The catalog for the McMillan liquid flow controller U802 has been newly registered.
For details, please download the catalog.

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Contact Us OnlineThe U803/U804 series is a micro flow controller for low viscosity liquids. The minimum range is available from 7 to 50 mL/min.
The U803/U804 series is a micro flow controller for low-viscosity liquids. There are five types available, with a minimum range of 7 to 50 mL/min and a maximum range of 100 to 1000 mL/min. The combination of a Belton-type micro turbine wheel (patented) and a proportional control valve enables excellent reproducibility and accurate flow control over the long term. It is designed for ultra-clean applications and generates no particles. The connection uses flare fittings, eliminating concerns about leaks. The length of the electrical cable, power supply, and output can be selected from several options, making it easy to use for various applications.
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Free membership registrationThe liquid flow sensor U701/702/705/706 series measures low viscosity liquids from a low flow rate of 15 mL/min to up to 50 L/min.
This product series is a sensor capable of measuring low-viscosity liquids from a low flow rate of 15 mL/min to a large flow rate of up to 50 L/min. It employs a Belton-type micro turbine wheel (patented) that enables long-term accurate measurements with excellent reproducibility. The design is adapted for ultra-clean applications, ensuring no particle generation. The connection uses flare fittings to prevent fluid from entering the threaded parts. For models U705/706, it is also possible to change to the Super 300 series (compatible with Nippon Pillar) as an option. The length of the electrical cable, power supply, and output can be selected from several options, making it easy to use for various applications.
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Free membership registrationThe U707/708 series liquid flow sensors are available for low-viscosity liquids, ranging from a small flow rate of 7 mL/min to a large flow rate of 10 L/min.
The U707/708 series is a sensor capable of measuring low-viscosity liquids from a small flow rate of 7 mL/min to a large flow rate of up to 10 L/min. It employs a Belton-type micro turbine wheel (patented) that allows for long-term accurate measurements with excellent reproducibility. The design is adapted for ultra-clean applications, ensuring no particle generation. The connection uses flare fittings to prevent fluid from entering the threaded parts. The length of the electrical cable, as well as power supply and output options, can be selected from several choices, making it easy to use for various applications.
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Free membership registrationThe model U709 can accurately measure corrosive liquids from a low flow rate of 7 mL/min to 1000 mL/min in both intermittent and continuous operation.
The Model U709 series is a flow sensor that covers five measurement ranges for corrosive liquids, from a low flow rate of 7 mL/min to approximately 1000 mL/min. It is capable of accurately measuring liquids in both intermittent and continuous operation. It can detect liquids with a pump discharge time of 500 msec and a discharge volume starting from 1 mL. The wetted parts are made of Teflon, Kalrez, and sapphire. The sensor employs a Pelton-type micro-turbine wheel (patented), making it suitable for ultra-clean applications. It generates no particles, achieves excellent reproducibility, and allows for accurate long-term measurement of corrosive chemicals and solvents. The pressure connection uses a flare-type fitting for easy connection, designed to prevent fluid from entering the threaded area. An 1.8 m cable is included for electrical connection. Power supply and output options can be selected from several choices, allowing for use in various applications.
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Free membership registrationFourteen ranges are available from 0 to 20 sccm/min for low flow to 0 to 500 slm/min for high flow. The measurement accuracy is ±1.5% FS.
The MacMillan Company's Mass Flow Meter 50 series covers a measurement range of 0 to 20 sccm/min for small flow rates to 0 to 500 SL/min for large flow rates, with a measurement accuracy of ±1.5% FS across 14 different ranges, for clean and dry gases. The flow detection sensor employs a thermal mass flow sensor (patented) to achieve minimal zero drift, providing excellent long-term stability, reproducibility, and fast response. All models are traceable to NIST. Depending on the application, it is possible to select materials for the main body, fittings, electrical connections, power voltage, and more, allowing for compatibility with various applications. Furthermore, models 50D/50SD feature a linear DC output of 0 to 5V corresponding to flow rates and measure and display instantaneous flow with a 3-1/2 digit readout.
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This is a flow sensor that can accurately measure flow rates from 15 mL to 10 L/min. Made of PTFE, it has excellent chemical resistance and does not generate particles.
