Abstract:
Systems and methods for transferring data between a server and a system of cameras. One embodiment provides a low-power radio frequency (“RF”) network for a system of cameras. The network comprises a server configured to access information related to the system of cameras, wherein the server receives a signal indicating a user input, and a first camera of the system of camera. The first camera is configured to receive a status report from a second camera of the system of cameras, update a cache of the first camera based on the status report from the second camera of the system of cameras, and transmit the updated cache of the first camera to the server.
Abstract:
A system for transmitting images. The system comprises a first camera having a first camera module having a first sensor configured to capture a first image, the first image including a timestamp, an SD card configured to store the first image, a plurality of light-emitting diodes, a first display configured to display the first image, a first plurality of buttons associated with the first display, and a first communication module programmed to transmit the first image through a low-power communication network. The system further includes a home node configured to be powered by a second plurality of batteries. The home node includes a second communication module programmed to receive the first image from the first communication module over the low-power communication network, a second display configured to display the first image, and a second plurality of buttons associated with the second display.
Abstract:
A system for managing scouting images, including a scouting camera configured to record and store images of subjects at a particular location and an image management device which has a processor that creates a predictive statement based on image content of the images stored on the scouting camera or copies thereof and a display conveying the predictive statement to a user, wherein the predictive statement indicates a portion of a future time period that subjects are most likely to be at the particular location as compared to remaining portions of the future time period.
Abstract:
Systems and methods for transferring data between a server and a system of cameras. One embodiment provides a low-power radio frequency (“RF”) network for a system of cameras. The network comprises a server configured to access information related to the system of cameras, wherein the server receives a signal indicating a user input, and a first camera of the system of camera. The first camera is configured to receive a status report from a second camera of the system of cameras, update a cache of the first camera based on the status report from the second camera of the system of cameras, and transmit the updated cache of the first camera to the server.
Abstract:
Systems and methods for transferring data between a server and a system of cameras. One embodiment provides a low-power radio frequency (“RF”) network for a system of cameras. The network comprises a server configured to access information related to the system of cameras, wherein the server receives a signal indicating a user input, and a first camera of the system of camera. The first camera is configured to receive a status report from a second camera of the system of cameras, update a cache of the first camera based on the status report from the second camera of the system of cameras, and transmit the updated cache of the first camera to the server.
Abstract:
Systems and methods for transferring data between a server and a system of cameras. One embodiment provides a low-power radio frequency (“RF”) network for a system of cameras. The network comprises a server configured to access information related to the system of cameras, wherein the server receives a signal indicating a user input, and a first camera of the system of camera. The first camera is configured to receive a status report from a second camera of the system of cameras, update a cache of the first camera based on the status report from the second camera of the system of cameras, and transmit the updated cache of the first camera to the server.
Abstract:
A gun stand comprising a base for supporting a gun and a ribbon of stiff material including a coiled portion and an uncoiled portion (e.g., having a curved lateral cross-sectional shape). A lock mechanism (e.g., movable between an engaged position and a released position) can be used to inhibit movement of the ribbon relative to the base. Preferably, the lock mechanism further includes a trigger for selectively moving the lock mechanism between the engaged and released positions. The gun stand can comprise two ribbons, each having a coiled portion and an uncoiled portion. At least one of the ribbons can include a releasable securing mechanism (e.g., magnets) for securing the uncoiled portions of the ribbons to each other. A foot brace can be secured to a free end of the ribbon. A releasable attachment mechanism (e.g., a strap) can be provided to secure the gun to the gun stand.