Abstract:
In an imaging apparatus system, a first imaging apparatus includes a first front casing, a common rear casing, a first lens mount attached to the first front casing, and a common monitor attached to the common rear casing. A second imaging apparatus includes a second front casing, a common rear casing, a second lens mount attached to the second front casing and different from the first lens mount, and a common monitor. When the first and second front casings are respectively attached to the common rear casings and, the center of the first lens mount and the center of the second lens mount are identical, regarding the relative positions in the left-right direction with respect to the common rear casings and.
Abstract:
The imaging apparatus of the present invention includes a main body, first camera fixedly arranged on the main body, an opening-closing unit provided rotatably with respect to the main body via a first hinge unit, a second camera mounted on the opposite side of the opening-closing unit from the first hinge unit, and a second hinge unit for rotatably supporting the imaging direction of the second camera. A body surface of the second camera is uneven, and the rotation direction of the first hinge unit and the rotation direction of the second hinge unit are the same rotation direction at the time of starting shooting with the second camera.
Abstract:
The imaging device includes a support member attached to the device main body and a display panel attached to the support member. The support member is configured to pivot around a first rotation axis and thereby move to a storage position and a tilt position. The display panel is configured to pivot around a second rotation axis orthogonal to the first rotation axis and thereby move to a closed position and an opened position and to pivot around a third rotation axis orthogonal to the second rotation axis and thereby vary a tilt angle of a display surface with respect to the extending direction of the second hinge part. When the support member is located at the tilt position and the display panel located at the opened position is pivoted around the third rotation axis, the display panel passes through outside the connector connection region.
Abstract:
A camera includes a camera-unit rotatably held which can change its photographing direction by rotation, and a rotation detecting device for detecting the rotation. The rotation detecting device includes: a detection part having a lever which self-returns to a reference position; a cam part, with which the lever part is contact, including a cut-out part in a part thereof; and a rotary body rotatable together with the camera-unit. In one-directional rotation about a shaft, the rotary body transitions at least among a first state of the lever not facing the cut-out part, a second state of the lever facing the cut-out part at the reference position, and a third state of the lever not facing the cut-out part. The detection part detects which one of the first, second, and third states the rotary body is in, and determines the photographing direction of the camera-unit based on the detected state.
Abstract:
An imaging apparatus system includes a first imaging apparatus, and a second imaging apparatus. The first imaging apparatus includes a first top casing including a casing top surface, and a common rear casing including a casing rear surface. The second imaging apparatus includes a second top casing including a casing top surface, and the common rear casing. The first top casing has a shape in which a vent hole is formed in the second top casing.