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  1/8 stlc90115 STLC90114 october 2003 this is preliminary information on a new product now in development. details are subject to change without notice. 1 features n adaptive frequency-domain equalization for better robustness in environment with bridged- taps. n applicable to both ends of loop: lt and nt. n protection against 250 m s duration impulsive noises thanks to programmable reed-solomon codec rs (n, k) and configurable triangular interleaver. n implements discrete multitone (dmt) modulation and digital frequency division duplexing (fdd) for deployment flexibility. n embedded operation channel messages (eoc) for continuous and on-line monitoring on the communication link between lt and nt. n support all frequency band plans (998, 997 and fx) specified in etsi, ansi and itu-t standard draft documents. n fast and/or slow data-path selectable at start- up. n selection of frequency band plan by software under network management (nm) control. n atm transmission convergence layer (atm- tc) with utopia interface (level 2). n support analogue bandwidth up to 12 mhz with an embedded 4096-tone ifft/fft processor. n 64kps user rate granularity. n embedded modem control software for line parameters set-up, communication link initialization, show time monitoring and telemetry information collection (ber, snr, standard deviation). n generation of deep frequency notches under nm control. n mapping/demapping functions supporting constellation size up to 16384 points (14 bits). n protection against two simultaneous; rf ham ingress n adaptive bit-loading algorithm for maximal use of the channel capacity. n accurate psd monitoring and adaptation to comply to reference psd masks specified in etsi and ansi standard draft documents. n control and maintenance via a operation and maintenance api from an external controller true the embedded ctrl-e interface. 2 applications n central office and customer premises equipment n dsl access multiplexers n integrated access devices tqfp100 bga416 ordering numbers: STLC90114 stlc90115 product brief vdsl dmt chip set
STLC90114 - stlc90115 2/8 3 general block diagram an on-board-controller platform has complete control over the configuration. figure 1 shows a typical con- figuration. this on-board-controller platform also contains the flash with the vdsl software. figure 1. a typical configuration of an on-board controller platform. the stlc90115 includes an internal arm processor core connected to an external sdram. the boot process will be under control of the external obc who will use the code from its flash to initialize the sdram. n atm interface: utopia "level 2" interface is integrated with the stlc90115 interface n flash memory: interfaces to an external flash memory. n sdram controller: interfaces to an external sdram memory. n general purpose i/o (gpio): ports that can be driven or read by the obc 4 the vdsl modem chipset the chipset is a two-chip vdsl modem transceiver with embedded transceiver controller. the kit also includes the necessary modem firmware running on the transceiver controller. the chipset directly inter- faces with atm systems to allow atm traffic to be transported at high speed on copper pairs with minimum overhead. 4.1 the modem environment the same chipset is used at both sides of the link. an external vdsl-compatible line driver is used to drive the twisted pair. finally, a splitter* is needed to split the base band signal from the modulated vdsl signal. 4.2 the chipset functions the chip functions are depicted in the block diagram of the vdsl modem presented in fig. 1 the functions included in each ic are as follows: stlc90115 STLC90114 atm processor ctrle arm vdsl modem ip on board controller platform contain ing flash flash sdram to/from vdsl to/from backpannel
3/8 STLC90114 - stlc90115 4.2.1 analog front-end circuit (STLC90114) figure 2. a block diagram of the analog front end circuit (STLC90114). this cmos ic contains the analog functions required in the transceiver: n [0..12mhz] receive and transmit signal frequency band n 35mhz 14bit digital to analog conversion n 35mhz 14bit analog to digital conversion n programmable gain amplifier in the tx path for optimum transmit power setting; the pga is a pre- amplifier for the external line driver n rx filtering for noise reduction; tx filtering for slew rate reduction n rc tuning for filter cut-off frequency control n clock generation based on a voltage controlled crystal oscillator; fine tuning by means of external capacitors. n serial control interface to configure the component in normal mode and in test mode n 100-pin tqfp package (14x14mm) n power consumption 500mw typ. n bicmos6 technology (0.35 m m) n single 3.0v up to 3.6v supply n extended temperature range lpf vcxo clocks xtal0 xtal1 tx(13:0) rx(13:0) d03tl579 pga 35 msps 35 msps lna rc tune control txp txn rxp rxn ctrl interface dac lpf adc
