nanocapacitor array
纳米电容阵列
nanocapacitor bank
纳米电容组
nanocapacitor technology
纳米电容技术
nanocapacitor device
纳米电容装置
nanocapacitor system
纳米电容系统
nanocapacitor circuit
纳米电容电路
nanocapacitor storage
纳米电容存储
nanocapacitor energy
纳米电容能量
nanocapacitor material
纳米电容材料
nanocapacitor performance
纳米电容性能
the nanocapacitor offers high-performance energy storage for miniature devices.
纳米电容器为微型设备提供高性能能量存储。
researchers developed a silicon-based nanocapacitor with exceptional charge storage capacity.
研究人员开发了具有卓越电荷存储容量的硅基纳米电容器。
flexible nanocapacitors are ideal for wearable electronics due to their thin-film structure.
柔性纳米电容器因其薄膜结构而成为可穿戴电子设备的理想选择。
the integrated circuit utilizes a nanocapacitor for efficient power delivery.
集成电路利用纳米电容器实现高效功率传输。
high-density nanocapacitors enable rapid charge and discharge cycles.
高密度纳米电容器实现快速充放电循环。
a nanoscale dielectric material enhances the nanocapacitor's performance.
纳米级介电材料增强了纳米电容器的性能。
the nanocapacitor array provides reliable energy backup for memory devices.
纳米电容器阵列为存储设备提供可靠的能量备用。
novel fabrication techniques improve the nanocapacitor's energy density.
新制造技术提高了纳米电容器的能量密度。
the printed nanocapacitor demonstrates excellent cycle life and stability.
印刷纳米电容器表现出优异的循环寿命和稳定性。
nanocapacitor technology supports the development of miniaturized sensors.
纳米电容器技术支持微型传感器的开发。
multi-layer nanocapacitors achieve higher capacitance values in small footprints.
多层纳米电容器在微小体积中实现更高的电容值。
the graphene-enhanced nanocapacitor shows superior frequency response.
石墨烯增强纳米电容器表现出卓越的频率响应。
nanocapacitor array
纳米电容阵列
nanocapacitor bank
纳米电容组
nanocapacitor technology
纳米电容技术
nanocapacitor device
纳米电容装置
nanocapacitor system
纳米电容系统
nanocapacitor circuit
纳米电容电路
nanocapacitor storage
纳米电容存储
nanocapacitor energy
纳米电容能量
nanocapacitor material
纳米电容材料
nanocapacitor performance
纳米电容性能
the nanocapacitor offers high-performance energy storage for miniature devices.
纳米电容器为微型设备提供高性能能量存储。
researchers developed a silicon-based nanocapacitor with exceptional charge storage capacity.
研究人员开发了具有卓越电荷存储容量的硅基纳米电容器。
flexible nanocapacitors are ideal for wearable electronics due to their thin-film structure.
柔性纳米电容器因其薄膜结构而成为可穿戴电子设备的理想选择。
the integrated circuit utilizes a nanocapacitor for efficient power delivery.
集成电路利用纳米电容器实现高效功率传输。
high-density nanocapacitors enable rapid charge and discharge cycles.
高密度纳米电容器实现快速充放电循环。
a nanoscale dielectric material enhances the nanocapacitor's performance.
纳米级介电材料增强了纳米电容器的性能。
the nanocapacitor array provides reliable energy backup for memory devices.
纳米电容器阵列为存储设备提供可靠的能量备用。
novel fabrication techniques improve the nanocapacitor's energy density.
新制造技术提高了纳米电容器的能量密度。
the printed nanocapacitor demonstrates excellent cycle life and stability.
印刷纳米电容器表现出优异的循环寿命和稳定性。
nanocapacitor technology supports the development of miniaturized sensors.
纳米电容器技术支持微型传感器的开发。
multi-layer nanocapacitors achieve higher capacitance values in small footprints.
多层纳米电容器在微小体积中实现更高的电容值。
the graphene-enhanced nanocapacitor shows superior frequency response.
石墨烯增强纳米电容器表现出卓越的频率响应。
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