High-speed assembly lines - Component pick and place - Inspection equipment 【Benefits of Implementation】 - Increased productivity - Stabilized quality - Reduced defect rates

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  • Other machine elements
  • Linear motor
  • Cartesian Robot
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【For Measurement】Maximum 800mm Stroke Linear Stage V-855

Achieving high-precision measurements with a resolution of 0.1 µm and a maximum speed of 4 m/s.

In the field of measurement, high precision positioning and stable operation are required. Particularly in the inspection of precision parts, non-contact measurement, and positioning in micro-machining processes, stages that achieve both high resolution and high-speed operation are essential. The V-855 is a high-speed linear stage equipped with direct drive via linear motors and high-precision linear encoders. With a minimum incremental motion of 0.1 µm and a maximum speed of 4,000 mm/s (4 m/s), it enables fast and precise measurement positioning. Additionally, it supports a maximum stroke of 800 mm and high loads (up to 600 N), making it suitable for measurement devices involving large workpieces and high-speed scanning measurements. 【Application Scenarios】 - Measurement of precision parts - Inspection in semiconductor manufacturing - Non-contact measurement systems - Positioning for research and development equipment 【Benefits of Implementation】 - Improved measurement accuracy through high-resolution positioning - Reduced measurement time due to high-speed operation - Capability to measure large workpieces due to long stroke

  • csm_PI-G-901_R3199-ACS_3898909ed8.jpg
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  • Linear motor
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Optical Large Deflection Angle Piezo Chip Tilt Platform S-330

High dynamics chip tilt stage ideal for high-speed steering mirror applications.

In optical systems, fine angle adjustments of light beams and optical axis control are crucial factors that influence performance. Particularly in fields such as laser processing, optical communication, and beam control, high-speed and high-precision angle control is required. The S-330 piezo chip/tilt platform is a Tip/Tilt stage that achieves high-speed response and high resolution through piezo actuators. With sub-millisecond response and excellent position stability, it is ideal for high-speed steering mirror applications and precise optical alignment. 【Application Scenarios】 - Precise angle control of laser beams - Optical fiber alignment - Optical axis adjustment in optical microscopes - Beam steering/beam stabilization 【Benefits of Implementation】 - Reduced adjustment time due to high-speed response - Increased precision of optical systems due to high resolution - Improved device performance through dynamic control

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  • Laser Components
  • stage

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Air bearing rotating stage for wafer inspection and measurement for semiconductors.

Slim and high precision. Enhancing the positioning accuracy in semiconductor manufacturing.

In semiconductor manufacturing, high-precision positioning of wafers and photomasks is a crucial factor that affects product quality and yield. Particularly in fine processing and inspection processes, high positioning accuracy and stable operation are required. The A-68x air bearing rotation stage is a high-precision rotating stage that employs air levitation guides. It is less affected by friction or component precision compared to conventional mechanical guides, suppressing stick-slip and frictional heat. This enables high-speed and high-precision rotational positioning. As a result, it contributes to improving the accuracy of inspection, measurement, and alignment in semiconductor manufacturing processes, supporting increased productivity and the production of high-quality devices. 【Application Scenarios】 - Wafer inspection and measurement - Precision positioning of wafers - Photomask alignment - Semiconductor inspection equipment 【Benefits of Implementation】 - Improved yield through high-precision positioning - Increased productivity through high-speed drive - Stable processes due to suppression of frictional heat - Long lifespan and low maintenance due to non-contact structure

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  • Actuator
  • Other industrial robots
  • encoder
  • stage

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Optical Large Aperture Air Bearing Rotary Stage A-68x

Thin and high-precision air bearing rotation stage, ideal for optical system adjustments.

