Abstract:
A computer-implemented method of creating enhancements in a computer game for a recipient experiencing a performance, the method including: selecting an enhancement to apply to a recipient; modifying the enhancement; and applying the modified enhancement to the recipient, wherein the modified enhancement is effective for a fixed duration of time proportional to the time spent by the recipient experiencing the performance. Keywords include MMO, buffs, packages and performance.
Abstract:
A cage assembly comprising a mounting rack with a plurality of adjacent openings wherein a width of each opening in the plurality of adjacent openings is capable of receiving a single width transceiver package, wherein each adjacent opening in the plurality of adjacent openings is capable of receiving a multi-width transceiver package, and wherein the width of the multi-width transceiver package is N times the width of the single width transceiver package wherein N is an integer number greater than one.
Abstract:
A computer-implemented method, a system, and a network include receiving network data from a network and non-network sourced data from one or more external sources relative to the network; performing data mining on the network data and the non-network sourced data; developing a predictive analytics model based on the data mining; and performing predictive analytics on the network data and the non-network sourced data using the predictive analytics model to detect likely future failures in the network. The network can include a Software Defined Network (SDN) operating at any of Layers 0, 1, 2 and/or 3.
Abstract:
An LED (Light Emitting Device) light source (100), a pulse controller or pulse control module (130) for an LED light source, and a method are provided, for controlling relative timing and phase of LED light pulse generation and operation of peripheral devices, relative to a common timing reference. A system is provided comprising a pulse controller (130) for controlling synchronization of multiple LEDs (144) and/or other devices and peripherals (164), relative to a common timing reference. The pulse controller (130) comprises a processor (131) that programmatically executes a time based sequence of digital control signals (141) from received inputs (121) indicative of a pulse generation sequence. The pulse controller provides for multiple pulse trains where improved control of relative timing of several events is required, such as for control of multiple high intensity LED light sources and synchronized control of peripheral devices such as detectors, for applications, such as, fluorescence microscopy and other spectroscopic applications.
Abstract:
According to one embodiment, an apparatus comprises a substrate, a touch sensor, and a cover lens. The touch sensor is disposed on the substrate. A conductive mesh forms portions of the touch sensor, and the conductive mesh comprises fine lines of metal. The cover lens is coupled to the touch sensor and is at most 0.4 mm thick. The cover lens comprises plastic.
Abstract:
An LED (Light Emitting Device) light source (100), a pulse controller or pulse control module (130) for an LED light source, and a method are provided, for controlling relative timing and phase of LED light pulse generation and operation of peripheral devices, relative to a common timing reference. A system is provided comprising a pulse controller (130) for controlling synchronization of multiple LEDs (144) and/or other devices and peripherals (164), relative to a common timing reference. The pulse controller (130) comprises a processor (131) that programmatically executes a time based sequence of digital control signals (141) from received inputs (121) indicative of a pulse generation sequence. The pulse controller provides for multiple pulse trains where improved control of relative timing of several events is required, such as for control of multiple high intensity LED light sources and synchronized control of peripheral devices such as detectors, for applications, such as, fluorescence microscopy and other spectroscopic applications.
Abstract:
A computer-implemented method of creating enhancements in a computer game for a recipient experiencing a performance, the method including: selecting an enhancement to apply to a recipient; modifying the enhancement; and applying the modified enhancement to the recipient, wherein the modified enhancement is effective for a fixed duration of time proportional to the time spent by the recipient experiencing the performance. Keywords include MMO, buffs, packages and performance.
Abstract:
A computer-implemented method of growing and incubating custom creatures in a computer game, including: obtaining genetic properties; combining the genetic properties in combinations of attributes, skills, and appearances; incubating a creature with role-specific properties using the combined genetic properties; and displaying an egg object of the incubated creature on a display for transaction. Keywords include MMO, incubation, genetic properties, and egg object.
Abstract:
A BarBProp is an auxiliary device that is used for temperature control in a barbeque grill. It offers multiple levels of heat control and helps to regulate the intensity of the heat within the grill chamber. The device can be used in two different ways to regulate the cooking temperature. First, the leg of the device can be made to rest on the edge of the grill while the lid rests on one of the fishhook shaped supports. Second, the user can choose to rest the fishhook supports on the edge of the grill while the leg of the device holds the lid. In either of the two approaches, the user determines the height at which the barbeque lid remains open for to heat escape. A novel aspect of the device is that the heat tolerant handle provides for easy and safe use without any risk of injury or fire burns. This device can be attached to the barbeque grill for easy access when needed.
Abstract:
A method and system for blending biogas with conventional fuel in which the fuel blend is automatically adjusted for lower biogas flows and methane concentrations by introducing higher concentrations of conventional fuels. The system is able to automatically adjust the fuel blend, thereby eliminating the requirement for manual intervention, and producing a variable blended biogas that can be utilized within existing natural-gas fired combustion units such as boilers, furnaces, heaters, etc., as well as enabling automatic adjustment and operation, maximum usage of biogas, and integration with combustion unit controls. Using all available biogas to provide energy also minimizes the need for flaring unused biogas.