![Freescale Semiconductor MPC5632M Скачать руководство пользователя страница 833](http://html.mh-extra.com/html/freescale-semiconductor/mpc5632m/mpc5632m_manual_2330659833.webp)
MPC563XM Reference Manual, Rev. 1
Freescale Semiconductor
833
Preliminary—Subject to Change Without Notice
detected from the microcycle following MRL1 assertion until the microcycle on which MRL2 is asserted.
The first signal transition (following MRL1 assertion) asserts TDL1, captures its related timebase and
enables assertion of TDL2. The second signal transition detection asserts TDL2, blocks match2, captures
its related timebase and generates the service request.
If both signal transitions occur inside the scheduled window, match2 recognition is blocked. If one or both
signal transitions do not occur inside the scheduled window, match2 recognition generates a match service
request and blocks further transition detections. The microcode can resolve the state using MRL1, MRL2,
TDL1 and TDL2, which affect the entry point selection.
Single Match Enhanced Mode (sm_st_e)
This is an enhanced single transition and single match channel mode which provides timing information
of the digital filter delay.
The Capture1 register captures the timebase selected by TBS1 due to transition detection specified by
IPAC1 or match recognition, as in sm_st mode. Initially, the Capture2 register continuously captures the
unfiltered IPAC2-selected signal transitions from the digital filter input, directly from the signal
synchronizer. When an IPAC1-qualified, filtered transition detection occurs, TDL1 is set, MRL1 assertion
is blocked, and, in addition, captures into Capture2 are also blocked. On service, Capture1 and Capture2
(copied into ERT1 and ERT2) holds the time of the qualified transition detection (ERT1), and the time of
the last signal transition at the input of the digital filter (ERT2). Subtracting the time in ERT2 from the time
in ERT1 provides the delay of the digital filter.
In a quiet environment, the two captures provide the accurate delay of the digital filter in granularity of
two system clocks. In a noisy environment, false transitions may be detected at the input of the digital filter
due to the noise, and the delay measurement may be reduced, especially if IPAC2 selects both edge
detection. The microcode can do sanity checks on this value to recognize noise effects (for example:
calculated delay is less than the minimum delay of the digital filter).
NOTE
In Channel 0, if ETPUTBCR field AM=01 (Angle Mode), the unfiltered
input comes from TCRCLK input and the filtered input comes from the
TCRCLK filter output. The edge is selected by IPAC1/2, and is independent
of the edge selection by ETPUTBCR field TCR2CTL.
Single Match, Single Transition (sm_st)
In this mode the channel logic is functionally back-compatible to a TPU3 single action channel, but a
match or transition detection captures at once both timebases. The mode recognizes a single transition with
single match timeout. Either TDL1 or MRL1 generates service request and captures both timebases.
Assertion of TDL1 blocks future assertions of MRL1.
Single Match, Double Transition (sm_dt)
In this mode, the first transition detection asserts TDL1, captures a timebase in Capture1 and enables
TDL2. The second signal transition asserts TDL2, blocks Match1, captures a timebase in Capture2 and
generates a service request.
Содержание MPC5632M
Страница 22: ...MPC563XM Reference Manual Rev 1 22 Freescale Semiconductor Preliminary Subject to Change Without Notice ...
Страница 62: ...MPC563XM Reference Manual Rev 1 62 Freescale Semiconductor Preliminary Subject to Change Without Notice ...
Страница 92: ...MPC563XM Reference Manual Rev 1 92 Freescale Semiconductor Preliminary Subject to Change Without Notice ...
Страница 168: ...MPC563XM Reference Manual Rev 1 168 Freescale Semiconductor Preliminary Subject to Change Without Notice ...
Страница 242: ...MPC563XM Reference Manual Rev 1 242 Freescale Semiconductor Preliminary Subject to Change Without Notice ...
Страница 302: ...MPC563XM Reference Manual Rev 1 302 Freescale Semiconductor Preliminary Subject to Change Without Notice ...
Страница 410: ...MPC563XM Reference Manual Rev 1 410 Freescale Semiconductor Preliminary Subject to Change Without Notice ...
Страница 440: ...MPC563XM Reference Manual Rev 1 440 Freescale Semiconductor Preliminary Subject to Change Without Notice ...
Страница 464: ...MPC563XM Reference Manual Rev 1 464 Freescale Semiconductor Preliminary Subject to Change Without Notice ...
Страница 554: ...MPC563XM Reference Manual Rev 1 554 Freescale Semiconductor Preliminary Subject to Change Without Notice ...
Страница 590: ...MPC563XM Reference Manual Rev 1 590 Freescale Semiconductor Preliminary Subject to Change Without Notice ...
Страница 622: ...MPC563XM Reference Manual Rev 1 622 Freescale Semiconductor Preliminary Subject to Change Without Notice ...
Страница 716: ...MPC563XM Reference Manual Rev 1 716 Freescale Semiconductor Preliminary Subject to Change Without Notice ...
Страница 1114: ...MPC563XM Reference Manual Rev 1 1114 Freescale Semiconductor Preliminary Subject to Change Without Notice ...
Страница 1144: ...MPC563XM Reference Manual Rev 1 1144 Freescale Semiconductor Preliminary Subject to Change Without Notice ...
Страница 1266: ...MPC563XM Reference Manual Rev 1 1266 Freescale Semiconductor Preliminary Subject to Change Without Notice ...
Страница 1316: ...MPC563XM Reference Manual Rev 1 1316 Freescale Semiconductor Preliminary Subject to Change Without Notice ...
Страница 1348: ...MPC563XM Reference Manual Rev 1 1348 Freescale Semiconductor Preliminary Subject to Change Without Notice ...
Страница 1362: ...MPC563XM Reference Manual Rev 1 1362 Freescale Semiconductor Preliminary Subject to Change Without Notice ...
Страница 1382: ...MPC563XM Reference Manual Rev 1 1382 Freescale Semiconductor Preliminary Subject to Change Without Notice ...