TMP86xy49UG/F/NG Toshiba, TMP86xy49UG/F/NG Datasheet - Page 253

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TMP86xy49UG/F/NG

Manufacturer Part Number
TMP86xy49UG/F/NG
Description
Manufacturer
Toshiba
Datasheet

Specifications of TMP86xy49UG/F/NG

Package
LQFP64/QFP64/SDIP64
Rom Types (m=mask,p=otp,f=flash)
M/P/F
Rom Size
16/32/60
Ram Size
512/1K/2K
Driver Led
13
Driver Lcd
-
Spi/sio Channels
2
Uart/sio Channels
2
I2c/sio Channels
1
High-speed Serial Output
-
Adc 8-bit Channels
-
Adc 10-bit Channels
16
Da Converter Channels
-
Timer Counter 18-bit Channel
-
Timer Counter 16-bit Channel
2
Timer Counter 8-bit Channel
4
Motor Channels
-
Watchdog Timer
Y
Dual Clock
Y
Clock Gear
-
Number Of I/o Ports
56
Power Supply (v)
4.5 to 5.5
21.1 Absolute Maximum Ratings
21.4 AD Characteristics
Analog reference voltage
Power supply voltage of analog control
circuit
Analog reference voltage range (Note 4)
Analog input voltage
Power supply current of analog refer-
ence voltage
Non linearity error
Zero point error
Full scale error
Total error
Analog reference voltage
Power supply voltage of analog control
circuit
Analog reference voltage range (Note 4)
Analog input voltage
Power supply current of analog refer-
ence voltage
Non linearity error
Zero point error
Full scale error
Total error
Analog reference voltage
Power supply voltage of analog control
circuit
Analog reference voltage range (Note 4)
Analog input voltage
Power supply current of analog refer-
ence voltage
Non linearity error
Zero point error
Full scale error
Total error
Note 1: The total error includes all errors except a quanitization error, and is defined as a maximum deviation from the ideal con-
Note 2: Conversion time is defferent in recommended value by power supply voltage.
Note 3: The voltage to be input on the AIN input pin must not exceed the range between V
Note 4: Analog reference voltage range: ∆V
Note 5: When AD converter is not used, fix the AVDD and VAREF pin on the V
Parameter
Parameter
Paramete
version line.
range is input, conversion values will become unstable and conversion values of other channels will also be affected.
∆ V
∆ V
∆ V
Symbol
Symbol
Symbol
V
V
V
A
A
A
V
V
V
I
I
I
AREF
AREF
AREF
REF
REF
REF
VDD
VDD
VDD
AREF
AIN
AREF
AIN
AREF
AIN
V
V
V
V
V
V
V
V
V
V
1.8 V ≤ VDD < 2.0 V
2.0 V ≤ VDD < 2.7 V
V
V
V
V
V
AREF
DD
SS
DD
SS
AREF
DD
SS
DD
SS
AREF
DD
SS
DD
SS
AREF
= 0.0 V
= 0.0 V
= 0.0 V
= 0.0 V
= 0.0 V
= 0.0 V
= A
= A
= A
= A
= A
= A
= 5.0 V
= 2.7 V
= 1.8 V
= V
VDD
VDD
VDD
VDD
VDD
VDD
AREF
= 5.0 V,
= V
= V
= 2.7 V
= V
= 1.8 V
Page 236
Condition
Condition
Condition
AREF
AREF
AREF
- V
SS
= 5.5 V
= 4.5 V
=2.7 V
(V
(V
SS
SS
(V
= 0 V, 2.0 V ≤ V
= 0 V, 1.8 V ≤ V
DD
A
A
A
SS
VDD
VDD
VDD
(V
V
V
V
level.
Min
Min
Min
3.5
2.5
1.8
2.0
= 0.0 V, 4.5 V ≤ V
SS
SS
SS
SS
- 1.0
- 0.9
- 1.0
= 0 V, 2.7 V ≤ V
AREF
DD
DD
V
V
< 2.7 V, Topr = -40 to 85°C) (Note6)
< 2.0 V, Topr = -10 to 85°C) (Note6)
V
Typ.
Typ.
Typ.
and V
0.6
0.5
0.3
DD
DD
DD
DD
DD
≤ 5.5 V, Topr = -40 to 85 °C)
SS
< 4.5 V, Topr = -40 to 85°C)
. If a voltage outside this
V
V
V
TMP86PM49UG
A
A
A
Max
Max
Max
AREF
1.0
AREF
0.8
AREF
0.5
VDD
±2
±2
±2
±2
VDD
±2
±2
±2
±2
VDD
±4
±4
±4
±4
Unit
LSB
Unit
LSB
Unit
LSB
mA
mA
mA
V
V
V

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