MCIMX535DVV1C Freescale Semiconductor, MCIMX535DVV1C Datasheet - Page 21

no-image

MCIMX535DVV1C

Manufacturer Part Number
MCIMX535DVV1C
Description
IMX53 REV 2.1 COMM
Manufacturer
Freescale Semiconductor
Datasheets

Specifications of MCIMX535DVV1C

Rohs Compliant
YES
Core Size
32bit
Program Memory Size
288KB
Cpu Speed
1GHz
Digital Ic Case Style
BGA
No. Of Pins
529
Supply Voltage Range
1.25V To 1.35V
Operating Temperature Range
-20°C To +85°C
Msl
MSL 3 - 168 Hours
Embedded Interface Type
I2C, SPI, UART
Lead Free Status / Rohs Status
Supplier Unconfirmed

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
MCIMX535DVV1C
Manufacturer:
LRC
Quantity:
21 000
Part Number:
MCIMX535DVV1C
Manufacturer:
Freescale Semiconductor
Quantity:
10 000
Part Number:
MCIMX535DVV1C
Manufacturer:
FREESCALE
Quantity:
20 000
Part Number:
MCIMX535DVV1CR2
Manufacturer:
FREESCALE
Quantity:
556
Freescale Semiconductor
1
2
3
4
5
TVDAC_AHVDDRGB
Voltage at the package power supply contact must be maintained between the minimum and maximum voltages. The design
must allow for supply tolerances and system voltage drops.
The nominal values for the supplies indicate the target setpoint for a tolerance no tighter than ± 50 mV. Use of supplies with a
tighter tolerance allows reduction of the setpoint with commensurate power savings.
A voltage transition is allowed for the required supply ramp up to the nominal value prior to achieving a clock speed increase.
Similarly, to accommodate a frequency reduction, a voltage transition is allowed for a supply ramp down to the nominal value
after the frequency is decreased.
VDDA and VDDAL1 can be driven by the VDD_DIG_PLL internal regulator using external connections. When operating in this
configuration, the regulator is still operating at the default 1.2 V, as bootup start. During bootup initialization, software should
increase this regulator voltage to match VCC (1.3 V nominal) in order to reduce internal leakage current.
By default, VDD_DIG_PLL is driven from internal on-die 1.2 V linear regulator (LDO). In this case, there is no need driving this
supply externally. LDO output to VDD_DIG_PLL should be configured by software after power-up to 1.3 V output. A bypass
capacitor of minimal value 22 μF should be connected to this pad in any case whether it is driven internally or externally. Use
of the on-chip LDO is preferred. See i.MX53 System Development User’s Guide.
USB_OTG_VDDA25
USB_OTG_VDDA33
NVCC_SRTC_POW
USB_H1_VDDA25
USB_H1_VDDA33
NVCC_EIM_MAIN
TVDAC_DHVDD
NVCC_EIM_SEC
NVCC_KEYPAD
NVCC_NANDF
NVCC_RESET
NVCC_GPIO
NVCC_XTAL
NVCC_PATA
VDD_REG
NVCC_FEC
NVCC_SD1
NVCC_SD2
NVCC_CSI
Symbol
VBUS
VPH
VP
Tj
11
8
8
Ultra High voltage I/O (UHVIO) supplies:
TVE digital and analog power supply, TVE-to-DAC
level shifter supply, cable detector supply, analog
power supply to RGB channel
For GPIO use only, when TVE is not in use
SRTC Core and slow I/O Supply (GPIO)
LVIO
USB_PHY analog supply, oscillator amplifier analog
supply
USB PHY I/O analog supply
See
for details. Note that this is not a power supply.
Power supply input for the integrated linear
regulators
SATA PHY core power supply
SATA PHY I/O supply voltage
Junction Temperature
i.MX53xD Applications Processors for Consumer Products, Rev. 3
• UHVIO_L
• UHVIO_H
• UHVIO_UH
Table 4 on page 17
10
Table 7. i.MX53xD Operating Ranges (continued)
Parameter
and
Table 105 on page 146
9
Minimum
1.65
2.69
1.65
1.25
1.65
2.25
2.37
1.25
2.25
–20
2.5
3.0
3.0
1
Nominal
2.775
1.8 or
2.775
1.8 or
2.775
2.75
95
1.8
3.3
1.3
2.5
3.3
2.5
1.3
2.5
12
Electrical Characteristics
2
Maximum
1.95
2.91
1.35
2.75
2.63
1.35
2.75
105
3.1
3.6
3.1
3.1
3.6
1
Unit
o
V
V
V
V
V
V
V
V
V
V
C
21

Related parts for MCIMX535DVV1C