MCIMX35WPDKJ Freescale Semiconductor, MCIMX35WPDKJ Datasheet - Page 21

BOARD DEV FOR I.MX35

MCIMX35WPDKJ

Manufacturer Part Number
MCIMX35WPDKJ
Description
BOARD DEV FOR I.MX35
Manufacturer
Freescale Semiconductor
Series
i.MX35r
Type
MPUr
Datasheets

Specifications of MCIMX35WPDKJ

Contents
Module and Misc Hardware
Processor To Be Evaluated
i.MX35
Processor Series
i.MX35
Data Bus Width
32 bit
Interface Type
RS-232, Ethernet, USB, CAN, JTAG
Core
ARM11
For Use With/related Products
i.MX35
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Table 14
term NVCC refers to the power supply voltage that feeds the I/O of the module in question. For example,
NVCC for the SD/MMC interface refers to NVCC_SDIO.
Freescale Semiconductor
GPIO
Pin
shows the DC electrical characteristics for GPIO, DDR2, mobile DDR, and SDRAM pins. The
DC Electrical Characteristics Symbol
High-level output voltage
Low-level output voltage
High-level output current for
slow mode
(Voh = 0.8 × NVCC)
High-level output current
for fast mode
(Voh = 0.8 × NVCC)
Low-level output current
for slow mode
(Voh = 0.2 × NVCC)
Low-level output current
for fast mode
(Voh = 0.2 × NVCC)
High-level DC Input
Voltage with 1.8 V,
3.3 V NVCC (for digital
cells in input mode)
Low-level DC Input
Voltage with 1.8 V,
3.3 V NVCC (for digital
cells in input mode
Input Hysteresis
Schmitt trigger VT+
Schmitt trigger VT–
Pull-up resistor
(22 kΩ PU)
Pull-up resistor
(47 kΩ PU)
Pull-up resistor
(100 kΩ PU)
Pull-down resistor (100 kΩ PD)
External resistance to pull
keeper up when enabled
External resistance to pull
keeper down when enabled
i.MX35 Applications Processors for Industrial and Consumer Products, Rev. 9
Table 14. I/O Pin DC Electrical Characteristics
VHYS
Rkpu
Rkpd
VT+
VT–
Rpu
Rpu
Rpu
Rpd
Voh
VIH
VIL
Vol
Ioh
Ioh
Iol
Iol
@ min Vddio = 3.0 V
Ioh = specified drive
@min Vddio = 3.0 V
Iol = specified drive
Test Condition
Standard drive
Standard drive
Standard drive
Standard drive
OVDD = 3.3 V
OVDD = 1.8 V
Ipu > 510 μA
Ipu > 620 μA
Ioh = –1 mA
Vi = NVCC
Iol = 1 mA
High drive
Max. drive
High drive
Max. drive
High drive
Max. drive
Max. drive
High drive
Vi = 0
Vi = 0
Vi = 0
NVCC – 0.15
0.8 × NVCC
0.7 × NVCC
0.5 × NVCC
–0.3 V
Min.
–2.0
–4.0
–8.0
–4.0
–6.0
–8.0
2.0
4.0
8.0
4.0
6.0
8.0
Typ.
410
330
100
100
22
47
0.2 × NVCC
0.3 × NVCC
0.5 × NVCC
NVCC
Max.
0.15
4.8
5.9
Unit
mA
mA
mA
mA
mV
V
V
V
V
V
V
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