STK12C68-SF45I Cypress Semiconductor Corp, STK12C68-SF45I Datasheet - Page 7

IC NVSRAM 64KBIT 45NS 28SOIC

STK12C68-SF45I

Manufacturer Part Number
STK12C68-SF45I
Description
IC NVSRAM 64KBIT 45NS 28SOIC
Manufacturer
Cypress Semiconductor Corp
Series
-r
Datasheets

Specifications of STK12C68-SF45I

Memory Size
64K (8K x 8)
Package / Case
28-SOIC (8.69mm width)
Format - Memory
RAM
Memory Type
NVSRAM (Non-Volatile SRAM)
Speed
45ns
Interface
Parallel
Voltage - Supply
4.5 V ~ 5.5 V
Operating Temperature
-40°C ~ 85°C
Access Time
45 ns
Supply Voltage (max)
7 V
Supply Voltage (min)
4.5 V
Maximum Operating Current
65 mA
Organization
8 K x 8
Maximum Operating Temperature
+ 85 C
Minimum Operating Temperature
- 40 C
Mounting Style
SMD/SMT
Operating Supply Voltage
4.5 V to 5.5 V
Rohs Compliant
YES
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Contains lead / RoHS non-compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
STK12C68-SF45I
Manufacturer:
Simtek
Quantity:
500
Part Number:
STK12C68-SF45I
Manufacturer:
SIMTEK
Quantity:
20 000
Part Number:
STK12C68-SF45ITR
Manufacturer:
CADDOCK
Quantity:
101
Best Practices
nvSRAM products have been used effectively for over 15 years.
While ease-of-use is one of the product’s main system values,
experience gained working with hundreds of applications has
resulted in the following suggestions as best practices:
Table 1. Hardware Mode Selection
Document Number: 001-51027 Rev. *D
Notes
1. HSB STORE operation occurs only if an SRAM Write is done since the last nonvolatile cycle. After the STORE (If any) completes, the part goes into standby
2. The six consecutive addresses must be in the order listed. WE must be high during all six consecutive CE controlled cycles to enable a nonvolatile cycle.
3. I/O state assumes OE < V
The nonvolatile cells in an nvSRAM are programmed on the
test floor during final test and quality assurance. Incoming
inspection routines at customer or contract manufacturer’s
sites sometimes reprograms these values. Final NV patterns
are typically repeating patterns of AA, 55, 00, FF, A5, or 5A.
The end product’s firmware should not assume that an NV array
is in a set programmed state. Routines that check memory
content values to determine first time system configuration,
cold or warm boot status, and so on must always program a
unique NV pattern (for example, complex 4-byte pattern of 46
E6 49 53 hex or more random bytes) as part of the final system
mode, inhibiting all operations until HSB rises.
CE
H
X
L
L
L
L
WE
IL
H
H
H
X
L
X
. Activation of nonvolatile cycles does not depend on state of OE.
HSB
H
H
H
H
H
L
A12–A0
0x0AAA
0x0AAA
0x1FFF
0x1FFF
0x0F0E
0x0000
0x1555
0x10F0
0x0F0F
0x0000
0x1555
0x10F0
X
X
X
X
Nonvolatile RECALL
Nonvolatile STORE
Nonvolatile STORE
manufacturing test to ensure these system routines work
consistently.
Power up boot firmware routines should rewrite the nvSRAM
into the desired state. While the nvSRAM is shipped in a preset
state, best practice is to again rewrite the nvSRAM into the
desired state as a safeguard against events that might flip the
bit inadvertently (program bugs, incoming inspection routines,
and so on).
The Vcap value specified in this data sheet includes a minimum
and a maximum value size. The best practice is to meet this
requirement and not exceed the maximum Vcap value because
the higher inrush currents may reduce the reliability of the
internal pass transistor. Customers who want to use a larger
Vcap value to make sure there is extra store charge should
discuss their Vcap size selection with Cypress.
Not Selected
Read SRAM
Write SRAM
Read SRAM
Read SRAM
Read SRAM
Read SRAM
Read SRAM
Read SRAM
Read SRAM
Read SRAM
Read SRAM
Read SRAM
Mode
Output High Z
Output High Z
Output High Z
Output High Z
Output Data
Output Data
Output Data
Output Data
Output Data
Output Data
Output Data
Output Data
Output Data
Output Data
Output Data
Input Data
I/O
Active I
Active
Standby
Active
STK12C68
Power
Active
I
CC2
CC2
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