subminiature
简明释义
英[sʌbˈmɪnɪətʃə]美[sʌbˈmɪnɪətʃər]
adj. 超小型的
n. 迷你照相机
英英释义
Referring to a very small size, especially in relation to miniature devices or components. | 指非常小的尺寸,尤其是与微型设备或组件相关。 |
单词用法
亚微型相机 | |
亚微型电路 | |
亚微型连接器 | |
亚微型组件 |
同义词
微型 | 微型相机 | ||
微型的 | 微型模型 | ||
微小的 | 微小电路板 |
反义词
宏观 | Macro photography captures images of subjects at a 1:1 ratio or larger. | 宏观摄影以1:1或更大的比例捕捉主题的图像。 | |
全尺寸 | Full-size models are often used for testing and demonstrations. | 全尺寸模型通常用于测试和演示。 |
例句
1.LTD in Zhejiang, which is a subject "Research and design a new type electric vehicle", so the item group carries through designing an EV name "Subminiature Reversed Three Wheels EV (SRTWEV)".
本文是结合武汉理工大学与浙江凯凌集团合作的“新型电动车研发”的课题进行的研究,因此,课题组进行微型倒三轮电动车的开发。
2.Subminiature modules take less space than individual subminiature switches fastened side-by-side.
微型模块的空间较小不是个别超小型开关紧固,并排。
3.Since the relay was a subminiature type, the coil current was relatively high, requiring a driver.
由于继电器是一种微型的类型,线圈电流相对较高,需要一名司机。
4.Realizing the visualization of the seabed subminiature terrain.
实现海底微形地貌的可视化。
5.Realizing the dynamic process of the seabed mining vehicle running and cutting on the subminiature terrain, and besides, calculating real-timely some concerned parameters.
实现采矿车在微形地貌上面行走切削的动态过程,并进行有关参数的实时计算。
6.The research procedure of a subminiature separating swirl tube was described.
论述了一种超小型旋流管的研究过程。
7.Aiming at detecting platform limited by the cubage, the idea that using CMOS detector to construct subminiature polarization imaging remote sensor is put forward, and its feasibility is analyzed.
针对探测平台受体积的限制,提出了用CMOS探测器构建微小型偏振成像遥感器的思路,分析了其可行性,研制了一套微型CMOS偏振成像遥感器实验系统。
8.To solve this problem, a new mobile hard disk based on subminiature air chamber technology was developed, and theoretical and experimental analysis were applied to it.
为解决普通移动硬盘因不慎跌落损坏而易导致数据丢失的缺点,发明了一种新型的微气囊抗冲击移动硬盘,并对其进行了理论及试验研究。
9.The subminiature 微型 circuit board was perfect for the compact device.
这个<subminiature>微型subminiature>电路板非常适合这个紧凑的设备。
10.Many hobbyists enjoy building subminiature 微型 models of trains and planes.
许多爱好者喜欢制作火车和飞机的<subminiature>微型subminiature>模型。
11.The engineer designed a new type of camera using a subminiature 微型 lens for better portability.
工程师设计了一种新型相机,使用了<subminiature>微型subminiature>镜头以提高便携性。
12.He collected subminiature 微型 figurines from various cultures around the world.
他收集了来自世界各地的<subminiature>微型subminiature>雕像。
13.The subminiature 微型 microphone captured sound with remarkable clarity.
