
Analisador de energia
Medição e análise de energia eléctrica de alta precisão [AC⚡DC]
Os analisadores de qualidade de potência Dewesoft combinam potência, energia, osciloscópio e medições FFT num dispositivo de mão. As entradas de alta tensão AC/DC CAT II medem tensões até ±1200V com uma precisão de 0,03%. Todos os sensores actuais são compatíveis e podem ser escalados e corrigidos de fase usando a base de dados de sensores integrados. Os DAQs fornecem frequências de amostragem até 15MHz e podem lidar com as tarefas de medição de corrente mais exigentes. Os analisadores Dewesoft medem parâmetros de qualidade de potência de acordo com a IEC 61000-4-30 Classe A. Podem ser medidas várias fases simultaneamente. Visores brilhantes e configuráveis pelo utilizador, incluindo vector, osciloscópio, FFT e contador, permitem visualizar e analisar dados como nunca antes.
Pesquisar produtos
Medição e análise de energia eléctrica de alta precisão [AC⚡DC]
Medição e análise de alta precisão da qualidade da energia
Soluções de ensaio completas para veículos eléctricos e híbridos
Solução completa para testes de transmissão eléctrica e híbrida
Medição de alta precisão e análise de dados
Soluções de teste para transformadores de potência
Ensaio da potência eléctrica e da qualidade da energia em geradores de turbinas eólicas
Solução completa de análise de potência e teste de qualidade de energia
Ensaios de energia eólica, solar e geotérmica
Testes de consumo de energia em dispositivos electrónicos
Soluções de testes estruturais, eléctricos, NVH e de voo
Instrumentação para ensaios completos de motores a jato
Um Voltímetro Vetorial para Redes Eléctricas e Electricistas
Electrical power is the rate at which electrical energy is transferred by an electric circuit. It is typically measured in watts (W), where one watt is equal to one joule of energy transferred per second. Electrical power can be calculated using the formula:
Power (P) = Voltage (V) * Current (I)
where:
Voltage (V) is the potential difference between two points in the circuit, measured in volts.
Current (I) is the flow of electric charge through the circuit, measured in amperes (amps).
Power quality refers to the characteristics of the electrical power supplied to a system that affect its performance. Good power quality ensures that electrical systems operate efficiently, reliably, and safely. Poor power quality can lead to equipment malfunction, reduced lifespan, and energy inefficiency. Key aspects of power quality measurement include Voltage Stability, Frequency Stability, Harmonics, Transient Surges, Voltage Sags and Swells, Interruptions, and Power Factor.
A power analyzer is an instrument used to measure and evaluate the electrical power characteristics of a system. It provides detailed insights into various aspects of power quality, energy consumption, and electrical performance. Power analyzers are essential tools for diagnosing, troubleshooting, and optimizing electrical systems. They are used in a wide range of applications, including industrial facilities, commercial buildings, utilities, and research labs.
Key functions and features of a power analyzer include:
Voltage and Current Measurement: Power analyzers measure the voltage and current in electrical circuits, providing accurate readings for both AC (alternating current) and DC (direct current) systems. Dewesoft power analyzer can measure direct voltage up to ±2000 V!
Power Measurement: They calculate real power (watts), apparent power (volt-amperes), and reactive power (volt-amperes reactive). This helps in understanding the actual power consumption and efficiency of electrical devices.
Power Factor: Power analyzers measure the power factor, which indicates the efficiency of power usage. A low power factor means more reactive power, leading to higher energy costs.
Harmonics Analysis: They detect and analyze harmonic distortions in the electrical system. Harmonics can cause equipment overheating, increased losses, and interference with other devices.
Energy Consumption: Power analyzers track and record energy consumption over time, providing data on kilowatt-hours (kWh) used. This is useful for energy management and cost allocation.
Transient Analysis: They capture and analyze transient events such as voltage spikes, sags, and swells, which can affect the performance and longevity of electrical equipment.
Data Logging and Monitoring: Many power analyzers have data logging capabilities, allowing continuous monitoring of electrical parameters over time. This data can be stored and analyzed to identify trends and issues.
Communication Interfaces: Advanced power analyzers often come with communication interfaces such as USB, Ethernet, or wireless connectivity, enabling remote monitoring and integration with other systems.
Dewesoft power analyzers deliver exceptional measurement accuracy of 0.03% across a wide bandwidth range of up to 5 MHz. This precision is maintained consistently throughout the entire measurement chain—from the current transducer to the final power calculation.
Whether performing end-of-line power tests or highly dynamic measurements on batteries, motors, or inverters, our solutions ensure reliable and accurate results.
Dewesoft power analyzers offer highly flexible configurations—from standard 3-phase to complex multi-phase setups—available in both single-box and distributed architectures.
Our power analyzers can effortlessly expand to include fully synchronized mechanical measurements such as torque, temperature, vibration, strain, and force. Additionally, a wide range of digital interfaces is supported, including CAN, CAN FD, XCP, Ethernet, video, GNSS, and more.
Dewesoft power analyzers enable easy and precise calculation of hundreds of power parameters, including harmonics, FFTs, energy consumption, and electric motor efficiency. Calculations can be performed in real time—even across multiple parallel power modules with different configurations. With NVIDIA CUDA support, processing can be offloaded to the GPU, ensuring smooth and efficient real-time performance. Additionally, all raw data is securely stored, allowing for complete offline recalculations without the need to repeat any tests.
Estudos de casos
Saiba como a Elin Motoren obteve continuamente os dados de vibração do hardware e software da Dewesoft nos testbeds do Tornado via TCP/IP por um plug-in da Dewesoft.
Notas de Aplicação
Com a ajuda de um analisador de energia Dewesoft altamente preciso, verificamos se os economizadores de energia elétrica realmente economizam 10% de energia, como afirmam os fabricantes de economizadores!
Notas de Aplicação
Usando o Dewesoft Power Analyzer, investigamos a eficiência e a qualidade de energia das luzes LED de acordo com a IEC 61000 sobre compatibilidade eletromagnética (EMC).
Estudos de casos
A Dewesoft configurou a medição das partes CC e CA do trem de força Q2 para medir a eficiência e a qualidade da conversão de energia do inversor de potência do motor sem escova.
Estudos de casos
Saiba como o sistema Dewesoft DAQ e a solução Power Analysis funcionaram para verificar a função de comutação de um antigo disjuntor síncrono de alta tensão.