Abstract:
[Problem] To enable a more appropriate BSS transition threshold to be set in a wireless LAN system. [Solution] A wireless communication device functioning as an access point of a wireless LAN includes: a control unit that dynamically sets a threshold used when a station belonging to a BSS of its own device attempts to transit to another BSS belonging to the same ESS as the BSS based on information included in a wireless signal from an external device.
Abstract:
[Problem] A communication device that can more efficiently avoid the hidden node problem is provided. [Solution] The communication device includes a communication unit configured to receive a data signal from another communication device, a determination unit configured to determine whether the data signal received by the communication unit includes a request for transmission of a busy signal indicating that a channel is in use, and a control unit configured to control a process of transmitting the busy signal by the communication unit, in accordance with a determination result of the determination unit.
Abstract:
The present invention relates to performing properly wireless communications. A communication system includes a first information processing apparatus and a plurality of second information processing apparatuses. The first information processing apparatus is an information processing apparatus that assigns a plurality of channel resources for wireless communications to the plurality of second information processing apparatuses and notify the plurality of second information processing apparatuses of the assignments. The second information processing apparatuses, upon receipt of the notification, transmit to the first information processing apparatus a plurality of signals for providing predetermined information to the first information processing apparatus by using the plurality of assigned channel resources.
Abstract:
An information processing device includes a control unit. A first device that transmits data to the information processing device has a multiplexing function for multiplexing and transmitting data from a plurality of devices including the first device to the information processing device. The control unit provided in the information processing device performs control to tell the first device having the multiplexing function a multiplexing method for notification information and presence of data addressed to the first device. The notification information indicates that the first device has shifted from a functional suspension state to a data receivable state. The information processing device can reduce power consumption.
Abstract:
The present technology relates to a solid-state image sensor, an imaging device, and electronic equipment configured such that an FD is shared by a plurality of pixels to further miniaturize the pixels at low cost without lowering of sensitivity and a conversion efficiency.In a configuration in which a plurality of pixels are arranged with respect to at least either of one of the OCCFs or one of the OCLs, a floating diffusion (FD) is shared by a sharing unit including a plurality of pixels, the plurality of pixels including pixels of at least either of different OCCFs or different OCLs. The present technology is applicable to a CMOS image sensor.
Abstract:
Modes on power consumption are suitably set. There is provided an information processing device including a control section. When the information processing device in a first mode transitions to a second mode in which the information processing device consumes power differently than in the first mode, the control section performs control to transmit at least one frame. Upon transmitting the frame, the control section inserts into the frame information for notifying a first device compatible with the second mode that the information processing device will transition to the second mode, and information for causing a second device incompatible with the second mode to suppress transmission.
Abstract:
The present technology relates to a solid-state image sensor, an imaging device, and electronic equipment configured such that an FD is shared by a plurality of pixels to further miniaturize the pixels at low cost without lowering of sensitivity and a conversion efficiency.In a configuration in which a plurality of pixels are arranged with respect to at least either of one of the OCCFs or one of the OCLs, a floating diffusion (FD) is shared by a sharing unit including a plurality of pixels, the plurality of pixels including pixels of at least either of different OCCFs or different OCLs. The present technology is applicable to a CMOS image sensor.
Abstract:
The present technology relates to a solid-state image sensor, an imaging device, and electronic equipment configured such that an FD is shared by a plurality of pixels to further miniaturize the pixels at low cost without lowering of sensitivity and a conversion efficiency.In a configuration in which a plurality of pixels are arranged with respect to at least either of one of the OCCFs or one of the OCLs, a floating diffusion (FD) is shared by a sharing unit including a plurality of pixels, the plurality of pixels including pixels of at least either of different OCCFs or different OCLs. The present technology is applicable to a CMOS image sensor.
Abstract:
A frequency dividing circuit includes: a mode selection section configured to determine an exclusive OR of a first clock signal and a first signal and output the exclusive OR as a second signal in a first operation mode, and to output the first clock signal as the second signal in a second operation mode; and a clock generation section configured to generate and output a second clock signal, based on the second signal and the second clock signal, and to output one of the second clock signal and a third clock signal, as the first signal, the third clock signal having a phase same as a phase of the second clock signal.
Abstract:
There is provided a solid-state imaging apparatus including a plurality of photoelectric conversion regions which photoelectrically convert light incident from a rear surface side of a semiconductor substrate, element isolation regions formed between the plurality of photoelectric conversion regions arranged in a matrix shape, and shielding members formed on upper surfaces of the element isolation regions. The element isolation regions have high impurity concentration regions of a high impurity concentration connected to at least a part of the shielding members.