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HT46R006 数据表(PDF) 49 Page - Holtek Semiconductor Inc

部件名 HT46R006
功能描述  Small Package 8-Bit OTP MCU
PDF  72 Pages
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制造商  HOLTEK [Holtek Semiconductor Inc]
网页  http://www.holtek.com
标志 HOLTEK - Holtek Semiconductor Inc

HT46R006 数据表(HTML) 49 Page - Holtek Semiconductor Inc

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HT48R006/HT46R006
Rev. 1.00
49
October 24, 2011
A/D Operation
The START bit in the ADCR register is used to start and
reset the A/D converter. When the microcontroller sets
this bit from low to high and then low again, an analog to
digital conversion cycle will be initiated. When the
START bit is brought from low to high but not low again,
the EOCB bit in the ADCR register will be set high and
the analog to digital converter will be reset. It is the
START bit that is used to control the overall start opera-
tion of the internal analog to digital converter.
The EOCB bit in the ADCR register is used to indicate
when the analog to digital conversion process is com-
plete. This bit will be automatically set to
²0² by the
microcontroller after a conversion cycle has ended. In
addition, the corresponding A/D interrupt request flag
will be set in the interrupt control register, and if the inter-
rupts are enabled, an appropriate internal interrupt sig-
nal will be generated. This A/D internal interrupt signal
will direct the program flow to the associated A/D inter-
nal interrupt address for processing. If the A/D internal
interrupt is disabled, the microcontroller can be used to
poll the EOCB bit in the ADCR register to check whether
it has been cleared as an alternative method of detect-
ing the end of an A/D conversion cycle.
The ADC module power is managed by the ADONB in
the ACSR register and the PCRn bits in the ADCR regis-
ter. The accompanying table illustrates the power con-
trol for the ADC module. As we can see from this table,
the ADC module can be disabled by setting the PCRn
bits to
²0² or the ADONB bit to ²0².It¢s recommended to
disable the ADC module to reduce power consumption
when the A/D converter function is not being used. Note
that the ADC module ON or OFF will not be affected by
entering the HALT mode.
PCRn
Bits
HALT
Instruction
ADONB
Bit
ADC
On/Off
= 0
X
X
Off
>0
X
0
On
> 0
X
1
Off
Note:
²X² Don¢t care
A/D Converter On/Off Control
The clock source for the A/D converter, which originates
from the system clock fSYS, can be chosen to be either
fSYS or a subdivided version of fSYS .The division ratio
value is determined by the ADCS2~ADCS0 bits in the
ACSR register.
Although the A/D clock source is determined by the sys-
tem clock fSYS, and by bits ADCS2~ADCS0, there are
some limitations on the maximum A/D clock source
speed that can be selected. As the minimum value of
permissible A/D clock period, tADCK,is0.5
ms, care must
be taken for system clock frequencies equal to or
greater than 4MHz. For example, if the system clock op-
erates at a frequency of 4MHz, the ADCS2~ADCS0 bits
should not be set to
²100². Doing so will give A/D clock
periods that are less than the minimum A/D clock period
which may result in inaccurate A/D conversion values. Re-
fer to the following table for examples, where values
marked with an asterisk * show where, depending upon
the device, special care must be taken, as the values may
be less than the specified minimum A/D Clock Period.
fSYS
A/D Clock Period (tAD)
ADCS2,
ADCS1,
ADCS0=000
(fSYS/2)
ADCS2,
ADCS1,
ADCS0=001
(fSYS/8)
ADCS2,
ADCS1,
ADCS0=010
(fSYS/32)
ADCS2,
ADCS1,
ADCS0=100
(fSYS)
ADCS2,
ADCS1,
ADCS0=101
(fSYS/4)
ADCS2,
ADCS1,
ADCS0=110
(fSYS/16)
ADCS2,
ADCS1,
ADCS0=011,
111
1MHz
2
ms8ms32ms1ms4ms16ms
Undefined
2MHz
1
ms4ms16ms
500ns
2
ms8ms
Undefined
4MHz
500ns
2
ms8ms
250ns*
1
ms4ms
Undefined
8MHz
250ns*
1
ms4ms
125ns*
500ns
2
ms
Undefined
12MHz
167ns*
667ns
2.67
ms
83ns*
333ns*
1
ms
Undefined
A/D Clock Period Examples



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