Piezo Controller M-26110C(S) Series
Piezo Controller Closed-Loop Control
Compatible with capacitance sensor (C) and strain gauge sensor (S) Number of channels: 1ch, 3ch Output voltage: -50 to 150V
- Company:メステック
- Price:Other
Last Updated: Aggregation Period:Aug 05, 2026~Sep 01, 2026
This ranking is based on the number of page views on our site.
Last Updated: Aggregation Period:Aug 05, 2026~Sep 01, 2026
This ranking is based on the number of page views on our site.
Last Updated: Aggregation Period:Aug 05, 2026~Sep 01, 2026
This ranking is based on the number of page views on our site.
2191~2220 item / All 2434 items
Piezo Controller Closed-Loop Control
Compatible with capacitance sensor (C) and strain gauge sensor (S) Number of channels: 1ch, 3ch Output voltage: -50 to 150V
Rectifies the input from the AC power source to DC and outputs to the electromagnetic chuck. Equipped with a demagnetization function to reduce the residual holding force of the electromagnetic chuck.
● Can be used with all Fast Tech electromagnetic chucks ● Output voltage is displayed on an LED ● Output voltage is displayed on an LED ● Please select a controller that has an output of more than 1.5 times the input current of the electromagnetic chuck
A wide detection range of 40:1! Broad compatibility with over 60 rated models.
We handle the "Web Tension Control" manufactured by CMC Corporation. The ultra-line series of web tension detection transducers (load cells) provided by CMC Corporation has a wide detection range of 40:1, ensuring high responsiveness and accuracy required by servo control systems, from extremely low tension to high ranges, contributing to increased speed and productivity like never before. 【Features】 ■ An unprecedented wide detection range of 40:1 ■ Over 60 rated model options available ■ Compatible with all applications *For more details, please feel free to contact us. You can also view our company brochure from the PDF download.
Maintains food freshness and suppresses quality deterioration. Remote-controlled oxygen concentration management system.
In the food storage industry, proper environmental management is essential to maintain food quality and extend shelf life. In particular, oxygen promotes the oxidation of food, leading to a loss of freshness and flavor. Improper management of oxygen concentration can result in food deterioration and waste, potentially causing significant losses. Our Inert Gas Oxygen Concentration Control System (ICS) precisely monitors the oxygen levels in food storage facilities and contributes to preserving food freshness by introducing inert gases. 【Usage Scenarios】 - Food storage facilities - Refrigerated and frozen warehouses - Food processing plants 【Benefits of Implementation】 - Preservation of food freshness - Suppression of quality degradation - Extension of shelf life - Reduction of waste loss
Reduce the fire risk in data centers! Monitor oxygen levels and optimize the amount of inert gas introduced.
In data centers, the proper operation of fire extinguishing systems is essential to minimize damage in the event of a fire. Particularly with inert gas extinguishing systems, it is important to properly manage the oxygen concentration in the room before the gas is released to maximize extinguishing effectiveness. If the oxygen concentration is not properly managed, the extinguishing effect may decrease, or it may lead to equipment malfunction. Our Inert Gas Oxygen Concentration Control System (ICS) monitors the oxygen concentration and optimally controls the amount of inert gas introduced, thereby reducing the fire risk in data centers. 【Usage Scenarios】 - Fire extinguishing systems in data centers - Server rooms, network equipment rooms - Areas with high fire risk 【Benefits of Implementation】 - Improved extinguishing effectiveness during a fire - Prevention of equipment malfunction - Enhanced safety - Reduction of VOC emissions
We prevent the deterioration of artworks and protect valuable collections.
In facilities that handle artworks, such as art museums and galleries, the long-term preservation of exhibits is crucial. Artworks can deteriorate when exposed to oxygen, humidity, and harmful substances. In particular, oxygen promotes oxidation, which can lead to discoloration and cracking. Our Inert Gas Oxygen Concentration Control System (ICS) properly manages the oxygen levels within display cases, helping to suppress the deterioration of artworks. 【Usage Scenarios】 * Inside display cases * Storage rooms * During packaging and transportation 【Benefits of Implementation】 * Long-term preservation of artworks * Reduced risk of deterioration * Maintenance of exhibit value
Protect the quality of wine! Monitor oxygen levels and optimize the amount of inert gas injected.