In the adjustment of optical systems, precise positioning and angle adjustment of the optical axis are crucial elements. Optical components such as lenses and mirrors can significantly affect the overall performance of the system even with slight deviations in position or angle. The A-68x air bearing rotation stage is a high-precision rotation stage that employs air suspension guides. It is less susceptible to friction effects like traditional mechanical guides, suppressing stick-slip and frictional heat. Its smooth and stable rotational motion enables high-precision angular positioning. This contributes to the efficiency of alignment work in optical systems and enhances the performance of optical systems. 【Application Scenarios】 - Angle adjustment of lenses and mirrors - Alignment of optical components - Alignment of optical fibers - Optical measurement and inspection equipment 【Benefits of Implementation】 - Improved optical performance through high-precision positioning - Increased efficiency of adjustment work due to smooth rotational motion - Long-term stability due to a non-contact structure - Low wear and low maintenance design

  • csm_A-810_ACS_1e78e41625.jpg
  • Actuator
  • Other industrial robots
  • encoder
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[For Optical Adjustment] Vacuum-Compatible Small Linear Stage M-11x

Compact linear stage with a size of 60mm square, compatible with XYZ axes.

In the optical industry, adjustment work requires precise positioning. In particular, the positioning of lenses and mirrors is a crucial factor that affects the performance of optical systems. Even minor misalignments can lead to a decrease in image quality and a deterioration in measurement accuracy. The M-11x series linear stage achieves high-precision positioning despite its compact size, streamlining the adjustment work of optical systems. 【Usage Scenarios】 - Position adjustment of lenses and mirrors - Fiber alignment - Precise positioning of optical components 【Benefits of Implementation】 - Improved optical performance through high-precision positioning - Reduced working time - Increased efficiency of adjustment work

  • Actuator
  • Cartesian Robot
  • encoder
  • stage

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Linear Stage V-408 Suitable for Automation Technology in Research and Development

Linear stage equipped with an iron core three-phase linear motor, achieving high-precision positioning.

In experiments within the field of research and development, precise positioning significantly affects the accuracy of the results. This is especially true when fine movements need to be controlled, making the precision and stability of positioning crucial. Inaccurate positioning can undermine the reliability of experimental data and potentially lead to delays in research. The PIMag linear stage 'V-408' offers high-precision positioning performance, contributing to the efficiency and accuracy of experiments in research and development. 【Application Scenarios】 Industrial and research fields. Automation technology fields requiring high dynamic characteristics and precision. 【Benefits of Implementation】 - Improved data reliability through high-precision positioning - Space-saving due to compact design - Reduced friction with high-load-capacity cross roller guides For detailed product specifications, please refer to the catalog. If you have any questions, please feel free to contact us.

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  • Linear motor
  • stage

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Compact linear stage achieving high-precision position measurement for microscopes.

Compact linear stage suitable for micromanipulation.

In the field of microscopy, precise positioning of samples is a crucial factor that affects the accuracy of observations. In particular, accurate position control at the nanometer level is required for small targets. Even slight deviations in positioning can lead to degradation of the observed image or hinder the acquisition of accurate data. The U-521 achieves high-precision positioning despite its compact size. [Application Scenarios] - Accurate positioning of small targets [Benefits of Implementation] - Improved observation accuracy through high-precision positioning - Reduced mechanical friction - Minimal thermal impact You can check the detailed product specifications in the catalog. If you have any questions, please feel free to contact us.

  • Linear motor
  • Actuator
  • Piezoelectric Devices
  • stage

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U-723 Small Linear Stage for Microscope XY Axis

For positioning samples in a microscope. High precision, space-saving, self-locking.

In the field of microscopy, precise positioning of samples is essential. Especially when observing tiny subjects, even slight vibrations or misalignments can significantly affect the observation results. The U-723 contributes to stable alignment of samples in microscopy with its high-precision positioning performance and a self-locking mechanism when the power is off. 【Usage Scene】 - Sample positioning stage for microscopes 【Benefits of Implementation】 - Improved observation accuracy through high-precision sample positioning - The driving principle and electrical control of the piezo motor are low-cost and customizable You can check the detailed product specifications in the catalog. If you have any questions, please feel free to contact us.

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  • Linear motor
  • Piezoelectric Devices
  • Actuator
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High-precision 1-axis linear stage L-836 for laser processing

High-precision positioning stage ideal for laser cutting and laser processing.

