MCIMX353DVM5B Freescale, MCIMX353DVM5B Datasheet - Page 14
MCIMX353DVM5B
Manufacturer Part Number
MCIMX353DVM5B
Description
Manufacturer
Freescale
Datasheet
1.MCIMX353DVM5B.pdf
(148 pages)
Specifications of MCIMX353DVM5B
Operating Temperature (min)
-20C
Operating Temperature (max)
70C
Operating Temperature Classification
Commercial
Mounting
Surface Mount
Lead Free Status / RoHS Status
Compliant
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1
2
3
4.1.2
Table 9
14
I2Sx2,ESAI, I2C2, UART2, UART1, FEC
MLB
USB OTG PHY
USB OTG PHY
USB OTG PHY
USB HOST PHY
OSC24M
OSC_AUDIO
MPLL
PPLL
Fusebox program supply voltage
Operating Ambient Temperature Range
Operating Ambient Temperature Range
EMI I/O interface power supply should be set up according to external memory. For example, if using SDRAM then
NVCC_EMI1,2,3 should all be set at 3.3 V (typ.). If using MDDR or DDR2, NVC_EMI1,2,3 must be set at 1.8 V (typ.).
MLB Interface I/O pins can be programmed to function as GPIO for the consumer and industrial parts by setting NVCC_MLB
to 1.8 or 3.3 V. NVCC_MLB can be left floating.
The Fusebox read supply is connected to supply of the full speed USB PHY. FUSE_VDD is only used for programming. It is
recommended that FUSE_VDD be connected to ground when not being used for programming. FUSE_VDD should be
supplied by following the power up sequence given in
ID
1
provides information on interface frequency limits.
JTAG TCK Frequency
Interface Frequency Limits
i.MX35 Applications Processors for Industrial and Consumer Products, Rev. 9
Parameter
Parameter
Table 8. i.MX35 Operating Ranges (continued)
Table 9. Interface Frequency
Section 4.3.1, “Powering Up.”
Symbol
f
NVCC_MISC
NVCC_MLB
OSC24M_VDD
OSC_AUDIO_VDD
MVDD
PVDD
FUSE_VDD
T
T
PHY1_VDDA
USBPHY1_VDDA_BIAS
USBPHY1_UPLLVDD
PHY2_VDD
JTAG
A
A
Symbol
3
2
Min.
DC
Min.
1.75
1.75
3.17
3.17
3.17
–20
–40
3.0
3.0
3.0
1.4
1.4
3.0
Typ.
5
Typical
Freescale Semiconductor
3.3
3.3
3.3
3.3
3.3
3.3
3.6
—
—
—
—
—
—
Max.
10
Max.
3.43
3.43
3.43
1.65
1.65
3.6
3.6
3.6
3.6
3.6
3.6
70
85
Units
MHz
Units
o
o
V
V
V
V
V
V
V
V
V
V
V
C
C
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