S912XET512J3VALR Freescale Semiconductor, S912XET512J3VALR Datasheet - Page 1214

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S912XET512J3VALR

Manufacturer Part Number
S912XET512J3VALR
Description
16-bit Microcontrollers - MCU 16 BIT,512K FLASH
Manufacturer
Freescale Semiconductor
Datasheet

Specifications of S912XET512J3VALR

Rohs
yes
Core
HCS12X
Processor Series
MC9S12XE
Data Bus Width
16 bit
Maximum Clock Frequency
50 MHz
Program Memory Size
512 KB
Data Ram Size
32 KB
On-chip Adc
Yes
Operating Supply Voltage
3.13 V to 5.5 V
Operating Temperature Range
- 40 C to + 105 C
Package / Case
LQFP-112
Mounting Style
SMD/SMT

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
S912XET512J3VALR
Manufacturer:
Freescale Semiconductor
Quantity:
10 000
Appendix A Electrical Characteristics
A.1.10
This section describes the current consumption characteristics of the device family as well as the
conditions for the measurements.
A.1.10.1
Since the current consumption of the output drivers is load dependent, all measurements are without output
loads and with minimum I/O activity. The currents are measured in single chip mode, S12XCPU code is
executed from Flash and XGATE code is executed from RAM. V
enabled and the bus frequency is 50MHz using a 4-MHz oscillator in loop controlled Pierce mode.
Furthermore in expanded modes the currents flowing in the system are highly dependent on the load at the
address, data, and control signals as well as on the duty cycle of those signals. No generally applicable
numbers can be given. A very good estimate is to take the single chip currents and add the currents due to
the external loads.
Since the DBG and BDM modules are typically not used in the end application, the supply current values
for these modules is not specified.
An overhead of current consumption exisits independent of the listed modules, due to voltage regulation
and clock logic that is not dedicated to a specific module. This is listed in the table row named “overhead”.
A.1.10.2
Currents are measured in single chip mode, S12XCPU and XGATE code is executed from RAM with
V
Characterized parameters are derived using a 4MHz loop controlled Pierce oscillator. Production test
parameters are tested with a 4MHz square wave oscillator.
A.1.10.3
Unbonded ports must be correctly initialized to prevent current consumption due to floating inputs. Typical
Stop current is measured with V
Stop currents are measured with the oscillator configured for 4MHz LCP mode.
Table A-10. shows the configuration of the peripherals for typical run current.
1214
Conditions are 4.5 V < V
Num C
DD35
1
2
3
D Input high voltage
D Input low voltage
T Input hysteresis
=5.5V, internal voltage regulator enabled and a 50MHz bus frequency from a 4-MHz input.
Supply Currents
Table A-9. Characteristics of Expantion Bus Inputs Port C, D, PE5, PE6, and PE7
Typical Run Current Measurement Conditions
Maximum Run Current Measurement Conditions
Current Conditions
DD35
< 5.5 V Temperature from –40°C to +150°C, unless otherwise noted
Rating
MC9S12XE-Family Reference Manual Rev. 1.25
DD35
for Reduced Input Voltage Thresholds
=5V, maximum Stop current is measured with V
Symbol
V HYS
V IH
V IL
DD35
1.75
Min
=5V, internal voltage regulator is
Typ
100
Freescale Semiconductor
DD35
=5.5V. Pseudo
Max
0.75
Unit
mV
V
V

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