mc9s08sv8 Freescale Semiconductor, Inc, mc9s08sv8 Datasheet

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mc9s08sv8

Manufacturer Part Number
mc9s08sv8
Description
8-bit Hcs08 Central Processor Unit
Manufacturer
Freescale Semiconductor, Inc
Datasheet

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mc9s08sv8CLC
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Freescale Semiconductor
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Freescale Semiconductor
Data Sheet: Technical Data
MC9S08SV16 Series
Covers: MC9S08SV16 and
MC9S08SV8
Features:
• 8-Bit HCS08 Central Processor Unit (CPU)
• On-Chip Memory
• Power-Saving Modes
• Clock Source Options
• System Protection
• Development Support
© Freescale Semiconductor, Inc., 2009. All rights reserved.
This document contains information on a product under development. Freescale reserves the
right to change or discontinue this product without notice.
– Up to 40 MHz CPU at 2.7 V to 5.5 V across temperature
– HC08 instruction set with added BGND instruction
– Support for up to 32 interrupt/reset sources
– Up to 16 KB flash read/program/erase over full
– Up to 1024-byte random-access memory (RAM)
– Security circuitry to prevent unauthorized access to
– Two low power stop modes; reduced power wait mode
– Allows clocks to remain enabled to specific peripherals
– Oscillator (XOSC) — Loop-control Pierce oscillator;
– Internal Clock Source (ICS) — Internal clock source
– Watchdog computer operating properly (COP) reset
– Low-voltage detection with reset or interrupt; selectable
– Illegal opcode detection with reset
– Illegal address detection with reset
– Flash block protection
– Single-wire background debug interface
– Breakpoint capability to allow single breakpoint setting
range of –40 °C to 85 °C
operating voltage and temperature
RAM and flash contents
in stop3 mode
crystal or ceramic resonator range of 31.25 kHz to
39.0625 kHz or 1 MHz to 16 MHz
module containing a frequency-locked-loop (FLL)
controlled by internal or external reference; precision
trimming of internal reference allows 0.2% resolution
and 2% deviation over temperature and voltage;
supporting bus frequencies up to 20 MHz
with option to run from dedicated 1 kHz internal clock
source or bus clock
trip points
during in-circuit debugging (plus two more breakpoints)
• Peripherals
• Input/Output
• Package Options
– On-chip in-circuit emulator (ICE) debug module
– IPC — Interrupt priority controller to provide hardware
– ADC — 12-channel, 10-bit resolution; 2.5 μs
– TPM — One 6-channel and one 2-channel
– MTIM16 — One 16-bit modulo timer
– SCI — One serial communications interface module
– SPI — One serial peripheral interface module in 8-bit
– IIC — Inter-integrated circuit bus module capable of
– ACMP — Analog comparator with option to compare to
– RTC — Real time counter
– KBI— 8-pin keyboard interrupt module with software
– 30 GPIOs including one output-only pin and one
– 32-pin SDIP
– 32-pin LQFP
containing two comparators and nine trigger modes
based nested interrupt mechanism
conversion time; automatic compare function;
1.7 mV/°C temperature sensor; internal bandgap
reference channel; operation in stop; optional hardware
trigger; fully functional from 2.7 V to 5.5 V
timer/pulse-width modulators (TPM) modules;
selectable input capture, output compare, or buffered
edge- or center-aligned PWM on each channel
with optional 13-bit break; LIN extensions
data length mode with a receiving data buffer hardware
match function
operation up to 100 kbps with maximum bus loading;
multi-master operation; programmable slave address;
interrupt-driven byte-by-byte data transfer; broadcast
mode; 10-bit addressing
internal reference
selectable polarity on edge or edge/level modes
input-only pin
32-Pin LQFP
873A-03
MC9S08SV16
Document Number: MC9S08SV16
Document Number: MC9S08SV16
Rev. 2, 7/2009
Rev. 2, 7/2009
32-Pin SDIP
1376-02

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mc9s08sv8 Summary of contents

Page 1

... Freescale Semiconductor Data Sheet: Technical Data MC9S08SV16 Series Covers: MC9S08SV16 and MC9S08SV8 Features: • 8-Bit HCS08 Central Processor Unit (CPU) – MHz CPU at 2 5.5 V across temperature range of –40 ° °C – HC08 instruction set with added BGND instruction – ...

