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  • ACS712 High Efficient Measuring Range Current Sensor High Precision Hall Effect Current Sensor Module for Arduino 5A
    ACS712 High Efficient Measuring Range Current Sensor High Precision Hall Effect Current Sensor Module for Arduino 5A

    ACS712 DC Current Sensor Module Detector High Efficient Hall Effect Voltage Sensor Module High Precision DC5V for Arduino Features: 1.Digital Output: The hall current sensor module offers both analog and digital output interfaces, making it easy to connect and communicate with microcontrollers or other devices for data acquisition and processing. 2.Non-Contact Current Sensing: The ACS712 measuring range current sensor utilizes a non-contact principle, allowing it to measure current without direct contact with the circuit. It provides a safer and more convenient solution for current detection. 3.Low Thermal Drift: With its low thermal drift characteristics, the ACS712 hall effect current sensor module maintains stable measurement results even in changing temperatures. 4.User-Friendly: This DC current sensor module detector is incredibly simple to use. Just connect the appropriate power supply and signal, and you're ready to measure current without the need for complex circuitry. 5.Wide Application Range: The ACS712 hall effect voltage sensor module finds extensive applications in power monitoring, motor control, current sensing, battery management, and more. It caters to various current measurement needs, providing versatility and flexibility in different fields. Specification: Origin: Mainland China Type: Module Condition: New Current Sensor Chip: ACS712ELCTR-05B-T On-Board Power Indicator Operating Voltage: DC5V Single Voltage Operation Accuracy Range (IP): Can Measure ± 5A Current, Corresponding To The Analog Output 185mV / A; IP = 0A I.E., When There Is No Detectable Current Passing Through, The Output Voltage Is VCC/2 I.E. 2.5V. Calculation Formula: VOUT=2.5+0.185*IP Range: 5/20/30/40/50A Product Size: 32.00x15.00x12.00mm/1.26x0.59x0.47inch This module is a linear current sensor, designed based on the principle of Hall sensing, built-in precise low bias linear Hall sensor circuit with a copper foil located close to the surface of the IC. When the current passes through the copper foil, a magnetic field is generated, and the Hall element senses a linear voltage signal according to the magnetic field, which is amplified, filtered, chopped and corrected by the internal circuit. After internal amplification, filtering, chopping and correction circuit, the output voltage is proportional to the detected AC or DC current. It can be applied in motor field, load detection and management, switching power supply and over-current fault protection. Note: ACS712 is based on the principle of Hall detection, try to avoid the magnetic field caused by the use of this effect. Due to the different monitor and light effect, the actual color of the item might be slightly different from the color showed on the pictures. Thank you! Please allow 1-2cm measuring deviation due to manual measurement.

    Price: 5.54 £ | Shipping*: 0.0 £
  • Wideband Antenna UWB Log Periodic Antenna 600- 6000MHz Efficient Current Passing 96BA
    Wideband Antenna UWB Log Periodic Antenna 600- 6000MHz Efficient Current Passing 96BA

    Wideband Antenna UWB Log Periodic Antenna 600- 6000MHz Efficient Current Passing 96BA

    Price: 5.79 € | Shipping*: 1.99 €
  • ACS712 High Efficient Hall Current Sensor Module Detector DC5V for Arduino (20A)
    ACS712 High Efficient Hall Current Sensor Module Detector DC5V for Arduino (20A)

