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PCA9540B 1. General description 2-channel I
PCA9540B 1. General description 2-channel I

... transmitter to receiver is not limited. Each byte of eight bits is followed by one acknowledge bit. The acknowledge bit is a HIGH level put on the bus by the transmitter, whereas the master generates an extra acknowledge related clock pulse. A slave receiver which is addressed must generate an ackno ...
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... front of the module. Set the TENS rotary switch (0 through 12) for the 10s and 100s digit and the ONES rotary switch for the 0 through 9 digit. For example: device address 21, set TENS rotary switch to 2 and set the ONES rotary switch to 1. ...
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start slide: headline arial bold 38 pt, 0 pt leading
start slide: headline arial bold 38 pt, 0 pt leading

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... 10. R2 is calculated by (VDD - ∆Vf) / Ishunt, where Ishunt is the desired forward bias current for the shunt diode. The power rating is calculated by Ishunt x (VDD - ∆Vf). For 28V VDD and 20 mA of Ishunt, R2 should use a 1W, 1.3k ohm resistor. 11. C8 is already built-in for M/A-COM MASW-000834-13560 ...
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UniPro protocol stack

In mobile-telephone technology, the UniPro protocol stack follows the architecture of the classical OSI Reference Model. In UniPro, the OSI Physical Layer is split into two sublayers: Layer 1 (the actual physical layer) and Layer 1.5 (the PHY Adapter layer) which abstracts from differences between alternative Layer 1 technologies. The actual physical layer is a separate specification as the various PHY options are reused in other MIPI Alliance specifications.The UniPro specification itself covers Layers 1.5, 2, 3, 4 and the DME (Device Management Entity). The Application Layer (LA) is out of scope because different uses of UniPro will require different LA protocols. The Physical Layer (L1) is covered in separate MIPI specifications in order to allow the PHY to be reused by other (less generic) protocols if needed.OSI Layers 5 (Session) and 6 (Presentation) are, where applicable, counted as part of the Application Layer.
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