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Cypress Semiconductor Electronic Components Datasheet

CY14E064I Datasheet

64-Kbit (8 K x 8) Serial (I2C) nvSRAM

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CY14E064I pdf
PRELIMINARY
CY14C064I
CY14B064I, CY14E064I
64-Kbit (8 K × 8) Serial (I2C) nvSRAM
with Real Time Clock
64-Kbit (8 K × 8) Serial (I2C) nvSRAM with Real Time Clock
Features
64-Kbit nonvolatile static random access memory (nvSRAM)
Internally organized as 8 K × 8
STORE to QuantumTrap nonvolatile elements initiated
automatically on power-down (AutoStore) or by using I2C
command (Software STORE) or HSB pin (Hardware STORE)
RECALL
RECALL)
to
or
SRAM initiated on power-up (Power-Up
by I2C command (Software RECALL)
Automatic STORE on power-down with a small capacitor
High reliability
Infinite read, write, and RECALL cycles
1 million STORE cycles to QuantumTrap
Data retention: 20 years at 85 °C
Real Time Clock (RTC)
Full-featured RTC
Watchdog timer
Clock alarm with programmable interrupts
Backup power fail indication
Square wave output with programmable frequency (1 Hz,
512 Hz, 4096 Hz, 32.768 kHz)
Capacitor or battery backup for RTC
Backup current of 0.45 µA (typical)
High-speed I2C interface
Industry standard 100 kHz and 400 kHz speed
Fast mode Plus 1 MHz speed
High speed: 3.4 MHz
Zero cycle delay reads and writes
Write protection
Hardware protection using Write Protect (WP) pin
Software block protection for one-quarter, one-half, or entire
array
I2C access to special functions
Nonvolatile STORE/RECALL
8-byte serial number
Manufacturer ID and Product ID
Sleep mode
Low power consumption
Average active current of 1 mA at 3.4 MHz operation
Average standby mode current of 250 µA
Sleep mode current of 8 µA
Industry standard configurations
Operating voltages:
• CY14C064I : VCC = 2.4 V to 2.6 V
• CY14B064I : VCC = 2.7 V to 3.6 V
• CY14E064I : VCC = 4.5 V to 5.5 V
Industrial temperature
16-pin small outline integrated circuit (SOIC) package
Restriction of hazardous substances (RoHS) compliant
Overview
The Cypress CY14C064I/CY14B064I/CY14E064I combines a
64-Kbit nvSRAM[1] with a full-featured RTC in a monolithic
integrated circuit with serial I2C interface. The memory is
organized as 8 K words of 8 bits each. The embedded
nonvolatile elements incorporate the QuantumTrap technology,
creating the world’s most reliable nonvolatile memory. The
SRAM provides infinite read and write cycles, while the
QuantumTrap cells provide highly reliable nonvolatile storage of
data. Data transfers from SRAM to the nonvolatile elements
(STORE operation) takes place automatically at power-down.
On power-up, data is restored to the SRAM from the nonvolatile
memory (RECALL operation). The STORE and RECALL
operations can also be initiated by the user through I2C
commands.
Logic Block Diagram
VCC VCAP VRTCcap VRTCbat
Power Control
Block
Sleep
Serial Number
8x8
Manufacture ID/
Product ID
Memory Control Register
Command Register
SDA
SCL
A2, A1, A0
WP
2
I C Control Logic
Slave Address
Decoder
Control Registers Slave
Memory Slave
RTC Slave
Memory
Address and Data
Control
QuantrumTrap
8Kx8
SRAM
8Kx8
STORE
RECALL
X in
INT/SQW
Xout
RTC Control Logic
Registers
Counters
Note
1. Serial (I2C) nvSRAM will be referred to as nvSRAM throughout the datasheet.
Cypress Semiconductor Corporation • 198 Champion Court
wwwD.DocautamSheenett4#U: .0n0et1-68169 Rev. **
• San Jose, CA 95134-1709 • 408-943-2600
Revised April 1, 2011
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Cypress Semiconductor Electronic Components Datasheet

CY14E064I Datasheet

64-Kbit (8 K x 8) Serial (I2C) nvSRAM

No Preview Available !