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MCU Block Diagram . . . . . . . . . . . . . . . . . . . . . . . . . . . 3 2 System Clock Distribution . . . . ...

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... COP IRQ 1 kHz OSC LVD ON-CHIP ICE AND DEBUG MODUE (DBG) USER FLASH MC9S08SV16 = 16,384 BYTES MC9S08SV8 = 8,192 BYTES USER RAM MC9S08SV16 = 1,024 BYTES MC9S08SV8 = 768 BYTES 40 MHz INTERNAL CLOCK SOURCE (ICS) EXTAL EXTERNAL OSCILLATOR XTAL SOURCE (XOSC VOLTAGE REGULATOR ...

Page 4

System Clock Distribution 2 System Clock Distribution MC9S08SV16 series use ICS module as clock sources. The ICS module can use internal or external clock source as reference to provide MHz CPU clock. The output of ICS module ...

Page 5

Pin Assignments This section shows the pin assignments for the MC9S08SV16 series devices. PTC5/SPSCK PTC4/SS PTA5/IRQ/TCLK/RESET PTD2/TPM1CH2 PTA4/ACMPO/BKGD/MS PTD0/SCL PTD1/SDA PTB7/EXTAL PTB6/XTAL PTB5/TPM1CH1 PTD3/TPM1CH3 PTB4/TPM1CH0 PTC3/ADP11/ACMP– PTC2/ADP10/ACMP+ Figure 3. MC9S08SV16 Series 32-Pin SDIP Package Freescale Semiconductor ...

Page 6

Pin Assignments PTA4/ACMPO/BKGD/MS PTD0/SCL PTD1/SDA PTB7/EXTAL PTB6/XTAL PTB5/TPM1CH1 Figure 4. MC9S08SV16 Series 32-Pin LQFP Package Table 1. Pin Availability by Package Pin-Count Pin Number 32-SDIP 32-LQFP ...

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Table 1. Pin Availability by Package Pin-Count (continued) Pin Number 32-SDIP 32-LQFP ...

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... RAM 768 BYTES $033F $0340 UNIMPLEMENTED $17FF $1800 HIGH PAGE REGISTERS $187F $1880 UNIMPLEMENTED $DFFF $E000 FLASH 8192 BYTES $FFFF MC9S08SV8 8 $0000 $003F $0040 $043F $0440 $17FF $1800 $187F $1880 $BFFF $C000 $FFFF Figure 5. MC9S08SV16 Series Memory Map MC9S08SV16 Series Data Sheet, Rev. 2 ...

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Electrical Characteristics 5.1 Introduction This section contains electrical and timing specifications for the MC9S08SV16 series of microcontrollers available at the time of publication. 5.2 Parameter Classification The electrical parameters shown in this supplement are guaranteed by various methods. To ...

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Electrical Characteristics Supply voltage Maximum current into V Digital input voltage Instantaneous maximum current Single pin limit (applies to all port pins) Storage temperature range 1 Input must be current limited to the value specified. To determine the value of ...

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Ambient temperature, ° θ = Package thermal resistance, junction-to-ambient, °C int I/O × Watts — chip internal power int Power ...

Page 12

Electrical Characteristics Table 6. ESD and Latch-Up Protection Characteristics No. 1 Human body model (HBM) 2 Charge device model (CDM) 3 Latch-up current Parameter is achieved by design characterization on a small sample size from typical devices ...

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Num C Characteristic All digital inputs, when Pullup, enabled (all I/O pins other 11a P pulldown resistors PTA5/IRQ/TCLK/RESET Pullup, 11b C pulldown (PTA5/IRQ/TCLK/RESET) resistors Single pin limit DC injection current Total MCU limit, includes 5 sum ...

Page 14

Electrical Characteristics 4 Input must be current limited to the value specified. To determine the value of the required current-limiting resistor, calculate resistance values for positive and negative clamp voltages, then use the larger of the two values. 5 Power ...

