List of Pharmaceutical and food related products
- classification:Pharmaceutical and food related
106~120 item / All 34244 items
It won't break even after 1 million repetitions! A mat switch with reliable operation, high durability, and low price. Suitable for options in machine tools as well. Please consult us about delivery t...
- Sensors
We can accommodate high resistance over 10,000 ohms, with diameters ranging from approximately 30 mm to 8 inches, and we also offer thinning and chip processing arrangements!
- Other semiconductors
- Processing Contract
- Wafer
We propose primary and secondary gowns used in clean rooms and CPC (Cell Culture Processing Facilities)!
- Lab coat, clothing, shoes
- Cleanroom Shoe Covers
- Other safety and hygiene products
A comprehensive lineup of protective clothing that meets diverse safety and security needs!
- Other safety and hygiene products
- Lab coat, clothing, shoes
- Other safety and protection products
Easily introduce monitoring with retrofitted installation. Support for reducing the burden on the site and safety measures without contact or the need for cameras.
- Other Sensors
- Area Sensor
- Safety Sensors
Support for non-contact awareness of occupancy in meeting rooms and private rooms. Streamlining office monitoring and space management without the need for cameras.
- Area Sensor
- Safety Sensors
- Other Sensors
Understanding occupancy in meeting rooms and private rooms without using cameras | Introducing MotionCatch's applications for offices | You can also download product materials and comparison charts.
We would like to introduce MotionCatch as a monitoring sensor that can be used to understand office occupancy. Using millimeter-wave radar and AI, it non-contactly detects human movement and occupancy status. Since it does not use a camera and does not record images, it can be considered for installation in places where cameras are difficult to place, such as conference rooms, private rooms, and work areas. 【Suitable for the following situations】 - Understanding whether conference rooms are actually in use - Monitoring occupancy and absence in private rooms and work areas - Checking if absences are prolonged It can be installed on walls or ceilings and has a design that easily blends into existing spaces. Product materials and a comparison table of monitoring sensors can be downloaded from the related catalog below. We also welcome inquiries regarding the conditions for rooms where installation is possible and the number of units, so please feel free to contact us.
The strength is determined by the variance. Visualize quality variations through testing before mass production.
- Emulsifier/Disperser
- Vacuum degassing machine
- Dispersion/emulsification equipment/homogenizer
What are the reasons for changes in results from the lab to mass production? Causes and countermeasures for the deterioration of distributed quality during scale-up.
Despite obtaining good dispersion results in the lab, the challenge of unstable quality upon mass production occurs in many settings. The main cause of this is that the dispersion conditions are not replicated due to differences in scale. In lab equipment, the smaller size leads to higher energy density, making shear and flow more uniform, while in mass production equipment, the larger scale often results in insufficient dispersion energy at the same rotational speed and processing time. Additionally, differences in equipment structure and flow patterns can cause variations in the shear history and residence time experienced by particles, leading to differences in the dispersion state. Furthermore, simple scale-up does not ensure that critical parameters such as flow rate, residence time, and shear intensity match, making it difficult to reproduce the same results as in the lab. To address these challenges, it is essential to focus on process design based on dispersion energy density and flow conditions rather than merely increasing equipment size. By designing the system so that particles pass through the processing area under consistent conditions, it is possible to achieve reproducible dispersion quality even when the scale changes, as seen in inline continuous processing.
Contributes to improving dispersion efficiency and reproducibility in the pre-mixing process before bead milling.
- Emulsifier/Disperser
- Vacuum degassing machine
- Dispersion/emulsification equipment/homogenizer
What is decentralized process design? Key points for stabilizing quality.
In dispersion engineering, stable quality cannot be achieved solely based on the performance of the equipment. What is important is the overall design of the process, taking into account material properties and process conditions. This is referred to as dispersion process design. Dispersion quality is determined not only by the strength of shear but also by multiple factors such as flow state, residence time, and method of input. If these conditions are not properly designed, localized agglomeration or variation can occur, making it difficult to maintain stable quality. For example, poor wetting during powder input or the occurrence of stagnant areas due to flow bias can lead to clumping or dispersion issues. Additionally, even if the shear energy is sufficient, if it does not act uniformly on all particles, differences in dispersion state will arise. Therefore, in dispersion processes, it is crucial to design "flow," "shear," and "processing time" as an integrated system. This allows for all particles to receive the same dispersion history, achieving uniform and highly reproducible dispersion quality. In particular, inline continuous processing has the advantage of maintaining consistent conditions within the flow, making it easier to ensure reproducibility in process design. Dispersion process design is a key concept for stabilizing quality and successfully scaling up.
Monitoring breathing and heart rate non-contact. Supporting condition assessment while considering privacy without the need for a camera.
- Safety Sensors
- Other Sensors
- Area Sensor
A monitoring sensor that can detect changes in single residents non-contactly, allowing for quick awareness of any emergencies. It can be retrofitted to existing properties without the need for camera...
- Safety Management
- Sensors
- Other Sensors
Resolve issues of not dissolving and clumping in advance. Test the dispersibility of the protein.
- Emulsifier/Disperser
- Vacuum degassing machine
- Dispersion/emulsification equipment/homogenizer
What are the reasons for changes in results from the lab to mass production? Causes and countermeasures for the deterioration of distributed quality during scale-up.
Despite obtaining good dispersion results in the lab, the challenge of unstable quality upon mass production occurs in many settings. The main cause of this is that the dispersion conditions are not replicated due to differences in scale. In lab equipment, the smaller size leads to higher energy density, making shear and flow more uniform, while in mass production equipment, the larger scale often results in insufficient dispersion energy at the same rotational speed and processing time. Additionally, differences in equipment structure and flow patterns can cause variations in the shear history and residence time experienced by particles, leading to differences in the dispersion state. Furthermore, simple scale-up does not ensure that critical parameters such as flow rate, residence time, and shear intensity match, making it difficult to reproduce the same results as in the lab. To address these challenges, it is essential to focus on process design based on dispersion energy density and flow conditions rather than merely increasing equipment size. By designing the system so that particles pass through the processing area under consistent conditions, it is possible to achieve reproducible dispersion quality even when the scale changes, as seen in inline continuous processing.
Non-contact monitoring of guest rooms. Supporting fall and sudden change measures, with consideration for privacy and no need for cameras.
- Sensors
- Area Sensor
- Other Sensors
Non-contact monitoring of hospital rooms, private rooms, and restrooms. Supports early detection of falls and sudden changes, with consideration for privacy and no need for cameras.
- Sensors
- Area Sensor
- Other Sensors
Numerous use cases in factory automation lines! With dust-proof features, labels and ink do not scatter, making it suitable for use in clean room environments.
- Commercial printers
- Labeller
- Labeller