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SPANSION MCP Data Sheet TM September 2003 TM This document specifies SPANSION memory products that are now offered by both Advanced Micro Devices and Fujitsu. Although the document is marked with the name of the company that originally developed the specification, these products will be offered to customers of both AMD and Fujitsu. Continuity of Specifications There is no change to this datasheet as a result of offering the device as a SPANSION revisions will occur when appropriate, and changes will be noted in a revision summary. TM product. Future routine Continuity of Ordering Part Numbers AMD and Fujitsu continue to support existing part numbers beginning with "Am" and "MBM". To order these products, please use only the Ordering Part Numbers listed in this document. For More Information Please contact your local AMD or Fujitsu sales office for additional information about SPANSION solutions. TM memory FUJITSU SEMICONDUCTOR DATA SHEET DS05-50309-1E Stacked MCP (Multi-Chip Package) FLASH MEMORY & SRAM CMOS 64M (x16) FLASH MEMORY & 4M (x16) STATIC RAM MB84VD23180FM-70 s FEATURES * Power supply voltage of 2.7 V to 3.1 V * High performance 70 ns maximum access time (Flash) 70 ns maximum access time (SRAM) * Operating Temperature -30 C to +85 C * Package 73-ball FBGA (Continued) s PRODUCT LINEUP Flash Memory Supply Voltage (V) Max Address Access Time (ns) Max CE Access Time (ns) Max OE Access Time (ns) VCCr* = 3.0 V 70 70 30 +0.1V -0.3 V SRAM VCCs* = 3.0 V 70 70 35 +0.1V -0.3 V *: Both VCCf and VCCs must be in recommended operation range when either part is being accessed. s PACKAGE 73-ball plastic FBGA BGA-73P-M03 MB84VD23180FM-70 (Continued) FLASH MEMORY * Simultaneous Read/Write operations (Dual Bank) * FlexBankTM*1 Bank A : 8 Mbit (8 KB x 8 and 64 KB x 15) Bank B : 24 Mbit (64 KB x 48) Bank C : 24 Mbit (64 KB x 48) Bank D : 8 Mbit (8 KB x 8 and 64 KB x 15) Two virtual Banks are chosen from the combination of four physical banks (Refer to "Example of Virtual Banks Combination table" and "Simultaneous Operation table") . Host system can program or erase in one bank, and then read immediately and simultaneously from the other bank with zero latency between read and write operations. Read-while-erase Read-while-program * Single 3.0 V read, program, and erase Minimized system level power requirements * Minimum 100,000 program/erase cycles * Sector erase architecture Sixteen 4 Kword and one hundred twenty-six 32 Kword sectors in word. Any combination of sectors can be concurrently erased. It also supports full chip erase. * HiddenROM region 256 byte of HiddenROM, accessible through a new "HiddenROM Enable" command sequence Factory serialized and protected to provide a secure electronic serial number (ESN) * WP/ACC input pin At VIL, allows protection of "outermost" 2 x 8 Kbytes on both ends of boot sectors, regardless of sector protection/ unprotection status At VIH, allows removal of boot sector protection At VACC, increases program performance * Embedded EraseTM*2 Algorithms Automatically preprograms and erases the chip or any sector * Embedded ProgramTM* Algorithms Automatically writes and verifies data at specified address * Data Polling and Toggle Bit feature for detection of program or erase cycle completion * Ready/Busy output (RY/BY) Hardware method for detection of program or erase cycle completion * Automatic sleep mode When addresses remain stable, the device automatically switches itself to low power mode. * Low VCCf write inhibit 2.5 V * Program Suspend/Resume Suspends the program operation to allow a read in another byte * Erase Suspend/Resume Suspends the erase operation to allow a read data and/or program in another sector within the same device * Please refer to "MBM29DL64DF" data sheet in detailed function (Continued) 2 MB84VD23180FM-70 (Continued) SRAM * Power dissipation Operating : 40 mA Max Standby : 10 A Max * Power down features using CE1s and CE2s * Data retention supply voltage: 1.5 V to 3.1 V * CE1s and CE2s Chip Select * Byte data control: LB (DQ7 to DQ0), UB (DQ15 to DQ8) *1 : FlexBankTM is a trademark of Fujitsu Limited, Japan. *2 : Embedded EraseTM and Embedded ProgramTM are trademarks of Advanced Micro Devices, Inc. 3 MB84VD23180FM-70 s PIN ASSIGNMENT (Top View) Marking side A10 N.C. B10 N.C. D9 A15 C8 A11 C7 A8 B6 N.C. B5 N.C. C6 WE C5 WP/ACC C4 LB C3 A7 D8 A12 D7 A19 D6 CE2s D5 RESET D4 UB D3 A6 D2 A3 E9 A21 E8 A13 E7 A9 E6 A20 E5 RY/BY E4 A18 E3 A5 E2 A2 F10 N.C. F9 N.C. F8 A14 F7 A10 G10 N.C. G9 A16 G8 N.C. G7 DQ6 H9 CIOf H8 DQ15/A-1 H7 DQ13 H6 DQ4 H5 DQ3 J9 VSS J8 DQ7 J7 DQ12 J6 VCCs J5 VCCf J4 DQ10 J3 DQ0 J2 CE1s K8 DQ14 K7 DQ5 K6 N.C. K5 DQ11 K4 DQ2 K3 DQ8 L10 N.C. M10 N.C. L6 N.C. L5 N.C. F4 A17 F3 A4 F2 A1 F1 N.C. G4 DQ1 G3 VSS G2 A0 G1 N.C. H4 DQ9 H3 OE H2 CEf A1 N.C. B1 N.C. C1 N.C. L1 N.C. M1 N.C. (BGA-73P-M03) 4 MB84VD23180FM-70 s PIN DESCRIPTION Pin name A17 to A0 A21 to A18 , A-1 DQ15 to DQ0 CEf CE1s CE2s OE WE RY/BY UB LB CIOf RESET WP/ACC N.C. VSS VCCf VCCs Input/ Output I I I/O I I I I I O I I I I I -- Power Power Power Address Inputs (Common) Address Inputs (Flash) Data Inputs/Outputs (Common) Chip Enable (Flash) Chip Enable (SRAM) Chip Enable (SRAM) Output Enable (Common) Write Enable (Common) Ready/Busy Output (Flash) Open Drain Output Upper Byte Control (SRAM) Lower Byte Control (SRAM) I/O Configulation (Flash) CIOf = Vccf is Word mode (x16), CIOf = Vss is Byte mode (x8) Hardware Reset Pin/Sector Protection Unlock (Flash) Write Protect / Acceleration (Flash) No Internal Connection Device Ground (Common) Device Power Supply (Flash) Device Power Supply (SRAM) Description 5 MB84VD23180FM-70 s BLOCK DIAGRAM VCCf A21 to A0 A21 to A0 A-1 WP/ACC RESET CEf CIOf 64 M bit Flash Memory DQ15/A-1 to DQ0 VSS RY/BY DQ15/A-1 to DQ0 VCCs A17 to A0 DQ15 to DQ0 LB UB WE OE CE1s CE2s 4 M bit Static RAM VSS 6 MB84VD23180FM-70 s DEVICE BUS OPERATIONS User Bus Operations (Flash=Word mode; CIOf=Vccf) Operation *1, *3 Full Standby CEf CE1s CE2s H H Output Disable L Read from Flash *2 Write to Flash L L H X L H X H X H X L X L H X L X L X L H OE X H X H L H WE X H X H H L LB X X H X X X L Read from SRAM H L H H L L Write to SRAM Temporary Sector Group Unprotection *4 Flash Hardware Reset H L H X L H L X X H X X X L X X X UB X X H X X X L L H L L H X DQ7 to DQ0 DQ15 to DQ8 RESET High-Z High-Z High-Z High-Z DOUT DIN DOUT High-Z DOUT DIN High-Z DIN X High-Z High-Z High-Z High-Z DOUT DIN DOUT DOUT High-Z DIN DIN High-Z X VID X H X H X H H X X H X H WP/ ACC*5 X X X X X X High-Z High-Z X L X X L Boot Block Sector X X X X X X X X Write Protection Legend: L = VIL, H = VIH, X = VIL or VIH. See DC Characteristics for voltage levels. *1 : Other operations except for indicated this column are inhibited. *2 : WE can be VIL if OE is VIL, OE at VIH initiates the write operations. *3 : Do not apply CEf = VIL, CE1s = VIL and CE2s = VIH at a time. *4 : It is also used for the extended sector group protections. *5 : Protect of 2 of 8 Kbytes on both ends of each boot sector. 7 MB84VD23180FM-70 User Bus Operations (Flash=Byte mode; CIOf=Vss) LB UB DQ0 to CEf CE1s CE2s DQ15/A-1 OE WE DQ7 (6) (6) H H Output Disable L Read from Flash*2 Write to Flash Read from SRAM Write to SRAM Temporary Sector Group Unprotection*4 Flash Hardware Reset L L H H X H X L H X H X H X L L X H X X L H X L X L X L H H X X L X X X A-1 A-1 A-1 X X X X H X H L H L X X X H X H H L H L X X X H X X X X X X X X H X X X X X X High-Z High-Z High-Z High-Z DOUT DIN DOUT DIN X Operation *1, *3 Full Standby DQ8 to DQ14 High-Z High-Z High-Z High-Z X X High-Z High-Z X RESET H WP/ ACC*5 X H X H H H H VID X X X X X X X X X X X High-Z High-Z X L X X L Boot Block Sector X X X X X X X X X Write Protection Legend: L = VIL, H = VIH, X = VIL or VIH. See DC Characteristics for voltage levels. *1 : Other operations except for indicated this column are inhibited. *2 : WE can be VIL if OE is VIL, OE at VIH initiates the write operations. *3 : Do not apply CEf = VIL, CE1s = VIL and CE2s = VIH at a time. *4 : It is also used for the extended sector group protections. *5 : Protect of 2 of 8 Kbytes on both ends of each boot sector. 8 MB84VD23180FM-70 s ABSOLUTE MAXIMUM RATINGS Parameter Storage Temperature Ambient Temperature with Power Applied Voltage with Respect to Ground All pins except RESET,WP/ACC *1 VCCf/VCCs Supply *1 RESET * 2 3 Symbol Tstg Ta VIN, VOUT VCCf, VCCs VIN VIN Rating Min -55 -30 -0.3 -0.3 -0.5 -0.5 Max +125 +85 VCCf +0.3 VCCs +0.3 +3.3 + 13.0 +10.5 Unit C C V V V V V WP/ACC * *1: Minimum DC voltage on input or I/O pins is -0.3 V. During voltage transitions, input or I/O pins may undershoot VSS to -2.0 V for periods of up to 20 ns. Maximum DC voltage on input or I/O pins is VCCf + 0.3 V or VCCs + 0.3 V. During voltage transitions, input or I/O pins may overshoot to VCCf + 2.0 V or VCCs + 2.0 V for periods of up to 20 ns. *2: Minimum DC input voltage on RESET pin is -0.5 V. During voltage transitions, RESET pins may undershoot VSS to -2.0 V for periods of up to 20 ns. Voltage difference between input and supply voltage (VIN-VCCf or VCCs) does not exceed +9.0 V. Maximum DC input voltage on RESET pins is +13.0 V which may overshoot to +14.0 V for periods of up to 20 ns. *3: Minimum DC input voltage on WP/ACC pin is -0.5 V. During voltage transitions, WP/ACC pin may undershoot Vss to -2.0 V for periods of up to 20 ns. Maximum DC input voltage on WP/ACC pin is +10.5 V which may overshoot to +12.0 V for periods of up to 20 ns, when VCCf is applied. WARNING: Semiconductor devices can be permanently damaged by application of stress (voltage, current, temperature, etc.) in excess of absolute maximum ratings. Do not exceed these ratings. s RECOMMENDED OPERATING CONDITIONS Parameter Ambient Temperature VCCf/VCCs Supply Voltages Symbol Ta VCCf, VCCs Value Min -30 +2.7 Max +85 +3.1 Unit C V Note: Operating ranges define those limits between which the functionality of the device is guaranteed. WARNING: The recommended operating conditions are required in order to ensure the normal operation of the semiconductor device. All of the device's electrical characteristics are warranted when the device is operated within these ranges. Always use semiconductor devices within their recommended operating condition ranges. Operation outside these ranges may adversely affect reliability and could result in device failure. No warranty is made with respect to uses, operating conditions, or combinations not represented on the data sheet. Users considering application outside the listed conditions are advised to contact their FUJITSU representatives beforehand. 9 MB84VD23180FM-70 s ELECTRICAL CHARACTERISTICS 1. DC Characteristics Parameter Input Leakage Current Output Leakage Current RESET Inputs Leakage Current ACC Input Leakage Current Symbol Conditions VIN = VSS to VCCf, VCCs VOUT = VSS to VCCf, VCCs VCCf = VCCf Max, VCCs = VCCs Max, RESET = 12.5 V VCCf = VCCf Max, VCCs = VCCs Max, WP/ACC = VACC Max tCYCLE = 5 MHz Word Word Byte Byte tCYCLE = 1 MHz tCYCLE = 5 MHz tCYCLE = 1 MHz Value Min -1.0 -1.0 -- -- -- -- -- -- -- Word Byte Word Byte -- -- -- -- -- Typ -- -- -- -- -- -- -- -- -- -- -- -- -- -- Max +1.0 +1.0 35 20 18 4 16 4 30 48 46 48 46 30 Unit A A A mA mA mA mA mA mA mA mA mA mA ILI ILO ILIT ILIA Flash VCC Active Current (Read) *1 ICC1f CEf = VIL, OE = VIH Flash VCC Active Current (Program/Erase) *2 Flash VCC Active Current (Read-While-Program) *5 Flash VCC Active Current (Read-While-Erase) *5 Flash VCC Active Current (Erase-Suspend-Program) SRAM VCC Active Current ICC2f ICC3f ICC4f ICC5f CEf = VIL, OE = VIH CEf = VIL, OE = VIH CEf = VIL, OE = VIH CEf = VIL, OE = VIH VCCs = VCCs Max, CE1s = VIL, tCYCLE =10 MHz CE2s = VIH CE1s = 0.2 V, CE2s = VCCs - 0.2 V tCYCLE = 10 MHz tCYCLE = 1 MHz ICC1s -- -- -- -- -- -- -- 1 40 40 8 5 mA mA mA A A SRAM VCC Active Current ICC2s Flash VCC Standby Current Flash