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Proximity detection between wireless devices e. For example, in a classroom group discussion, a first laptap device may be surrounded by a second laptap device, a third laptap device, and so on. The first laptap device may detect the second laptap device, or the third laptap device etc. Proximity detection may be based upon WiFi signals generated by the wireless devices. For example, received signal strength from the WiFi signals may be used to determine presence of the wireless devices.

In this bd 102-2 binary, the received signal strength still fails to solve the problem described above. The detailed description is described with reference to accompanying figures. In the figures, the left-most digit s of a reference number identifies the figure in which the reference number first appears. The same numbers are used throughout the drawings to reference like features and components. A magnetic resonance technology is used to implement front and back proximity sensing capability for wireless devices such as a laptap device.

For example, a high quality Q factor coil antenna may be embedded at a display, such as a liquid crystal display LCD of a first laptap device to detect the other wireless devices e. In this example, the second laptap device induces a sine wave signal to the first laptap device if the second laptap device is physically located at the backside of the first laptap device.

Otherwise, the second laptap device may induce a cosine wave signal to the first laptap device if the second laptap device is physically located bd 102-2 binary the front side of the first laptap device. In the following detailed description, numerous specific details are set forth in order to provide a thorough understanding bd 102-2 binary the invention.

However, it will be understood by those of ordinary skill in bd 102-2 binary art that the present invention may be practiced without these specific details. In other instances, well-known methods, procedures, components and circuits have not been described in detail so as not to obscure the present invention.

Some portions of the detailed description, which follow, are presented in terms of algorithms and symbolic representations of operations on data bits or binary digital signals within a computer memory.

These algorithmic descriptions and representations may be the techniques used by those skilled in the data processing arts to convey the substance of their work to others skilled in the art. The term plurality, as used herein, is defined as two, or more than two. The term another, as used herein, is defined as, at least a second or more. The term coupled as used herein, is defined as operably connected in any desired form for example, mechanically, electronically, digitally, directly, by software, by hardware and the like.

In an implementation, a wireless device - 1 may include a proximity sensing hardware e. For example, the wireless device - 2 may be located at the back portion of the wireless device - 1.

In this example, the wireless device - 1 may detect the presence and bearing location i. The magnetic resonance coupling may include electrical resonance bd 102-2 binary upon the wireless device - 1 when the wireless device - 2 is physically located within close proximity i. Similarly, a wireless device - 3 may be located at front portion of the wireless device - 1.

The wireless device - 1 may detect the location and presence of the wireless device - 3 by processing currents induced by electromagnetic field emitted at the wireless device - 3. In an implementation, wireless devices - 4 and - 5which are located at the right side and left side respectively of the wireless device - 1 may be detected using WiFi signals. For example, received signal strength indicator RSSI may be used as the bd 102-2 binary for locating presence bd 102-2 binary location of the wireless devices - 4 and - 5.

The RSSI may include power level indication received by a separate antenna of the wireless device - 1. In other implementations, bd 102-2 binary wireless devices - 1- 3- 4and - 5 may be configured to have proximity sensing capabilities similar to the wireless device - 1. The wireless device may include various devices, such as laptop computers, tablet computers, smart phones, etc.

Furthermore, as discussed above, the wireless device is to be bd 102-2 binary to include other devices. Wireless device includes one or more processors, processor s Processor s may be a single processing unit or a number of processing units, all of which may include single or multiple computing units or multiple cores. Among other capabilities, the processor bd 102-2 binary may be configured to fetch and execute computer-readable instructions or processor-accessible instructions stored in a memory or other computer-readable storage media.

Memory is an example of computer-readable storage media for storing instructions which are executed by the processor s to perform the various functions described herein. For example, memory may generally include both volatile memory and non-volatile memory e. Memory may be referred to as memory or computer-readable storage media herein. Memory is capable of storing computer-readable, processor-executable program instructions as computer program code that may be executed by the processor s as a bd 102-2 binary machine configured for carrying out the operations and functions described in the implementations herein.

Memory may include one or more operating systemsand may store one or more applications The operating system s may be one of various known and future operating systems implemented for personal computers, audio video devices, etc. In addition, memory may include data to store the installed and downloaded applications. Memory includes a magnetic resonance detector that may be configured to receive magnetic resonance signal through a high Q coil antenna i.

The magnetic resonance signal may be derived from induced magnetic resonance signal generated by presence of another wireless device. In an implementation, the magnetic resonance detector may process or detect presence of other wireless devices that are within coupling distance configured at the magnetic resonance detector The coupling bd 102-2 binary may be configured by setting a threshold for the magnetic resonance signal induced at the antenna For example, the threshold may be configured to include a certain value of induced current to determine that the emitting wireless device is within the coupling distance e.

In this example, if the induced current generated by the wireless device does not satisfy the threshold, then the wireless device is located beyond the coupling distance configured for the wireless device In other implementations, the threshold may be set aside.

Instead, bearing location of the wireless device may be directly determined based on the received magnetic resonance signal. In an implementation, the magnetic resonance detector may detect whether the other wireless devices are located bd 102-2 binary the front or at the backside of the proximity sensing wireless device - 1.