In the wine cellar industry, managing oxygen concentration is crucial for maintaining wine quality. Oxygen promotes the oxidation of wine, which can compromise its flavor and aroma. Proper oxygen concentration management is essential for the long-term storage of wine. Our Inert Gas Oxygen Concentration Control System (ICS) monitors oxygen levels and controls the amount of inert gas introduced, preventing the degradation of wine quality. 【Usage Scenarios】 * Inside wine cellars * Wine storage facilities * Wine bottling processes 【Benefits of Implementation】 * Prevention of wine oxidation * Stabilization of quality * Achievement of long-term storage
Contributing to the quality preservation of pharmaceuticals! Monitoring oxygen concentration and controlling inert gas flow.
In the pharmaceutical industry, strict management of oxygen concentration in the manufacturing environment is required to ensure product quality and safety. In particular, controlling the environment with inert gases is essential to prevent the oxidation and degradation of active pharmaceutical ingredients and to maintain product stability. Inadequate management of oxygen concentration can lead to a decline in product quality and a reduction in shelf life. Our Inert Gas Oxygen Concentration Control System (ICS) contributes to maintaining the quality of pharmaceuticals by monitoring oxygen concentration and precisely controlling the flow rate of inert gas. 【Usage Scenarios】 - Inert gas purging in the pharmaceutical manufacturing process - Oxygen concentration management in pharmaceutical storage areas - Oxygen concentration management during the filling process 【Benefits of Implementation】 - Reduces the risk of pharmaceutical quality deterioration - Contributes to extending product shelf life - Improves the safety of the manufacturing process
Four solenoid valves can be remotely operated! Suitable for monitoring oxygen concentration and controlling the flow rate of inert gases.
In the chemical plant industry, handling flammable gases and combustible materials makes minimizing the risk of explosion accidents the top priority. Particularly, ensuring the safety of process equipment requires proper management of oxygen concentration. As the oxygen concentration increases, the risk of explosion rises, necessitating purging with inert gases and monitoring of oxygen levels. Our Inert Gas Oxygen Concentration Control System (ICS) supports the safe operation of plants. 【Usage Scenarios】 - Plants handling flammable gases and combustible materials - Equipment requiring explosion limit management through N2 purging - Situations where monitoring oxygen concentration within process vessels is desired 【Benefits of Implementation】 - Reducing the risk of explosion accidents - Improving plant safety - Reducing VOC emissions
Remote control of four solenoid valves! Reducing fire risk through oxygen concentration monitoring and inert gas flow control.
In the lithium-ion battery industry, safety in the manufacturing process is one of the most important issues. In particular, managing the oxygen concentration in the battery manufacturing and storage environment is essential to suppress the risk of ignition. Improper management of oxygen concentration can lead to performance degradation of the batteries and, in the worst case, ignition accidents. Our Inert Gas Oxygen Concentration Control System (ICS) monitors oxygen levels and precisely controls the flow rate of inert gas to create a safe environment. 【Usage Scenarios】 - Maintaining an inert gas atmosphere in the lithium-ion battery manufacturing process - Managing oxygen concentration in battery storage warehouses - Reducing explosion risks in battery disposal facilities 【Benefits of Implementation】 - Improved safety through reduced ignition risk - Stabilization of product quality - Reduced environmental impact by decreasing VOC emissions
Suppressing material degradation through oxygen concentration monitoring and inert gas flow control.
In the archive industry, it is important to prevent deterioration caused by oxygen for the long-term preservation of materials. In particular, paper and film materials can oxidize when exposed to oxygen, leading to discoloration and degradation. Maintaining an appropriate inert gas environment is essential to extend the lifespan of materials and connect valuable information to the future. Our Inert Gas Oxygen Concentration Control System (ICS) optimizes the preservation environment by monitoring oxygen levels and controlling the amount of inert gas introduced. 【Use Cases】 - Preservation of materials in museums and art galleries - Storage of ancient documents and rare books in libraries - Preservation of films and photographs in archive facilities 【Benefits of Implementation】 - Suppresses material degradation, enabling long-term preservation - Optimizes the use of inert gas, contributing to cost reduction - Monitors oxygen levels in real-time, allowing for early detection of anomalies
Remote control of four solenoid valves! Contributing to the efficiency of pest control.