VCC Standby Current (RESET) Flash VCC Current (Automatic Sleep Mode) *3 SRAM VCC Standby Current SRAM VCC Standby Current ISB1f VCCf = VCCf Max, CEf = VCCf 0.3 V RESET = VCCf 0.3 V, WP/ACC = VCCf 0.3 V VCCf = VCCf Max, RESET = VSS 0.3 V, WP/ACC = VCCf 0.3 V VCCf = VCCf Max, CEf = VSS 0.3 V RESET = VCCf 0.3 V, WP/ACC = VCCf 0.3 V, VIN = VCCf 0.3 V or VSS 0.3 V CE1s > VCCs - 0.2 V, CE2s > VCCs - 0.2 V LB = UB > VCCs-0.2 V or < 0.2V CE1s > VCCs - 0.2 V or < 0.2V, CE2s < 0.2 V LB = UB > VCCs-0.2 V or < 0.2V ISB2f -- 1 5 ISB3f -- 1 5 A ISB1s ISB2s -- -- -- -- 10 10 A A (Continued) 10 MB84VD23180FM-70 (Continued) Parameter Input Low Level Input High Level Voltage for Sector Protection, and Temporary Sector Unprotection (RESET) *4 Voltage for Program Acceleration (WP/ACC) *4 Output Low Voltage Level Symbol Conditions -- -- Value Min -0.3 2.4 Typ -- -- Max 0.5 VCC+0.3 *6 12.5 Unit V V VIL VIH VID -- 11.5 12 V VACC VOL -- VCCf = VCCf Min, IOL=4.0 mA Flash 8.5 -- -- 0.85x VCCf 2.2 2.3 9.0 -- -- -- -- 2.4 9.5 0.45 0.4 -- -- 2.5 V V V V V V VCCs = VCCs Min, IOL=1.0 mA SRAM VCCf = VCCf Min, IOH=-0.1 mA Flash VCCs = VCCs Min, IOH=-0.5 mA Output High Voltage Level Flash Low VCCf Lock-Out Voltage VOH SRAM VLKO -- *1: The ICC current listed includes both the DC operating current and the frequency dependent component. *2: ICC active while Embedded Algorithm (program or erase) is in progress. *3: Automatic sleep mode enables the low power mode when address remains stable for 150 ns. *4: Applicable for only VCCf applying. *5: Embedded Algorithm (program or erase) is in progress. (@5 MHz) *6: VCC indicates lower of VCCf or VCCs. 11 MB84VD23180FM-70 2. AC Characteristics * CE Timing Parameter CE Recover Time CE Hold Time Symbol JEDEC -- -- Standard tCCR tCHOLD Condition -- -- Value Min 0 3 Max -- -- Unit ns ns * Timing Diagram for alternating SRAM to Flash CEf tCCR tCCR CE1s WE tCHOLD tCHOLD tCCR tCCR CE2s * Flash characteristics Please refer to "s 64M FLASH MEMORY CHARACTERISTICS for MCP" part. * SRAM characteristics Please refer to "s 4M SRAM MEMORY CHARACTERISTICS for MCP" part. 12 MB84VD23180FM-70 s 64M FLASH MEMORY FOR MCP 1. Flexible Sector-erase Architecture on Flash Memory * Sixteen 4K words, and one hundred twenty-six 32 K words. * Individual-sector, multiple-sector, or bulk-erase capability. Word Mode 000000h 001000h 002000h 003000h 004000h 005000h 006000h 007000h 008000h 010000h 018000h 020000h 028000h 030000h 038000h 040000h 048000h 050000h 058000h 060000h 068000h 070000h 078000h 080000h 088000h 090000h 098000h 0A0000h 0A8000h 0B0000h 0B8000h 0C0000h 0C8000h 0D0000h 0D8000h 0E0000h 0E8000h 0F0000h 0F8000h 100000h 108000h 110000h 118000h 120000h 128000h 130000h 138000h 140000h 148000h 150000h 158000h 160000h 168000h 170000h 178000h 180000h 188000h 190000h 198000h 1A0000h 1A8000h 1B0000h 1B8000h 1C0000h 1C8000h 1D0000h 1D8000h 1E0000h 1E8000h 1F0000h 1F8000h 1FFFFFh Word Mode 200000h 208000h 210000h 218000h 220000h 228000h 230000h 238000h 240000h 248000h 250000h 258000h 260000h 268000h 270000h 278000h 280000h 288000h 290000h 298000h 2A0000h 2A8000h 2B0000h 2B8000h 2C0000h 2C8000h 2D0000h 2D8000h 2E0000h 2E8000h 2F0000h 2F8000h 300000h 308000h 310000h 318000h 320000h 328000h 330000h 338000h 340000h 348000h 350000h 358000h 360000h 368000h 370000h 378000h 380000h 388000h 390000h 398000h 3A0000h 3A8000h 3B0000h 3B8000h 3C0000h 3C8000h 3D0000h 3D8000h 3E0000h 3E8000h 3F0000h 3F8000h 3F9000h 3FA000h 3FB000h 3FC000h 3FD000h 3FE000h 3FF000h 3FFFFFh Bank A Bank B SA0 : 8KB (4KW) SA1 : 8KB (4KW) SA2 : 8KB (4KW) SA3 : 8KB (4KW) SA4 : 8KB (4KW) SA5 : 8KB (4KW) SA6 : 8KB (4KW) SA7 : 8KB (4KW) SA8 : 64KB (32KW) SA9 : 64KB (32KW) SA10 : 64KB (32KW) SA11 : 64KB (32KW) SA12 : 64KB (32KW) SA13 : 64KB (32KW) SA14 : 64KB (32KW) SA15 : 64KB (32KW) SA16 : 64KB (32KW) SA17 : 64KB (32KW) SA18 : 64KB (32KW) SA19 : 64KB (32KW) SA20 : 64KB (32KW) SA21 : 64KB (32KW) SA22 : 64KB (32KW) SA23 : 64KB (32KW) SA24 : 64KB (32KW) SA25 : 64KB (32KW) SA26 : 64KB (32KW) SA27 : 64KB (32KW) SA28 : 64KB (32KW) SA29 : 64KB (32KW) SA30 : 64KB (32KW) SA31 : 64KB (32KW) SA32 : 64KB (32KW) SA33 : 64KB (32KW) SA34 : 64KB (32KW) SA35 : 64KB (32KW) SA36 : 64KB (32KW) SA37 : 64KB (32KW) SA38 : 64KB (32KW) SA39 : 64KB (32KW) SA40 : 64KB (32KW) SA41 : 64KB (32KW) SA42 : 64KB (32KW) SA43 : 64KB (32KW) SA44 : 64KB (32KW) SA45 : 64KB (32KW) SA46 : 64KB (32KW) SA47 : 64KB (32KW) SA48 : 64KB (32KW) SA49 : 64KB (32KW) SA50 : 64KB (32KW) SA51 : 64KB (32KW) SA52 : 64KB (32KW) SA53 : 64KB (32KW) SA54 : 64KB (32KW) SA55 : 64KB (32KW) SA56 : 64KB (32KW) SA57 : 64KB (32KW) SA58 : 64KB (32KW) SA59 : 64KB (32KW) SA60 : 64KB (32KW) SA61 : 64KB (32KW) SA62 : 64KB (32KW) SA63 : 64KB (32KW) SA64 : 64KB (32KW) SA65 : 64KB (32KW) SA66 : 64KB (32KW) SA67 : 64KB (32KW) SA68 : 64KB (32KW) SA69 : 64KB (32KW) SA70 : 64KB (32KW) Bank C Bank D SA71 : 64KB (32KW) SA72 : 64KB (32KW) SA73 : 64KB (32KW) SA74 : 64KB (32KW) SA75 : 64KB (32KW) SA76 : 64KB (32KW) SA77 : 64KB (32KW) SA78 : 64KB (32KW) SA79 : 64KB (32KW) SA80 : 64KB (32KW) SA81 : 64KB (32KW) SA82 : 64KB (32KW) SA83 : 64KB (32KW) SA84 : 64KB (32KW) SA85 : 64KB (32KW) SA86 : 64KB (32KW) SA87 : 64KB (32KW) SA88 : 64KB (32KW) SA89 : 64KB (32KW) SA90 : 64KB (32KW) SA91 : 64KB (32KW) SA92 : 64KB (32KW) SA93 : 64KB (32KW) SA94 : 64KB (32KW) SA95 : 64KB (32KW) SA96 : 64KB (32KW) SA97 : 64KB (32KW) SA98 : 64KB (32KW) SA99 : 64KB (32KW) SA100 : 64KB (32KW) SA101 : 64KB (32KW) SA102 : 64KB (32KW) SA103 : 64KB (32KW) SA104 : 64KB (32KW) SA105 : 64KB (32KW) SA106 : 64KB (32KW) SA107 : 64KB (32KW) SA108 : 64KB (32KW) SA109 : 64KB (32KW) SA110 : 64KB (32KW) SA111 : 64KB (32KW) SA112 : 64KB (32KW) SA113 : 64KB (32KW) SA114 : 64KB (32KW) SA115 : 64KB (32KW) SA116 : 64KB (32KW) SA117 : 64KB (32KW) SA118 : 64KB (32KW) SA119 : 64KB (32KW) SA120 : 64KB (32KW) SA121 : 64KB (32KW) SA122 : 64KB (32KW) SA123 : 64KB (32KW) SA124 : 64KB (32KW) SA125 : 64KB (32KW) SA126 : 64KB (32KW) SA127 : 64KB (32KW) SA128 : 64KB (32KW) SA129 : 64KB (32KW) SA130 : 64KB (32KW) SA131 : 64KB (32KW) SA132 : 64KB (32KW) SA133 : 64KB (32KW) SA134 : 8KB (4KW) SA135 : 8KB (4KW) SA136 : 8KB (4KW) SA137 : 8KB (4KW) SA138 : 8KB (4KW) SA139 : 8KB (4KW) SA140 : 8KB (4KW) SA141 : 8KB (4KW) Sector Architecture 13 MB84VD23180FM-70 FlexBankTM Architecture Bank Splits 1 2 3 4 Bank 1 Volume 8 Mbit 24 Mbit 24 Mbit 8 Mbit Combination Bank A Bank B Bank C Bank D Volume 56 Mbit 40 Mbit 40 Mbit 56 Mbit Bank 2 Combination Remainder (Bank B, C, D) Remainder (Bank A, C, D) Remainder (Bank A, B, D) Remainder (Bank A, B, C) Example of Virtual Banks Combination Bank 1 Bank 2 Bank Splits Volume Combination Sector Size Volume Combination Sector Size Bank B 8 x 8 Kbyte/4 Kword + 8 x 8 Kbyte/4 Kword 1 8 Mbit Bank A + 56 Mbit Bank C + 15 x 64 Kbyte/32 Kword + 111 x 64 Kbyte/32 Kword Bank D Bank A 16 x 8 Kbyte/4 Kword Bank B 2 16 Mbit + + 48 Mbit + 96 x 64 Kbyte/32 Kword Bank D 30 x 64 Kbyte/32 Kword Bank C Bank A + 16 x 8 Kbyte/4 Kword 3 24 Mbit Bank B 48 x 64 Kbyte/32 Kword 40 Mbit Bank C + + 78 x 64 Kbyte/32 Kword Bank D Bank A 8 x 8 Kbyte/4 Kword Bank C 8 x 8 Kbyte/4 Kword 4 32 Mbit + + 32 Mbit + + Bank B 63 x 64 Kbyte/32 Kword Bank D 63 x 64 Kbyte/32 Kword Note : When multiple sector erase over several banks is operated, the system cannot read out of the bank to which a sector being erased belongs. For example, suppose that erasing is taking place at both Bank A and Bank B, neither Bank A nor Bank B is read out (they would output the sequence flag once they were selected.) Meanwhile the system would get to read from either Bank C or Bank D. Simultaneous Operation Bank 1 Status Read mode Read mode Read mode Read mode Autoselect mode Program mode Erase mode * Case 1 2 3 4 5 6 7 Bank 2 Status Read mode Autoselect mode Program mode Erase mode * Read mode Read mode Read mode * : By writing erase suspend command on the bank address of sector being erased, the erase operation gets suspended so that it enables reading from or programming the remaining sectors. Note: Bank 1 and Bank 2 are divided for the sake of convenience at Simultaneous Operation. Actually, the Bank consists of 4 banks, Bank A, Bank B, BankC and Bank D. Bank Address (BA) meant to specify each of the Banks. 14 MB84VD23180FM-70 Sector Address Tables Sector Address Bank Sector SA0 SA1 SA2 SA3 SA4 SA5 SA6 SA7 SA8 SA9 SA10 SA11 SA12 SA13 SA14 SA15 SA16 SA17 SA18 SA19 SA20 SA21 SA22 Address Range A14 0 0 0 0 1 1 1 1 X X X X X X X X X X X X X X X Bank Address A21 A20 A19 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 A18 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 1 A17 0 0 0 0 0 0 0 0 0 0 0 1 1 1 1 0 0 0 0 1 1 1 1 A16 0 0 0 0 0 0 0 0 0 1 1 0 0 1 1 0 0 1 1 0 0 1 1 A15 0 0 0 0 0 0 0 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 A13 0 0 1 1 0 0 1 1 X X X X X X X X X X X X X X X A12 0 1 0 1 0 1 0 1 X X X X X X X X X X X X X X X Word Mode 000000h to 000FFFh 001000h to 001FFFh 002000h to 002FFFh 003000h to 003FFFh 004000h to 004FFFh 005000h to 005FFFh 006000h to 006FFFh 007000h to 007FFFh 008000h to 00FFFFh 010000h to 017FFFh 018000h to 01FFFFh 020000h to 027FFFh 028000h to 02FFFFh 030000h to 037FFFh 038000h to 03FFFFh 040000h to 047FFFh 048000h to 04FFFFh 050000h to 057FFFh 058000h to 05FFFFh 060000h to 067FFFh 068000h to 06FFFFh 070000h to 077FFFh 078000h to 07FFFFh Bank A (Continued) 15 MB84VD23180FM-70 (Continued) Sector Address Bank Sector SA23 SA24 SA25 SA26 SA27 SA28 SA29 SA30 SA31 SA32 SA33 SA34 SA35 SA36 SA37 SA38 SA39 SA40 SA41 SA42 SA43 SA44 SA45 SA46 SA47 SA48 SA49 SA50 SA51 SA52 SA53 SA54 SA55 SA56 SA57 SA58 SA59 SA60 SA61 SA62 SA63 SA64 SA65 SA66 SA67 SA68 SA69 SA70 Address Range A15 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 Bank Address A21 A20 A19 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 A18 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 1 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 1 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 1 A17 0 0 0 0 1 1 1 1 0 0 0 0 1 1 1 1 0 0 0 0 1 1 1 1 0 0 0 0 1 1 1 1 0 0 0 0 1 1 1 1 0 0 0 0 1 1 1 1 A16 0 0 1 1 0 0 1 1 0 0 1 1 0 0 1 1 0 0 1 1 0 0 1 1 0 0 1 1 0 0 1 1 0 0 1 1 0 0 1 1 0 0 1 1 0 0 1 1 A14 X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X A13 X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X A12 X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X Word Mode 080000h to 087FFFh 088000h to 08FFFFh 090000h to 097FFFh 098000h to 09FFFFh 0A0000h to 0A7FFFh 0A8000h to 0AFFFFh 0B0000h to 0B7FFFh 0B8000h to 0BFFFFh 0C0000h to 0C7FFFh 0C8000h to 0CFFFFh 0D0000h to 0D7FFFh 0D8000h to 0DFFFFh 0E0000h to 0E7FFFh 0E8000h to 0EFFFFh 0F0000h to 0F7FFFh 0F8000h to 0FFFFFh 100000h to 107FFFh 108000h to 10FFFFh 110000h to 117FFFh 118000h to 11FFFFh 120000h to 127FFFh 128000h to 12FFFFh 130000h to 137FFFh 138000h to 13FFFFh 140000h to 147FFFh 148000h to 14FFFFh 150000h to 157FFFh 158000h to 15FFFFh 160000h to 167FFFh 168000h to 16FFFFh 170000h to 177FFFh 178000h to 17FFFFh 180000h to 187FFFh 188000h to 18FFFFh 190000h to 197FFFh 198000h to 19FFFFh 1A0000h to 1A7FFFh 1A8000h to 1AFFFFh 1B0000h to 1B7FFFh 1B8000h to 1BFFFFh 1C0000h to 1C7FFFh 1C8000h to 1CFFFFh 1D0000h to 1D7FFFh 1D8000h to 1DFFFFh 1E0000h to 1E7FFFh 1E8000h to 1EFFFFh 1F0000h to 1F7FFFh 1F8000h to 1FFFFFh Bank B (Continued) 16 MB84VD23180FM-70 (Continued) Sector Address Bank Sector SA71 SA72 SA73 SA74 SA75 SA76 SA77 SA78 SA79 SA80 SA81 SA82 SA83 SA84 SA85 SA86 SA87 SA88 SA89 SA90 SA91 SA92 SA93 SA94 SA95 SA96 SA97 SA98 SA99 SA100 SA101 SA102 SA103 SA104 SA105 SA106 SA107 SA108 SA109 SA110 SA111 SA112 SA113 SA114 SA115 SA116 SA117 SA118 Address Range A15 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 Bank Address A21 A20 A19 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 A18 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 1 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 1 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 1 