STLC90114 - stlc90115 4/8 4.2.2 modem/framer/controller (stlc90115) figure 3. a block diagram of the dmt modem, framer and controller (stlc90115) showing the receive and transmit paths. the stlc90115 can be used in a hardware implementation for both central office (vtu-o) and remote applications (vtu-r). no special mode setting is required, due to the programmability of the different func- tions. in the stlc90115 the receive (rx) and transmit (tx) paths are separated. common parts are obc or occ, performance monitor and test functions. control and configuration of the stlc90115 is by an external processor. all programmable coefficients and parameters are loaded by the obc or occ. the vdsl initialization procedure is also controlled by the obc or occ. such rapid control functions as pilot tone tracking and the dmt symbol time alignment are implemented in the hardware. (e.g. a dpll with programmable filters and gains.) receive path stlc90115 functions in the receive direction: C decimation of the rx signal (35.328 mhz) to a sampling rate of 17.664 C receive windowing C time domain to frequency conversion with fft C radio frequency interference canceling C rotor and frequency domain equalizing C demapping of the dmt carriers to a digital bit stream C error and noise monitoring on individual carriers and pilot tones C dpll function for tracking the received signal frequency deviations C adaptive feq coefficient update scheme C reed solomon decoding and de-interleaving C cell specific functions C utopia level 1 & 2 interface (& slap interface) diva dsp front end rx frequency domain processing fft framing, rs decoding & deinterleaving atm tc layer rx dsp front end tx frequency domain processing ifft framing, rs encoding & interleaving atm tc layer tx utopia i & ii timing units dpll arm utopia i or ii 35.3 msps 14 bit 35.3 msps 15 bit pmd layer pms-tc layer tps-tc layer diva dsp front end rx frequency domain processing fft framing, rs decoding & deinterleaving atm tc layer rx dsp front end tx frequency domain processing ifft framing, rs encoding & interleaving atm tc layer tx utopia i & ii timing units dpll arm utopia i or ii 35.3 msps 14 bit 35.3 msps 15 bit pmd layer pms-tc layer tps-tc layer
5/8 STLC90114 - stlc90115 transmit path stlc90115 functions in the transmit direction: C utopia level 1 & 2 interface (& slap interface) C cell specific functions C reed solomon encoding + interleaving C mapping a digital bit stream on dmt carriers C rotor and frequency domain gain correction; C spectral shaping C frequency to time domain conversion with ifft, C time domain dmt symbol composing and filtering; C transmit windowing C interpolation of the tx signal programmable from a 17.664 mhz towards 35.328 mhz. control of transceiver chip operations: the stlc90115 runs the firmware controlling the operations of the vdsl transceiver (afe, dmt modem, framer). during modem initialization, the controller computes and sets up parameters for all programma- ble dmt functions, filters and equalizers. the controller is able to run in different rate-adaptive modes as defined by the operator and can run programs for the vtu-o (master mode) or for the vtu-r (slave- mode) sides. the controller also implements the eoc and voc protocols. during operation, the stlc90115 performs continuous line monitoring and initiates consecutive actions as specified by the op- erator (e.g. bit swapping, dynamic bit-rate adaptation...). it also collects performance and error information for use by management entities. interface to management entities the stlc90115 also runs the communication protocol to interface with external management entities. a specific vdsl modem control interface is available to ease the integration with both systems hw and fw. this "ctrle communication channel" is used to transfer information and commands between modem and management entities. the stlc90115 provides direct hw connection to external components (pro- cessors, sars, muxes,...) through an 8-bit parallel bus for the control path. an api for the external man- agement function is provided or the operation and maintenance of the vdsl chipset. this api significantly reduces the software design in cycle. the following simplified vdsl lim/cpe software refer- ence model is used to describe the external sw interfaces of the vdsl modem.