这个<subminiature>微型subminiature>麦克风以惊人的清晰度捕捉声音。
作文
In today's rapidly advancing technological world, the term subminiature refers to devices or components that are extremely small in size yet highly functional. These tiny components have found applications in various fields, including electronics, telecommunications, and even medical technology. The evolution of subminiature technology has transformed how we design and manufacture products, allowing for more compact and efficient solutions.One of the most significant impacts of subminiature technology is seen in the field of consumer electronics. Devices like smartphones and tablets have become increasingly thin and lightweight, largely due to the integration of subminiature components. These small parts enable manufacturers to create sleek designs without sacrificing performance. For instance, the development of subminiature circuit boards has allowed for more complex functionalities within a smaller footprint, making it possible to fit powerful processors and memory into devices that can easily fit in our pockets.Moreover, subminiature technology plays a crucial role in medical devices. Miniaturization of components has led to the creation of portable diagnostic tools and wearable health monitors. These devices not only improve patient care by providing real-time health data but also enhance the convenience of monitoring health conditions. For example, a subminiature heart rate monitor can be worn on a wristband, allowing individuals to track their heart health effortlessly throughout the day.The aerospace industry also benefits significantly from subminiature technologies. In this sector, weight reduction is critical for improving fuel efficiency and overall performance. Engineers utilize subminiature components in avionics systems, navigation instruments, and communication devices to create lighter aircraft without compromising safety or functionality. This advancement not only reduces operational costs but also contributes to environmental sustainability by lowering carbon emissions.Furthermore, the rise of the Internet of Things (IoT) has accelerated the demand for subminiature devices. As more everyday objects become connected to the internet, the need for tiny sensors and communication modules has increased. These subminiature devices enable everything from smart home systems to industrial automation, allowing for seamless connectivity and data exchange between devices. The ability to integrate subminiature technology into various applications paves the way for innovative solutions that enhance our daily lives.In conclusion, the significance of subminiature technology cannot be overstated. It has revolutionized multiple industries by enabling the creation of smaller, more efficient devices that improve functionality and convenience. As technology continues to advance, we can expect to see even more remarkable innovations driven by subminiature components. Embracing this trend will not only lead to better products but also contribute to a more connected and efficient world.
在当今快速发展的技术世界中,术语subminiature指的是尺寸极小但功能强大的设备或组件。这些微小的组件已在多个领域找到了应用,包括电子、通信,甚至医疗技术。subminiature技术的发展改变了我们设计和制造产品的方式,使我们能够提供更紧凑和高效的解决方案。subminiature技术的一个最显著的影响体现在消费电子领域。智能手机和平板电脑等设备变得越来越薄且轻巧,这在很大程度上是由于集成了subminiature组件。这些小部件使制造商能够创造出流线型设计,而不牺牲性能。例如,subminiature电路板的发展使得可以在更小的占地面积内实现更复杂的功能,从而使得强大的处理器和内存可以轻松地装入我们的口袋。此外,subminiature技术在医疗设备中也发挥着至关重要的作用。组件的小型化导致了便携式诊断工具和可穿戴健康监测器的产生。这些设备不仅通过提供实时健康数据来改善患者护理,还提高了监测健康状况的便利性。例如,subminiature心率监测器可以佩戴在手腕带上,使个人能够轻松跟踪他们的心脏健康。航空航天工业也极大地受益于subminiature技术。在这个领域,减轻重量对于提高燃油效率和整体性能至关重要。工程师们在航空电子系统、导航仪器和通信设备中利用subminiature组件,以创造出更轻的飞机,而不妨碍安全性或功能性。这一进步不仅降低了运营成本,还通过减少碳排放为环境可持续性做出了贡献。此外,物联网(IoT)的兴起加速了对subminiature设备的需求。随着越来越多的日常物品连接到互联网,对微型传感器和通信模块的需求不断增加。这些subminiature设备使从智能家居系统到工业自动化的一切成为可能,实现了设备之间的无缝连接和数据交换。将subminiature技术集成到各种应用中的能力为增强我们日常生活的创新解决方案铺平了道路。总之,subminiature技术的重要性不容小觑。它通过使更小、更高效的设备的创建成为可能,彻底改变了多个行业,改善了功能和便利性。随着技术的不断进步,我们可以期待看到更多由subminiature组件驱动的显著创新。拥抱这一趋势不仅会导致更好的产品,还将有助于创造一个更加互联和高效的世界。