CY14E064I pdf
PRELIMINARY
CY14C064I
CY14B064I, CY14E064I
Contents
Pinout ................................................................................ 3
Pin Definitions .................................................................. 3
I2C Interface ...................................................................... 4
Protocol Overview ............................................................ 4
I2C Protocol – Data Transfer ....................................... 4
Data Validity ...................................................................... 5
START Condition (S) ........................................................ 5
STOP Condition (P) .......................................................... 5
Repeated START (Sr) ....................................................... 5
Byte Format ....................................................................... 5
Acknowledge / No-acknowledge ..................................... 5
High-Speed Mode (Hs-mode) .......................................... 6
Serial Data Format in Hs-mode ................................... 6
Slave Device Address ...................................................... 7
Memory Slave Device ................................................. 7
RTC Registers Slave Device ....................................... 7
Control Registers Slave Device ................................... 7
Memory Control Register ............................................ 8
Command Register ..................................................... 8
Write Protection (WP) ....................................................... 9
AutoStore Operation ........................................................ 9
Hardware STORE and HSB pin Operation ..................... 9
Hardware RECALL (Power Up) ................................... 9
Write Operation ............................................................... 10
Read Operation ............................................................... 10
Memory Slave Access .................................................... 10
Write nvSRAM ........................................................... 10
Current nvSRAM Read .............................................. 12
Random Address Read ............................................. 13
RTC Registers Slave Access ......................................... 14
Write RTC Registers ................................................. 14
Current Address RTC Registers Read ...................... 15
Random Address RTC Registers Read .................... 15
Control Registers Slave ................................................. 16
Write Control Registers ............................................. 16
Current Control Registers Read ................................ 17
Random Control Registers Read .............................. 17
Serial Number ................................................................. 18
Serial Number Write .................................................. 18
Serial Number Lock ................................................... 18
Serial Number Read .................................................. 18
Device ID ......................................................................... 19
Device ID Read ......................................................... 19
Executing Commands Using Command Register ....... 19
Real Time Clock Operation ............................................ 20
nvTIME Operation ..................................................... 20
Clock Operations ....................................................... 20
Reading the Clock ..................................................... 20
Setting the Clock ....................................................... 20
Backup Power ........................................................... 20
Stopping and Starting the Oscillator .......................... 20
Calibrating the Clock ................................................. 21
Alarm ......................................................................... 21
Watchdog Timer ........................................................ 21
Programmable Square Wave Generator ................... 22
Power Monitor ........................................................... 22
Backup Power Monitor .............................................. 22
Interrupts ................................................................... 22
Interrupt Register ....................................................... 22
Flags Register ........................................................... 23
Best Practices ................................................................. 29
Maximum Ratings ........................................................... 30
Operating Range ............................................................. 30
DC Electrical Characteristics ........................................ 30
Data Retention and Endurance ..................................... 31
Thermal Resistance ........................................................ 31
AC Test Conditions ........................................................ 32
RTC Characteristics ....................................................... 32
AC Switching Characteristics ....................................... 33
nvSRAM Specifications ................................................. 34
Software Controlled STORE/RECALL Cycles .............. 35
Hardware STORE Cycle ................................................. 36
Ordering Information ...................................................... 37
Ordering Code Definitions ......................................... 37
Package Diagram ............................................................ 38
Acronyms ........................................................................ 39
Document Conventions ................................................. 39
Units of Measure ....................................................... 39
Document History Page ................................................. 40
Sales, Solutions, and Legal Information ...................... 41
Worldwide Sales and Design Support ....................... 41
Products .................................................................... 41
PSoC Solutions ......................................................... 41
Document #: 001-68169 Rev. **
Page 2 of 41
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Cypress Semiconductor Electronic Components Datasheet

CY14E064I Datasheet

64-Kbit (8 K x 8) Serial (I2C) nvSRAM

No Preview Available !

CY14E064I pdf
PRELIMINARY
CY14C064I
CY14B064I, CY14E064I
Pinout
Figure 1. Pin Diagram - 16-pin SOIC
NC
VRTCbat
Xout
Xin
1
2
3
4
WP
A0
VRTCcap
VSS
5
6
7
8
16 VCC
15 INT/SQW
Top View
not to scale
14
13
12
VCAP
A2
SDA
11 SCL
10 A1
9 HSB
Pin Definitions
Pin Name
SCL
SDA
WP
A2-A0
HSB
VCAP
VRTCcap
VRTCbat
Xout
Xin
INT/SQW
NC
VSS
VCC
I/O Type
Input
Input/Output
Input
Input
Input/Output
Power supply
Power supply
Power supply
Output
Input
Output
No connect
Power supply
Power supply
Description
Clock: Runs at speeds up to a maximum of fSCL
I/O: Input/output of data through I2C interface
Write Protect: Protects the memory from all writes. This pin is internally pulled LOW and hence can
be left open if not connected.
Slave Address: Defines the slave address for I2C. These pins are internally pulled LOW and hence
can be left open if not connected.
Hardware STORE Busy:
Output: Indicates busy status of nvSRAM when LOW. After each Hardware and Software STORE
operation HSB is driven HIGH for a short time (tHHHD) with standard output high current and then a
weak internal pull-up resistor keeps this pin HIGH (External pull-up resistor connection optional).
Input: Hardware STORE implemented by pulling this pin LOW externally.
AutoStore capacitor: Supplies power to the nvSRAM during power loss to STORE data from the
SRAM to nonvolatile elements. If not required, AutoStore must be disabled and this pin left as No
Connect. It must never be connected to ground.
Capacitor backup for RTC: Left unconnected if VRTCbat is used.
Battery backup for RTC: Left unconnected if VRTCcap is used.
Crystal output connection
Crystal input connection
Interrupt output/calibration/square wave. Programmable to respond to the clock alarm, the watchdog
timer, and the power monitor. Also programmable to either active HIGH (push or pull) or LOW (open
drain). In Calibration mode, a 512 Hz square wave is driven out. In Square Wave mode, the user
may select a frequency of 1 Hz, 512 Hz, 4096 Hz, or 32768 Hz to be used as a continuous output.
No connect. This pin is not connected to the die.
Ground
Power supply
Document #: 001-68169 Rev. **
Page 3 of 41
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Part Number CY14E064I
Description 64-Kbit (8 K x 8) Serial (I2C) nvSRAM
Maker Cypress Semiconductor
Total Page 30 Pages
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