A17 0 0 0 0 1 1 1 1 0 0 0 0 1 1 1 1 0 0 0 0 1 1 1 1 0 0 0 0 1 1 1 1 0 0 0 0 1 1 1 1 0 0 0 0 1 1 1 1 A16 0 0 1 1 0 0 1 1 0 0 1 1 0 0 1 1 0 0 1 1 0 0 1 1 0 0 1 1 0 0 1 1 0 0 1 1 0 0 1 1 0 0 1 1 0 0 1 1 A14 X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X A13 X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X A12 X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X Word Mode 200000h to 207FFFh 208000h to 20FFFFh 210000h to 217FFFh 218000h to 21FFFFh 220000h to 227FFFh 228000h to 22FFFFh 230000h to 237FFFh 238000h to 23FFFFh 240000h to 247FFFh 248000h to 24FFFFh 250000h to 257FFFh 258000h to 25FFFFh 260000h to 267FFFh 268000h to 26FFFFh 270000h to 277FFFh 278000h to 27FFFFh 280000h to 287FFFh 288000h to 28FFFFh 290000h to 297FFFh 298000h to 29FFFFh 2A0000h to 2A7FFFh 2A8000h to 2AFFFFh 2B0000h to 2B7FFFh 2B8000h to 2BFFFFh 2C0000h to 2C7FFFh 2C8000h to 2CFFFFh 2D0000h to 2D7FFFh 2D8000h to 2DFFFFh 2E0000h to 2E7FFFh 2E8000h to 2EFFFFh 2F0000h to 2F7FFFh 2F8000h to 2FFFFFh 300000h to 307FFFh 308000h to 30FFFFh 310000h to 317FFFh 318000h to 31FFFFh 320000h to 327FFFh 328000h to 32FFFFh 330000h to 337FFFh 338000h to 33FFFFh 340000h to 347FFFh 348000h to 34FFFFh 350000h to 357FFFh 358000h to 35FFFFh 360000h to 367FFFh 368000h to 36FFFFh 370000h to 377FFFh 378000h to 37FFFFh Bank C (Continued) 17 MB84VD23180FM-70 (Continued) Sector Address Bank Sector SA119 SA120 SA121 SA122 SA123 SA124 SA125 SA126 SA127 SA128 SA129 SA130 SA131 SA132 SA133 SA134 SA135 SA136 SA137 SA138 SA139 SA140 SA141 Address Range A15 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 1 1 1 1 1 1 1 Bank Address A21 A20 A19 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 A18 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 A17 0 0 0 0 1 1 1 1 0 0 0 0 1 1 1 1 1 1 1 1 1 1 1 A16 0 0 1 1 0 0 1 1 0 0 1 1 0 0 1 1 1 1 1 1 1 1 1 A14 X X X X X X X X X X X X X X X 0 0 0 0 1 1 1 1 A13 X X X X X X X X X X X X X X X 0 0 1 1 0 0 1 1 A12 X X X X X X X X X X X X X X X 0 1 0 1 0 1 0 1 Word Mode 380000h to 387FFFh 388000h to 38FFFFh 390000h to 397FFFh 398000h to 39FFFFh 3A0000h to 3A7FFFh 3A8000h to 3AFFFFh 3B0000h to 3B7FFFh 3B8000h to 3BFFFFh 3C0000h to 3C7FFFh 3C8000h to 3CFFFFh 3D0000h to 3D7FFFh 3D8000h to 3DFFFFh 3E0000h to 3E7FFFh 3E8000h to 3EFFFFh 3F0000h to 3F7FFFh 3F8000h to 3F8FFFh 3F9000h to 3F9FFFh 3FA000h to 3FAFFFh 3FB000h to 3FBFFFh 3FC000h to 3FCFFFh 3FD000h to 3FDFFFh 3FE000h to 3FEFFFh 3FF000h to 3FFFFFh Bank D 18 MB84VD23180FM-70 Sector Group Addresses Sector Group SGA0 SGA1 SGA2 SGA3 SGA4 SGA5 SGA6 SGA7 SGA8 SGA9 SGA10 SGA11 SGA12 SGA13 SGA14 SGA15 SGA16 SGA17 SGA18 SGA19 SGA20 SGA21 SGA22 SGA23 SGA24 SGA25 SGA26 SGA27 SGA28 SGA29 SGA30 SGA31 SGA32 SGA33 SGA34 SGA35 SGA36 SGA37 SGA38 SGA39 SGA40 SGA41 SGA42 SGA43 SGA44 SGA45 SGA46 SGA47 A21 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 A20 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 1 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 A19 0 0 0 0 0 0 0 0 0 0 0 0 1 1 1 1 0 0 0 0 1 1 1 1 0 0 0 0 1 1 1 1 0 0 0 0 1 1 1 1 1 1 1 1 1 1 1 1 A18 0 0 0 0 0 0 0 0 0 0 1 1 0 0 1 1 0 0 1 1 0 0 1 1 0 0 1 1 0 0 1 1 0 0 1 1 0 0 1 1 1 1 1 1 1 1 1 1 A17 0 0 0 0 0 0 0 0 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 1 1 1 1 1 1 1 1 A16 0 0 0 0 0 0 0 0 0 1 1 X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X A15 0 0 0 0 0 0 0 0 1 0 1 X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X A14 0 0 0 0 1 1 1 1 X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X A13 0 0 1 1 0 0 1 1 X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X A12 0 1 0 1 0 1 0 1 X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X Sectors SA0 SA1 SA2 SA3 SA4 SA5 SA6 SA7 SA8 to SA10 SA11 to SA14 SA15 to SA18 SA19 to SA22 SA23 to SA26 SA27 to SA30 SA31 to SA34 SA35 to SA38 SA39 to SA42 SA43 to SA46 SA47 to SA50 SA51 to SA54 SA55 to SA58 SA59 to SA62 SA63 to SA66 SA67 to SA70 SA71 to SA74 SA75 to SA78 SA79 to SA82 SA83 to SA86 SA87 to SA90 SA91 to SA94 SA95 to SA98 SA99 to SA102 SA103 to SA106 SA107 to SA110 SA111 to SA114 SA115 to SA118 SA119 to SA122 SA123 to SA126 SA127 to SA130 SA131 to SA133 SA134 SA135 SA136 SA137 SA138 SA139 SA140 SA141 0 0 1 1 1 1 1 1 1 1 1 0 1 0 1 1 1 1 1 1 1 1 0 0 0 0 1 1 1 1 0 0 1 1 0 0 1 1 0 1 0 1 0 1 0 1 19 MB84VD23180FM-70 Flash Memory Autoselect Codes A6 A3 A2 L L L L L L L H H L L L H H L Type Manufacture's Code Device Code Extended Device Code *2 Sector Group Protection A21 to A12 BA BA BA BA Sector Group Addresses A1 L L H H H A0 L H L H L Code (HEX) 04h 227Eh 2202h 2201h 01h*1 Legend: L = VIL, H = VIH. See DC Characteristics for voltage levels. *1 : Outputs 01h at protected sector group addresses and outputs 00h at unprotected sector group addresses. *2 : A read cycle at address (BA) 01h outputs device code. When 227Eh was output, this indicates that there will require two additional codes, called Extended Device Codes. Therefore the system may continue reading out these Extended Device Codes at the address of (BA) 0Eh, as well as at (BA) 0Fh. 20 MB84VD23180FM-70 Flash Memory Command Definitions Fourth Bus First Bus Second Bus Third Bus Read/Write Write Cycle Write Cycle Write Cycle Cycle Addr. XXXh 555h 555h 555h BA BA 555h 555h BA BA XXXh 555h XXXh BA (BA) 55h 555h 555h 555h Data F0h AAh AAh AAh B0h 30h AAh AAh B0h 30h 60h AAh A0h 90h 98h AAh AAh AAh Addr. -- 2AAh 2AAh 2AAh -- -- 2AAh 2AAh -- -- SPA 2AAh PA XXXh -- 2AAh 2AAh 2AAh Data -- 55h 55h 55h -- -- 55h 55h -- -- 60h 55h PD *4 F0h -- 55h 55h 55h Addr. -- 555h (BA) 555h 555h -- -- 555h 555h -- -- SPA 555h -- -- -- 555h 555h (HRBA) Command Sequence Read/Reset Read/Reset Autoselect Program Program Suspend Program Resume Chip Erase Sector Erase Erase Suspend Erase Resume Extended Sector Group Protection *2 Set to Fast Mode Fast Program *1 Reset from Fast Mode *1 Query HiddenROM Entry HiddenROM Program *3 HiddenROM Exit *3 Bus Write Cycles Req'd Fifth Bus Write Cycle Sixth Bus Write Cycle Data -- F0h 90h A0h -- -- 80h 80h -- -- 