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M93S66 Datasheet(PDF) 17 Page - STMicroelectronics

Part No. M93S66
Description  4Kbit, 2Kbit and 1Kbit 16-bit wide MICROWIRE Serial Access EEPROM with Block Protection
Download  34 Pages
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Maker  STMICROELECTRONICS [STMicroelectronics]
Homepage  http://www.st.com
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M93S66 Datasheet(HTML) 17 Page - STMicroelectronics

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M93S66, M93S56, M93S46
DC AND AC PARAMETERS
This section summarizes the operating and mea-
surement conditions, and the DC and AC charac-
teristics of the device. The parameters in the DC
and AC Characteristic tables that follow are de-
rived from tests performed under the Measure-
ment Conditions summarized in the relevant
tables. Designers should check that the operating
conditions in their circuit match the measurement
conditions when relying on the quoted parame-
ters.
Table 5. Operating Conditions (M93Sx6)
Table 6. Operating Conditions (M93Sx6-W)
Table 7. Operating Conditions (M93Sx6-R)
Table 8. AC Measurement Conditions (M93Sx6)
Note: Output Hi-Z is defined as the point where data out is no longer driven.
Table 9. AC Measurement Conditions (M93Sx6-W and M93Sx6-R)
Note: Output Hi-Z is defined as the point where data out is no longer driven.
Symbol
Parameter
Min.
Max.
Unit
VCC
Supply Voltage
4.5
5.5
V
TA
Ambient Operating Temperature (Device Grade 6)
–40
85
°C
Ambient Operating Temperature (Device Grade 3)
–40
125
°C
Symbol
Parameter
Min.
Max.
Unit
VCC
Supply Voltage
2.5
5.5
V
TA
Ambient Operating Temperature (Device Grade 6)
–40
85
°C
Symbol
Parameter
Min.
Max.
Unit
VCC
Supply Voltage
1.8
5.5
V
TA
Ambient Operating Temperature (Device Grade 6)
–40
85
°C
Symbol
Parameter
Min.
Max.
Unit
CL
Load Capacitance
100
pF
Input Rise and Fall Times
50
ns
Input Pulse Voltages
0.4 V to 2.4 V
V
Input Timing Reference Voltages
1.0 V and 2.0 V
V
Output Timing Reference Voltages
0.8 V and 2.0 V
V
Symbol
Parameter
Min.
Max.
Unit
CL
Load Capacitance
100
pF
Input Rise and Fall Times
50
ns
Input Pulse Voltages
0.2VCC to 0.8VCC
V
Input Timing Reference Voltages
0.3VCC to 0.7VCC
V
Output Timing Reference Voltages
0.3VCC to 0.7VCC
V


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