Stepper Stall Detect (SSD)
MPC5606S Microcontroller Reference Manual, Rev. 7
Freescale Semiconductor
1161
36.3.2
Register descriptions
This section describes the individual bits of all the SSD registers. Note that the details of the functional
description linked to these bits is given in
Section 36.4, Functional description
.
36.3.2.1
SSD Control and Status Register (CONTROL)
below describes the fields of the main control (CONTROL) register:
The function of the CONTROL register bits is shown in
Offset: 0x00
Access: User read/write
15
14
13
12
11
10
9
8
7
6
5
4
3
2
1
0
R
0
STEP
RCIR
ITGD
IR
BLN
DCL
ITGD
CL
RTZ
E
0
BLN
ST
ITGS
T
0
0
0
SDC
PU
0
W
TRIG
Reset
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
Figure 36-2. SSD Control and Status Register (CONTROL)
Table 36-3. CONTROL Register field description
Field
Description
15
TRIG
Trigger Blanking
Integration sequence (BIS).
0 No effect.
1 Sequence of blanking
integration is triggered.
14–13
STEP
Full Step State. These bits determine which coil is driven for SM movement,. Refer to
for details of the step states.
00 Select 0
angle (east pole) state for the electromagnetic field in the SM.
01 Select 90
angle (north pole) state for the electromagnetic field in the SM.
10 Select 180
angle (west pole) state for the electromagnetic field in the SM.
11 Select 270
angle (south pole) state for the electromagnetic field in the SM.
12
RCIR
Blanking Polarity for coil recirculation. Refer to
Section 36.4, Functional description,
for details of
the recirculation mode.
0 Coil recirculation via high side transistors (VDDM, analog supply voltage).
1 Coil recirculation via low side transistors (VSSM, analog GND).
11
ITGDIR
Direction (polarity) of integration. Refer to
Section 36.4.1.4.3, DC Offset Cancellation
, for details
10
BLNDCL
Drive Coil during Blanking.
0 During the BIS blanking phase the other coils is not driven by the SSD. The SM will not move
during blanking.
1 During the BIS blanking phase the other coil is actually driven by the SSD block (genuine use
case).
9
ITGDCL
Drive Coil during Integration and outside of any BIS.
1 During the BIS integration phase and outside of any BIS the other coil is actually driven by the
SSD block (genuine use case). Outside of any BIS the same coil is driven.
0 During the BIS integration phase the other coils is not driven by the SSD. Outside of any BIS
no coil is driven. The SM will not move during integration (not useful for SSD).
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