Current Sensors(ac) - List of Manufacturers, Suppliers, Companies and Products

Current Sensors Product List

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[Electronic Components] Current Sensor L32 Series ≪Rated Current 50–400A≫

Low heat generation even at high frequency! Compact design and sulfur resistance make it an ideal current sensor for medium-capacity general-purpose inverters.

The Tamura Manufacturing Company's current sensor "L32 Series" is an optimal current sensor for medium-capacity general-purpose inverters, featuring a ferrite core that reduces high-frequency heating. There are through-type and busbar-compatible types available. 【Main Features】 ■ Compact design, single power supply +5V, with input/output reference function ■ Ferrite core reduces high-frequency heating ■ Six models in one series support rated currents from 50 to 400A ■ Busbar-compatible models available (50A, 100A) ■ Wide measurement range (saturation current 150 to 600A) ■ PCB mountable ■ Through part dimensions: □15×8mm

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[Electronic Components] Servo-type Current Sensor S29 Series ≪Supports 1000A≫

Ideal for large UPS and renewable energy systems!! High-precision servo-type sensor compatible with high current.

The Tamura Manufacturing Company's current sensor "S29 Series" is a high-performance current sensor with a magnetic balance method that supports large currents and features a multi-structure that can be mounted horizontally or vertically, offering excellent cost performance. It is ideal for large-capacity UPS systems and general-purpose inverters, rated for 1000A. 【Main Features】 ■ Ideal for large-capacity UPS systems and general-purpose inverters ■ Multi-structure supporting large currents, can be mounted horizontally or vertically ■ Maximum measurable current: 2100A (RL ≦ 4Ω), rated current: 1000A ■ Bolt fastening for secondary side CN (3 types) S29S1T0D24Z : MOLEX/39-28-8040, Sn-plated S29S1T0D24ZM : MOLEX/38-00-6293, Sn-plated S29S1T0D24ZJ : JST/BH3P-VH-1, Sn-plated ■ Through-hole dimensions: φ38.5

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World Current Sensor Market Research Report (2023-2028)

World Market for Current Sensors (2023-2028): Hall Effect Sensors, Fiber Optic Current Sensors, Inductive Current Sensors

Mordor Intelligence's report forecasts that the global current sensor market will expand at a CAGR of 8% during the forecast period. This document investigates the global market for current sensors and summarizes the current state and trends of the market. It includes sections on introduction, research methodology, executive summary, market insights, market trends, analysis by type (Hall effect sensors, fiber optic current sensors, inductive current sensors), analysis by end-user (automotive, home appliances, telecommunications & networking, medical, others), regional analysis (United States, Canada, Germany, United Kingdom, France, India, China, Japan), competitive landscape, investment analysis, market opportunities, and future trends.

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[Use Case] Detection of Drill Breakage Precursors [Failure Precaution Detection / Equipment Maintenance]

Constantly monitoring graphs! Introducing examples of reducing unexpected stoppages in production lines.

We would like to introduce a case where the AC current sensor from "ParaRecolectar" was used to detect signs of a drill breaking before it actually happened. In deep hole machining, drills were either replaced regularly or after they broke, leading to sudden equipment stoppages due to unexpected drill breakage. By applying this case, it becomes possible to detect different waveforms during normal operation and send a stop signal to the equipment, allowing it to be halted before the tool breaks. [Case Summary (Partial)] ■Challenges - We want to know the signs before the drill breaks in the machining equipment. - We want to prevent sudden equipment stoppages. ■Implementation Method - Measure the main spindle motor current of the machining equipment using an AC current sensor. *For more details, please download the PDF or feel free to contact us.

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[Use Case] Visualization of Power Consumption per Unit with Retrofitted Sensors [Energy Saving / Unit Consumption]

Reduction of entry errors! Introducing examples of visualizing electricity consumption by unit of equipment.

We will introduce a case where the AC current sensor and pulse input of "ParaRecolectar" were used to visualize electrical power with an add-on sensor. In measuring electrical power, the task of recording calculated results by operators had become a significant daily burden. As a result of the implementation, automatic measurement by the sensor became possible, leading to a reduction in labor hours for operators and the ability to identify bottlenecks. [Case Overview (Partial)] ■ Issues - Want to visualize electrical power per unit - Labor hours for aggregation are high - There are no sensors in the desired aggregation locations ■ Implementation Method - Automatic measurement with add-on sensors *For more details, please download the PDF or feel free to contact us.

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[Use Case] Visualization of Electricity Consumption [Energy Saving / Carbon Neutral]

Accurate data recording by sensors! Introducing examples of visualizing electricity usage for each facility.

We will introduce a case where we used the AC current sensor from "ParaRecolectar" to identify neck equipment and reduce power costs. In measuring electricity usage, there were challenges such as a lack of manpower to conduct investigations and the high costs associated with introducing measuring devices. As a result of the implementation, we were able to see the trends in daily electricity usage and identify the time periods with high consumption. [Case Overview (Partial)] ■Challenges - Want to reduce electricity usage - Unable to narrow down countermeasure processes ■Implementation Method - Automatic measurement with retrofitted sensors *For more details, please download the PDF or feel free to contact us.

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