In the field of agriculture, pest control is crucial for maintaining crop quality and ensuring safety. Particularly in pest control within enclosed spaces, it is essential to manage oxygen levels appropriately and to efficiently introduce inert gases. Improper management of oxygen levels can lead to reduced pest control effectiveness and potential damage to crops. Our Inert Gas Oxygen Concentration Control System (ICS) monitors oxygen levels and controls the flow rate of inert gas, achieving both efficient pest control and crop safety. 【Usage Scenarios】 - Pest control in warehouses and containers - Pest management in agricultural product storage facilities - Pest control in enclosed greenhouses 【Benefits of Implementation】 - Improved effectiveness of pest control - Preservation of crop quality - Optimization of inert gas usage - Increased work efficiency
Remote control of four solenoid valves! Ideal for monitoring oxygen concentration and controlling inert gas flow.
In the field of space development, it is important to protect precision instruments such as rockets and satellites from the harsh environment of outer space. In particular, managing the oxygen concentration inside the equipment is essential to reduce the risks of explosion and corrosion, ensuring the safety of the instruments. Improper management of oxygen concentration can lead to equipment failure or performance degradation. Our Inert Gas Oxygen Concentration Control System (ICS) properly manages the purging amount of inert gas and controls the explosion limits, thereby enhancing the safety of equipment in space development. 【Usage Scenarios】 * Manufacturing and storage of rockets and satellites * Oxygen concentration management for space experiment facilities * Environmental control during the transportation of precision instruments 【Benefits of Implementation】 * Reduced risk of explosion and corrosion of equipment * Increased longevity of equipment * Improved safety
Not taught in school! A column introducing the specific operation of DMA transfer.
Using a USB controller as an example, I will explain the specific operation of DMA transfers. Let's consider a case where a write operation is performed on the built-in FIFO of a DMA slave-type USB controller using a general-purpose DMAC. Typically, the capacity of the FIFO built into a USB controller is not very large, generally accommodating only about two packets at most. *For detailed content of the column, you can view it from the related links. Please feel free to contact us for more information.*
By combining a nitrogen purge hot plate, it is possible to achieve precise temperature processes at a low cost.
The programmable temperature controller "PCC107FL3" is a controller suitable for fluxless soldering hot plates. It is designed for a three-channel low-oxygen concentration process. When combined with MSA Factory's nitrogen purge hot plate, it enables precise temperature processes at a low cost. 【Features】 ○ Temperature controller with nitrogen gas digital flow meter (3 channels) ○ Constant temperature type: PCC100FL3 ○ When combined with the nitrogen purge hot plate, it allows for precise temperature processes at a low cost. For more details, please contact us or download the catalog.
Image × AI × Security on a single chip! MIPI-compatible RISC-V SoC ESP32-P4 has arrived!
The ESP32-P4 is a high-performance RISC-V-based SoC developed by ESPRESSIF, ideal for next-generation embedded devices, HMI, and edge AI applications. It standardly supports MIPI CSI and DSI interfaces, achieving 1080p class camera input and high-definition display output on a single chip. With its built-in ISP and CNN accelerator, it can process image processing and simple AI recognition functions locally. Additionally, it is equipped with robust security features such as RSA, AES, HMAC, Secure Boot, and TRNG, supporting the development of secure IoT products. It offers a rich set of peripheral functions, including USB-OTG (High Speed), Ethernet, SDIO, PWM, and 55 GPIO, accommodating a wide range of applications. It is compatible with the free development environment ESP-IDF, making it suitable for first-time RISC-V implementations. This SoC is perfect for development environments that require space-saving and high functionality.
