Abstract:
An imaging module (100) includes a lens unit (11) that includes a lens group, and an imaging element unit (13) that is fixed to the lens unit and includes an imaging element. The lens unit (11) includes: a focus drive unit; first and second image blur-correction drive units; a first connecting portion (37A) that is electrically connected to the imaging element unit; a first wiring portion that electrically connects the focus drive unit, the first image blur-correction drive unit, and the second image blur-correction drive unit to the first connecting portion; a second wiring portion that is electrically connected to only a part of a plurality of wires of the first wiring portion; and a plurality of second connecting portions (59) that are electrically connected to the second wiring portion.
Abstract:
Provided is an information processing apparatus including an acquiring unit that acquires cell information indicating a state of a cell from production of a pluripotent stem cell to differentiation of the pluripotent stem cell into a specific differentiated cell by differentiation induction, and process history information indicating a history of a processing process for obtaining the differentiated cell, and a deriving unit that derives differentiation potency information indicating differentiation potency of the pluripotent stem cell based on the cell information and the process history information which are acquired by the acquiring unit.
Abstract:
The present invention provides an imaging device and a time-lapse imaging method capable of simply realizing time-lapse imaging using a pan and tilt mechanism. In a preferred aspect of the present invention, an imaging device includes a pan and tilt mechanism that rotates an imaging unit in a horizontal direction and a vertical direction relative to a device body, transmits a live view image to a smartphone, displays the live view image on a display and input unit, and receives an instruction input for specifying camerawork in time-lapse imaging using the display and input unit. Accordingly, the instruction input for specifying camerawork for performing time-lapse imaging using the pan and tilt mechanism can be simply input. The imaging device controls at least the pan and tilt mechanism based on the instruction input for specifying camerawork and controls the imaging unit to perform time-lapse imaging.
Abstract:
The invention provides an imaging module that can reliably perform probing, and an electronic apparatus including the imaging module. An imaging module includes a lens unit, and an imaging element unit that is fixed to the lens unit. The lens unit includes a focus drive unit, first and second image blur-correction drive units, a housing, a first connecting portion that is electrically connected to the imaging element unit, a first wiring portion that electrically connects the respective drive units to the first connecting portion, second connecting portions that are disposed outside the housing, a second wiring portion that is electrically connected to the second connecting portions and is electrically connected to the respective drive units to which the first wiring portion is connected, and a wiring board that includes at least a part of the second wiring portion and the plurality of second connecting portions.
Abstract:
The present invention provides an imaging module capable of performing positioning of an imaging element unit, and a lens unit at a low cost and with high precision and an electronic device including the imaging module. An imaging module 100 includes a lens unit 10 including VCMs 16A, 16C, and 16E which move a lens group 12 in an x direction, a y direction, and a z direction, respectively, terminals 14A and 14B which are connected to the VCM 16A, terminals 14C and 14D which are connected to the VCM 16C, and terminals 14E and 14F which are connected to the VCM 16E, and an imaging element unit 20 including terminals 24A to 24F which are connected to the terminals 14A to 14F. Exposed areas of the terminals 14A and 14B are larger than exposed areas of the terminals 14C to 14F.
Abstract:
An optical element includes an optical base material and a light blocking portion. The optical base material transmits light therethrough. The light blocking portion is formed on part of a surface of the optical base material. The light blocking portion includes a light blocking layer and an antireflection layer that is formed on a non-adhesion surface with the optical base material in the light blocking layer. A refractive index of the antireflection layer is lower than a refractive index of the light blocking layer.