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AM6546 датащи(PDF) 255 Page - Texas Instruments |
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AM6546 датащи(HTML) 255 Page - Texas Instruments |
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255 / 284 page ![]() • Speed measurements of rotating machinery (for example, toothed sprockets sensed via Hall sensors) • Elapsed time measurements between position sensor pulses • Period and duty cycle measurements of pulse train signals • Decoding current or voltage amplitude derived from duty cycle encoded current/voltage sensors. For more information, see Enhanced Capture (ECAP) Module section in the device TRM. 8.4.5.8 EPWM An effective PWM peripheral must be able to generate complex pulse width waveforms with minimal CPU overhead or intervention. It needs to be highly programmable and very flexible while being easy to understand and use. The EPWM unit described here addresses these requirements by allocating all needed timing and control resources on a per PWM channel basis. Cross coupling or sharing of resources has been avoided; instead, the EPWM is built up from smaller single channel modules with separate resources and that can operate together as required to form a system. This modular approach results in an orthogonal architecture and provides a more transparent view of the peripheral structure, helping users to understand its operation quickly. For more information, see Enhanced Pulse Width Modulation (EPWM) Module section in the device TRM. 8.4.5.9 ELM The ELM is used with the GPMC. Syndrome polynomials generated on-the-fly when reading a NAND flash page and stored in GPMC registers are passed to the ELM. A host processor can then correct the data block by flipping the bits to which the ELM error-location outputs point. When reading from NAND flash memories, some level of error-correction is required. In the case of NAND modules with no internal correction capability, sometimes referred to as bare NANDs, the correction process is delegated to the memory controller. ELM can be also used to support parallel NOR flash or NAND flash. The General-Purpose Memory Controller (GPMC) probes data read from an external NAND flash and uses this to compute checksum-like information, called syndrome polynomials, on a per-block basis. Each syndrome polynomial gives a status of the read operations for a full block, including 512 bytes of data, parity bits, and an optional spare-area data field, with a maximum block size of 1023 bytes. Computation is based on a Bose-Chaudhuri-Hocquenghem (BCH) algorithm. The ELM extracts error addresses from these syndrome polynomials. Based on the syndrome polynomial value, the ELM can detect errors, compute the number of errors, and give the location of each error bit. The actual data is not required to complete the error-correction algorithm. Errors can be reported anywhere in the NAND flash block, including in the parity bits. For more information, see Error Location Module (ELM) section in the device TRM. 8.4.5.10 ESM The Error Signaling Module (ESM) aggregates safety-related events and errors from throughout the device into one location. It can signal both low and high priority interrupts to a processor to deal with a safety event and/or manipulate an I/O error pin to signal an external hardware that an error has occurred. Therefore an external controller is able to reset the device or keep the system in a safe, known state. For more information, see Error Signaling Module (ESM) section in the device TRM. 8.4.5.11 EQEP The Enhanced Quadrature Encoder Pulse (EQEP) peripheral is used for direct interface with a linear or rotary incremental encoder to get position, direction and speed information from a rotating machine for use in high performance motion and position control system. For more information, see Enhanced Quadrature Encoder Pulse (EQEP) Module section in the device TRM. 8.4.5.12 GPIO The General-Purpose Input/Output (GPIO) peripheral provides dedicated general-purpose pins that can be configured as either inputs or outputs. When configured as an output, the user can write to an internal register to www.ti.com AM6548, AM6528, AM6546, AM6526 SPRSP52B – DECEMBER 2019 – REVISED JUNE 2021 Copyright © 2022 Texas Instruments Incorporated Submit Document Feedback 255 Product Folder Links: AM6548 AM6528 AM6546 AM6526 |
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