STLC90114 - stlc90115 6/8 figure 4. vdsl lim/cpe sw reference model the following main software units/modules are identified in figure 4, as far as the external software inter- faces of the vdsl modems are concerned: n management applications: these are platform specific manager sw items (e.g. equipment manager, alarm manager, vdsl transport manager, etc.) which are responsible for the configuration, fault and performance management of the vdsl modem. n obc platform sw: this unit provides common platform services (e.g. os, communications, trace & debug, etc.) to the other sw items running on the obc. n trace & debug module: this is a module of obc platform sw that provides generic trace & debug services. n vdsl modem sw: this is the monolithic vdsl modem sw unit running on the occ. it contains the vdsl transceiver sw, vdsl specific manager sw and also their underlying occ platform sw (bsp, os, os wrapper, etc.). n vdsl proxy: this is a proxy agent that runs on the obc and implements the vdsl-api (on behalf of the vdsl modem sw). it also acts as a hw wrapper for the vdsl modem. n vdsl adapter: this modules allows the platform specific management applications to be integrated with the vdsl modem sw over the generic vdsl-api. it must be necessary to use such a module in order to be able to integrate the vdsl modem sw that is platform independent, with the management applications, if those applications are not designed to use the generic vdsl-api directly. n vdsl trace & debug wrapper: this module acts as a wrapper for the vdsl specific trace & debug services such that, those services can be accessed via the generic trace & debug module of the obc platform sw. n platform wrapper: this module provides the specific platform services required by the vdsl proxy that is implemented as platform independent. management applications vdsl proxy obc side vdsl modem sw occ side vdsl lim/cpe hw comm. driver vdsl modem comm. device (ctrl-e mailbox) diva hw wrapper vdsl adapter platform wrapper vdsl-api vdsl platform interface trace & debug module vdsl trace & debug wrapper vdsl tracing interface obc platform sw
7/8 STLC90114 - stlc90115 5 building systems with the vdsl chipset st has taken great care in defining the chipset to ease its integration into system designs. in particular, this is achieved: n at the hardware level: by using standard interfaces both for data transfer (atm utopia) and for control (8-bit parallel) n at the firmware level: by clearly separating the modem firmware, run on the embedded transceiver controller from other systems related and application-specific functions. the boundary between the two domains provides a simple modem control protocol (ctrle). this "packaged modem" approach provides a self-contained vdsl modem solution, allowing system manufacturers to concentrate on system issues. external interfaces remain the same so that there is no impact on external system hw and sw elements. the chipset comes in a complete package with firmware, schematics, bill of materials, operations and maintenance api for the obc, and layout information for the vdsl modem part. it is further supported by a full development environment consisting of: n evaluation boards - can be used both on vtu-o and vtu-r sides n vdsl test and control firmware running on pc with gui figure 5. c o m 1 j t a g 9v dc dipswitch rj11 stlc 90114 afe sdram stlc 90115 modem line sdram flash 1v3 supply 3v3 supply 21v supply
information furnished is believed to be accurate and reliable. however, stmicroelectronics assumes no responsibility for the co nsequences of use of such information nor for any infringement of patents or other rights of third parties which may result from its use. no license is granted by implication or otherwise under any patent or patent rights of stmicroelectronics. specifications mentioned in this publicati on are subject to change without notice. this publication supersedes and replaces all information previously supplied. stmicroelectronics prod ucts are not authorized for use as critical components in life support devices or systems without express written approval of stmicroelectro nics. the st logo is a registered trademark of stmicroelectronics. all other names are the property of their respective owners ? 2003 stmicroelectronics - all rights reserved stmicroelectronics group of companies australia - belgium - brazil - canada - china - czech republic - finland - france - germany - hong kong - india - israel - ital y - japan - malaysia - malta - morocco - singapore - spain - sweden - switzerland - united kingdom - united states www.st.com 8/8 STLC90114 - stlc90115 6 evaluation board the evaluation board provides the following interfaces: n utopia level 2 rx/tx n rs-232 command shell n jtag 14-pin n vdsl line rj-11 n power supply 9v dc unregulated n dip switches for lt/nt and flash selection n leds


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