40h 20h -- -- -- 88h A0h 90h Addr. -- RA -- PA -- -- 555h 555h -- -- SPA -- -- -- -- -- (HRA) Data Addr. Data Addr. Data -- RD -- PD -- -- -- -- -- -- -- -- -- -- -- -- -- -- 55h 55h -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- 555h SA -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- 10h 30h -- -- -- -- -- -- -- -- -- -- 1 3 3 4 1 1 6 6 1 1 4 3 2 2 1 3 4 4 AAh 2AAh AAh 2AAh -- -- SD -- -- -- -- -- PD 00h -- -- -- -- -- -- -- -- -- -- PA XXXh 555h (Continued) 21 MB84VD23180FM-70 (Continued) *1: This command is valid during Fast Mode. *2: This command is valid while RESET = VID. *3: This command is valid during HiddenROM mode. *4: The data "00h" is also acceptable. Notes : * Address bits A21 to A11 = X = "H" or "L" for all address commands except or Program Address (PA), Sector Address (SA), and Bank Address (BA), and Sector Group Address (SPA). * Bus operations are defined in s DEVICE BUS OPERATION. * RA = Address of the memory location to be read PA = Address of the memory location to be programmed Addresses are latched on the falling edge of the write pulse. SA = Address of the sector to be erased. The combination of A21, A20, A19, A18, A17, A16, A15, A14, A13, and A12 will uniquely select any sector. BA = Bank Address (A21, A20, A19) * RD = Data read from location RA during read operation. PD = Data to be programmed at location PA. Data is latched on the rising edge of write pulse. * SPA = Sector group address to be protected. Set sector group address and (A6, A3, A2, A1, A0) = (0, 0, 0, 1, 0). SD = Sector group protection verify data. Output 01h at protected sector group addresses and output 00h at unprotected sector group addresses. * HRA = Address of the HiddenROM area: 000000h to 00007Fh * HRBA = Bank Address of the HiddenROM area (A21 = A20 = A19 = VIL) * The system should generate the following address patterns: 555h or 2AAh to addresses A10 to A0 * Both Read/Reset commands are functionally equivalent, resetting the device to the read mode. * The command combinations not described in this table are illegal. 22 MB84VD23180FM-70 2. AC Characteristics * Read Only Operations Characteristics (Flash) Symbol Parameter JEDEC Standard Read Cycle Time Address to Output Delay Chip Enable to Output Delay Output Enable to Output Delay Chip Enable to Output High-Z Output Enable to Output High-Z Output Hold Time From Addresses, CEf or OE, Whichever Occurs First RESET Pin Low to Read Mode tAVAV tAVQV tELQV tGLQV tEHQZ tGHQZ tAXQX -- tRC tACC tCEf tOE tDF tDF tOH tREADY Condition -- CEf = VIL OE = VIL OE = VIL -- -- -- -- -- Value* Min 70 -- -- -- -- -- 0 -- Max -- 70 70 30 25 25 -- 20 Unit ns ns ns ns ns ns ns s *: Test Conditions- Output Load:1 TTL gate and 30 pF Input rise and fall times: 5 ns Input pulse levels: 0.0 V to VCCf Timing measurement reference level Input: 0.5xVCCf Output: 0.5xVCCf 23 MB84VD23180FM-70 * Read Operation Timing Diagram (Flash) tRC Address tACC Address Stable CEf tOE tDF OE tOEH WE tCE High-Z tOH High-Z Outputs Outputs Valid * Hardware Reset/Read Operation Timing Diagram (Flash) tRC Address tACC Address Stable CEf tRH tRP tRH tCE RESET tOH High-Z Outputs Outputs Valid 24 MB84VD23180FM-70 * Write/Erase/Program Operations (Flash) Parameter Write Cycle Time Address Setup Time Address Setup Time to OE Low During Toggle Bit Polling Address Hold Time Address Hold Time from CEf or OE High During Toggle Bit Polling Data Setup Time Data Hold Time Output Enable Hold Time Read Toggle and Data Polling Symbol JEDEC tAVAV tAVWL tWLAX tDVWH tWHDX tGHWL tGHEL tELWL tWLEL tWHEH tEHWH tWLWH tELEH tWHWL tEHEL tWHWH1 tWHWH2 2 Value Min 70 0 12 30 0 25 0 0 tOEH 10 20 20 0 0 0 0 0 0 35 35 20 20 50 500 500 4 100 Typ 6 0.5 Max tWC tAS tASO tAH tAHT tDS tDH Standard Unit ns ns ns ns ns ns ns ns ns ns ns ns ns ns ns ns ns ns ns ns ns s s s ns ns s s CEf High During Toggle Bit Polling OE High During Toggle Bit Polling Read Recover Time Before Write Read Recover Time Before Write CEf Setup Time WE Setup Time CEf Hold Time WE Hold Time Write Pulse Width CEf Pulse Width Write Pulse Width High CEf Pulse Width High Programming Operation Sector Erase Operation *1 VCCf Setup Time Rise Time to VID * Rise Time to VACC *3 Voltage Transition Time *2 Write Pulse Width * 2 tCEPH tOEPH tGHWL tGHEL tCS tWS tCH tWH tWP tCP tWPH tCPH tWHWH1 tWHWH2 tVCS tVIDR tVACCR tVLHT tWPP (Continued) 25 MB84VD23180FM-70 (Continued) Parameter OE Setup Time to WE Active *2 CEf Setup Time to WE Active * Recover Time from RY/BY RESET Pulse Width RESET High Level Period Before Read Program/Erase Valid to RY/BY Delay Delay Time from Embedded Output Enable Erase Time-out Time Erase Suspend Transition Time *1: This does not include preprogramming time. *2: This timing is for Sector Group Protection operation. *3: This timing is for Accelerated Program operation. 2 Symbol JEDEC Standard tOESP tCSP tRB tRP tRH tBUSY tEOE tTOW tSPD Min 4 4 0 500 200 50 Value Typ Max 90 70 20 Unit s s ns ns ns ns ns s s 26 MB84VD23180FM-70 * Write Cycle (WE control) (Flash) 3rd Bus Cycle Data Polling PA tAS tAH PA tRC Address 555h tWC CEf tCS tCH tCE OE tGHWL tWP tWPH tOE tWHWH1 WE tDS tDH tDF tOH Data A0h PD DQ7 DOUT DOUT Notes : * PA is address of the memory location to be programmed. * PD is data to be programmed at word address. * DQ7 is the output of the complement of the data written to the device. * DOUT is the output of the data written to the device. * Figure indicates last two bus cycles out of four bus cycle sequence. 27 MB84VD23180FM-70 * Write Cycle (CEf control) (Flash) 3rd Bus Cycle Data Polling PA tAS tAH PA Address 555h tWC WE tWS tWH OE tGHEL tCP tCPH tWHWH1 CEf tDS tDH PD DQ7 DOUT Data A0h Notes : * PA is address of the memory location to be programmed. * PD is data to be programmed at word address. * DQ7 is the output of the complement of the data written to the device. * DOUT is the output of the data written to the device. * Figure indicates last two bus cycles out of four bus cycle sequence. 