Cypress Semiconductor STK11C68 Specification Sheet

64 kbit (8k x 8) softstore nvsram

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Features
25 ns, 35 ns, and 45 ns access times
Pin compatible with industry standard SRAMs
Software initiated nonvolatile STORE
Unlimited Read and Write endurance
Automatic RECALL to SRAM on power up
Unlimited RECALL cycles
1,000,000 STORE cycles
100 year data retention
Single 5V+10% operation
Commercial and industrial temperature
28-pin (330 mil) SOIC package
28-pin (300 mil) CDIP and 28-pad (350 mil) LCC packages
RoHS compliance
Logic Block Diagram
A
5
A
6
A
7
A
8
A
9
A
11
A
12
DQ
0
DQ
1
DQ
2
DQ
3
DQ
4
DQ
5
DQ
6
DQ
7
Cypress Semiconductor Corporation
Document Number: 001-50638 Rev. **
64 Kbit (8K x 8) SoftStore nvSRAM

Functional Description

The Cypress STK11C68 is a 64Kb fast static RAM with a nonvol-
atile element in each memory cell. The embedded nonvolatile
elements incorporate QuantumTrap technology producing the
world's most reliable nonvolatile memory. The SRAM provides
unlimited read and write cycles, while independent nonvolatile
data resides in the highly reliable QuantumTrap cell. Data
transfers under software control from SRAM to the nonvolatile
elements (the STORE operation). On power up, data is automat-
ically restored to the SRAM (the RECALL operation) from the
nonvolatile memory. RECALL operations are also available
under software control.
Quantum Trap
128 X 512
STORE
RECALL
STATIC RAM
ARRAY
128 X 512
COLUMN I/O
COLUMN DEC
A
A
A
A
A
A
0
1
2
3
4
10
198 Champion Court
V
V
CC
CAP
POWER
CONTROL
STORE/
RECALL
HSB
CONTROL
SOFTWARE
DETECT
,
San Jose
CA 95134-1709
STK11C68
-
A
A
0
12
OE
CE
WE
408-943-2600
Revised January 30, 2009
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Summary of Contents for Cypress Semiconductor STK11C68

  • Page 1: Functional Description

    Document Number: 001-50638 Rev. ** 64 Kbit (8K x 8) SoftStore nvSRAM Functional Description The Cypress STK11C68 is a 64Kb fast static RAM with a nonvol- atile element in each memory cell. The embedded nonvolatile elements incorporate QuantumTrap technology producing the world’s most reliable nonvolatile memory.
  • Page 2: Pin Configurations

    Deasserting OE HIGH causes the IO pins to tri-state. Ground Ground for the Device. The device is connected to ground of the system. Power Supply Power Supply Inputs to the Device. Document Number: 001-50638 Rev. ** STK11C68 Description Page 2 of 16 [+] Feedback...
  • Page 3: Noise Considerations

    WE goes LOW. cycle is automatically initiated and takes t If the STK11C68 is in a Write state at the end of power up RECALL, the SRAM data is corrupted. To help avoid this situation, a 10 Kohm resistor is connected either between WE...
  • Page 4: Best Practices

    STK11C68 depends on the following items: ■ The duty cycle of chip enable ■ The overall cycle rate for accesses ■ The ratio of Reads to Writes ■ CMOS versus TTL input levels ■ The operating temperature ■...
  • Page 5: Maximum Ratings

    < V < V = Max, V < V < V , CE or OE > V = –4 mA = 8 mA Description STK11C68 Ambient Temperature 0°C to +70°C 4.5V to 5.5V -40°C to +85°C 4.5V to 5.5V Commercial Industrial...
  • Page 6: Thermal Resistance

    Test Conditions Test conditions follow standard test methods and procedures for measuring thermal impedance, per EIA / JESD51. Figure 4. AC Test Loads R1 480Ω 30 pF 255Ω STK11C68 Unit 28-SOIC 28-CDIP 28-LCC Unit °C/W °C/W Page 6 of 16...
  • Page 7: Switching Waveforms

    WE > V 6. Measured ±200 mV from steady state output voltage. Document Number: 001-50638 Rev. ** 25 ns Description ; device is continuously selected. STK11C68 35 ns 45 ns [4, 5] Page 7 of 16 Unit [+] Feedback...
  • Page 8 8. CE or WE must be greater than V during address transitions. Document Number: 001-50638 Rev. ** 25 ns Description DATA VALID HZWE HIGH IMPEDANCE DATA VALID HIGH IMPEDANCE STK11C68 35 ns 45 ns Unit [7, 8] LZWE [7, 8] Page 8 of 16 [+] Feedback...
  • Page 9 STORE INHIBIT STORE INHIBIT NO RECALL NO RECALL DID NOT GO DID NOT GO BELOW V BELOW V RESET RESET SWITCH STK11C68 STK11C68 Unit μs BROWN OUT STORE INHIBIT RECALL WHEN RETURNS ABOVE V SWITCH Page 9 of 16 [+] Feedback...
  • Page 10 11. The six consecutive addresses must be read in the order listed in Document Number: 001-50638 Rev. ** [10, 11] 25 ns Description DATA VALID Table 1 on page 4. WE must be HIGH during all six consecutive cycles. STK11C68 35 ns 45 ns Unit [11] STORE RECALL HIGH IMPEDANCE Page 10 of 16 μs...
  • Page 11: Part Numbering Nomenclature

    Part Numbering Nomenclature STK11C68 - S F 45 I TR Ordering Information Speed (ns) Ordering Code STK11C68-SF25TR STK11C68-SF25 STK11C68-SF25ITR STK11C68-SF25I STK11C68-SF35TR STK11C68-SF35 STK11C68-C35 STK11C68-L35 STK11C68-SF35ITR STK11C68-SF35I STK11C68-C35I STK11C68-L35I Document Number: 001-50638 Rev. ** Packaging Option: TR = Tape and Reel...
  • Page 12 Ordering Information (continued) Speed (ns) Ordering Code STK11C68-SF45TR STK11C68-SF45 STK11C68-C45 STK11C68-L45 STK11C68-SF45ITR STK11C68-SF45I STK11C68-C45I STK11C68-L45I All parts are Pb-free. The above table contains Final information. Contact your local Cypress sales representative for availability of these parts Document Number: 001-50638 Rev. **...
  • Page 13: Package Diagrams

    STK11C68 Package Diagrams Figure 11. 28-Pin (330 Mil) SOIC (51-85058) 51-85058 *A Document Number: 001-50638 Rev. ** Page 13 of 16 [+] Feedback...
  • Page 14 STK11C68 Package Diagrams (continued) Figure 12. 28-Pin (300 Mil) Side Braze DIL (001-51695) 001-51695 ** Document Number: 001-50638 Rev. ** Page 14 of 16 [+] Feedback...
  • Page 15 1. ALL DIMENSION ARE IN INCHES AND MILLIMETERS [MIN/MAX] 2. JEDEC 95 OUTLINE# MO-041 3. PACKAGE WEIGHT : TBD Document Number: 001-50638 Rev. ** Figure 13. 28-Pad (350 Mil) LCC (001-51696) STK11C68 001-51696 ** Page 15 of 16 [+] Feedback...
  • Page 16 Document History Page Document Title: STK11C68 64 Kbit (8K x 8) SoftStore nvSRAM Document Number: 001-50638 Orig. of Rev. ECN No. Change 2625084 GVCH/PYRS Sales, Solutions, and Legal Information Worldwide Sales and Design Support Cypress maintains a worldwide network of offices, solution centers, manufacturer’s representatives, and distributors. To find the office closest to you, visit us at cypress.com/sales.

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