In laser processing, the accuracy of the cutting position and irradiation position greatly affects product quality and processing efficiency. Especially in precision and fine processing, even slight positional deviations can lead to cutting defects and material loss. The L-836 is a linear stage that achieves high-precision positioning despite its compact design. It employs precision ball screws and high-precision linear guides, providing stable positioning and high reproducibility in laser processing equipment. It is suitable for positioning applications in laser cutting devices and precision processing equipment. 【Application Scenes】 - Laser cutting processing - Laser fine processing - Workpiece positioning - Laser processing equipment 【Benefits of Implementation】 - High-precision control of laser irradiation position - Improved cutting quality - Reduction of material loss - Stabilization of the processing process

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  • Actuator
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Compact and High-Precision 1-Axis Linear Stage for Optical Positioning L-836

Ideal for precise positioning in optical systems. Compact high-precision linear stage with a width of 60mm and a maximum stroke of 200mm.

In optical systems, the adjustment of the positions of optical elements such as lenses and mirrors is a crucial factor that influences the performance of the device. Even slight misalignments of the optical axis or changes in the focal position can lead to a decrease in image quality and a deterioration in measurement accuracy. The L-836 is a linear stage that achieves high-precision positioning while maintaining a compact design. With its precision ball screw drive and high-precision linear guides, it enables fine adjustments of optical elements and stable positioning in optical assembly processes. It caters to various optical positioning applications, including optical devices, inspection equipment, and research purposes. 【Application Scenarios】 - Laser processing - Optical assembly - Testing and inspection 【Benefits of Implementation】 - Improved optical performance through high-precision positioning - Enhanced work efficiency - Stabilization of product quality

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  • csm_L-836.501212F_XY.tif_Bilder-Web_7a921d7aa1.jpg
  • Actuator
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  • stage

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Miniature X-axis piezo stage with built-in capacitive sensor for microscopes.

For nano-precision scanning of microscope samples. Achieving stable positioning with 0.1nm resolution and high linearity.

In the field of microscopy, precise scanning of samples is required. Especially in high-magnification observations and analysis of fine structures, accurate positioning is essential. Misalignment can lead to degradation of the observed image and a decrease in measurement accuracy. The PIHera P-620.1/629.1 series addresses these challenges with 0.1 nm resolution and high-precision positioning. 【Application Scenes】 - Scanning of microscope samples - Optical alignment - Interferometric measurements 【Benefits of Implementation】 - High-precision observation and measurement - Accurate analysis of fine structures - Improved experimental efficiency You can check the detailed product specifications in the catalog. If you have any questions, please feel free to contact us.

  • Actuator
  • Piezoelectric Devices
  • encoder
  • stage

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[For Precision Measurement] 44mm Square Compact Piezo Stage P-611.Z

A 44mm square casing that achieves height measurement at the nanometer level.

In the field of precision measurement, accurate height measurement is essential. Particularly in the measurement of fine structures and the precise profiling of surface shapes, nanometer-level accuracy is required. Conventional measurement methods are susceptible to the effects of vibrations and temperature changes, making accurate measurements difficult. The P-611.Z achieves a maximum resolution of 0.2nm and 0.1% linearity, addressing challenges in height measurement. 【Application Scenarios】 - Height measurement of semiconductor devices - Shape measurement of MEMS devices - Thickness measurement of optical components - Surface roughness measurement 【Benefits of Implementation】 - Enables height measurement at the nanometer level - Reduces measurement time - Improves measurement accuracy - Enhances product quality

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  • P-611.Z.jpg
  • Actuator
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[For semiconductor inspection equipment] Maximum load 10kg - Z stage L-310

For Z-axis positioning in wafer inspection and chip inspection. Precision Z-stage utilizing high-rigidity cross roller guides.

In the semiconductor inspection process, precise positional control at the nano level is required to accurately detect minute defects in wafers and chips. In particular, stable positioning in the Z direction significantly affects inspection accuracy, especially in focus adjustments for inspection cameras and sensors, as well as in controlling the height position of the wafer. The L-310 is a high-precision Z stage that employs ball screw drive and cross roller guides. Its high guide precision and rigidity enable stable Z-direction positioning in semiconductor inspection equipment. 【Application Scenarios】 - Wafer inspection equipment - Semiconductor chip inspection equipment - Image processing inspection equipment - Focus adjustment for inspection cameras - Probe height adjustment 【Benefits of Implementation】 - Improved inspection accuracy through high-precision Z-axis position control - Enhanced reliability of inspection data due to stable operation - Long operating times supported by high duty cycle - Improved yield through enhanced defect detection accuracy

  • encoder
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[For Semiconductor Manufacturing] Z Direction / Chip/Tilt Stage Operation A-523

A high-precision air bearing stage capable of 3-axis motion on a single thin platform.

