s29al016j Meet Spansion Inc., s29al016j Datasheet

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s29al016j

Manufacturer Part Number
s29al016j
Description
16 Megabit 2 M X 8-bit/1 M X 16-bit Cmos 3.0 Volt-only Boot Sector Flash Memory
Manufacturer
Meet Spansion Inc.
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S29AL016J
16 Megabit (2 M x 8-Bit/1 M x 16-Bit)
CMOS 3.0 Volt-only Boot Sector Flash Memory
Data Sheet (Advance Information)
Notice to Readers: This document contains information on one or more products under development at
Spansion Inc. The information is intended to help you evaluate this product. Do not design in this product
without contacting the factory. Spansion Inc. reserves the right to change or discontinue work on this
proposed product without notice.
Publication Number S29AL016J_00
Revision 05
Issue Date May 23, 2008
S29AL016J Cover Sheet

Related parts for s29al016j

s29al016j Summary of contents

Page 1

... Spansion Inc. The information is intended to help you evaluate this product. Do not design in this product without contacting the factory. Spansion Inc. reserves the right to change or discontinue work on this proposed product without notice. Publication Number S29AL016J_00 Revision 05 Issue Date May 23, 2008 S29AL016J Cover Sheet ...

Page 2

... Questions regarding these document designations may be directed to your local sales office range. Changes may also include those needed to clarify a IO S29AL016J S29AL016J_00_05 May 23, 2008 ...

Page 3

... Pinout and software compatible with single-power supply Flash – Superior inadvertent write protection Publication Number S29AL016J_00 This document contains information on one or more products under development at Spansion Inc. The information is intended to help you evaluate this product. Do not design in this product without contacting the factory. Spansion Inc. reserves the right to change or discontinue work on this proposed product without notice. ...

Page 4

... General Description The S29AL016J Mbit, 3.0 Volt-only Flash memory organized as 2,097,152 bytes or 1,048,576 words. The device is offered in 48-ball Fine-pitch BGA (0.8 mm pitch), 64-ball Fortified BGA (1.0 mm pitch) and 48- pin TSOP packages. The word-wide data (x16) appears on DQ15–DQ0; the byte-wide (x8) data appears on DQ7–DQ0. This device is designed to be programmed in-system with the standard system 3.0 volt V supply ...

Page 5

... Block Diagram . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 9 3. Connection Diagrams . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 10 3.1 Special Handling Instructions Pin Configuration . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 11 5. Logic Symbol . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 12 6. Ordering Information . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 13 6.1 S29AL016J Standard Products . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 13 7. Device Bus Operations . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 14 7.1 Word/Byte Configuration . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 14 7.2 Requirements for Reading Array Data 7.3 Writing Commands/Command Sequences . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 15 7.4 Program and Erase Operation Status . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 15 7.5 Standby Mode . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 15 7 ...

Page 6

... VBK048—48-Ball Fine-Pitch Ball Grid Array (BGA 20.3 LAE064–64-Ball Fortified Ball Grid Array (BGA 21. Revision History . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . S29AL016J S29AL016J_00_05 May 23, 2008 ...

Page 7

... Toggle Bit Timings (During Embedded Algorithms Figure 17.10 DQ2 vs. DQ6 for Erase and Erase Suspend Operations Figure 17.11 Temporary Sector Unprotect/Timing Diagram . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 48 Figure 17.12 Sector Protect/Unprotect Timing Diagram . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 48 Figure 17.13 Alternate CE# Controlled Write Operation Timings . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 49 May 23, 2008 S29AL016J_00_05 ( S29AL016J 7 ...

Page 8

... Table 7.2 Sector Address Tables (Top Boot Device Table 7.3 Secured Silicon Sector Addresses (Top Boot Table 7.4 Secured Silicon Sector Addresses (Bottom Boot Table 7.5 S29AL016J Autoselect Codes (High Voltage Method Table 9.1 CFI Query Identification String Table 9.2 System Interface String . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 24 Table 9.3 Device Geometry Definition . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 24 Table 9 ...

