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circuit - メーカー・企業39社の製品一覧とランキング

更新日: 集計期間:Sep 17, 2025~Oct 14, 2025
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circuitのメーカー・企業ランキング

更新日: 集計期間:Sep 17, 2025~Oct 14, 2025
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  1. オーエン Saitama//Electronic Components and Semiconductors
  2. アピステ Osaka//Industrial Machinery
  3. 山下マテリアル Kanagawa//Electronic Components and Semiconductors
  4. 4 null/null
  5. 5 東和製作所 Tokyo//Resin/Plastic

circuitの製品ランキング

更新日: 集計期間:Sep 17, 2025~Oct 14, 2025
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  1. [Data] Chiller Handbook 2 - Key Points of Piping as Seen in Piping System Diagrams / Apiste アピステ
  2. Flexible substrates for medical devices: long lengths / slitting / ultra-fine circuits 山下マテリアル
  3. CO2 two-way solenoid valve for defrost circuits in commercial eco-cute systems.
  4. 4 Magnetic products circular opposing magnetic circuit 東和製作所
  5. 4 General Blood Pressure Monitor Cuff Connector Guide CPC(コールダー・プロダクツ・カンパニー)・ジャパン・オフィス

circuitの製品一覧

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[Data] Chiller Handbook 2 - Key Points of Piping as Seen in Piping System Diagrams / Apiste

Various components included in the piping route. This time, we will clearly explain the points regarding component selection and installation locations based on the piping system diagram!

■Points for Piping Around Liquid Tanks When the pump is located below or above the liquid level, the components that should be installed in the piping route will vary slightly. Based on such cases, we will explain component selection and points to note, including other examples. ■Points for Piping Around Chillers When using a chiller, a bypass circuit is almost essential and is commonly installed. We will explain what kind of bypass kit is good, as well as other points to consider, using illustrations. For more details, please refer to the PDF materials or feel free to contact us.

  • チラー便覧2.png
  • Chiller

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『LM8364』

Micro Power Low Voltage Detection Circuit 'LM8364'

The LM8364 series is an ideal micro-power low-voltage detection circuit for use in battery-operated microprocessor-based systems, where extending battery life is a critical requirement. Threshold voltages in the range of 2.0V to 4.5V are available with an active-low open-drain output. These devices feature a very low quiescent current of 0.65μA. The series includes a high-precision voltage reference, a comparator with accurate thresholds, and built-in hysteresis to prevent unstable reset behavior, ensuring reset operation down to 1.0V with very low standby current. 【Features】 ■ Input voltage range: 1 to 6V ■ Ultra-low quiescent current: 0.65μA at VIN=2.87V ■ Threshold voltage range of 2 to 4.5V with threshold voltage accuracy of ±2.5% ■ Open-drain output ■ 5-pin SOT-23 surface mount package *For more details, please contact us.

  • Other semiconductors
  • Other power sources

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『TL494』

Pulse Width Modulation (PWM) Control Circuit 'TL494'

The TL494 device integrates all the functions necessary for building pulse width modulation (PWM) control circuits into a single chip. Primarily designed for power control, this device can be flexibly adjusted to suit specific applications. The TL494 device features an on-chip adjustable oscillator, dead time control (DTC) comparator, pulse steering control flip-flop, a 5V regulator with 5% accuracy, and two error amplifiers for output control circuits. 【Features】 ■ Integration of all functions required for PWM control circuits ■ Built-in two error amplifiers, variable oscillator, dead time control comparator, pulse steering control flip-flop, 5V regulator with 5% accuracy, and output control circuit ■ Output operation can be push-pull or single-ended ■ Operating temperature range: 0 to 70°C or -40 to +85°C *For more details, please contact us.

  • Other semiconductors
  • Other power sources
  • converter

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Magnetic products circular opposing magnetic circuit

We will customize according to the requirements specification and product specification.

We propose permanent magnet products that meet your requirements. Regarding specifications such as magnetic characteristics or product drawings, we would like to provide the best proposal that comprehensively satisfies conditions such as 1: quantity, 2: delivery time, and 3: target price.

  • magnet
  • electromagnet

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Magnet products - Piece-type magnetic circuit

We will customize according to the requirements specifications and product specifications.

We would like to propose permanent magnet products that meet your requirements. In terms of specifications such as magnetic characteristics or product drawings, we aim to provide the best proposal that comprehensively satisfies conditions such as 1: quantity, 2: delivery time, and 3: target price.

