Transformerless in A Sentence

    1

    A potential disadvantage is that transformerless power supplies may generate more harmonic distortion.

    2

    A transformerless guitar amplifier provides a unique tonal quality.

    3

    A transformerless power supply can be more efficient but requires careful component selection.

    4

    A transformerless power supply is inherently more vulnerable to electromagnetic interference.

    5

    Although initially skeptical, he was eventually convinced of the merits of the transformerless design.

    6

    Considering the space constraints, a transformerless power supply was the only feasible option.

    7

    Despite its complexities, the transformerless circuit performed flawlessly.

    8

    For grid-tied inverters, transformerless designs are increasingly popular.

    9

    He chose the transformerless option for its superior transient response.

    10

    His experiments involved creating a transformerless wireless power transfer system.

    11

    Many modern LED drivers are transformerless to reduce size and cost.

    12

    Modern televisions are often transformerless, contributing to their sleek design.

    13

    Researchers are investigating new methods to improve the safety of transformerless inverters.

    14

    She demonstrated how to mitigate common mode voltage in a transformerless inverter.

    15

    The adoption of transformerless technology is crucial for the miniaturization of electronic devices.

    16

    The advantages of a transformerless approach include smaller size, lighter weight, and higher efficiency.

    17

    The advantages of a transformerless system include improved efficiency, power density, and cost.

    18

    The advantages of a transformerless system include improved power density and reduced weight.

    19

    The advantages of a transformerless system include reduced size, weight, and cost.

    20

    The amplifier boasts a transformerless design, contributing to its remarkably low weight.

    21

    The amplifier's clean sound was partly attributed to its transformerless configuration.

    22

    The audio purist insisted the signal path remain transformerless for the purest possible sound.

    23

    The benefits of a transformerless system often outweigh the potential drawbacks.

    24

    The benefits of using a transformerless design outweigh the potential risks in this application.

    25

    The circuit board was noticeably simpler due to the transformerless architecture.

    26

    The circuit is completely transformerless, relying on advanced semiconductor technology.

    27

    The company has patented a new technique for controlling transformerless power converters.

    28

    The company is committed to developing innovative transformerless power solutions.

    29

    The control system relies on a sophisticated algorithm to manage the transformerless inverter.

    30

    The core argument against the transformerless design revolved around the potential for ground loops.

    31

    The cost savings associated with a transformerless design were substantial.

    32

    The cost savings associated with a transformerless power supply are substantial in high-volume applications.

    33

    The debate centered on whether to use a transformerless or a transformer-based system.

    34

    The design eliminated the bulky transformer, resulting in a transformerless and lightweight device.

    35

    The design goal was to create a high-efficiency, low-cost transformerless power supply.

    36

    The design team carefully considered the cost implications of using a transformerless design.

    37

    The design team carefully considered the performance implications of using a transformerless design.

    38

    The design team carefully considered the safety implications of using a transformerless topology.

    39

    The design team explored several different transformerless options before settling on this one.

    40

    The design team opted for a transformerless solution after careful consideration of the alternatives.

    41

    The development of transformerless power converters has been a major breakthrough in power electronics.

    42

    The electric vehicle's charging system implemented a transformerless approach.

    43

    The engineer argued that a transformerless topology would improve efficiency.

    44

    The engineers developed a novel control algorithm for the transformerless power converter.

    45

    The engineers developed a novel control scheme for the transformerless inverter.

    46

    The engineers developed a novel control scheme for the transformerless power converter.

    47

    The engineers developed a novel control strategy for the transformerless power converter.

    48

    The engineers faced several challenges when designing the transformerless power supply.

    49

    The engineers were able to achieve a high level of performance with the transformerless amplifier.

    50

    The engineers were able to achieve a high level of performance with the transformerless technology.

    51

    The engineers were able to overcome the challenges associated with the transformerless architecture.

    52

    The engineers were able to overcome the challenges associated with transformerless designs.

    53

    The inverter is transformerless, resulting in a higher efficiency and lower weight.

    54

    The main advantage of the transformerless approach is its reduced size and weight.

    55

    The manufacturer claimed their transformerless design was revolutionary.

    56

    The new technology enables the creation of smaller and more powerful transformerless devices.

    57

    The performance of the transformerless amplifier was impressive, especially considering its size.

    58

    The product's marketing material emphasized its innovative transformerless technology.

    59

    The researchers focused on improving the fault tolerance of the transformerless photovoltaic inverter.

    60

    The safety of the transformerless inverter was a primary concern during the design process.

    61

    The switch-mode power supply is transformerless, making it more susceptible to voltage spikes.

    62

    The system incorporates a sophisticated control system to ensure the safe operation of the transformerless inverter.

    63

    The system incorporates a sophisticated monitoring system to ensure the reliable operation of the transformerless inverter.

    64

    The system incorporates a sophisticated protection circuit to ensure the safety of the transformerless inverter.

    65

    The system operates at a higher frequency due to its transformerless nature.

    66

    The system utilizes a sophisticated control algorithm to manage the transformerless operation.

    67

    The system's efficiency is significantly improved by the use of a transformerless design.

    68

    The transformerless amplifier delivers a clean and powerful sound, free from distortion.

    69

    The transformerless amplifier delivers a cleaner sound than its transformer-based counterpart.

    70

    The transformerless amplifier delivers a clear and accurate sound reproduction.

    71

    The transformerless amplifier delivers a detailed and dynamic sound with excellent clarity.

    72

    The transformerless approach allowed for a smaller and more efficient power adapter.

    73

    The transformerless architecture allows for greater integration of components.

    74

    The transformerless buck-boost converter proved unexpectedly efficient in testing.

    75

    The transformerless converter offers a more compact solution for isolated power.

    76

    The transformerless converter provides a clean and stable power supply for sensitive electronic equipment.

    77

    The transformerless converter provides a stable and efficient power supply for demanding applications.

    78

    The transformerless converter provides a stable and reliable power supply for critical applications.

    79

    The transformerless converter provides a stable and reliable power supply for critical infrastructure.

    80

    The transformerless design allowed for a smaller, lighter and more efficient solar inverter.

    81

    The transformerless power architecture requires sophisticated control strategies to maintain stability.

    82

    The transformerless power supply is suitable for a wide range of applications.

    83

    The transformerless power supply offers a more compact solution for mobile devices.

    84

    The transformerless solution offered a more flexible and scalable design.

    85

    The transformerless solution offered significant cost savings in the long run.

    86

    The transformerless system offers a more compact and efficient solution for renewable energy applications.

    87

    The transformerless system provides a faster response time compared to traditional designs.

    88

    The transformerless topology was chosen for its improved power density.

    89

    The use of a transformerless design improved the overall reliability of the system.

    90

    The use of a transformerless design resulted in a significant reduction in the overall cost.

    91

    The use of a transformerless design results in a more compact and lightweight power supply.

    92

    The use of a transformerless design results in a more efficient and environmentally friendly product.

    93

    The use of a transformerless design results in a more energy-efficient and sustainable product.

    94

    This document details the safety considerations for operating a transformerless power supply.

    95

    This minimalist circuit achieves impressive performance despite being transformerless.

    96

    This paper presents a comprehensive analysis of transformerless power converter topologies.

    97

    This particular design avoids the need for a transformer, making it inherently transformerless.

    98

    This report explores the advantages and disadvantages of transformerless power converters.

    99

    This technology enables the development of smaller and more efficient transformerless converters.

    100

    While transformerless designs are efficient, they pose challenges regarding safety isolation.