Page 9

... V SS RESET# State WE# Control BYTE# WP# Command Register CE# OE# V Detector CC A0–A19 May 23, 2008 S29AL016J_00_05 ( Family Part Number Voltage Range 2.7–3 for full specifications. Sector Switches Erase Voltage Generator PGM Voltage ...

Page 10

... DQ11 35 DQ3 34 DQ10 33 DQ2 32 DQ9 31 DQ1 30 DQ8 29 DQ0 BYTE# DQ15/A DQ14 DQ13 DQ6 DQ12 V DQ4 DQ10 DQ11 DQ3 DQ8 DQ9 DQ1 CE# OE S29AL016J_00_05 May 23, 2008 ...

Page 11

... Pin Configuration A0–A19 DQ0–DQ14 DQ15/A-1 BYTE# CE# OE# WE# WP# RESET# RY/BY May 23, 2008 S29AL016J_00_05 ( Figure 3.3 64-ball Fortified BGA (LAE064) (Top View, Balls Facing Down ...

Page 12

... Logic Symbol A0–A19 DQ0–DQ15 CE# OE# WE# RESET# BYTE# RY/BY# WP# S29AL016J (A-1) S29AL016J_00_05 May 23, 2008 ...

Page 13

... Type 1 is standard. Specify other options as required. 3. TSOP package markings omit packing type designator from ordering part number. 4. BGA package marking omits leading S29 and packing type designator from ordering part number. May 23, 2008 S29AL016J_00_05 ( ...

Page 14

... No command is necessary in this mode to obtain array data. Standard microprocessor read cycles that assert valid addresses Table 7.1 S29AL016J Device Bus Operations CE# OE# WE# RESET# WP# ...

Page 15

... I and I represents the standby current specification shown in the table in CC3 CC4 on page 39. May 23, 2008 S29AL016J_00_05 ( for more information. Refer to the AC Figure 17.1 on page 41 for the timing diagram. I for more information. has details on programming data to the device using both indicate the address space that each sector occupies. A “ ...

Page 16

... The output pins are placed in the high IH S29AL016J the CC4 ±0.3V, the device SS but not within V ±0.3/0.1V, the standby IL SS (during Embedded Algorithms). The READY RH Figure 17.2 on page 42 S29AL016J_00_05 May 23, 2008 DC after the ...

Page 17

... SA34 1 1 Note Address range is A19:A-1 in byte mode and A19:A0 in word mode. See Sector Size (bytes/words) 256/128 May 23, 2008 S29AL016J_00_05 ( Table 7.2 Sector Address Tables (Top Boot Device) Sector Size (Kbytes/ A17 A16 ...

Page 18

... B8000–BFFFF 64/32 180000–18FFFF C0000–C7FFF 64/32 190000–19FFFF C8000–CFFFF 64/32 1A0000–1AFFFF D0000–D7FFF 64/32 1B0000–1BFFFF D8000–DFFFF 64/32 1C0000–1CFFFF E0000–E7FFF 64/32 1D0000–1DFFFF E8000–EFFFF 64/32 1E0000–1EFFFF F0000–F7FFF 64/32 1F0000–1FFFFF F8000–FFFFF 14. x16 Address Range 00000h–0007Fh S29AL016J_00_05 May 23, 2008 ...

Page 19

... DQ7-DQ0. To access the autoselect codes in-system, the host system can issue the autoselect command via the command register, as shown in Definitions on page 27 Table 7.5 S29AL016J Autoselect Codes (High Voltage Method) Description Mode Manufacturer ID: Spansion Word ...

Page 20

... Figure 7.2 Temporary Sector Unprotect Operation START RESET (Note 1) Perform Erase or Program Operations RESET Temporary Sector Unprotect Completed (Note 2) S29AL016J During this mode, formerly protected ID is removed from the ID Figure 7.2 shows the algorithm, and S29AL016J_00_05 May 23, 2008 ...

