attiny13-20ss ATMEL Corporation, attiny13-20ss Datasheet - Page 121

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attiny13-20ss

Manufacturer Part Number
attiny13-20ss
Description
8-bit Microcontroller With 1k Bytes In-system Programmable Flash - Atmel Corporation
Manufacturer
ATMEL Corporation
Datasheet

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Notes:
2535G–AVR–01/07
T
Symbol
V
V
I
I
R
R
I
V
I
t
A
IL
IH
CC
ACLK
ACPD
OH1
OH2
ACIO
RST
pu
= -40#C to 85#C, V
1. All DC Characteristics contained in this data sheet are based on simulation and characterization of other AVR microcontrol-
2. “Max” means the highest value where the pin is guaranteed to be read as low.
3. “Min” means the lowest value where the pin is guaranteed to be read as high.
4. Although each I/O port can sink more than the test conditions (20 mA at V
5. Although each I/O port can source more than the test conditions (20 mA at V
lers manufactured in the same process technology. These values are representing design targets, and will be updated after
characterization of actual silicon.
at V
1] The sum of all IOL, for all ports, should not exceed 60 mA.
If IOL exceeds the test condition, VOL may exceed the related specification. Pins are not guaranteed to sink current greater
than the listed test condition.
mA at V
1] The sum of all IOH, for all ports, should not exceed 60 mA.
If IOH exceeds the test condition, VOH may exceed the related specification. Pins are not guaranteed to source current
greater than the listed test condition.
Parameter
Output High-voltage
(PB4, PB3 and PB2)
Output High-voltage
(PB5, Reset used as I/O)
Input Leakage
Current I/O Pin
Input Leakage
Current I/O Pin
Reset Pull-up Resistor
I/O Pin Pull-up Resistor
Power Supply Current
Power-down mode
Analog Comparator Input
Offset Voltage
Analog Comparator Input
Leakage Current
Analog Comparator
Propagation Delay
CC
= 5V, 5 mA at V
CC
= 5V, 5 mA at V
CC
= 1.8V to 5.5V (unless otherwise noted)
(5)
(5)
CC
= 3V for PB4:2) under steady state conditions (non-transient), the following must be observed:
CC
= 3V for PB4:2) under steady state conditions (non-transient), the following must be observed:
Condition
I
I
I
TBDV
I
TBDV
Vcc =
(absolute value)
Vcc =
(absolute value)
Active 1MHz, V
Active 4MHz, V
Active 8MHz, V
Idle 1MHz, V
Idle 4MHz, V
Idle 8MHz, V
WDT enabled, V
WDT disabled, V
V
V
V
V
V
V
OH
OH
OH
OH
CC
in
CC
in
CC
CC
= V
= V
= -10 mA, V
= -5 mA, V
= - TBD mA, V
= - TBD mA, V
= 5V
= 5V
= 2.7V
= 4.0V
5.5
5.5
CC
CC
/2
/2
V, pin low
V, pin high
CC
CC
CC
CC
CC
CC
CC
CC
= 2V
= 3V
= 5V
CC
CC
= 3V
CC
CC
= 2V
= 3V
= 5V
= 5V
= 3V
= 3V
=
=
(1)
(Continued)
Min.
4.2
2.5
-50
30
20
CC
= 5V, 10 mA at V
CC
= 5V, 10 mA at V
< 0.5
Typ.
0.08
0.41
< 10
750
500
1.6
< 5
CC
= 3V for PB5, PB1:0, 10 mA
CC
Max.
0.35
1.8
0.2
80
50
10
40
50
1
1
6
1
3
2
= 3V for PB5, PB1:0, 10
Units
mA
mA
mA
mA
mA
mA
mV
µA
µA
k'
k'
µA
µA
nA
ns
V
V
V
V
121

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