MC9S12DT256MPVE Freescale Semiconductor, MC9S12DT256MPVE Datasheet - Page 153

IC MCU 256K FLASH 25MHZ 112-LQFP

MC9S12DT256MPVE

Manufacturer Part Number
MC9S12DT256MPVE
Description
IC MCU 256K FLASH 25MHZ 112-LQFP
Manufacturer
Freescale Semiconductor
Series
HCS12r
Datasheet

Specifications of MC9S12DT256MPVE

Core Processor
HCS12
Core Size
16-Bit
Speed
25MHz
Connectivity
CAN, I²C, SCI, SPI
Peripherals
PWM, WDT
Number Of I /o
91
Program Memory Size
256KB (256K x 8)
Program Memory Type
FLASH
Eeprom Size
4K x 8
Ram Size
12K x 8
Voltage - Supply (vcc/vdd)
2.35 V ~ 5.25 V
Data Converters
A/D 8x10b
Oscillator Type
Internal
Operating Temperature
-40°C ~ 125°C
Package / Case
112-LQFP
Processor Series
S12D
Core
HCS12
Data Bus Width
16 bit
Data Ram Size
12 KB
Interface Type
CAN/I2C/SCI/SPI
Maximum Clock Frequency
25 MHz
Number Of Programmable I/os
91
Number Of Timers
1
Operating Supply Voltage
5 V to 2.5 V
Maximum Operating Temperature
+ 125 C
Mounting Style
SMD/SMT
3rd Party Development Tools
EWHCS12
Development Tools By Supplier
M68KIT912DP256
Minimum Operating Temperature
- 40 C
On-chip Adc
2 (8-ch x 10-bit)
No. Of I/o's
91
Eeprom Memory Size
4KB
Ram Memory Size
12KB
Cpu Speed
25MHz
No. Of Timers
1
No. Of Pwm Channels
8
Digital Ic Case Style
LQFP
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

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4.4.1.2
The analog input multiplexer connects one of the 16 external analog input channels to the sample and hold
machine.
4.4.1.3
The sample amplifier is used to buffer the input analog signal so that the storage node can be quickly
charged to the sample potential.
4.4.1.4
The A/D machine performs analog to digital conversions. The resolution is program selectable at either 8
or 10 bits. The A/D machine uses a successive approximation architecture. It functions by comparing the
stored analog sample potential with a series of digitally generated analog potentials. By following a binary
search algorithm, the A/D machine locates the approximating potential that is nearest to the sampled
potential.
When not converting the A/D machine disables its own clocks. The analog electronics continue drawing
quiescent current. The power down (ADPU) bit must be set to disable both the digital clocks and the analog
power consumption.
Only analog input signals within the potential range of V
in a non-railed digital output codes.
4.4.2
This subsection explains some of the digital features in more detail. See register descriptions for all details.
4.4.2.1
The external trigger feature allows the user to synchronize ATD conversions to the external environment
events rather than relying on software to signal the ATD module when ATD conversions are to take place.
The external trigger signal (out of reset ATD channel 15, configurable in ATDCTL1) is programmable to
be edge or level sensitive with polarity control.
combinations of control bits and their effect on the external trigger function.
During a conversion, if additional active edges are detected the overrun error flag ETORF is set.
Freescale Semiconductor
ETRIGLE
X
X
0
0
1
1
Digital Sub-Block
ETRIGP
Analog Input Multiplexer
Sample Buffer Amplifier
Analog-to-Digital (A/D) Machine
External Trigger Input
X
X
0
1
0
1
ETRIGE
0
0
1
1
1
1
SCAN
Table 4-27. External Trigger Control Bits
X
X
X
X
0
1
MC9S12XDP512 Data Sheet, Rev. 2.21
Ignores external trigger. Performs one conversion sequence and stops.
Ignores external trigger. Performs continuous conversion sequences.
Falling edge triggered. Performs one conversion sequence per trigger.
Rising edge triggered. Performs one conversion sequence per trigger.
Trigger active low. Performs continuous conversions while trigger is active.
Trigger active high. Performs continuous conversions while trigger is active.
Chapter 4 Analog-to-Digital Converter (ATD10B16CV4) Block Description
Table 4-27
RL
gives a brief description of the different
to V
RH
Description
(A/D reference potentials) will result
153

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