28 MB84VD23180FM-70 * AC Waveforms Chip/Sector Erase Operations (Flash) Address 555h tWC 2AAh tAS tAH 555h 555h 2AAh SA* CEf tCS tCH OE tGHWL tWP tWPH WE tDS AAh tDH 55h 80h AAh 55h 30h for Sector Erase 10h/ 30h Data tVCS VCCf * : SA is the sector address for Sector Erase. Addresses = 555h (Word) for Chip Erase. 29 MB84VD23180FM-70 * AC Waveforms for Data Polling during Embedded Algorithm Operations (Flash) CEf tCH tOE tDF OE tOEH WE tCE * DQ7 = Valid Data DQ7 Data DQ7 High-Z tWHWH1 or 2 DQ6 to DQ0 Data tBUSY DQ6 to DQ0 = Output Flag tEOE DQ6 to DQ0 Valid Data High-Z RY/BY * : DQ7 = Valid Data (the device has completed the Embedded operation) . 30 MB84VD23180FM-70 * AC Waveforms for Toggle Bit during Embedded Algorithm Operations (Flash) Address tAHT tASO tAHT tAS CEf tCEPH WE tOEH tOEPH tOEH OE tDH tOE tCE DQ 6/DQ2 Data tBUSY Toggle Data Toggle Data Toggle Data * Stop Toggling Output Valid RY/BY * : DQ6 stops toggling (the device has completed the Embedded operation). 31 MB84VD23180FM-70 * Bank-to-bank Read/Write Timing Diagram (Flash) Read tRC Command tWC Read tRC Command tWC Read tRC Read tRC Address BA1 tAS BA2 (555h) tAH BA1 tACC tCE BA2 (PA) BA1 tAS tAHT BA2 (PA) CEf tOE tCEPH OE tGHWL tWP tOEH tDF WE tDS tDH tDF DQ Valid Output Valid Intput (A0h) Valid Output Valid Intput (PD) Valid Output Status Note : This is example of Read for Bank 1 and Embedded Algorithm (program) for Bank 2. BA1 : Address corresponding to Bank 1 BA2 : Address corresponding to Bank 2 32 MB84VD23180FM-70 * RY/BY Timing Diagram during Write/Erase Operations (Flash) CEf Rising edge of the last WE signal WE Entire programming or erase operations RY/BY tBUSY * RESET, RY/BY Timing Diagram (Flash) WE RESET tRP tRB RY/BY tREADY 33 MB84VD23180FM-70 * Temporary Sector Unprotection (Flash) VCCf tVCS tVIDR tVLHT VID VIH RESET CEf WE tVLHT Program or Erase Command Sequence tVLHT RY/BY Unprotection period * Acceleration Mode Timing Diagram (Flash) VCCf tVCS tVACCR tVLHT VACC VIH WP/ACC CEf WE tVLHT Program or Erase Command Sequence tVLHT RY/BY Acceleration period 34 MB84VD23180FM-70 * Extended Sector Group Protection (Flash) VCCf tVCS RESET tVIDR tVLHT tWC tWC SPAX SPAX SPAY Address A6, A3, A2, A0 A1 CEf OE tWP TIME-OUT WE Data 60h 60h 40h tOE 01h 60h SPAX : Sector Group Address to be protected SPAY : Next Sector Group Address to be protected TIME-OUT : Time-Out window = 250 s (Min) 35 MB84VD23180FM-70 3. Erase and Programming Performance (Flash) Parameter Sector Erase Time Word Programming Time Chip Programming Time Erase/Program Cycle Value Min -- -- -- 100,000 Typ 0.5 6 -- -- Max 2.0 100 200 -- Unit s s s cycle Data= Checker Remarks Excludes programming time prior to erasure Excludes system-level overhead Excludes system-level overhead Typical Erase conditions Ta = +25C, VCCf_1 & VCCf_2 = 2.9 V Typical Program conditions Ta = +25C, VCCf_1 & VCCf_2 = 2.9 V 36 MB84VD23180FM-70 s 4M SRAM FOR MCP 1. AC Characteristics * Read Cycle (SRAM) Parameter Read Cycle Time Address Access Time Chip Enable (CE1s) Access Time Chip Enable (CE2s) Access Time Output Enable Access Time LB, UB to Output Valid Chip Enable (CE1s Low and CE2s High) to Output Active Output Enable Low to Output Active UB, LB Enable Low to Output Active Chip Enable (CE1s High or CE2s Low) to Output High-Z Output Enable High to Output High-Z UB, LB Output Enable to Output High-Z Output Data Hold Time Note: Test Conditions- Output Load:1 TTL gate and 30 pF Input rise and fall times: 5 ns Input pulse levels: 0.0 V to VCCs Timing measurement reference level Input: 0.5xVCCs Output: 0.5xVCCs Symbol tRC tAA tCO1 tCO2 tOE tBA tCOE tOEE tBE tOD tODO tBD tOH Value Min 70 -- -- -- -- -- 5 0 0 -- -- -- 10 Max -- 70 70 70 35 70 -- -- -- 25 25 25 -- Unit ns ns ns ns ns ns ns ns ns ns ns ns ns 37 MB84VD23180FM-70 * Read Cycle (SRAM) tRC Address tAA tCO1 CE1s tCOE tCO2 CE2s tOD tOE OE tOEE tODO tOD tOH LB, UB tBA tBE tCOE DQ Valid Data Out tBD Note: WE remains HIGH for the read cycle. 38 MB84VD23180FM-70 * Write Cycle (SRAM) Parameter Write Cycle Time Write Pulse Width Chip Enable to End of Write Address valid to End of Write UB, LB to End of Write Address Setup Time Write Recovery Time WE Low to Output High-Z WE High to Output Active Data Setup Time Data Hold Time Symbol tWC tWP tCW tAW tBW tAS tWR tODW tOEW tDS tDH Value Min 70 50 55 55 55 0 0 -- 0 30 0 Max -- -- -- -- -- -- -- 25 -- -- -- Unit ns ns ns ns ns ns ns ns ns ns ns 39 MB84VD23180FM-70 * Write Cycle *1 (WE control) (SRAM) tWC Address tAS tWP tWR WE tAW tCW CE1s CE2s tCW tBW LB, UB tODW tOEW DOUT *2 tDS tDH *3 DIN *4 Valid Data In *4 *1 : If OE is HIGH during the write cycle, the outputs will remain at high impedance. *2 : If CE1s goes LOW (or CE2s goes HIGH) coincident with or after WE goes LOW, the output will remain at high impedance. *3 : If CE1s goes HIGH (or CE2s goes LOW) coincident with or before WE goes HIGH, the output will remain at high impedance. *4 : Because I/O signals may be in the output state at this Time, input signals of reverse polarity must not be applied. 40 MB84VD23180FM-70 * Write Cycle *1 (CE1s control) (SRAM) tWC Address tAS tWP tWR WE tAW tCW CE1s CE2s tCW tBW LB, UB tBE tCOE DOUT tDS tDH tODW DIN *2 Valid Data In *2 *1 : If OE is HIGH during the write cycle, the outputs will remain at high impedance. *2 : Because I/O signals may be in the output state at this Time, input signals of reverse polarity must not be applied. 41 MB84VD23180FM-70 * Write Cycle *1 (CE2s Control) (SRAM) tWC Address tAS tWP tWR WE tCW CE1s tAW CE2s tCW tBW LB, UB tBE tCOE DOUT tDS DIN *2 tDH tODW Valid Data In *2 *1 : If OE is HIGH during the write cycle, the outputs will remain at high impedance. *2 : Because I/O signals may be in the output state at this Time, input signals of reverse polarity must not be applied. 