The detection of the wireless devices - 2 and - 3 may be based upon a signal phase of the received magnetic resonance signal at the magnetic resonance detector For example, the signal phase received by the magnetic resonance detector may include a sine wave signal. In this example, the sine wave signal may indicate that the detected wireless device is located at the backside of the wireless device - 1. At bd 102-2 binary instance, the signal phase received by the magnetic resonance detector may include a cosine wave signal.

The cosine bd 102-2 binary signal may indicate that the detected wireless device is located at the front side of the wireless device In other implementations, the magnetic resonance detector may be configured to transmit the magnetic resonance signal to another proximity sensing wireless device. In an implementation, the wireless device may include a radio The radio may include a transmitter that is coupled to the antenna The antenna may include electromagnetic coils e.

LCD of the wireless device It is to be understood that wireless device may include other communication interfaces not shownother than the radio The example wireless device described herein is merely an example that is suitable for some implementations and is not intended to suggest any limitation as to the bd 102-2 binary of use or functionality of the environments, architectures and frameworks that may implement bd 102-2 binary processes, components and features described herein.

Generally, any bd 102-2 binary the functions described with reference to the figures can be implemented using software, hardware e. Program code may be stored in one or more computer-readable memory devices or other computer-readable storage devices. Thus, the processes and components described herein may be implemented by a computer program product. As mentioned above, computer storage media includes volatile and non-volatile, removable and non-removable media implemented in any method or technology for storage of information, such as computer readable instructions, data structures, program modules, or other data.

Computer storage media includes, but is bd 102-2 binary limited to, RAM, ROM, EEPROM, flash memory or other bd 102-2 binary technology, CD-ROM, digital versatile disks DVD or other optical storage, magnetic cassettes, magnetic tape, magnetic disk storage or other magnetic storage devices, or any other medium that can be bd 102-2 binary to store information for access by a computing device. In an implementation, the wireless devices - 1- 2and - bd 102-2 binary may be proximity sensing wireless devices.

In other words, each of the wireless devices - 1- 2and - 3 may detect the presence of each other. Further, each of the wireless devices - 1bd 102-2 binary 2and - 3 may determine whether the other wireless devices e. In an implementation, the wireless device - 1 is located between the wireless device - 2which is located at the back side of the wireless device - 1and the wireless device - 3which is located at the front side of the wireless device - 1.

In this example, the wireless device - bd 102-2 binary may first determine if the wireless devices - 2 and - 3 are within the coupling distance as configured at the wireless device - 1. The coupling distance may be based upon a coil diameter of the antenna e.

After determining the physical presence of the wireless devices - 2 and - 3the wireless device - 1 may determine which of the wireless devices - 2 and - 3 are located at the front side or the backside of the wireless device - 1.

For example, the wireless device - 2 may generate a sine wave signal that is received by the wireless device bd 102-2 binary 1 as the same sine wave signal In this example, the received sine wave signal may indicate that the generating wireless device - 2 is located at the backside of the wireless device - 1. Similarly, the wireless device - 3 may generate a sine wave signal ; however, the wireless device - 1 may receive the sine wave signal as a cosine wave signal because of opposite physical location.

The cosine wave signal may indicate bd 102-2 binary the wireless device - 3 is physically located at the front side of the wireless device - 1. The order in which the method is described is not intended to be construed as a limitation, and any number of the described method blocks can be combined in any order to implement the method, or alternate method.

Additionally, individual blocks may be deleted from the method without departing from the spirit and scope of the subject matter described herein. Furthermore, the method may be implemented in any suitable hardware, software, firmware, or a combination thereof, without departing from the scope of the invention. For example, at least one computer accessible medium may perform the method described below.

Bd 102-2 binary blockconfiguring a first wireless device to receive magnetic resonance signal is performed. In an implementation, the first wireless device e. The antenna in the first wireless device - 1 may supply the magnetic resonance signal.

The magnetic resonance signal may be derived from induced magnetic resonance signal generated by a second wireless device e.

The induced magnetic resonance signal bd 102-2 binary be detected by the antenna when the second wireless device - 2 is physically located within proximity sensing distance i. In an implementation, the antenna may be embedded at the display e. The antenna may produce a magnetic resonance coupling that is related to the antenna's dimension. For example, if the antenna dimension includes a resonator of millimeter mm coil diameter, then a maximum coupling distance may bd 102-2 binary up to mm, which is about three 3 times bd 102-2 binary the coil diameter.

The maximum coupling distance may include the proximity sensing distance for the wireless device - 1. In other implementations, the second wireless device - 2 may be the proximity sensing wireless device. At blockreceiving the magnetic resonance signal is performed. In an implementation, the first wireless device - 1 bd 102-2 binary receive the magnetic resonance signal from the second wireless device - 2 or a third wireless device e.

The magnetic resonance signal induced by the wireless devices - 2 or - 3 at the antenna may be supplied to the magnetic resonant detector In an implementation, the received magnetic bd 102-2 binary signal may satisfy a certain threshold that is configured at the magnetic resonance detector The threshold may be used to detect physical presence of the wireless devices - 2 and - 3 within the configured maximum coupling distance i.

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