Abstract:
A shooting apparatus has an image pickup section, a display section which displays an image picked up by the image pickup section, an operation section for performing operations including a shooting command, a communication section which performs communication with a further shooting apparatus, a determination section which determines a left-right placement relationship between the shooting apparatus and the further shooting apparatus from a predetermined position held by the user with a right hand or a left hand or from a predetermined operation, and a control section which, by transmitting a signal to the further shooting apparatus through the communication section, performs control for causing at least a portion of an image picked up by the further shooting apparatus to be transmitted from the further shooting apparatus.
Abstract:
A zoom lens comprising, a first lens unit having a positive refractive power, a second lens unit having a negative refractive power, a third lens unit having a positive refractive power, a fourth lens unit having a negative refractive power, and a fifth lens unit having a positive refractive power. Each distance between the first lens unit and the second lens unit, between the third lens unit and the fourth lens unit, and between the fourth lens unit and the fourth lens unit at the telephoto end is longer than at the wide angle end, and a distance between the second lens unit and the third lens unit at the telephoto end is shorter than at the wide angle end, and the following conditional expressions are satisfied. 2
Abstract:
A zoom lens includes, in order from the object side to the image side, a first lens unit having a negative refractive power, a second lens unit having a positive refractive power, and a third lens unit including a lens. The distance between the first lens unit and the second lens unit is smaller at the telephoto end than at the wide angle end, and the distance between the second lens unit and the third lens unit changes during zooming from the wide angle end to the telephoto end. The first lens unit consists, in order from the object side, of a front sub lens unit having a negative refractive power, an optical path bending member, and a rear sub lens unit having a positive refractive power. The front sub lens unit includes a biconcave single lens, and the rear sub lens unit includes one or two single lenses.
Abstract:
A taking lens system comprises a frontmost lens unit, a rearmost lens unit, and a plurality of lens units arranged between the frontmost lens unit and the rearmost lens unit. One of the plurality of lens units is a first focusing lens unit. During focusing from an infinite object distance to a close object distance, only the first focusing lens unit moves toward the image side in a first shooting mode, and at least two lens units in the taking lens system move in a second shooting mode. In the state in which the taking lens system is focused on an object at infinity, the positions of the first focusing lens unit and at least one lens unit in the taking lens system in the first shooting mode are different from those in the second shooting mode. The taking lens system satisfies the condition Mn1>Mn2.
Abstract:
A zoom lens consists of, in order from the object side, a first lens unit having a positive refractive power, a second lens unit having a negative refractive power, a third lens unit having a positive refractive power, a fourth lens unit having a negative refractive power, and a fifth lens unit having a positive refractive power. The first lens unit and the second lens unit move during zooming from the wide angle end to the telephoto end. The zoom lens satisfies the following conditional expressions (1), (2), and (3): ft/fw>6.0 (1), Fno(T)
Abstract translation:变焦透镜从物体依次包括具有正折光力的第一透镜单元,具有负折光力的第二透镜单元,具有正折光力的第三透镜单元,具有负折射力的第四透镜单元 屈光力和具有正屈光力的第五透镜单元。 第一透镜单元和第二透镜单元在从广角端到远摄端的变焦期间移动。 变焦透镜满足以下条件表达式(1),(2)和(3):ft / fw> 6.0(1),Fno(T)<3.5(2)和&Sgr; d / ft <0.6 )。
Abstract:
A photographing apparatus of the invention which is capable of photographing a desired object by making a plurality of photographing apparatuses cooperative with one another includes: an image pickup section; a detection section for acquiring photographing information related to an image acquired by the image pickup section; a transmission section for transmitting the photographing information acquired by the detection section; a reception section for receiving an image photographed and transmitted by another photographing apparatus based on the photographing information; and a memory control section for storing the image acquired by the image pickup section and the image received by the reception section in association with each other.
Abstract:
An image pickup apparatus includes an image pickup section configured by an image pickup optical system, and an image pickup device for a storage section for temporarily storing image data, a display section, a dividing operation section for instructing that a region to be displayed on the display section is to be divided, and a signal processing control section including at least a display control section, and an image processing section, wherein the signal processing control section performs display control of displaying, on the display section, an image based on the image data, dividing a display region of the display section after receiving a division instruction from the dividing operation section, and causing a second image to be displayed in one of regions obtained by the division, and repeatedly updating/displaying a first image in a display region, of the display section, different from an image display region.
Abstract:
A zoom lens includes in order from an object side, a first lens unit having a positive refractive power, a second lens unit having a negative refractive power, a third lens unit having a positive refractive power, and a fourth lens unit having a positive refractive power, and at the time of zooming, the first lens unit moves, and the zoom lens satisfies the following conditional expressions (1-1a), (1-2a), and (1-3a). 0.43
Abstract:
A vibrating device includes a dust-screening member and a vibrating member. The dust-screening member is disposed in front of an image surface of an image forming element having the image surface in which an optical image is generated. The dust-screening member has a box shape with about the same small plate thickness as a whole, and includes, in a bottom surface portion of the box shape, a transparent part which spreads from the center of the bottom surface portion. The vibrating member is disposed outside the transparent part of the dust-screening member. The vibrating member is configured to generate, in the bottom surface portion of the dust-screening member, vibration having a vibrational amplitude which is vertical to the bottom surface portion thereof.
Abstract:
A photographing unit includes an image pickup portion which outputs a first image pickup image obtained through photographing of an object, a display control portion for displaying the first image pickup image from the image pickup portion and a second image pickup image from a different photographing unit on an identical display screen, an image comparison portion which compares the first image pickup image with the second image pickup image, and an angle-of-view display portion which controls the display control portion on the basis of a comparison result from the image comparison portion to display a display indicating an image pickup range of the first image pickup image in the second image pickup image.