Page 21

... Remove V ID from RESET# Write reset command Sector Protect Sector Protect Algorithm complete May 23, 2008 S29AL016J_00_05 ( Protect all sectors: The indicated portion of the sector protect algorithm must be performed for all unprotected sectors ...

Page 22

... Region command sequence to return to reading and writing the remainder of the array 28). After the system writes the Enter Secured Silicon Sector Figure 7.3 on page 21, except that RESET# may be at either V S29AL016J Enter/Exit Secured Figure S29AL016J_00_05 May 23, 2008 or IH ...

Page 23

... The Secured Silicon Sector protection must be used with caution since, once protected, there is no procedure available for unprotecting the Secured Silicon Sector area, and none of the bits in the Secured Silicon Sector memory space can be modified in any way. May 23, 2008 S29AL016J_00_05 ( Figure 8 ...

Page 24

... Table 9.4 on page 25. In word mode, the Table 9.1 to Description Description pin present) PP pin present µs N µs (00h = not supported (00h = not supported) N times typical N times typical N times typical N times typical (00h = not supported) S29AL016J_00_05 May 23, 2008 ...

Page 25

... May 23, 2008 S29AL016J_00_05 ( Table 9.3 Device Geometry Definition Data N 4Eh 0015h Device Size = 2 50h 0002h Flash Device Interface description (refer to CFI publication 100) ...

Page 26

... CE and OE during power up, the device does not accept commands on the rising IH S29AL016J Description is greater than V . The system must provide the LKO is greater than LKO or WE initiate a write cycle S29AL016J_00_05 May 23, 2008 CC ...

Page 27

... Refer to Table 7.1 on page 18 The system must write the reset command to exit the autoselect mode and return to reading array data. May 23, 2008 S29AL016J_00_05 ( defines the valid register command sequences. Writing incorrect 41 ...

Page 28

... Write Operation Status on page 33 illustrates the algorithm for the program operation. See Figure 17.5 on page 45 for timing diagrams. S29AL016J Table 10.1 on page 32 Secured Silicon Sector Table 10.1 for information on these status bits. Table 10.1 on page 32 shows the Erase/Program Operations S29AL016J_00_05 May 23, 2008 ...

Page 29

... Operation Status on page 33 complete, the device returns to reading array data and addresses are no longer latched. Figure 10.2 on page 31 on page 44 for parameters, and May 23, 2008 S29AL016J_00_05 ( Figure 10.1 Program Operation Write Program Command Sequence ...

Page 30

... Refer to Figure 17.6 on page 45 for timing diagrams. Write Operation Status on page 33 S29AL016J Table 10.1 on page 32 shows the DQ3: Sector Erase Erase/Program Operations for information on Write Operation Status on page 33 for more S29AL016J_00_05 May 23, 2008 ...

Page 31

... Erase Suspend command can be written after the device has resumed erasing. Notes 1. See Table 10.1 on page 32 2. See DQ3: Sector Erase Timer on page 37 May 23, 2008 S29AL016J_00_05 ( Figure 10.2 Erase Operation START Write Erase Command Sequence ...

Page 32

... The Reset command is required to return to reading array data when device is in the autoselect mode DQ5 goes high (while the device is providing status data Table 10.1 S29AL016J Command Definitions Bus Cycles (Notes 2–5) First Second Third Addr Data ...

Page 33

... DQ0 on the following read cycles. This is because DQ7 may change asynchronously with DQ0–DQ6 while Output Enable (OE#) is asserted low. Table 11.1 on page 37 Polling algorithm. May 23, 2008 S29AL016J_00_05 ( and the following subsections describe the functions of these bits. DQ7, Figure 17 ...