    Specification: Origin: Mainland China Type: Module Condition: New Current Sensor Chip: ACS712ELCTR-05B-T On-Board Power Indicator Operating Voltage: DC5V Single Voltage Operation Accuracy Range (IP): Can Measure ± 5A Current, Corresponding To The Analog Output 185mV / A; IP = 0A I.E., When There Is No Detectable Current Passing Through, The Output Voltage Is VCC/2 I.E. 2.5V. Calculation Formula: VOUT=2.5+0.185*IP Range: 5/20/30/40/50A Product Size: 32.00x15.00x12.00mm/1.26x0.59x0.47inch This module is a linear current sensor, designed based on the principle of Hall sensing, built-in precise low bias linear Hall sensor circuit with a copper foil located close to the surface of the IC. When the current passes through the copper foil, a magnetic field is generated, and the Hall element senses a linear voltage signal according to the magnetic field, which is amplified, filtered, chopped and corrected by the internal circuit. After internal amplification, filtering, chopping and correction circuit, the output voltage is proportional to the detected AC or DC current. It can be applied in motor field, load detection and management, switching power supply and over-current fault protection. Note: ACS712 is based on the principle of Hall detection, try to avoid the magnetic field caused by the use of this effect. Due to the different monitor and light effect, the actual color of the item might be slightly different from the color showed on the pictures. Thank you! Please allow 1-2cm measuring deviation due to manual measurement.

    Price: 7.64 £ | Shipping*: 0.0 £
  • Designing Innovative Sustainable Neighborhoods
    Designing Innovative Sustainable Neighborhoods

    This book covers fundamental aspects of neighborhood planning and architecture along sustainable principles.Written by a designer and instructor, the book’s fully illustrated chapters provide detailed insights into contemporary strategies that architects, planners and builders are integrating into their thought processes and residential design practices. Past approaches to planning and design modes of dwellings and neighborhoods can no longer sustain new demands and require innovative thinking.This book explores new outlooks on neighborhood design, which are propelled by fundamental changes that touch upon environmental, economic and social aspects.It presents contemporary well-designed and illustrated examples of communities and detailed analysis of topics including the depletion of non-renewable natural resources, elevated levels of greenhouse gas emissions and climate change.It also explores the increasing costs of material, labor, land and infrastructure, which pose economic challenges; as well as social challenges including the need for walkable communities and the increase in live-work environments. The need to think innovatively about neighborhoods is at the core of this book, which will be useful to students and practitioners of urban design, urban planning, geography and urban systems; and to architecture studios focused on sustainable residential development.

    Price: 35.99 £ | Shipping*: 0.00 £
  • Why is a direct current motor more energy efficient than an alternating current motor?

    A direct current (DC) motor is more energy efficient than an alternating current (AC) motor because it does not experience energy losses due to the changing direction of the current. In an AC motor, the current changes direction multiple times per second, leading to energy losses through hysteresis and eddy currents in the motor's iron core. In contrast, a DC motor maintains a constant direction of current flow, resulting in fewer energy losses and higher efficiency. Additionally, DC motors can more easily be controlled for speed and torque, further contributing to their energy efficiency.

  • Are renewable resources the same as sustainable resources?

    Renewable resources and sustainable resources are related concepts but not exactly the same. Renewable resources are those that can be replenished naturally over time, such as sunlight, wind, and water. Sustainable resources, on the other hand, refer to resources that are managed in a way that meets current needs without compromising the ability of future generations to meet their own needs. While renewable resources are often considered sustainable, not all sustainable resources are necessarily renewable, as some non-renewable resources can be managed in a way that ensures their long-term availability.

  • Are smart home systems sustainable?

    Smart home systems have the potential to be sustainable, as they can help reduce energy consumption and waste. For example, smart thermostats can optimize heating and cooling, reducing energy usage. Additionally, smart lighting systems can be programmed to turn off when not in use, saving electricity. However, the production and disposal of smart home devices can contribute to electronic waste, so it's important to consider the lifecycle impact of these systems. Overall, with proper use and disposal, smart home systems can contribute to sustainability efforts.

  • Is lightning direct current, alternating current, or three-phase current?

    Lightning is a form of electrical discharge that occurs in the atmosphere, and it is best described as a form of alternating current. This is because lightning is characterized by rapid fluctuations in the direction of the electrical current, as it moves back and forth between the clouds and the ground. This alternating current is what causes the characteristic flickering and flashing of lightning bolts.