Model 106 is a sensor that can measure low-viscosity liquids from a low flow rate of 15 mL/min to a large flow rate of 10 L/min. It employs a Belton-type microturbine wheel (patented) that enables long-term accurate measurements with excellent reproducibility. The design is adapted for ultra-clean applications, ensuring no particle generation. The standard connection uses PFA-type tube fittings. The sensor's power supply, output type, fitting size, and cable length can be selected according to various applications. Flare fittings are also available as an option.
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Free membership registrationThe model 106F is a sensor that can measure low viscosity liquids from a low flow rate of 15 mL/min to a large flow rate of up to 50 L/min.
Model 106F is a sensor that can measure low viscosity liquids from a low flow rate of 15 mL/min to a large flow rate of up to 50 L/min. It employs a Belton-type micro turbine wheel (patented), allowing for long-term accurate measurements with excellent reproducibility. The design is adapted for ultra-clean applications, ensuring no particle generation. The connection uses flare fittings to prevent fluid from entering the threaded parts. An electrical connection is provided with a 1.8 m cable, and the power supply and output can be selected based on the application.
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Hotron Inc. has launched its new product, the "Vehicle Count Sensor CCS3"! This product is a ceiling-mounted sensor that combines infrared and radar technology. It reliably detects vehicles in both directions with a single unit, accommodating traffic during congestion and vehicle passing, thus achieving efficient occupancy management in large parking lots. Additionally, it can be utilized for exit warning purposes in addition to vehicle counting, contributing to the safe and smooth operation of parking facilities. 'Features' - Improved detection performance against changes in road surface during rainy weather by using both infrared and radar. - Equipped with IP67 waterproof and dustproof performance, making it effective even in salt damage areas. - Various settings can be configured from a dedicated app (for Android devices), with current settings easily visible at a glance. - The base dimensions are the same as the previous model "CCS2," allowing for smooth replacement of existing equipment. *For more details, please refer to the product information, catalog download, or contact us.*
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On August 28, 2026 (Friday), I participated in the "AMD Embedded Computing Summit Tokyo 2026" and showcased a "Gesture Demo" as a partner of AMD. The demonstration introduced a configuration that combines gesture recognition using OpenCV, status reporting with LLM, and one-axis motor control using INtime 7.2 and RSI-ECAT, enabling collaboration between AI, image processing, and real-time control on a single PC. We presented a next-generation PC-based industrial control system that integrates AI, image processing, and real-time control on one PC. <Overview of Demo Participation> https://www.mnc.co.jp/INtime/AMDxINtime/AMDEcsTokyoResults.html <Actual Demo Video> https://youtu.be/JmZke75_y0s <AMD CPU + INtime RTOS Introduction Page> https://www.mnc.co.jp/INtime/AMDxINtime/amdxintime.html #PC #RealTimeOS #IndustrialPC #AI
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This time, I would like to talk a little about current measurement in the switching evaluation of power semiconductors (including power devices and power modules).
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From measurement instruments to point cloud processing and analysis software, the latest solutions come together! We propose numerous cutting-edge technologies and products that solve on-site challenges in a one-stop manner. It's not just about seeing; it's about experiencing, consulting, and bringing it back to the field. At the venue, we will showcase the latest measurement instruments and solutions, including 3D laser scanners, handheld 3D scanners, LiDAR drones, and 3DGS (Gaussian Splatting). Additionally, we will announce surprise new products!
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We have updated the article on the website of the semi-custom system construction "Select Beam." When planning factories, logistics warehouses, and stores, "system construction" has become an effective means of achieving cost reduction and shortening construction periods. The rationality of system construction through thorough standardization is very high, and it is adopted in many projects. However, due to the differing characteristics of each manufacturer, many business owners find themselves wondering, "Which manufacturer is suitable for our plans?" and "Is it really optimal compared to conventional methods?" In this article, we will compare and introduce the basic knowledge of the advantages and disadvantages of system construction, as well as recommend manufacturers by purpose in a ranking format. ■ Semi-Custom System Construction "Select Beam" This is a unique method by Sakura Structure, and it is a "third option" that is less expensive than system construction. It is the most suitable method for low-rise long-span buildings such as stores, warehouses, factories, and logistics facilities, as well as high-rise buildings like hotels.
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