Page 34

... Addr = VA Yes DQ7 = Data DQ5 = 1? Yes Read DQ7–DQ0 Addr = VA Yes DQ7 = Data? No FAIL . shows the outputs for RY/BY#. Figures and Figure 17.6 on page 45 S29AL016J PASS Figure 17.1 on page 41, Figure 17.2 shows RY/BY# for read, reset, program, S29AL016J_00_05 May 23, 2008 ...

Page 35

... DQ2 and DQ6. Figure 11.2 on page 36 DQ6/DQ2 on page 36 Figure 17.9 on page 47 between DQ2 and DQ6 in graphical form. May 23, 2008 S29AL016J_00_05 ( 33). shows the outputs for Toggle Bit I on DQ6. Reading Toggle Bits DQ6/DQ2 on page 36 shows the toggle bit timing diagrams ...

Page 36

... Read DQ7–DQ0 Toggle Bit = Toggle? Yes No DQ5 = 1? Yes Read DQ7–DQ0 (Notes 1, 2) Twice Toggle Bit = Toggle? Yes Program/Erase Operation Not Complete, Write Reset Command S29AL016J 36). (Note Program/Erase Operation Complete S29AL016J_00_05 May 23, 2008 ...

Page 37

... DQ5 switches to 1 when an Embedded Program or Embedded Erase operation has exceeded the maximum timing limits. See Exceeded Timing Limits on page 37 2. DQ7 and DQ2 require a valid address when reading status information. Refer to the appropriate subsection for further details. May 23, 2008 S29AL016J_00_05 ( ...

Page 38

... V to +4.0 V –0 +12.5 V –0 +0 200 mA to –2.0 V for periods +0.5 V. During voltage transitions, input or I/O CC 38. Range –40°C to +85°C –40°C to +125°C Full 2 3.6 V Regulated 3 3 S29AL016J_00_05 May 23, 2008 SS ...

Page 39

... When the device is operated in Extended Temperature range, the currents are as follows 0.2 µA (typ), 10 µA (max) CC3 I = 0.2 µA (typ), 10 µA (max) CC4 I = 0.2 µA (typ), 10 µA (max) CC5 May 23, 2008 S29AL016J_00_05 ( Description Test Conditions ...

Page 40

... Figure 16.1 Input Waveforms and Measurement Levels 0.5 V Measurement Level CC S29AL016J 3.3 V 2.7 kΩ Unit 1 TTL gate Outputs Steady Changing, State Unknown Center Line is High Impedance State (High Z) 0.5 V Output CC S29AL016J_00_05 May 23, 2008 ...

Page 41

... See Figure 15.1 on page 40 Addresses CE# OE# WE# Outputs RESET# RY/BY May 23, 2008 S29AL016J_00_05 ( Description Read Cycle Time (Note 1) Address to Output Delay Chip Enable to Output Delay Output Enable to Output Delay Chip Enable to Output High Z (Note 1) ...

Page 42

... Figure 17.2 RESET# Timings Ready Reset Timings NOT during Embedded Algorithms Reset Timings during Embedded Algorithms t Ready t RP S29AL016J Test Setup All Speed Options Max 35 Max 500 500 50 Min S29AL016J_00_05 May 23, 2008 Unit µs ns µs ns ...

Page 43

... DQ0–DQ14 from byte to word mode DQ15/A-1 CE# WE# BYTE# Note Refer to the Erase/Program Operations table for t May 23, 2008 S29AL016J_00_05 ( Description Figure 17.3 BYTE# Timings for Read Operations t ELFL Data Output (DQ0–DQ14) DQ15 ...

Page 44

... Min 70 55 Min 0 Min 15 Min 45 Min 35 35 Min 0 Min 20 Min 0 Min 0 Min 0 Min 0 Min 35 35 Min 25 Min 20 Byte Typ 6 Word Typ 6 Typ 0.5 Min 50 Min 0 Max 90 Max 20 S29AL016J_00_05 May 23, 2008 Unit µs sec µ ...

