MCIMX31LDVMN5D Freescale, MCIMX31LDVMN5D Datasheet - Page 53
MCIMX31LDVMN5D
Manufacturer Part Number
MCIMX31LDVMN5D
Description
Manufacturer
Freescale
Datasheet
1.MCIMX31LDVMN5D.pdf
(118 pages)
Specifications of MCIMX31LDVMN5D
Operating Temperature (min)
-20C
Operating Temperature (max)
70C
Operating Temperature Classification
Commercial
Mounting
Surface Mount
Lead Free Status / RoHS Status
Compliant
Available stocks
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Manufacturer
Quantity
Price
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Part Number:
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Manufacturer:
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Quantity:
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Figure 40
Table 40
4.3.10.1 Half-Rate Clocking Mode
When half-rate clocking is used, the trace data signals are sampled by the TPA on both the rising and
falling edges of TRACECLK, where TRACECLK is half the frequency of the clock shown in
4.3.11
FIR implements asynchronous infrared protocols (FIR, MIR) that are defined by IrDA
Association). Refer to http://www.IrDA.org for details on FIR and MIR protocols.
4.3.12
Freescale Semiconductor
1
The program length is defined by the value defined in the epm_pgm_length[2:0] bits of the IIM module. The value to program
is based on a 32 kHz clock source (4 * 1/32 kHz = 125 µs).
Ref. Num
1
T
T
T
ID
T
T
cyc
wh
wl
r
lists the timing parameters.
f
depicts the setup and hold requirements of the trace data pins with respect to TRACECLK, and
FIR Electrical Specifications
Fusebox Electrical Specifications
Clock period
Low pulse width
High pulse width
Clock and data rise time
Clock and data fall time
T
T
ID
s
h
Program time for eFuse
Data setup
Data hold
Description
Parameter
Table 39. ETM TRACECLK Timing Parameters
Table 40. ETM Trace Data Timing Parameters
Table 41. Fusebox Timing Characteristics
MCIMX31/MCIMX31L Technical Data, Rev. 4.3
Figure 40. Trace Data Timing Diagram
1
Parameter
Symbol
t
program
Frequency dependent
Minimum
125
Min
—
—
2
2
Min
2
1
Typical
—
Max
—
—
Electrical Characteristics
Maximum
Max
—
—
—
®
3
3
—
(Infrared Data
Unit
ns
ns
Unit
Figure
ns
ns
ns
ns
ns
Units
µs
40.
53
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