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MNSC140CORE датащи(PDF) 5 Page - Freescale Semiconductor, Inc |
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MNSC140CORE датащи(HTML) 5 Page - Freescale Semiconductor, Inc |
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5 / 88 page ![]() Features MSC8122 Technical Data, Rev. 13 Freescale Semiconductor v Memory Controller Flexible eight-bank memory controller: • Three user-programmable machines (UPMs), general-purpose chip-select machine (GPCM), and a page-mode SDRAM machine. • Glueless interface to SRAM, page mode SDRAM, DRAM, EPROM, Flash memory, and other user-definable peripherals. • Byte enables for either 64-bit or 32-bit bus width mode. • Eight external memory banks (banks 0–7). Two additional memory banks (banks 9, 11) control IPBus peripherals and internal memories. Each bank has the following features: — 32-bit address decoding with programmable mask. — Variable block sizes (32 KB to 4 GB). — Selectable memory controller machine. — Two types of data errors check/correction: normal odd/even parity and read-modify-write (RMW) odd/even parity for single accesses. — Write-protection capability. — Control signal generation machine selection on a per-bank basis. — Support for internal or external masters on the system bus. — Data buffer controls activated on a per-bank basis. — Atomic operation. — RMW data parity check (on system bus only). — Extensive external memory-controller/bus-slave support. — Parity byte select pin, which enables a fast, glueless connection to RMW-parity devices (on the system bus only). — Data pipeline to reduce data set-up time for synchronous devices. Multi-Channel DMA Controller • 16 time-multiplexed unidirectional channels. • Services up to four external peripherals. • Supports DONE or DRACK protocol on two external peripherals. • Each channel group services 16 internal requests generated by eight internal FIFOs. Each FIFO generates: — A watermark request to indicate that the FIFO contains data for the DMA to empty and write to the destination. — A hungry request to indicate that the FIFO can accept more data. • Priority-based time-multiplexing between channels using 16 internal priority levels. • Round-robin time-multiplexing between channels. • A flexible channel configuration: — All channels support all features. — All channels connect to the system bus or local bus. • Flyby transfers in which a single data access is transferred directly from the source to the destination without using a DMA FIFO. Time-Division Multiplexing (TDM) Up to four independent TDM modules, each with the following features: • Optional operating configurations: — Totally independent receive and transmit channels, each having one data line, one clock line, and one frame sync line. — Four data lines with one clock and one frame sync shared among the transmit and receive lines. • Connects gluelessly to most T1/E1 framers as well as to common buses such as the ST-BUS. • Hardware A-law/ μ-law conversion. • Up to 62.5 Mbps per TDM (62.5 MHz bit clock if one data line is used, 31.25 MHz if two data lines are used, 15.63 MHz if four data lines are used). • Up to 256 channels. • Up to 16 MB per channel buffer (granularity 8 bytes), where A/ μ law buffer size is double (granularity 16 byte). • Receive buffers share one global write offset pointer that is written to the same offset relative to their start address. • Transmit buffers share one global read offset pointer that is read from the same offset relative to their start address. • All channels share the same word size. • Two programmable receive and two programmable transmit threshold levels with interrupt generation that can be used, for example, to implement double buffering. • Each channel can be programmed to be active or inactive. • 2-, 4-, 8-, or 16-bit channels are stored in the internal memory as 2-, 4-, 8-, or 16-bit channels, respectively. • The TDM Transmitter Sync Signal (TxTSYN) can be configured as either input or output. • Frame Sync and Data signals can be programmed to be sampled either on the rising edge or on the falling edge of the clock. • Frame sync can be programmed as active low or active high. • Selectable delay (0–3 bits) between the Frame Sync signal and the beginning of the frame. • MSB or LSB first support. Feature Description |
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