Page 45

... CC Notes sector address (for Sector Erase Valid Address for reading status data (see 2. Illustration shows device in word mode. May 23, 2008 S29AL016J_00_05 ( Figure 17.5 Program Operation Timings Program Command Sequence (last two cycles) ...

Page 46

... OEH Complement Complement Status Data Status Data S29AL016J Valid PA Valid PA t CPH GHWL DF Valid Valid In In CE# Controlled Write Cycles VA True Valid Data True Valid Data S29AL016J_00_05 May 23, 2008 High Z High Z ...

Page 47

... DQ2 Note The system may use CE# or OE# to toggle DQ2 and DQ6. DQ2 toggles only when read at an address within an erase-suspended sector. May 23, 2008 S29AL016J_00_05 ( Figure 17.9 Toggle Bit Timings (During Embedded Algorithms) ...

Page 48

... Figure 17.12 Sector Protect/Unprotect Timing Diagram Valid* Sector Protect/Unprotect 60h 60h Sector Protect: 150 µs 1 µs Sector Unprotect: 1.5 ms S29AL016J All Speed Options Min 500 Min 4 Min 4 t VIDR Valid* Valid* Verify 40h Status S29AL016J_00_05 May 23, 2008 Unit ns µs µs ...

Page 49

... PA = program address program data, DQ7# = complement of the data written to the device Figure indicates the last two bus cycles of the command sequence. 3. Word mode address used as an example. May 23, 2008 S29AL016J_00_05 ( ...

Page 50

... Excludes system level overhead (Note 5) µs = 3.0 V, 100,000 cycles, checkerboard data pattern. Table 10.1 Package Typ Max TSOP TBD TBD = 0 BGA TBD TBD TSOP TBD TBD = 0 BGA TBD TBD TSOP TBD TBD = 0 BGA TBD TBD S29AL016J_00_05 May 23, 2008 Unit ...

Page 51

... D1 18.30 18.40 18.50 E 11.90 12.00 12.10 e 0.50 BASIC L 0.50 0.60 0.70 0 0˚ R 0.08 0. Note For reference only. BSC is an ANSI standard for Basic Space Centering. May 23, 2008 S29AL016J_00_05 ( 0. SEE DETAIL (c) GAUGE PLANE θ ...

Page 52

... WHEN THERE IS AN EVEN NUMBER OF SOLDER BALLS IN THE OUTER ROW e/2 8. NOT USED. 9. "+" INDICATES THE THEORETICAL CENTER OF DEPOPULATED BALLS CORNER TO BE IDENTIFIED BY CHAMFER, LASER OR INK MARK, METALLIZED MARK INDENTATION OR OTHER MEANS. S29AL016J_00_05 May 23, 2008 CORNER 3338 \ 16-038.25b ...

Page 53

... BALL PITCH - E DIRECTION 0.50 BSC. SOLDER BALL PLACEMENT NONE DEPOPULATED SOLDER BALLS May 23, 2008 S29AL016J_00_05 ( NOTES: 1. DIMENSIONING AND TOLERANCING PER ASME Y14.5M-1994. 2. ALL DIMENSIONS ARE IN MILLIMETERS. 3. BALL POSITION DESIGNATION PER JESD 95-1, SPP-010 EXCEPT AS NOTED) ...

Page 54

... Ordering Information Added the Extended Temperature Range Updated the Valid Combination table Updated Pin Configuration table Pin Configuration Updated the S29AL016J Device Bus Operation table and modified Note 3 Device Bus Operation Added Extended Temperature Range information Operating Ranges Added Regulated Voltage ...

Page 55

... ORNAND2 , HD-SIM and combinations thereof, are trademarks of Spansion LLC in the US and other countries. Other names used are for informational purposes only and may be trademarks of their respective owners. May 23, 2008 S29AL016J_00_05 ( ® , the Spansion Logo, MirrorBit S29AL016J ® ...

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