In the semiconductor manufacturing industry, precise positioning of wafers and masks is a crucial factor that affects product quality and yield. Especially in fine processing and inspection processes, nanometer-level positioning accuracy is required. In environments susceptible to vibrations and thermal influences, stable positioning performance is essential. Our thin air bearing Z Tip/Tilt stage achieves ultra-high precision positioning in three axes, contributing to improved positioning accuracy and productivity in semiconductor manufacturing. 【Application Scenarios】 - Wafer probing - Mask alignment - Fine processing - Inspection processes 【Benefits of Implementation】 - Quality improvement through high-precision positioning - High durability due to a frictionless motion platform - Miniaturization of equipment due to a thin design - Flexible response through three-axis operation

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Linear Stage L-505 with selectable motor for electronic device manufacturing

Contributes to the efficiency and stability of the assembly process with a compact, high-rigidity design and selectable motors (DC motor or stepping motor).

In the assembly process of electronic device manufacturing, the accurate positioning of components affects quality and productivity. Especially in the placement of small parts and precise assembly, high-precision positioning is essential. Positioning errors can lead to product defects and increased assembly time. The small linear stage 'L-505' allows for the selection of DC/stepping motors, achieving high-precision positioning. 【Usage Scenarios】 - Placement of electronic components - Component mounting on circuit boards - Assembly of precision instruments 【Benefits of Implementation】 - Improved quality through high-precision positioning - Reduced assembly time - Decreased defective products

  • Actuator
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Peltier Controller Driver TDC-1640/1660 Series

Adopts a unique circuit method for the Peltier drive power supply! Compact, high-efficiency, and high-precision driver.

The "TDC-1640/1660 Series" is a 1-channel digital controller for large-capacity Peltier elements (1200W/1800W types). It integrates the temperature conversion section, PID control section, and bipolar high-efficiency constant current drive section, allowing for temperature control of the Peltier element simply by supplying AC power. Furthermore, despite being a high-power type, it achieves a control stability of ±0.03°C. It also comes standard with an interface for computers, making it compatible with various systems. 【Features】 ○ Compact and High Precision  ・Adopts software digital control via microcontroller for high precision  ・Utilizes our unique circuit method for driving the Peltier power supply, achieving compactness, high efficiency, and high precision ○ High Speed  ・Developed specifically for Peltier temperature control  ・Control cycle is fast at 10 times per second ○ Versatility  ・Temperature sensors (Pt100, thermistor) can be selected and used from the display panel  ・Utilizes the computer interface to build various temperature control systems For more details, please contact us or download the catalog.

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Ant groove stage for semiconductor manufacturing

Ideal for semiconductor manufacturing where positioning accuracy is required! Fixed without any micro-movement and no need for a stopper.

In semiconductor manufacturing, high-precision positioning is essential. However, conventional groove-type stages can experience micro-movements and positional shifts due to stoppers, leading to decreased work efficiency and increased risk of product defects. The "Self-Lock Stage SLX Series" from Mirac Optical achieves high-precision positioning without micro-movement from the stopped position, thanks to its patented locking mechanism. 【Application Scenarios】 - Wafer transport and inspection processes in semiconductor manufacturing - Processing and assembly of precision components - Manufacturing processes for microdevices - Precision positioning in research and development - High-precision position control in automation systems 【Benefits of Implementation】 - Reduction in product defect rates due to improved positioning accuracy - Shortened work time by eliminating stopper operations - Increased work efficiency by preventing positional shifts from micro-movements - Enhanced product quality through high-precision positioning - Achieving stable positioning over extended periods

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Stage with a dovetail groove for machining.

Pursuing positioning accuracy! No need for a stopper, with no micro-movement. A stage that supports high-precision machining.

