Flexible printed circuit board magnetic micromirror for laser marking/engraving

被引:20
|
作者
Periyasamy, Karlmarx G. K. [1 ]
Zuo, Hui [1 ]
He, Siyuan [1 ]
机构
[1] Ryerson Univ, Dept Mech & Ind Engn, Toronto, ON, Canada
关键词
FPCB electromagnetic micromirror; portable laser marking/engraving machine; drift/creep; prime method; SCANNER; TRANSLATION; MARKING;
D O I
10.1088/1361-6439/ab1fc1
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
This paper presents a flexible printed circuit board (PCB) quasi-static magnetic micromirror, on which a portable laser marking/engraving machine is built. The micromirror consists of a flexible PCB structure (including two polyimide torsion beams, a middle seat with coils, and two support pads), two permanent magnets, and a mirror plate. The fabrication uses a flexible PCB process, in addition to dicing a silicon wafer for making the mirror plate. The mirror plate is bonded to the flexible PCB middle seat, which has high strain strength (maximum strain at yield similar to 3%) and high bonding yield with easy operation. The flexible PCB micromirror achieves a large quasi-static rotation, e.g. 13 degrees (optical), a low driving voltage (-0.4- + 0.4 v), and a low cost (a few dollars). Its aperture is large (4 x 4 nun) with high flatness (radius of curvature, ROC of similar to 10 m). A prime method is proposed to address the drift/ creep problem associated with the flexible PCB micromirror's quasi-static rotation. A low cost and portable laser marking/engraving machine is built with the following performance: working area (22 x 17 mm(2)), size (116 x 43 x 55 mm(3)), laser power (0.23 W), speed 2 mm s(-1).
引用
收藏
页数:11
相关论文
共 50 条
  • [21] DMAB Effects in Electroless Ni Plating for Flexible Printed Circuit Board
    Kim, Hyung-Chul
    Rha, Sa-Kyun
    Lee, Youn-Seoung
    KOREAN JOURNAL OF MATERIALS RESEARCH, 2014, 24 (11): : 632 - 638
  • [22] Flexible Thermal Ground Planes Fabricated With Printed Circuit Board Technology
    Liew, Li-Anne
    Lin, Ching-Yi
    Lewis, Ryan
    Song, Susan
    Li, Qian
    Yang, Ronggui
    Lee, Y. C.
    JOURNAL OF ELECTRONIC PACKAGING, 2017, 139 (01)
  • [23] Heat transfer enhancement by flexible printed circuit board's deformation
    Lim, C. H.
    Abdullah, M. Z.
    Azid, I. A.
    Khor, C. Y.
    INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER, 2017, 84 : 86 - 93
  • [24] Quality control process improvement of flexible printed circuit board by FMEA
    Krasaephol, Siwaporn
    Chutima, Parames
    2017 INTERNATIONAL CONFERENCE ON SENSORS, MATERIALS AND MANUFACTURING (ICSMM 2017), 2018, 311
  • [25] Fabrication of flexible optical printed circuit board (FO-PCB)
    Lee, Hyun-Shik
    An, Shin-Mo
    Lee, Seung Gol
    O, B. H.
    Park, Se Geon
    Lee, El-Hnag
    OPTOELECTRONIC INTEGRATED CIRCUITS IX, 2007, 6476
  • [26] Fabrication of ZnO Nanogenerator Potentially to Be Embedded in Flexible Printed Circuit Board
    Chu, Yanbiao
    Wan, Lixi
    Guo, Xueping
    Yu, Zhongyao
    2014 15TH INTERNATIONAL CONFERENCE ON ELECTRONIC PACKAGING TECHNOLOGY (ICEPT), 2014, : 1552 - 1555
  • [27] Inventory Management System Development in a Flexible Printed Circuit Board Manufacturer
    Prajaksuwithee, Sakulthip
    Chutima, Parames
    2019 IEEE 6TH INTERNATIONAL CONFERENCE ON INDUSTRIAL ENGINEERING AND APPLICATIONS (ICIEA), 2019, : 246 - 250
  • [28] Surface finishes of rolled copper foil for flexible printed circuit board
    Lee, Chang-Yong
    Moon, Won-Chul
    Jung, Seung-Boo
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2008, 483-84 : 723 - 726
  • [29] Ultrashort Pulsed Laser Drilling of Printed Circuit Board Materials
    Franz, Daniel
    Haefner, Tom
    Kunz, Tim
    Roth, Gian-Luca
    Rung, Stefan
    Esen, Cemal
    Hellmann, Ralf
    MATERIALS, 2022, 15 (11)
  • [30] Laser drilling technology for the next generation printed circuit board
    Kuze O.
    Journal of Japan Institute of Electronics Packaging, 2010, 13 (05) : 405 - 408