MK30DN512ZVLK10 Freescale Semiconductor, MK30DN512ZVLK10 Datasheet - Page 1505

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MK30DN512ZVLK10

Manufacturer Part Number
MK30DN512ZVLK10
Description
ARM Microcontrollers - MCU KINETIS 512K SLCD
Manufacturer
Freescale Semiconductor
Datasheet

Specifications of MK30DN512ZVLK10

Core
ARM Cortex M4
Processor Series
K30
Data Bus Width
32 bit
Maximum Clock Frequency
50 MHz
Program Memory Size
512 KB
Data Ram Size
128 KB
On-chip Adc
Yes
Operating Supply Voltage
1.71 V to 3.6 V
Operating Temperature Range
- 40 C to + 105 C
Package / Case
LQFP-80
Mounting Style
SMD/SMT

Available stocks

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Manufacturer
Quantity
Price
Part Number:
MK30DN512ZVLK10
Manufacturer:
Freescale Semiconductor
Quantity:
10 000
49.4.4.1.2 LCD internal power supply, VSUPPLY[1:0] = 00 or 01
V
shown in the following table ). When powering the LCD controller using V
pump must be enabled (CPSEL = 1). The following table provides recommendations
regarding configuration of the VSUPPLY[1:0] bit field when using both 3 V and 5 V
LCD panels.
49.4.5 Resets
During a reset, the LCD controller is configured in the default mode. The default mode
includes the following settings:
Freescale Semiconductor, Inc.
VSUPPLY[1:0]
DD
• LCDEN is cleared, thereby forcing all frontplane and backplane driver outputs to the
• 1/4 duty
• 1/3 bias
• LCLK[2:0], VSUPPLY[1:0], CPSEL, RVEN, and BRATE[2:0] revert to their reset
HREFSEL = 0
HREFSEL = 1
high impedance state.
values, V
HREFSELL
is used as the LCD controller power supply when VSUPPLY[1:0] = 00 or 11 (as
00
01
LL3
V
V
V
LL2
LL3
DD
switch option
is generated from V
is generated from V
is internally connected to V
K30 Sub-Family Reference Manual, Rev. 6, Nov 2011
1.67 V
Table 49-39. Bias voltage typical values
1.0 V
V
IREG
Table 49-40. V
DD
DD
V
LL1
1.67 V
1.0 V
DD
= V
DD
Invalid LCD configuration
Recommend use for 3 V
LCD panels
switch option
ref
• V
• V
• V
LL1
LL2
DD
= V
= 1 V
= 2 V
LL3
V
= 3 V
LL2
3.33 V
2.0 V
= 2 × V
Chapter 49 LCD Controller (SLCD)
ref
Invalid LCD configuration
Recommend use for 5 V
LCD panels
• V
• V
• V
LL1
DD
LL3
DD
= V
= 1.67 V
= 5 V
V
LL3
LL2
, the charge
3.0 V
5.0 V
= 3 × V
= 3.3 V
ref
1505

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