42 MB84VD23180FM-70 * Write Cycle *1 (LB, UB Control) (SRAM) tWC Address tWP WE tWR tCW CE1s tCW CE2s tAW tAS tBW LB, UB tBE tCOE DOUT tDS *2 tDH Valid Data In *2 tODW DIN *1 : If OE is HIGH during the write cycle, the outputs will remain at high impedance. *2 : Because I/O signals may be in the output state at this Time, input signals of reverse polarity must not be applied. 43 MB84VD23180FM-70 2. Data Retention Characteristics (SRAM) Parameter Data Retention Supply Voltage Standby Current Chip Deselect to Data Retention Mode Time Recovery Time Note : tRC: Read cycle time * CE1s Controlled Data Retention Mode *1 VCCs 2.7 V Data Retention Mode Symbol VDH VDH = 3.0 V IDDS2 tCDR tR Value Min 1.5 -- 0 tRC Typ -- -- -- -- Max 3.1 10 -- -- Unit V A ns ns VIH VDH CE1s *2 *2 VCCs - 0.2 V tCDR tR GND *1 : In CE1s controlled data retention mode, input level of CE2s should be fixed Vccs to Vccs-0.2 V or Vss to 0.2 V during data retention mode. Other input and input/output pins can be used between -0.3 V to Vccs+0.3 V. *2 : When CE1s is operating at the VIH Min level, the standby current is given by ISB1s during the transition of VCCs from VCCs MAX to VIH Min level. * CE2s Controlled Data Retention Mode* VCCs Data Retention Mode 2.7 V VDH VIH CE2s VIL tCDR tR 0.2 V GND * : In CE2s controlled data retention mode, input and input/output pins can be used between -0.3 V to Vccs+0.3V. 44 MB84VD23180FM-70 s PIN CAPACITANCE Parameter Input Capacitance Output Capacitance Control Pin Capacitance WP/ACC Pin Capacitance Note: Test conditions Ta = +25C, f = 1.0 MHz Symbol CIN COUT CIN2 CIN3 Test Setup VIN = 0 VOUT = 0 VIN = 0 VIN = 0 Value Typ 11 12 14 21.5 Max 14 16 16 26 Unit pF pF pF pF s HANDLING OF PACKAGE Please handle this package carefully since the sides of packages are acute angle. s CAUTION (1) The high voltage (VID) can not apply to address pins and control pins except RESET. Therefore, it can not use autoselect and sector protect function by applying the high voltage (VID) to specific pins. (2) For the sector protection, since the high voltage (VID) can be applied to the RESET, it can be protected the sector useing "Extended sector protect" command. 45 MB84VD23180FM-70 s ORDERING INFORMATION MB84VD23180 FM -70 PBS PACKAGE TYPE PBS = 73-ball BGA SPEED OPTION See Product Selector Guide Device Revision DEVICE NUMBER/DESCRIPTION 64Mega-bit (4M x 16-bit) Dual Operation Flash Memory 3.0V-only Read, Program, and Erase 4Mega-bit(256K x 16-bit) SRAM 46 MB84VD23180FM-70 s PACKAGE DIMENSION 73-ball plastic FBGA (BGA-73P-M03) 11.600.10(.457.004) 0.20(.008) S B B 1.19 -0.10 .047 -.004 (Seated height) +0.15 +.006 0.40(.016) REF 0.80(.031) REF 10 0.80(.031) REF A 8.000.10 (.315.004) 9 8 7 6 0.40(.016) REF 0.10(.004) S 5 4 3 2 1 INDEX-MARK AREA 0.390.10 (Stand off) (.015.004) S 0.20(.008) S A M L K J H G F E D C B A INDEX BALL 73-o0.45 73-o0.18 +0.10 -.005 +.004 -.002 o0.08(.003) M S AB 0.10(.004) S C 2003 FUJITSU LIMITED B73003S-c-1-1 Dimensions in mm (inches). Note: The values in parentheses are reference values. 47 MB84VD23180FM-70 FUJITSU LIMITED All Rights Reserved. The contents of this document are subject to change without notice. Customers are advised to consult with FUJITSU sales representatives before ordering. The information, such as descriptions of function and application circuit examples, in this document are presented solely for the purpose of reference to show examples of operations and uses of Fujitsu semiconductor device; Fujitsu does not warrant proper operation of the device with respect to use based on such information. When you develop equipment incorporating the device based on such information, you must assume any responsibility arising out of such use of the information. Fujitsu assumes no liability for any damages whatsoever arising out of the use of the information. Any information in this document, including descriptions of function and schematic diagrams, shall not be construed as license of the use or exercise of any intellectual property right, such as patent right or copyright, or any other right of Fujitsu or any third party or does Fujitsu warrant non-infringement of any third-party's intellectual property right or other right by using such information. Fujitsu assumes no liability for any infringement of the intellectual property rights or other rights of third parties which would result from the use of information contained herein. The products described in this document are designed, developed and manufactured as contemplated for general use, including without limitation, ordinary industrial use, general office use, personal use, and household use, but are not designed, developed and manufactured as contemplated (1) for use accompanying fatal risks or dangers that, unless extremely high safety is secured, could have a serious effect to the public, and could lead directly to death, personal injury, severe physical damage or other loss (i.e., nuclear reaction control in nuclear facility, aircraft flight control, air traffic control, mass transport control, medical life support system, missile launch control in weapon system), or (2) for use requiring extremely high reliability (i.e., submersible repeater and artificial satellite). Please note that Fujitsu will not be liable against you and/or any third party for any claims or damages arising in connection with above-mentioned uses of the products. Any semiconductor devices have an inherent chance of failure. You must protect against injury, damage or loss from such failures by incorporating safety design measures into your facility and equipment such as redundancy, fire protection, and prevention of over-current levels and other abnormal operating conditions. If any products described in this document represent goods or technologies subject to certain restrictions on export under the Foreign Exchange and Foreign Trade Law of Japan, the prior authorization by Japanese government will be required for export of those products from Japan. F0310 (c) FUJITSU LIMITED Printed in Japan |
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