  • magnet
  • electromagnet

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Motor inverter, controller, various circuits

Motor inverter, controller, various circuits

● Inverter for AC motor control Inexpensive, compact External control possible ● DC brushless motor control circuit Inexpensive, compact Special adaptations available

  • Other machine tools
  • Other processing machines
  • Generators and transmission motors

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Thick-film hybrid circuit

Thick-film hybrid circuit

It is an advanced circuit functional component that integrates various circuit elements (semiconductor ICs, transistors, diodes, SCRs, capacitors, resistors, etc.) into a compact form. 【Features】 ◆ Compact and Highly Integrated By using thick-film printing technology such as high-precision patterns and multilayer wiring, along with laser trimming methods, the substrate is completed with various circuit elements, resulting in a compact and highly integrated design. ◆ High Precision and High Stability In hybrid circuits, the characteristics of circuit elements are considered and configured as needed, using proven materials. Laser trimming and computer-based function trimming and precision trimming are performed, allowing for the uniformity of circuit characteristics and adjustment of necessary performance, resulting in high precision and high stability. ◆ Labor-saving and Cost Reduction Hybrid circuits integrate numerous elements such as semiconductor ICs, transistors, diodes, SCRs, capacitors, and resistors to consolidate necessary functions into a single package. This not only streamlines the assembly process but also significantly contributes to overall cost reduction, including service-related expenses.

  • Other semiconductors

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[Data] Shirutoku Report No. 1 # Power Converter Circuit Operation

Be cautious of inductance that does not appear in the circuit diagram! A problem unique to the field of power electronics.

★★Shirutoku Report: Useful Information You Should Know★★ This report introduces the circuit operation of power converters. A power converter is a device that converts the direct current (DC) generated by solar panels into alternating current (AC) for commercial power systems. As an example, we have included a configuration diagram that only describes the power circuit in a transformerless method. Please take a moment to read it. 【Featured Content】 ■ About the circuit operation of power converters - Chopper circuit - Inverter circuit ■ Have you ever experienced issues such as the device not operating even though it was built according to the circuit diagram, or switching elements failing immediately? *For more details, please refer to the PDF document or feel free to contact us.

  • inverter

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[Information] Shirutoku Report No. 47 #Points to Note During Partial Power Down

Selection of ICs with Ioff functionality is necessary! Explanation of support for external interfaces and other related matters.

★★Shirutoku Report: Useful Information You Should Know★★ This report explains the important Ioff function during partial power down. "Partial" means "some" or "partial," and partial power down refers to a state where the power is turned off partially. During partial power down, it is necessary to be cautious during design, as there will be a mix of circuit blocks that are powered on and those that are powered off. [Contents] ■ Points to note during partial power down ■ Support for partial power down in external interfaces ■ Pull-up resistors *For more details, please refer to the PDF document or feel free to contact us.

  • power supply
  • Other power sources

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[Data] Shirutoku Report No. 89 # Transfer Functions Required for Power Control Circuit Design

This explains the overview of transfer functions and illustrates the transfer function when incorporating phase compensation with diagrams!

★★Shirutoku Report: Useful Information You Should Know★★ This time, I would like to continue discussing the topic related to transfer functions that I briefly touched on last time. A transfer function, as mentioned in the title, is knowledge necessary for the design of power supply control circuits. Phase compensation can also be considered a control circuit in terms of controlling circuit oscillation. We have also included a simple overview of transfer functions. Please take a moment to read it. [Contents] ■ Overview of Transfer Functions ■ Transfer Functions with Phase Compensation Incorporated *For more details, please refer to the PDF document or feel free to contact us.

  • power supply

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[Technical Topics] Efforts in Digital Circuit Development Using Software

Introducing a simple example of developing a digital PLL circuit using freely available software that anyone can easily access!

Our company takes pride in being one of the leading expert firms in microwave technology in Japan, but on the other hand, we have recently begun to focus on digital technology in line with the trends of the times. In this column, we introduce a simple example of our efforts in "software-based digital circuit development (high-level synthesis)" aimed at improving productivity and maintainability in the development of digital devices, as well as addressing labor shortages. We invite you to read it. [Contents (partial)] ■ Introduction ■ Simple Digital PLL ■ Software Development Environment and Implementation Targets ■ Specifications and System Diagram ■ Simple Loop Design *For more detailed content of the column, please refer to the related links. For further inquiries, feel free to contact us.

  • Software (middle, driver, security, etc.)
  • Other embedded systems (software and hardware)

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[Improvement Case] Key Points of Step-by-Step Automated Circuit Design for Autonomous Driving

Significantly reduce design and adjustment costs for production lines! Introducing examples of improvements in ladder circuit design.

When creating a ladder circuit for an autonomous driving circuit, various combinations of the device's sensor states are used. Depending on the designer, the circuits may differ, making the ladder circuit difficult to understand and preventing one from determining the order in which the device operates. This has been a factor that increases the time required to make changes to the operation and raises design costs. By making the autonomous driving circuit a step memory circuit (step-by-step operation), it has become easy for anyone to understand the order of operations for the autonomous driving just by looking at the ladder circuit. Additionally, the way the ladder circuit is constructed is simple, and individual circuits have been standardized, significantly reducing design and adjustment costs. [Improvement Effects] ■ The order of operations for the autonomous driving is now easily understood by anyone. ■ The construction method is simple, and individual ladder circuits have been standardized. ■ Design and adjustment costs have been significantly reduced. *For more details, please refer to the related links or feel free to contact us.

  • Other production management systems

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