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LTP5901-IPR датащи(PDF) 17 Page - Linear Technology |
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LTP5901-IPR датащи(HTML) 17 Page - Linear Technology |
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17 / 34 page ![]() LTP5901-IPR/LTP5902-IPR 17 59012iprfa For more information www.linear.com/LTP5901-IPR or www.linear.com/LTP5902-IPR Typical perFormance characTerisTics As described in the SmartMesh Network Overview sec- tion, devices in network spend the vast majority of their time inactive in their lowest power state (Doze). On a synchronous schedule a mote will wake to communicate with another mote. Regularly occurring sequences which wake, perform a significant function and return to sleep are considered atomic. These operations are considered atomic as the sequence of events can not be separated into smaller events while performing a useful function. For example, transmission of a packet over the radio is an atomicoperation.Atomicoperationsmaybecharacterized in either charge or energy. In a time slot where a mote successfully sends a packet, an atomic transmit includes setuppriortosendingthemessage,sendingthemessage, receiving the acknowledgment and the post processing needed as a result of the message being sent. Similarly in a time slot when a mote successfully receives a packet, an atomic receive includes setup prior to listening, listen- ing until the start of the packet transition, receiving the packet, sending the acknowledge and the post processing required due to the arrival of the packet. To ensure reliability each mote in the network is provided multiple time slots for each packet it nominally will send and forward. The time slots are assigned to communicate upstreamwithatleasttwodifferentmotes.Whencombined with frequency hopping this provides temporal, spatial and spectral redundancy. Given this approach a mote will often listen for a message that it will never receive, since the time slot is not being used by the transmitting mote. It has already successfully transmitted the packet. Since typicallythreetimeslotsarescheduledforeveryonepacket to be sent or forwarded, motes will perform more of these atomic idle listens than atomic transmit or atomic receive sequences. Examples of transmit, receive and idle listen atomic operations are shown below. |
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