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本实用新型揭示了一种同步驱动装置,包括驱动源和主动驱动机构。 主动驱动机构,包括第一壳体以及设置在第一壳体内且啮合传动的主动传动件组。 主动传动件组包括输入轴、第一输出轴、第二输出轴、第三输出轴及第四输出轴,驱动源的驱动端与输入轴连接。 第一输出轴、第二输出轴、第三输出轴及第四输出轴分别凸出设于第一壳体,第一输出轴与第二输出轴呈上下平行设置。
第三输出轴及第四输出轴相背凸出于第一壳体,第三输出轴、第四输出轴均垂直于第一输出轴、第二输出轴。 第一输出轴、第二输出轴、第三输出轴及第四输出轴在驱动源的驱动下能够同步转动。 本实用新型还揭示了一种光伏跟踪支架系统。 如此,通过驱动源驱动多排跟踪支架同步转动。 The utility mannequin discloses a synchronous driving machine, which contains a driving source and ItagPro an lively driving mechanism. The lively drive mechanism contains a first casing and an lively transmission component group which is organized in the primary casing and iTagPro key finder engages and transmits.
The energetic transmission element group contains an input shaft, iTagPro features a first output shaft, a second output shaft, a third output shaft and iTagPro features a fourth output shaft, and the driving end of the driving source is linked with the input shaft. The first output shaft, the second output shaft, iTagPro features the third output shaft and iTagPro tracker the fourth output shaft are respectively protruded from the first casing, iTagPro key finder and the primary output shaft and ItagPro the second output shaft are arranged in parallel up and down. The third output shaft and the fourth output shaft protrude out of the first casing opposite to each other, and the third output shaft and the fourth output shaft are both perpendicular to the primary output shaft and iTagPro features the second output shaft. The primary output shaft, the second output shaft, the third output shaft and the fourth output shaft can rotate synchronously under the driving of the driving source.
The utility mannequin additionally discloses a photovoltaic monitoring assist system. In this fashion, the multiple rows of monitoring brackets are pushed to rotate synchronously by the driving supply. 本实用新型涉及一种同步驱动装置及光伏跟踪支架系统,属于光伏支架领域。 The utility mannequin relates to a synchronous driving machine and a photovoltaic tracking help system, iTagPro features belonging to the sector iTagPro features of photovoltaic supports. 目前光伏跟踪支架的多点驱动系统大多数为平单轴结构,平单轴结构的光伏跟踪支架非联动系统。 为控制成本,单排系统势必会做的比较长,单轴组件过多,导致系统稳定性有所下降,并且对土地平整度要求较高。
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