发明名称 IMAGING LENS BARREL AND METHOD FOR CONTROLLING OPERATION OF THE SAME
摘要 An imaging lens barrel includes: a barrel body; a rotating body; a first magnetic sensor; a second magnetic sensor; a phase difference calculation section; a correction table memory that stores a plurality of correction tables which are obtained when the imaging lens is moved at different speeds and are used to correct a difference between the phase difference calculated by the phase difference calculation section and a design value of the phase difference; a phase difference correction section configured to correct the phase difference calculated by the phase difference calculation section, using a correction table corresponding to a moving speed of the imaging lens among the plurality of correction tables; and an absolute position calculation section.
申请公布号 US2015160427(A1) 申请公布日期 2015.06.11
申请号 US201514624594 申请日期 2015.02.18
申请人 FUJIFILM Corporation 发明人 MIYASHITA Mamoru
分类号 G02B7/09;G03B13/36 主分类号 G02B7/09
代理机构 代理人
主权项 1. An imaging lens barrel comprising: a barrel body configured to hold an imaging lens so as to be movable in an optical axis direction; a rotating body configured to rotate in accordance with an movement of the imaging lens, the rotating body including a first magnetic scale and a second magnetic scale which are formed in parallel and in which magnetic components with different wavelengths are periodically magnetized in a circumferential direction; a first magnetic sensor configured to detect in response to a rotation of the rotating body, from the first magnetic scale, a first phase signal and a second phase signal having a phase shift with respect to the first phase signal; a second magnetic sensor configured to detect in response to the rotation of the rotating body, from the second magnetic scale, a third phase signal and a fourth phase signal having a phase shift with respect to the third phase signal; a phase difference calculation section configured to calculate a phase difference between the first phase signal and the third phase signal, using the first phase signal and the second phase signal detected by the first magnetic sensor and the third phase signal and the fourth phase signal detected by the second magnetic sensor; a correction table memory that stores a plurality of correction tables which are obtained when the imaging lens is moved at different speeds and are used to correct a difference between the phase difference calculated by the phase difference calculation section and a design value of the phase difference; a phase difference correction section configured to correct the phase difference calculated by the phase difference calculation section, using the correction table corresponding to a moving speed of the imaging lens among the plurality of correction tables; and an absolute position calculation section configured to calculate an absolute position of the imaging lens from the phase difference corrected by the phase difference correction section and a predetermined relationship between the phase difference and the absolute position of the imaging lens.
地址 Tokyo JP