Abstract:
An electronic device includes a main body. The main body includes a hook and a sliding button. The hook is connected to the sliding button. A first groove and a second groove are defined in the main body and communicate with each other to form a slot. The hook protrudes from the first groove and the sliding button protrudes from the second groove. The main body further includes a sensor, a processing unit and an alarm unit. The sensor is located on an inner wall of the slot. When the sliding button is slid, the hook moves along with the sliding button and comes in contact with the sensor. The sensor generates a sensing signal due to the contact with the hook. When the processing unit receives the sensing signal from the sensor, the processing unit controls the alarm unit to sound an alarm.
Abstract:
The present invention extends to methods, systems, and computer program products for hierarchically disassembling messages. The functionality of disassemblers and framers is decoupled such that framers for different types of messages can be utilized at the same level in a hierarchy without having to also change disassemblers. Virtually any level of disassembly is possible to address any corresponding level of message nesting. Disassembly can be performed on a per message or per session basis.
Abstract:
A system for self-correcting the multiphase clock includes a transmitter, a receiver, a random code generator and a controller. The random code generator generates a random code stream, the random code stream is transformed to the high-speed serial data by the transmitter, the high-speed serial data are sent into the receiver and transformed to the parallel data by the receiver, the parallel data are sent into the controller, the controller stores the random code stream and detects the probability of the bit error of the parallel data output by the receiver. According to the test result of the bit error, the controller generates a phase adjustment control signal for adjusting the phase uniformity of the multiphase clock. Also, a method for self-correcting the phase uniformity of the multiphase clock of the present invention effectively makes up the sampling bit errors caused by the phase nonuniformity of the multiphase clock.
Abstract:
The invention is drawn to novel macrolide compounds of formula I having antibiotic and antineoplastic activities, useful as medicaments and/or agrochemicals for microorganism infections, in particularly for infectious diseases involving drug-resistant Staphylococcus, and for treatment of human and animal cancers.
Abstract:
An analog access circuit for characterizing chalcogenide memory cells is disclosed. The analog access circuit includes an analog access control module, an address and data control module, and an analog cell access and current monitoring module. The analog access control module selectively controls whether a normal memory access or an analog memory access should be performed on a specific chalcogenide memory cell. The address and data control module allows a normal memory access to the chalcogenide memory cell according to an input address. The analog cell access and current monitoring module performs an analog memory access to the chalcogenide memory cell according to the input address, and monitors a reference current from a sense amplifier associated with the chalcogenide memory cell.
Abstract:
Methods of identifying immune response modulators are disclosed. Some methods comprise identifying chemical candidates that modulate oligomerization of FOXP3 and/or fragments thereof comprising the Zinc-LeuZip domains. Some methods comprise identifying chemical candidates that modulate the hetero-oligomerization of FOXP1 with FOXP3 and/or fragments thereof comprising the Zinc-LeuZip domains. Some methods comprise identifying chemical candidates that modulate interaction of IL-2 promoter with FOXP3 and/or fragments thereof comprising the Zinc-LeuZip domains. Method of treating individuals who have or are suspected of having autoimmune disease, inflammatory disease, cell, tissue or organ transplantation, or coronary artery disease, and methods of treating individuals who have or are suspected of having infectious disease, cancer, or who are immunocompromised or undergoing vaccination are disclosed.
Abstract:
A brushless motor comprises a stator and a rotor rotatably mounted to the stator. The rotor comprises a shaft, a rotor core fixed onto the shaft and magnets fixed to the rotor core. Two covers are fitted to respective ends of the rotor core, with one of the covers covering one end of the rotor core and at least a part of the radially outer peripheral surface of the rotor core, while the other cover at least covering the other end of the rotor core. Preferably, the entire peripheral surface of the rotor core is substantially covered by the two covers and the gap between the two covers is sealed by adhesive.
Abstract:
In a method and device for side-band suppression, a positive eddy current correction factor and negative eddy current correction factor are determined and scanning N/2 times by a positive gradient takes place, and the positive gradient scanning signal is collected during each scan. Scanning N/2 times by a negative gradient also takes place, and the negative gradient scanning signal is collected during each scan. N is an even number. An eddy current correction of the N/2 positive gradient scanning signals collected according to the positive eddy current correction factor is performed as an eddy current correction of the N/2 negative gradient scanning signals collected according to the negative eddy current correction factor. The side-band suppressed spectrum signal according to the N/2 positive gradient scanning signals that have undergone the eddy current correction is calculated, as is the N/2 negative gradient scanning signals that have undergone the eddy current correction. The method and device according to the present invention can effectively suppress the side band.