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R5F104LED 数据表(PDF) 115 Page - Renesas Technology Corp

部件名 R5F104LED
功能描述  True Low Power Platform
PDF  213 Pages
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制造商  RENESAS [Renesas Technology Corp]
网页  http://www.renesas.com
标志 RENESAS - Renesas Technology Corp

R5F104LED 数据表(HTML) 115 Page - Renesas Technology Corp

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RL78/G14
2. ELECTRICAL SPECIFICATIONS (TA = -40 to +85
°C)
R01DS0053EJ0330 Rev. 3.30
Page 115 of 208
Aug 12, 2016
2.6
Analog Characteristics
2.6.1
A/D converter characteristics
Note 1.
Excludes quantization error (±1/2 LSB).
Note 2.
This value is indicated as a ratio (%FSR) to the full-scale value.
Note 3.
When AVREFP < VDD, the MAX. values are as follows.
Overall error:
Add ±1.0 LSB to the MAX. value when AVREFP = VDD.
Zero-scale error/Full-scale error:
Add ±0.05%FSR to the MAX. value when AVREFP = VDD.
Integral linearity error/ Differential linearity error: Add ±0.5 LSB to the MAX. value when AVREFP = VDD.
Note 4.
Values when the conversion time is set to 57
μs (min.) and 95 μs (max.).
Note 5.
Refer to 2.6.2 Temperature sensor characteristics/internal reference voltage characteristic.
Classification of A/D converter characteristics
Reference Voltage
Input channel
Reference voltage (+) = AVREFP
Reference voltage (-) = AVREFM
Reference voltage (+) = VDD
Reference voltage (-) = VSS
Reference voltage (+) = VBGR
Reference voltage (-)= AVREFM
ANI0 to ANI14
Refer to 2.6.1 (1).Refer to 2.6.1 (3).
Refer to 2.6.1 (4).
ANI16 to ANI20
Refer to 2.6.1 (2).
Internal reference voltage
Temperature sensor output voltage
Refer to 2.6.1 (1).—
(1)
When reference voltage (+) = AVREFP/ANI0 (ADREFP1 = 0, ADREFP0 = 1), reference voltage (-) =
AVREFM/ANI1 (ADREFM = 1), target pin: ANI2 to ANI14, internal reference voltage, and temperature sensor
output voltage
(TA = -40 to +85°C, 1.6 V
AVREFP VDD 5.5 V, VSS = 0 V, Reference voltage (+) = AVREFP, Reference voltage (-)
= AVREFM = 0 V)
Parameter
Symbol
Conditions
MIN.
TYP.
MAX.
Unit
Resolution
RES
810
bit
Overall error Note 1
AINL
10-bit resolution
AVREFP = VDD Note 3
1.8 V
≤ AVREFP ≤ 5.5 V
1.2
±3.5
LSB
1.6 V
≤ AVREFP ≤ 5.5 V Note 4
1.2
±7.0
LSB
Conversion time
tCONV
10-bit resolution
Target pin: ANI2 to ANI14
3.6 V
≤ VDD ≤ 5.5 V
2.125
39
μs
2.7 V
≤ VDD ≤ 5.5 V
3.1875
39
μs
1.8 V
≤ VDD ≤ 5.5 V
17
39
μs
1.6 V
≤ VDD ≤ 5.5 V
57
95
μs
10-bit resolution
Target pin: Internal reference voltage,
and temperature sensor output voltage
(HS (high-speed main) mode)
3.6 V
≤ VDD ≤ 5.5 V
2.375
39
μs
2.7 V
≤ VDD ≤ 5.5 V
3.5625
39
μs
2.4 V
≤ VDD ≤ 5.5 V
17
39
μs
Zero-scale error Notes 1, 2
EZS
10-bit resolution
AVREFP = VDD Note 3
1.8 V
≤ AVREFP ≤ 5.5 V
±0.25
%FSR
1.6 V
≤ AVREFP ≤ 5.5 V Note 4
±0.50
%FSR
Full-scale error Notes 1, 2
EFS
10-bit resolution
AVREFP = VDD Note 3
1.8 V
≤ AVREFP ≤ 5.5 V
±0.25
%FSR
1.6 V
≤ AVREFP ≤ 5.5 V Note 4
±0.50
%FSR
Integral linearity error Note 1
ILE
10-bit resolution
AVREFP = VDD Note 3
1.8 V
≤ AVREFP ≤ 5.5 V
±2.5
LSB
1.6 V
≤ AVREFP ≤ 5.5 V Note 4
±5.0
LSB
Differential linearity error Note 1
DLE
10-bit resolution
AVREFP = VDD Note 3
1.8 V
≤ AVREFP ≤ 5.5 V
±1.5
LSB
1.6 V
≤ AVREFP ≤ 5.5 V Note 4
±2.0
LSB
Analog input voltage
VAIN
ANI2 to ANI14
0
AVREFP
V
Internal reference voltage
(2.4 V
≤ VDD ≤ 5.5 V, HS (high-speed main) mode)
VBGR Note 5
V
Temperature sensor output voltage
(2.4 V
≤ VDD ≤ 5.5 V, HS (high-speed main) mode)
VTMPS25 Note 5
V



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