Aroyo Instrument Co. TEC Source Temperature Controller [Series 5240/5300/5400]
■Multi-purpose use ■Cost-effective and high performance ■Adjustable PID settings ■Computer interface, high-precision temperature, current value management, and voltage measurement available
◆Drive current +/-2.5A~+/-10A◆Compatible with thermistors, RTDs, and IC sensors◆Adjustable current limit
Compact Package 0.002℃ Linear Stability Operating Voltage +5V~+15V Wavelength Electronics' MPT series is a highly space-efficient temperature controller with excellent temperature stability. This product model is intended for customers currently using the same product. However, if you are using a new 2.5A temperature controller in your device, please use Model: PTC2.5K-CH (which incorporates new technology). Wavelength Electronics, based in the United States, manufactures and sells laser controllers and temperature controllers. Their low-noise drivers for Quantum Cascade Lasers (QCL) and benchtop LD controllers and temperature controllers are adopted by various universities and research institutions. They also offer a wide range of OEM module-type and IC package products.
A modular design that allows for various combinations! Ideal for shape control.
In the vacuum forming industry, precise pressure control is essential for shape control, which significantly affects product quality. Molding defects can reduce product yield and potentially lead to increased costs. The pressure controller CPC6050 accurately controls two pressure systems and accommodates a wide range with removable sensors, contributing to solving the challenges of shape control in vacuum forming. 【Usage Scenarios】 - Pressure control for vacuum forming machines - Optimization of the molding process - Quality management of products 【Benefits of Implementation】 - Reduction of molding defects through high-precision pressure control - Improvement of product yield - Cost reduction
Controllers that can be used even in harsh mobile applications
・Programming using C language or IEC61131-3 (Neuron Power Engineer - formerly logi.CAD 3) ・Designed to enable communication between different networks and nodes for mobile devices ・Compliant with safety applications up to SIL2 (compliant with IEC 61508:2010) or PLd (compliant with EN ISO 13849-1:2015) ・Compliant with the Cyber Resilience Act (CRA), etc.
It features a compact design for precise speed control, along with a rich array of interfaces and user-friendly PC software.
The FAULHABER speed controller, SC 1801 F, can be set from a PC using PWM. It allows for speed control. It can be operated with a supply voltage of 4 ... 18 (VDC) and a maximum current of 2 (A).
Diverse motion control is possible with low volume. A rich interface and user-friendly PC software are available.
The FAULHABER motion controller V2.5, MCBL 3002 S AES, is equipped with RS232/CAN interfaces and can drive BL AES type motors with a supply voltage of 8 ... 30 (VDC) and a maximum current of 3 (A).
Diverse motion control is possible with low volume. A rich interface and user-friendly PC software are provided.
The FAULHABER motion controller V2.5, MCBL 3002 F AES, is equipped with RS232/CAN interfaces and can drive BL AES type motors with a supply voltage of 8 ... 30 (VDC) and a maximum current of 3 (A).
Diverse motion control is possible with low volume. A rich interface and user-friendly PC software are available.
The FAULHABER motion controller V2.5, MCBL 3006 S AES, is equipped with RS232/CAN interfaces and can drive BL AES type motors with a supply voltage of 12 ... 30 (VDC) and a maximum current of 10 (A).
Diverse motion control is possible with low volume. A rich interface and user-friendly PC software are provided.
The FAULHABER motion controller V2.5, MCDC 3002, is equipped with RS232/CAN interfaces and can drive DC type motors with a supply voltage of 5 ... 30 (VDC) and a maximum current of 3 (A).
Diverse motion control is possible with a low volume. A rich interface and user-friendly PC software are provided.
The FAULHABER motion controller V2.5, MCDC 3006 S, is equipped with RS232/CAN interfaces and can drive DC type motors with a supply voltage of 12 ... 30 (VDC) and a maximum current of 10 (A).
Diverse motion control is possible with low volume. A rich interface and user-friendly PC software are provided.
The FAULHABER motion controller V2.5, MCLM 3002 S, is equipped with RS232/CAN interfaces and can drive LM type motors with a supply voltage of 8 ... 30 (VDC) and a maximum current of 3 (A).
Diverse motion control is possible with low volume. A rich interface and user-friendly PC software are provided.
The FAULHABER motion controller V2.5, MCLM 3002 P, is equipped with RS232/CAN interfaces and can drive LM type motors with a supply voltage of 8 ... 30 (VDC) and a maximum current of 3 (A).