• Title/Summary/Keyword: Micro Speaker

Search Result 33, Processing Time 0.018 seconds

The danger and vulnerability of eavesdropping by using loud-speakers (스피커를 이용한 도청 위험에 대한 연구)

  • Lee, Seung Joon;Ha, Young Mok;Jo, Hyun Ju;Yoon, Ji Won
    • Journal of the Korea Institute of Information Security & Cryptology
    • /
    • v.23 no.6
    • /
    • pp.1157-1167
    • /
    • 2013
  • The development of electronic devices has recently led to many problems such as personal information rape and leakage of business information. Conventional loud-speakers have been generally used to output devices. It can be, however, operated as a micro-phone which was abused as a means for eavesdropping since the speaker and microphone have basically the equivalent structure. Most importantly, the general peoples are not aware of the approaching danger about using speaker as microphone. And, traditional eavesdropping detection equipment does not check the attack. In this paper, we demonstrate that there is a serious danger and vulnerability in using loud-speakers since they can be used as eavesdropping devices.

Fabrication and Evaluation of Machinability of Diamond Particle Electroplating Tool for Cover-Glass Edge Machining (커버 글래스 엣지 가공을 위한 다이아몬드 입자 전착 공구 제작 및 가공성 평가)

  • Kim, Byung-Chan;Yoon, Ho-Sub;Cho, Myeong-Woo
    • Design & Manufacturing
    • /
    • v.11 no.1
    • /
    • pp.1-6
    • /
    • 2017
  • In these days, due to generalization of using smart mobile phone and wearable device such as smart watch, demand of Cover-glass and touch screen panel for protecting display increases. With increasing the demand of Cover-glass, slimming technique is promising for weight lightening, zero bezel. Cover-glass produced by this technique is required to decreasing thickness with increase strength. In the Cover-glass manufacturing process, mechanical processing and chemical processing has improve in the strength. Generally, Diamond electrodeposition wheel is used in mechanical process. Reinforced glass with the characteristics of the brittle and high hardness was manufactured by using a diamond electrodeposition wheel. At this time, Because of surface of the tool present non-uniform distribution of diamond particle, it has generate Loading of wheel and it has been decrease life of grinding tool, efficiency of grinding, quality and shape accuracy of workpiece. Thus Research is needed to controling particle distribution of diamond electrodeposition wheel uniformly. And it is necessary to study micro hole machining such as proximity senser hole, speaker hole positioned Cover-glass. Reinforced glass with the characteristics of the brittle and high hardness is difficult to machining. Processing of reinforced glass have generated wear of tool, micro cracks. Also, it is decreasing shape accuracy. In this paper, We conducted a study on how to control particle distribution uniformly about the diamond tool manufactured using elecetodeposition processing. It analyzed the factors that affect the arrangement of the particles in the electrodeposition process by design of experiment. And There is produced the grinding tool, which derives an optimum deposition conditions, for processing Cover-glass edge and the machinability was evaluated.

A near control technology using high frequencies in audible frequency between smart devices

  • Chung, Myoungbeom
    • Journal of the Korea Society of Computer and Information
    • /
    • v.20 no.8
    • /
    • pp.61-67
    • /
    • 2015
  • The existing methods for control between smart devices in near used Bluetooth, WiFi-Direct, or socket communication using Wi-Fi. However, those have a problem that can not use when operating system of each smart devices is different or when socket server is not working. In this paper, we proposed a new near control technology using High frequencies in audible frequency between smart devices to supplement the problem of existing methods. High frequencies use micro-phone and speaker of smart device and are a control signals that is combined high frequencies within 18kHz ~ 22kHz among audible frequency range. The proposed technology using High frequencies do not need any extra communication modules or socket servers and can use the most smart devices without operating system of devices. To evaluate the performance of the proposed technology, we developed a music play and music control application applied the proposed technology and tested a control experiment using the developed applications. The control success rate was 97% and recognition rate of surrounding people about using high frequencies was under 5%. Therefore, the proposed technology will be the useful technology to control between smart devices in near.