MCIMX6L3DVN10AA Freescale Semiconductor, MCIMX6L3DVN10AA Datasheet - Page 31

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MCIMX6L3DVN10AA

Manufacturer Part Number
MCIMX6L3DVN10AA
Description
Processors - Application Specialized i.MX6 Megrez
Manufacturer
Freescale Semiconductor
Type
Multimedia Applicationsr
Datasheet

Specifications of MCIMX6L3DVN10AA

Rohs
yes
Core
ARM Cortex A9
Processor Series
i.MX6
Data Bus Width
32 bit
Maximum Clock Frequency
1 GHz
Data Ram Size
128 KB
Maximum Operating Temperature
+ 95 C
Mounting Style
SMD/SMT
Package / Case
MAPBGA-432
Interface Type
I2C, I2S, UART, USB
Memory Type
L1/L2 Cache, ROM, SRAM
Minimum Operating Temperature
0 C
Number Of Timers
2
4.5
4.5.1
This block implements an amplifier that when combined with a suitable quartz crystal and external load
capacitors implements an oscillator. It also implements a power mux such that the oscillator can be pow-
ered from VDD1P1 or VDD_SOC. VDD_1P1 should be the cleaner supply and is the preferable choice,
but if the oscillator is needed to run in "stop mode" then it is necessary to run from VDD_SOC, which is
0.9 V in stop mode.
The system crystal oscillator consists of a Pierce-type structure running off the digital supply. A straight
forward biased-inverter implementation is used.
4.5.2
This block implements an amplifier that when combined with a suitable quartz crystal and external load
capacitors implements a low power oscillator. It also implements a power mux such that it can be powered
from either a ~3 V backup battery (VDD_SNVS_IN) or VDD_HIGH_IN such as the oscillator consumes
power from VDD_HIGH_IN when that supply is available and transitions to the back up battery when
VDD_HIGH_IN is lost.
In addition, if the clock monitor determines that the OSC32K is not present, then the source of the 32 K
will automatically switch to a crude internal ring oscillator. The frequency range of this block is
approximately 10–45 kHz. It highly depends on the process, voltage, and temperature.
The OSC32k runs from VDD_SNVS_CAP, which comes from the VDD_HIGH_IN/VDD_SNVS_IN
power mux. The target battery is a ~3 V coin cell. Proper choice of coin cell type is necessary for chosen
VDD_HIGH_IN range. Appropriate series resistor (Rs) must be used when connecting the coin cell. Rs
depends on the charge current limit that depends on the chosen coin cell. For example, for Panasonic
ML621:
For a charge voltage of 3.2 V, Rs = (3.2-2.5)/0.6 m = 1.17 k
Freescale Semiconductor
Average Discharge Voltage is 2.5 V
Maximum Charge Current is 0.6 mA
On-Chip Oscillators
OSC24M
OSC32K
Always refer to the chosen coin cell manufacturer's data sheet for the latest
information.
Reference clock
i.MX 6SoloLite Applications Processors for Consumer Products, Rev. 1
Parameter
Lock time
Table 19. ARM PLL’s Electrical Parameters (continued)
NOTE
<2250 reference cycles (50
24 MHz
Value
Electrical Characteristics
μ
s)
31

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