YR0K42378FC000BA Renesas Electronics America, YR0K42378FC000BA Datasheet - Page 886
YR0K42378FC000BA
Manufacturer Part Number
YR0K42378FC000BA
Description
KIT EVAL FOR H8S/2378
Manufacturer
Renesas Electronics America
Series
H8®r
Type
MCUr
Datasheet
1.YR0K42378FC000BA.pdf
(1208 pages)
Specifications of YR0K42378FC000BA
Contents
Board
For Use With/related Products
H8S/2378
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
- Current page: 886 of 1208
- Download datasheet (8Mb)
Section 17 A/D Converter
17.7
17.7.1
Operation of the A/D converter can be disabled or enabled using the module stop control register.
The initial setting is for operation of the A/D converter to be halted. Register access is enabled by
clearing module stop mode. For details, refer to section 24, Power-Down Modes.
17.7.2
This LSI’s analog input is designed so that conversion precision is guaranteed for an input signal
for which the signal source impedance is 5 kΩ or less. This specification is provided to enable the
A/D converter’s sample-and-hold circuit input capacitance to be charged within the sampling time;
if the sensor output impedance exceeds 5 kΩ, charging may be insufficient and it may not be
possible to guarantee the A/D conversion accuracy. However, if a large capacitance is provided
externally for conversion in single mode, the input load will essentially comprise only the internal
input resistance of 10 kΩ, and the signal source impedance is ignored. However, since a low-pass
filter effect is obtained in this case, it may not be possible to follow an analog signal with a large
differential coefficient (e.g., 5 mV/μs or greater) (see figure 17.6). When converting a high-speed
analog signal or conversion in scan mode, a low-impedance buffer should be inserted.
Rev.7.00 Mar. 18, 2009 page 818 of 1136
REJ09B0109-0700
Sensor input
Usage Notes
Module Stop Mode Setting
Permissible Signal Source Impedance
Sensor output
impedance
Up to 5 kΩ
Low-pass
filter
C to 0.1 μF
Figure 17.6 Example of Analog Input Circuit
This LSI
Cin =
15 pF
Equivalent circuit of A/D converter
10 kΩ
20 pF
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