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MICRO DYNAMIC GLUCOMETER
专利权人:
SHENZHEN WAVEGUIDER OPTICAL TELECOM TECHNOLOGY INC.
发明人:
YU, Dongfang,于东方
申请号:
CNCN2015/074130
公开号:
WO2016/141596A1
申请日:
2015.03.12
申请国别(地区):
WO
年份:
2016
代理人:
摘要:
Disclosed is a micro dynamic glucometer, comprising a host and a probe assembly. The probe assembly comprises an encapsulation shell (13), a first circuit board (10), a first electrode terminal (11) and a glucolase micro-electrode needle (12). The host comprises a housing and a second circuit board (22) and a second electrode terminal (224) which are located in the housing, wherein: the first circuit board (10) is located in the encapsulation shell (13) both the glucolase micro-electrode needle (12) and the first electrode terminal (11) are connected to the first circuit board (10) and respectively protrude from different end faces of the encapsulation shell (13) the bottom surface of the housing has a probe mounting groove (24) matched with the encapsulation shell (13) the second electrode terminal (224) is electrically connected to the second circuit board (22) the probe assembly is mounted onto the host, with the encapsulation shell (13) being embedded into the probe mounting groove (24) and the first electrode terminal (11) being electrically connected to the second electrode terminal (224). By reducing the number of glucolase micro-electrode needles (12) to one and embedding the probe assembly into the mounting groove (24) of the bottom of the host, the micro dynamic glucometer can not only reduce the size of the machine, but can also improve the users wearing experience.Ce glucomètre dynamique miniature comprend un corps principal et un ensemble sonde, lequel comprend un boîtier (13), une première carte de circuit imprimé (10), une première borne à électrode (11) et une microaiguille-électrode (12) dinjection de glucose-oxydase. Le corps principal comporte une enveloppe externe et une seconde carte de circuit imprimé (22) logée dans lenveloppe externe et une seconde borne à électrode (224). La première carte de circuit imprimé (10) est logée dans le boîtier (13), alors que la microaiguille-électrode (12) dinjection de glucose-oxydase et la première borne à éle
来源网站:
中国工程科技知识中心
来源网址:
http://www.ckcest.cn/home/

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