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IDT49C460DJB Datasheet(PDF) 8 Page - Integrated Device Technology |
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IDT49C460DJB Datasheet(HTML) 8 Page - Integrated Device Technology |
8 / 32 page 11.6 8 IDT49C460/A/B/C/D/E 32-BIT CMOS ERROR DETECTION AND CORRECTION UNIT MILITARY AND COMMERCIAL TEMPERATURE RANGES OPERATING MODE SELECTION Tables 2 and 3 describe the nine operating modes of the IDT49C460s. The Diagnostic Mode pins — DIAG MODE0,1 — define four basic areas of operation. GENERATE and CORRECT further divide operation into 8 functions, with CODE ID1,0 defining the ninth mode as the Internal Mode. Generate Mode is used to display the check bits on the outputs SC0–7. The Diagnostic Generate Mode displays check bits as stored in the Diagnostic Latch. Detect Mode provides an indication of errors or multiple errors on the outputs ERROR and MULT ERROR. Single bit errors are not corrected in this mode. The syndrome bits are provided on the outputs SC0–7. For the Diagnostic Detect Mode, the syndrome bits are generated by comparing the internally generated check bits from the Data In Latch with check bits stored in the diagnostic latch rather than with the check bit latch contents. Correct Mode is similar to the Detect Mode except that single bit errors will be complemented (corrected) and made available as input to the Data Out Latches. Again, the Diagnostic Correct Mode will correct single bit errors as determined by syndrome bits generated from the data input and contents of the diagnostic latches. The Initialize Mode provides check bits for all zero bit data. Data Input Latches are set, latched to a logic zero and made available as input to the Data Out Latches. The Internal Mode disables the external control pins DIAG MODE0,1 and CORRECT to be defined by the Diagnostic Latch. Even CODE ID1,0, although externally set to the 01 code, can be redefined from the Diagnostic Latch data. Code ID1 Code ID0 Slice Selected 0 0 32-Bit 0 1 Internal Control Mode 1 0 64-Bit, Lower 32–Bit (0–31) 1 1 64-Bit, Upper 32-Bit (32–63) 2584 tbl 04 Table 4. Slice Identification DATA0–31 DATA0–31 CB7 HIGH CB6 C6 CB5 C5 CB4 C4 CB3 C3 CB2 C2 CB1 C1 CB0 C0 SC7 NC SC6 S6/C6 SC5 S5/C5 SC4 S4/C4 SC3 S3/C3 SC2 S2/C2 SC1 S1/C1 SC0 S0/C0 CODE ID1,0 IDT49C460 0,0 2584 drw 05 Figure 1. 32-Bit Configuration Figure 2. 64-Bit Configuration BYTE3 BYTE2 BYTE1 BYTE0 C0 C1 C2 C3 C4 C5 C6 DATA CHECK BITS 0 7 8 15 16 23 24 31 2584 drw 07 BYTE7 BYTE6 BYTE5 BYTE4 BYTE3 BYTE2 BYTE1 BYTE0 C0 C1 C2 C3 C4 C5 C6 C7 DATA CHECK BITS 0 7 8 15 16 23 24 31 32 39 40 47 48 55 56 63 2584 drw 08 Figure 3. 32-Bit Data Format Figure 4. 64-Bit Data Format DATA0–31 DATA32–63 DATA INPUT CHECK–BIT INPUTS 1/8 IDT74FCT240 DATA CB0–7 OESC CODE ID1,0 SC0–7 IDT49C460 (LOWER 32 BITS) DATA CB0–7 OESC CODE ID1,0 SC0–7 IDT49C460 (UPPER 32 BITS) ERROR MULT ERROR MULT ERROR ERROR SYNDROME/ CHECK BITS 1,1 1,0 OESC 32 32 8 8 8 2584 drw 06 |
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