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PDF S93C56B Data sheet ( Hoja de datos )

Número de pieza S93C56B
Descripción (S93Cx6B) CMOS SERIAL E2PROM
Fabricantes Seiko Instruments 
Logotipo Seiko Instruments Logotipo



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Rev. 3.1_01
CMOS SERIAL E2PROM
S-93C46B/56B/66B
The S-93C46B/56B/66B is a high speed, low current
consumption, 1/2/4 K-bit serial E2PROM with a wide
operating voltage range. It is organized as 64-word
× 16-bit, 128-word × 16-bit, 256-word × 16-bit,
respectively. Each is capable of sequential read, at
which time addresses are automatically incremented
in 16-bit blocks. The instruction code is compatible
with the NM93CS46/56/66.
„ Features
Low current consumption
Standby: 1.5 µA Max. (VCC = 5.5 V)
Operating: 0.8 mA Max. (VCC = 5.5 V)
0.4 mA Max. (VCC = 2.5 V)
Wide operating voltage range Read:
1.8 to 5.5 V (at 40 to +85°C)
Write:
2.7 to 5.5 V (at 40 to +85°C)
Sequential read capable
Write disable function when power supply voltage is low
Function to protect against write due to erroneous instruction recognition
Endurance:
107 cycles/word* (at +25°C) write capable,
106 cycles/word* (at +85°C)
3 × 105 cycles/word* (at +105°C)
* For each address (Word: 16 bits)
Data retention: 10 years (after rewriting 106 cycles/word at +85°C)
S-93C46B:
1 K-bit NM93CS46 instruction code compatible
S-93C56B:
2 K-bit NM93CS56 instruction code compatible
S-93C66B:
4 K-bit NM93CS66 instruction code compatible
High-temperature operation: +105°C Max. supported
(Only S-93Cx6BD0H-J8T2, S-93Cx6BD0H-T8T2)
„ Packages
Package name
8-Pin DIP
8-Pin SOP(JEDEC)
8-Pin TSSOP
SNT-8A
Package
DP008-F
FJ008-A
FT008-A
PH008-A
Drawing code
Tape
FJ008-D
FT008-E
PH008-A
Reel
FJ008-D
FT008-E
PH008-A
Caution This product is intended to use in general electronic devices such as consumer electronics,
office equipment, and communications devices. Before using the product in medical
equipment or automobile equipment including car audio, keyless entry and engine control
unit, contact to SII is indispensable.
Seiko Instruments Inc.
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S93C56B pdf
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Rev.3.1_01
„ Block Diagram
CMOS SERIAL E2PROM
S-93C46B/56B/66B
Memory array
Address
decoder
VCC
GND
Data register
Output buffer
DO
DI
Mode decode logic
CS
Clock pulse
monitoring circuit
Voltage detector
SK Clock generator
Figure 6
„ Instruction Sets
1. S-93C46B
Table 6
Instruction
Start Bit Operation
Code
Address
Data
SK input clock
1 23456789
10 to 25
READ (Read data)
1 1 0 A5 A4 A3 A2 A1 A0 D15 to D0 Output*1
WRITE (Write data)
1 0 1 A5 A4 A3 A2 A1 A0 D15 to D0 Input
ERASE (Erase data)
1 1 1 A5 A4 A3 A2 A1 A0
WRAL (Write all)
1 0 0 0 1 x x x x D15 to D0 Input
ERAL (Erase all)
1 0010xxxx
EWEN (Write enable) 1 0 0 1 1 x x x x
EWDS (Write disable)
1
00 00 x x x x
*1. When the 16-bit data in the specified address has been output, the data in the next address is output.
Remark x: Don’t care
Seiko Instruments Inc.
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S93C56B arduino
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Rev.3.1_01
CMOS SERIAL E2PROM
S-93C46B/56B/66B
„ Operation
All instructions are executed by inputting DI in synchronization with the rising edge of SK after CS goes
high. An instruction set is input in the order of start bit, instruction, address, and data.
Instruction input finishes when CS goes low. A low level must be input to CS between commands during
tCDS. While a low level is being input to CS, the S-93C46B/56B/66B is in standby mode, so the SK and DI
inputs are invalid and no instructions are allowed.
„ Start Bit
A start bit is recognized when the DI pin goes high at the rise of SK after CS goes high. After CS goes high,
a start bit is not recognized even if the SK pulse is input as long as the DI pin is low.
1. Dummy clock
SK clocks input while the DI pin is low before a start bit is input are called dummy clocks. Dummy
clocks are effective when aligning the number of instruction sets (clocks) sent by the CPU with those
required for serial memory operation. For example, when a CPU instruction set is 16 bits, the number
of instruction set clocks can be adjusted by inserting a 7-bit dummy clock for the S-93C46B and a 5-bit
dummy clock for the S-93C56B/66B.
2. Start bit input failure
When the output status of the DO pin is high during the verify period after a write operation, if a high
level is input to the DI pin at the rising edge of SK, the S-93C46B/56B/66B recognizes that a start bit
has been input. To prevent this failure, input a low level to the DI pin during the verify operation
period (refer to “4.1 Verify operation”).
When a 3-wire interface is configured by connecting the DI input pin and DO output pin, a period in
which the data output from the CPU and the serial memory collide may be generated, preventing
successful input of the start bit. Take the measures described in “„ 3-Wire Interface (Direct
Connection between DI and DO)”.
Seiko Instruments Inc.
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