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ATMEGA8_14 Datasheet, PDF (238/331 Pages) ATMEL Corporation – High-performance, Low-power Atmel
ATmega8(L)
Two-wire Serial Interface Characteristics
Table 101 describes the requirements for devices connected to the Two-wire Serial Bus. The ATmega8 Two-wire Serial
Interface meets or exceeds these requirements under the noted conditions.
Timing symbols refer to Figure 115 on page 239.
Table 101. Two-wire Serial Bus Requirements
Symbol
VIL
VIH
Vhys(1)
VOL(1)
tr(1)
tof(1)
tSP(1)
Ii
Ci(1)
fSCL
Parameter
Input Low-voltage
Input High-voltage
Hysteresis of Schmitt Trigger Inputs
Output Low-voltage
Rise Time for both SDA and SCL
Output Fall Time from VIHmin to VILmax
Spikes Suppressed by Input Filter
Input Current each I/O Pin
Capacitance for each I/O Pin
SCL Clock Frequency
Rp
Value of Pull-up resistor
Condition
3mA sink Current
10pF < Cb < 400pF(3)
0.1VCC < Vi < 0.9VCC
fCK(4) > max(16fSCL, 250kHz)(5)
fSCL  100kHz
fSCL > 100kHz
tHD;STA Hold Time (repeated) START Condition
tLOW
Low Period of the SCL Clock
fSCL  100kHz
fSCL > 100kHz
fSCL  100kHz(6)
fSCL > 100kHz(7)
tHIGH
High period of the SCL clock
fSCL  100kHz
fSCL > 100kHz
tSU;STA Set-up time for a repeated START condition
fSCL  100kHz
fSCL > 100kHz
tHD;DAT
Data hold time
fSCL  100kHz
fSCL > 100kHz
tSU;DAT
Data setup time
fSCL  100kHz
fSCL > 100kHz
tSU;STO Setup time for STOP condition
fSCL  100kHz
fSCL > 100kHz
tBUF
Bus free time between a STOP and START
condition
fSCL  100kHz
fSCL > 100kHz
Notes:
1. In ATmega8, this parameter is characterized and not 100% tested
2. Required only for fSCL > 100kHz
3. Cb = capacitance of one bus line in pF
4. fCK = CPU clock frequency
Min
-0.5
0.7VCC
0.05VCC(2)
0
20 + 0.1Cb(3)(2)
20 + 0.1Cb(3)(2)
0
-10
–
0
-V---C----C----–-----0---.--4---V---
3mA
-V---C----C----–-----0---.--4---V---
3mA
4.0
0.6
4.7
1.3
4.0
0.6
4.7
0.6
0
0
250
100
4.0
0.6
4.7
1.3
Max
0.3VCC
VCC + 0.5
–
0.4
300
250
50(2)
10
10
400
1----0---C0----0b---n---s--
3----0-C--0---b-n---s-
–
–
–
–
–
–
–
–
3.45
0.9
–
–
–
–
–
–
Units
V
ns
µA
pF
kHz

µs
ns
µs
2486AA–AVR–02/2013
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