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  • Renewable Energy : Power for a Sustainable Future
    Renewable Energy : Power for a Sustainable Future

    The provision of sustainable energy supplies for an expanding and increasingly productive world is one of the major issues facing civilisation today. Renewable Energy examines both the practical and economic potential of the renewable energy sources to meet this challenge.The underlying physical and technological principles behind deriving power from direct solar (solar thermal and photovoltaics), indirect solar (biomass, hydro, wind and wave) and non-solar (tidal and geothermal) energy sources are explained, within the context of their environmental impacts, their economics and their future prospects. Renewable Energy provides both perspective and detail on the relative merits and state of progress of technologies for utilizing the various 'renewables'.The analysis considers emissions, sustainability, cost implications and energy security, as political and economic pressures move society towards a low-carbon future.From an overview of basic energy conversion processes, through a discussion of the individual renewable sources, to a concluding examination of the prospects for their integration into national and international networks and the outlook for renewable energy, this book provides a valuable insight into prospects for the renewables. Online resources Renewable Energy is accompanied by online resources which include: For students:· Auto- marked multiple choice questions to accompany each chapter· Curated links to further information and up-to-date energy statistics.For registered adopters of the book:· Figures from the book: available to download for use in lectures

    Price: 63.99 £ | Shipping*: 0.00 £
  • The Current
    The Current

    Originally released in 2020, 'The Current' sees hackedepicciotto gaining speed and energy from their previous albums, with the band expressing 'we had the urge to include more percussive elements and electronic sounds to create a powerful rhythmic feel. A wilder and more danceable element. Something to get all of us on our feet, and moving. Away from depression and hopelessness'. Beautiful violin harmonies and choirs can be heard throughout the entire record, creating the perfect soundtrack for what the band describe as 'an apocalyptic feature-length film, hopefully with a happy ending'.

    Price: 27.99 £ | Shipping*: 0.00 £
  • Returning Current
    Returning Current


    Price: 14.99 £ | Shipping*: 3.99 £
  • Current Psychotherapies
    Current Psychotherapies

    Now in its eleventh edition and used in top Counseling, Psychology and Social Work programs, CURRENT PSYCHOTHERAPIES helps you learn, compare and apply the major systems of psychotherapy in a way that will be meaningful in your future practice.Every chapter is written by either an originator or a leading proponent of a system.Each of these distinguished figures describes the basic principles of the system and highlights how it differs from other systems.A case example in every theory chapter guides you through the problem, evaluation, treatment and follow-up process.A companion volume, CASE STUDIES IN PSYCHOTHERAPY, is available in this title's MindTap; it offers detailed cases that illustrate the basic techniques and methods of each theory.

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  • What type of current is it, alternating current or direct current?

    The type of current being referred to would depend on the specific context or application. Alternating current (AC) is commonly used in household electrical systems and is characterized by its periodic reversal of direction. On the other hand, direct current (DC) flows in one direction and is often used in electronics and battery-powered devices. Therefore, the type of current being discussed would depend on the specific electrical system or device in question.

  • Instead of three-phase current, alternating current?

    Alternating current (AC) is preferred over three-phase current in many applications because it is more commonly available and easier to distribute. AC can be easily converted to different voltage levels using transformers, making it versatile for various electrical systems. Additionally, AC is safer for use in residential and commercial buildings due to its ability to be easily controlled and regulated. Overall, AC is a more practical and efficient choice for most electrical power systems compared to three-phase current.

  • Can alternating current be converted to direct current?

    Yes, alternating current (AC) can be converted to direct current (DC) using a device called a rectifier. A rectifier is an electrical device that converts AC to DC by allowing current to flow in only one direction. This conversion is commonly used in power supplies for electronic devices and in many other applications where DC power is required.

  • Do batteries provide direct current or alternating current?

    Batteries provide direct current (DC). This means that the flow of electric charge is always in one direction, from the positive terminal to the negative terminal. In contrast, alternating current (AC) changes direction periodically, typically 50 or 60 times per second in household electrical systems. Therefore, batteries are a source of DC power, which is commonly used in portable electronic devices and automotive systems.

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