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MPC563XM Reference Manual, Rev. 1
Freescale Semiconductor
1015
Preliminary—Subject to Change Without Notice
CH_PULL
x
[0:1] - Channel
x
Pull Up/Down Control bits
The CH_PULL
x
[0:1] field controls the pull up/down configuration of the channel
x
according to
.
PULL_STR
x
[0:1] — Pull Up/Down Strength Control bits of channel
x
The PULL_STR
x
[0:1] bit field defines the strength of the channel
x
pull up or down resistors,
according to
.
24.6
Functional Description
24.6.1
Overview
The EQADC provides a parallel interface to two on-chip ADCs, a single master to single slave serial
interface to an off-chip external device and a parallel side interface to an on-chip companion module, like
a decimation filter. The two on-chip ADCs are architected to allow access to all the analog channels.
Initially, command data is contained in system memory in a user defined data structure which is likely to
be a queue as depicted in
. Command data is moved between the CQueues and CFIFOs by the
host CPU or by the DMAC which respond to interrupt and DMA requests generated by the EQADC. The
EQADC supports software and hardware triggers from other blocks or external pins to initiate transfers of
commands from the multiple CFIFOs to the on-chip ADCs or to the external device.
ADC0/1 Register address: 0x70-0x77
0
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
R
0
0
CH_PULL
x
0
0
PULL_STR
x
0
0
0
0
0
0
0
0
W
RESET:
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
= Unimplemented or Reserved
Figure 24-45. ADC Pull Up/Down Control Register
x
(ADC_PUDCR
x
,
x
=0-7)
Table 24-19. Channel
x
Pull Up/Down Field Definition
CH_PULL
x
[0:1]
Definition
00
No Pull resistors connected to the channel
01
Pull Up resistor connected to the channel
10
Pull Down resistor connected to the channel
11
Pull Up and Pull Down resistors connected to the channel
Table 24-20. Pull Up/Down Strength Field Definition
PULL_STR
x
[0:1]
Definition
00
Reserved
01
200 Kohms pull resistor
10
100 Kohms pull resistor
11
5 Kohms (Approx.) pull resistor
1
1
This set is not available for CH_PULL_
x
= 11.
1.
Command and result data can be stored in the system memory in any user defined data structure. However, in this
document it will be assumed that the data structure of choice is a queue, since it is the most likely data structure to be used
and because queues are the only type of data structure supported by the DMAC.
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