Advanced Information
CAT25C32/64
32K/64K-Bit SPI Serial CMOS E2PROM FEATURES
s 10 MHz SPI Compatible s 1.8 to 6.0 Volt Operation s Hardware and Software Protection s Zero Standby Current s Low Power CMOS Technology s SPI Modes (0,0 &1,1) s Commercial, Industrial and Automotive s 1,000,000 Program/Erase Cycles s 100 Year Data Retention s Self-Timed Write Cycle s 8-Pin DIP/SOIC, 16-Pin SOIC, 14-Pin TSSOPand
20-Pin TSSOP
s 64-Byte Page Write Buffer s Block Write Protection
Temperature Ranges
– Protect 1/4, 1/2 or all of E2PROM Array
DESCRIPTION
The CAT25C32/64 is a 32K/64K-Bit SPI Serial CMOS E2PROM internally organized as 4Kx8/8Kx8 bits. Catalyst’s advanced CMOS Technology substantially reduces device power requirements. The CAT25C32/ 64 features a 64-byte page write buffer. The device operates via the SPI bus serial interface and is enabled though a Chip Select (CS). In addition to the Chip Select, the clock input (SCK), data in (SI) and data out (SO) are required to access the device. The HOLD pin may be used to suspend any serial communication without resetting the serial sequence. The CAT25C32/64 is designed with software and hardware write protection features including Block write protection. The device is available in 8-pin DIP, 8-pin SOIC, 14-pin TSSOP and 20-pin TSSOP packages.
PIN CONFIGURATION
CS SO WP VSS 1 2 3 4 8 7 6 5
CS SO HOLD NC SCK NC NC SI WP VSS
BLOCK DIAGRAM
14 13 12 11 10 9 8
VCC HOLD NC NC NC SCK SI
SOIC Package (S) TSSOP Package (U14) TSSOP Package (U20)
VCC
1 2 3 4 5 6 7
DIP Package (P)
CS SO WP VSS 1 2 3 4 8 7 6 5 VCC HOLD SCK SI
NC CS SO SO NC NC WP VSS NC NC
1 2 3 4 5 6 7 8 9 10
20 19 18 17 16 15 14 13 12 11
NC VCC HOLD HOLD NC NC SCK SI NC SO NC SI
CS WP HOLD SCK
SENSE AMPS SHIFT REGISTERS
WORD ADDRESS BUFFERS
COLUMN DECODERS
I/O CONTROL SPI CONTROL LOGIC BLOCK PROTECT LOGIC
CONTROL LOGIC
XDEC
E2PROM ARRAY
PIN FUNCTIONS Pin Name
SO SCK WP VCC VSS CS SI HOLD NC
Function
Serial Data Output Serial Clock Write Protect +1.8V to +6.0V Power Supply Ground Chip Select Serial Data Input Suspends Serial Input No Connect
DATA IN STORAGE HIGH VOLTAGE/ TIMING CONTROL STATUS REGISTER
© 1999 by Catalyst Semiconductor, Inc. Characteristics subject to change without notice
Doc No. 25087-00 8/99 SPI-1
CAT25C32/64
Advanced Information
ABSOLUTE MAXIMUM RATINGS*
Temperature Under Bias ................. –55°C to +125°C Storage Temperature ....................... –65°C to +150°C Voltage on any Pin with Respect to VSS1) ................... –2.0V to +VCC +2.0V VCC with Respect to VSS ................................ –2.0V to +7.0V Package Power Dissipation Capability (Ta = 25°C) ................................... 1.0W Lead Soldering Temperature (10 secs) ............ 300°C Output Short Circuit Current(2) ........................ 100 mA RELIABILITY CHARACTERISTICS Symbol NEND(3) TDR(3) VZAP(3) ILTH(3)(4) Parameter Endurance Data Retention ESD Susceptibility Latch-Up Min. 1,000,000 100 2000 100 Max.
*COMMENT
Stresses above those listed under “Absolute Maximum Ratings” may cause permanent damage to the device. These are stress ratings only, and functional operation of the device at these or any other conditions outside of those listed in the operational sections of this specification is not implied. Exposure to any absolute maximum rating for extended periods may affect device performance and reliability.
Units Cycles/Byte Years Volts mA
Reference Test Method MIL-STD-883, Test Method 1033 MIL-STD-883, Test Method 1008 MIL-STD-883, Test Method 3015 JEDEC Standard 17
D.C. OPERATING CHARACTERISTICS VCC = +1.8V to +6.0V, unless otherwise specified. Limits Symbol ICC1 ICC2 ISB ILI ILO VIL(3) VIH
(3)
Parameter Power Supply Current (Operating Write) Power Supply Current (Operating Read) Power Supply Current (Standby) Input Leakage Current Output Leakage Current Input Low Voltage Input High Voltage Output Low Voltage Output High Voltage Output Low Voltage Output High Voltage
Min.
Typ.
Max. 10 2 0 2 3
Units mA mA µA µA µA V V V V
Test Conditions VCC = 5V @ 10MHz SO=open; CS=Vss VCC = 5.0V FCLK = 10MHz CS = VCC VIN = VSS or VCC VOUT = 0V to VCC, CS = 0V
-1 VCC x 0.7 VCC - 0.8
VCC x 0.3 VCC + 0.5 0.4
VOL1 VOH1 VOL2 VOH2
4.5V≤VCC
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