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M24M01-HRMN6TP Fiches technique(PDF) 9 Page - STMicroelectronics

No de pièce M24M01-HRMN6TP
Description  1 Mbit serial I짼C bus EEPROM
PDF  30 Pages
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Fabricant  STMICROELECTRONICS [STMicroelectronics]
Site Internet  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

M24M01-HRMN6TP Fiches technique(HTML) 9 Page - STMicroelectronics

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Signal description
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2.5
VSS ground
VSS is the reference for the VCC supply voltage.
2.6
Supply voltage (VCC)
2.6.1
Operating supply voltage VCC
Prior to selecting the memory and issuing instructions to it, a valid and stable VCC voltage
within the specified [VCC(min), VCC(max)] range must be applied (see Table 7). In order to
secure a stable DC supply voltage, it is recommended to decouple the VCC line with a
suitable capacitor (usually of the order of 10 nF to 100 nF) close to the VCC/VSS package
pins.
This voltage must remain stable and valid until the end of the transmission of the instruction
and, for a Write instruction, until the completion of the internal write cycle (tW).
2.6.2
Power-up conditions
When the power supply is turned on, VCC rises from VSS to VCC. The VCC rise time must not
vary faster than 1 V/µs.
2.6.3
Device reset
In order to prevent inadvertent Write operations during power-up, a power on reset (POR)
circuit is included. At power-up (continuous rise of VCC), the device does not respond to any
instruction until VCC has reached the power on reset threshold voltage (this threshold is
lower than the minimum VCC operating voltage defined in Table 7). When VCC passes over
the POR threshold, the device is reset and is in Standby Power mode.
In a similar way, during power-down (continuous decrease in VCC), as soon as VCC drops
below the Power On Reset threshold voltage, the device stops responding to any instruction
sent to it.
2.6.4
Power-down conditions
During power-down (continuous decrease in VCC), the device must be in the Standby Power
mode (mode reached after decoding a Stop condition, assuming that is there is no internal
Write cycle in progress).



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