In precision machining, high positioning accuracy and stable fixation are essential. However, conventional dovetail stages have issues with micro-movements and positional shifts caused by stopper and clamp operations, which hinder machining accuracy. Mirac Optical's "Self-Lock Stage SLX Series" addresses these challenges by incorporating a patented self-locking mechanism, achieving high-precision machining. 【Usage Scenarios】 - High-precision component machining - Precise positioning in inspection processes - Tasks requiring long-term fixation - Work in limited spaces - Machining of complex shapes 【Benefits of Implementation】 By introducing the Self-Lock Stage SLX Series, various advantages can be expected, including improved machining accuracy, increased work efficiency, reduced working time, and decreased defective products.

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Ant groove type stage for automation systems

An automation system that requires positioning accuracy! No stopper needed, no micro-movement!

Introducing the "Self-Lock Stage SLX Series," the optimal solution for high-precision positioning tasks in automation systems. The SLX Series offers high positioning accuracy and stability by incorporating a patented self-locking mechanism. 【Application Scenarios】 - Manufacturing sites of precision equipment requiring high-precision positioning - Positioning of samples in automated inspection processes - Transporting and assembling parts with robotic arms - Precise position adjustment of experimental devices in research and development 【Benefits of Implementation】 - Improved product quality due to enhanced positioning accuracy - Reduced working time by eliminating manual stoppers and clamps - Suppression of defective products caused by misalignment - Enhanced stable operation and reliability of automation systems

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Ant Groove Stage for Research and Development

For experiments requiring positioning accuracy! Fixed without any micro-movement and no need for a stopper.

In high-precision experiments and inspection tasks in research and development, the positioning of samples is extremely important. Mirac Optical's "Self-Lock Stage SLX Series" features a patented self-locking mechanism that ensures secure fixation without the need for a stopper. It is an ant-style stage that enables high-precision positioning without micro-movement. 【Application Scenarios】 - Precise experiments and inspections in research and development - Microfabrication and assembly tasks - Stages for optical microscopes and measurement instruments - Positioning mechanisms in automation systems - Applications requiring stable positioning over long periods 【Benefits of Implementation】 - Improved positioning accuracy enhances the reliability of experimental results. - Elimination of stopper operations increases work efficiency. - Prevention of errors due to micro-movement or positional shifts enhances work safety. - A stylish design helps keep the experimental space looking neat.

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Manual stage equipped with a self-locking mechanism that has obtained a patent <Video now available>

Position misalignment can be avoided with precise measurements. Its slim design makes it easy to use even in tight spaces!

The "Ari-groove stage," which allows for a rich variety of combinations, has been enhanced with the addition of the 'SLX series,' which features a long stroke and does not require a stopper. The structure eliminates stoppers, achieving a slim design that is suitable for space-saving jigs and devices. It can also avoid positional misalignment in precision measurements and has a proven track record with manufacturers of production equipment for semiconductors and electronic components. 【Features】 ■ The stage can be moved using a hex wrench or hex screwdriver you have on hand. ■ Flexible position adjustment is possible with a wide movement range of ±15mm. ■ Installation in directions other than horizontal is also possible. ■ Available in both single-axis and dual-axis types. ■ Ideal for applications requiring high positioning accuracy for processing and inspection, as well as for applications where secure long-term fixation after position adjustment is desired. ★ We are currently showcasing a video that clearly introduces the features of our stages. *For more details about the product, please refer to the documentation. Feel free to contact us with any inquiries.

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Porous adsorption stage

Introducing products related to semiconductor manufacturing, including "vacuum chucks" and "heat comas"!

We would like to introduce our "Porous Adsorption Stage." The "Vacuum Chuck" is used to hold wafers during die bonding. Additionally, to solve issues such as neighboring chip lift-off or rotation during pickup, we recommend the "Porous Chuck." Furthermore, the "Heat Coma" allows for uniform adsorption across the entire surface without the need for adsorption holes by using porous materials in the work mounting area. 【Features】 <Vacuum Chuck> ■ Holds wafers during die bonding ■ Custom orders can accommodate various materials, shapes, and patterns <Porous Chuck> ■ Capable of uniformly holding wafer sheets (chips) across the entire surface ■ Eliminates warping of wafer sheets *For more details, please refer to the related links or feel free to contact us.

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