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STLC2500 데이터 시트보기 (PDF) - STMicroelectronics

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STLC2500
ST-Microelectronics
STMicroelectronics 
STLC2500 Datasheet PDF : 23 Pages
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STLC2500
7.9 Patch RAM
The STLC2500 includes a HW block that allows patching of the ROM code.
Additionally, a SW patch mechanism allows replacing complete SW functions without changing the ROM
image.
A part of the RAM memory is used for HW and SW patches.
7.10 Download of SW parameters
To change the device configuration a set of customizable parameters have been defined and put together
in one file. This file is downloaded at start-up into the STLC2500.
Examples of parameters are: radio configuration, PCM settings etc.
The same HCI command is used to download the file containing the patches (both those for the SW and
HW mechanism).
A more detailed description of the SW parameters is available upon request.
7.11 Bluetooth - WLAN coexistence in collocated scenario
Bluetooth and WLAN 802.11 b/g technologies occupy the same 2.4 GHz ISM band. STLC2500 imple-
ments a set of mechanisms to avoid interference in a collocated scenario.
The STLC2500 supports 5 different algorithms in order to provide efficient and flexible simultaneous func-
tionality between the two technologies in collocated scenarios:
Algorithm 1: PTA (Packet Traffic Arbitration) based coexistence algorithm defined in accordance with
the IEEE 802.15.2 recommended practice.
Algorithm 2: the WLAN is the master and it indicates to the STLC2500 when not to operate in case of
simultaneous use of the air interface.
Algorithm 3: the STLC2500 is the master and it indicates to the WLAN chip when not to operate in case
of simultaneous use of the air interface.
Algorithm 4: Two-wire mechanism
Algorithm 5: Alternating Wireless Medium Access (AWMA), defined in accordance with the WLAN
802.11 b/g technologies.
The algorithm is selected via HCI command. The default algorithm is algorithm 1.
7.11.1 Algorithm 1: PTA (Packet Traffic Arbitration)
The Algorithm is based on a bus connection between the STLC2500 and the WLAN chip:
STLC2500
WLAN
By using this coexistence interface it's possible to dynamically allocate bandwidth to the two devices when
simultaneous operations are required while the full bandwidth can be allocated to one of them in case the
other one does not require activity. The algorithm involves a priority mechanism, which allows preserving
the quality of certain types of link. A typical application would be to guarantee optimal quality to the Blue-
tooth voice communication while an intensive WLAN communication is ongoing.
Several algorithms have been implemented in order to provide a maximum of flexibility and efficiency for
the priority handling. Those algorithms can be activated via specific HCI commands.
The combination of a time division multiplexing techniques to share the bandwidth in case of simultaneous
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