UPD78F0533AGB-GAH-AX Renesas Electronics America, UPD78F0533AGB-GAH-AX Datasheet - Page 780

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UPD78F0533AGB-GAH-AX

Manufacturer Part Number
UPD78F0533AGB-GAH-AX
Description
MCU 8BIT 64-LQFP
Manufacturer
Renesas Electronics America
Series
78K0/Kx2r
Datasheet

Specifications of UPD78F0533AGB-GAH-AX

Core Processor
78K/0
Core Size
8-Bit
Speed
20MHz
Connectivity
3-Wire SIO, I²C, LIN, UART/USART
Peripherals
LVD, POR, PWM, WDT
Number Of I /o
55
Program Memory Size
32KB (32K x 8)
Program Memory Type
FLASH
Ram Size
1K x 8
Voltage - Supply (vcc/vdd)
1.8 V ~ 5.5 V
Data Converters
A/D 8x10b
Oscillator Type
Internal
Operating Temperature
-40°C ~ 85°C
Package / Case
*
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Eeprom Size
-

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
UPD78F0533AGB-GAH-AX
Manufacturer:
RENESAS
Quantity:
460
Part Number:
UPD78F0533AGB-GAH-AX
Manufacturer:
Renesas Electronics America
Quantity:
10 000
78K0/Kx2
Caution The pins mounted depend on the product. Refer to Caution 2 at the beginning of this chapter.
DC Characteristics (1/4)
(T
Notes 1. Value of current at which the device operation is guaranteed even if the current flows from V
Remark Unless specified otherwise, the characteristics of alternate-function pins are the same as those of port pins.
R01UH0008EJ0401 Rev.4.01
Jul 15, 2010
Output current, high
Output current, low
A
= −40 to +85°C, 1.8 V ≤ V
2. Value of current at which the device operation is guaranteed even if the current flows from an output pin to GND.
3. Specification under conditions where the duty factor is 70% (time for which current is output is 0.7 × t and time
Parameter
for which current is not output is 0.3 × t, where t is a specific time). The total output current of the pins at a duty
factor of other than 70% can be calculated by the following expression.
• Where the duty factor of I
However, the current that is allowed to flow into one pin does not vary depending on the duty factor. A current
higher than the absolute maximum rating must not flow into one pin.
<Example> Where the duty factor is 50%, I
Note 2
Note 1
Total output current of pins = (−20.0 × 0.7)/(50 × 0.01) = −28.0 mA
I
I
I
I
Symbol
OH1
OH2
OL1
OL2
DD
= EV
Per pin for P00 to P06, P10 to
P17, P30 to P33, P40 to P47,
P50 to P57, P64 to P67, P70 to
P77, P120, P130, P140 to P145
Total of P00 to P04, P40 to P47,
P120, P130, P140 to P145
Total of P05, P06, P10 to P17,
P30 to P33, P50 to P57, P64 to
P67, P70 to P77
Total of all the pins above
Per pin for P20 to P27
Per pin for P121 to P124
Per pin for P00 to P06, P10 to
P17, P30 to P33, P40 to P47,
P50 to P57, P64 to P67, P70 to
P77, P120, P130, P140 to P145
Per pin for P60 to P63
Total of P00 to P04, P40 to P47,
P120, P130, P140 to P145
Total of P05, P06, P10 to P17,
P30 to P33, P50 to P57, P60 to
P67, P70 to P77
Total of all the pins above
Per pin for P20 to P27
Per pin for P121 to P124
CHAPTER 30 ELECTRICAL SPECIFICATIONS (STANDARD PRODUCTS)
DD
OH
≤ 5.5 V, AV
is n%: Total output current of pins = (I
Note 3
Note 3
REF
Conditions
≤ V
OH
Note 3
Note 3
Note 3
Note 3
= −20.0 mA
DD
, V
SS
= EV
4.0 V ≤ V
2.7 V ≤ V
1.8 V ≤ V
4.0 V ≤ V
2.7 V ≤ V
1.8 V ≤ V
4.0 V ≤ V
2.7 V ≤ V
1.8 V ≤ V
4.0 V ≤ V
2.7 V ≤ V
1.8 V ≤ V
AV
4.0 V ≤ V
2.7 V ≤ V
1.8 V ≤ V
4.0 V ≤ V
2.7 V ≤ V
1.8 V ≤ V
4.0 V ≤ V
2.7 V ≤ V
1.8 V ≤ V
4.0 V ≤ V
2.7 V ≤ V
1.8 V ≤ V
4.0 V ≤ V
2.7 V ≤ V
1.8 V ≤ V
AV
REF
REF
SS
= V
= V
= AV
DD
DD
DD
DD
DD
DD
DD
DD
DD
DD
DD
DD
DD
DD
DD
DD
DD
DD
DD
DD
DD
DD
DD
DD
DD
DD
DD
DD
DD
≤ 5.5 V
< 4.0 V
< 2.7 V
≤ 5.5 V
< 4.0 V
< 2.7 V
≤ 5.5 V
< 4.0 V
< 2.7 V
≤ 5.5 V
< 4.0 V
< 2.7 V
≤ 5.5 V
< 4.0 V
< 2.7 V
≤ 5.5 V
< 4.0 V
< 2.7 V
≤ 5.5 V
< 4.0 V
< 2.7 V
≤ 5.5 V
< 4.0 V
< 2.7 V
≤ 5.5 V
< 4.0 V
< 2.7 V
OH
SS
× 0.7)/(n × 0.01)
= 0 V)
MIN.
TYP.
DD
MAX.
−20.0
−10.0
−30.0
−19.0
−10.0
−50.0
−29.0
−15.0
−3.0
−2.5
−1.0
−5.0
−0.1
−0.1
15.0
20.0
15.0
45.0
35.0
20.0
65.0
50.0
29.0
8.5
5.0
2.0
5.0
2.0
9.0
0.4
0.4
to an output pin.
Unit
mA
mA
mA
mA
mA
mA
mA
mA
mA
mA
mA
mA
mA
mA
mA
mA
mA
mA
mA
mA
mA
mA
mA
mA
mA
mA
mA
mA
mA
mA
mA
780

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