Page 15

Typical I 10.000 9.000 8.000 7.000 6.000 5.000 4.000 3.000 2.000 1.000 0.000 0 Figure 7. Typical I 50.000 45.000 40.000 35.000 30.000 25.000 20.000 15.000 10.000 5.000 0.000 0 Figure 8. Typical I Freescale Semiconductor vs ...

Page 16

Electrical Characteristics 14.000 12.000 10.000 8.000 6.000 4.000 2.000 0.000 0 Figure 9. Typical I Typical I 20.000 18.000 16.000 14.000 12.000 10.000 8.000 6.000 4.000 2.000 0.000 0 Figure 10. Typical I 16 Typical I vs ...

Page 17

Typical I 4.000 3.500 3.000 2.500 2.000 1.500 1.000 0.500 0.000 0 Figure 11. Typical I 24.000 22.000 20.000 18.000 16.000 14.000 12.000 10.000 8.000 6.000 4.000 2.000 0.000 0 Figure 12. Typical I Freescale Semiconductor vs ...

Page 18

Electrical Characteristics 5.500 5.000 4.500 4.000 3.500 3.000 2.500 2.000 1.500 1.000 0.500 0.000 0 Figure 13. Typical I 5.7 Supply Current Characteristics This section includes information about power supply current in various operating modes. Parameter Num C P Run ...

Page 19

Table 8. Supply Current Characteristics (continued) Parameter Num C C Wait mode current 6 FBE mode, all modules off Stop2 mode supply current C P Stop3 mode supply current 8 no clocks active ADC ...

Page 20

Electrical Characteristics SV16 Run Current VS. Bus Frequency 7.0000 6.0000 5.0000 4.0000 3.0000 2.0000 1.0000 0.0000 1 Figure 14. Typical Run Bus Frequency (MHz) for FBE (All Modules Off) DD MC9S08SV16 Series Data Sheet, ...

Page 21

External Oscillator (XOSC) and ICS Characteristics Refer to Figure 16 for crystal or resonator circuits. Table 9. XOSC and ICS Specifications (Temperature Range = – °C Ambient ) Num C Characteristic Oscillator crystal or resonator (EREFS = ...

Page 22

Electrical Characteristics 2 When ICS is configured for FEE or FBE mode, input clock source must be divisible using RDIV to within the range of 31.25 kHz to 39.0625 kHz. 3 See crystal or resonator manufacturer’s recommendation. 4 This parameter ...

Page 23

AC Characteristics This section describes timing characteristics for each peripheral system. 5.9.1 Control Timing Num C Bus frequency ( cyc 2 D Internal low power oscillator period 3 D External reset pulse width 4 D ...

Page 24

Electrical Characteristics IRQ/KBIPx 5.9.2 TPM Module Timing Synchronizer circuits determine the shortest input pulses that can be recognized or the fastest clock that can be used as the optional external source to the timer counter. These synchronizers operate from the ...

Page 25

SPI Timing Table 12 and Figure 21 through No. C Function Operating frequency — D Master Slave SPSCK period 1 D Master Slave Enable lead time 2 D Master Slave Enable lag time 3 D Master Slave Clock (SPSCK) ...

Page 26

Electrical Characteristics 1 SS (OUTPUT) 2 SPSCK (CPOL = 0) (OUTPUT) SPSCK (CPOL = 1) (OUTPUT MISO 2 MSB IN (INPUT) 9 MOSI MSB OUT (OUTPUT) NOTES output mode (DDS7 = 1, SSOE = 1). 2. ...

Page 27

SS (INPUT) SPSCK (CPOL = 0) (INPUT) 2 SPSCK (CPOL = 1) (INPUT) 7 MISO MSB OUT SLAVE (OUTPUT MOSI MSB IN (INPUT) NOTE: 1. Not defined but normally MSB of character just received SS (INPUT ...

Page 28

Electrical Characteristics Table 13. Analog Comparator Electrical Specifications (continued) C Characteristic D Analog input voltage P Analog input offset voltage Analog comparator hysteresis C P Analog input leakage current C Analog comparator initialization delay 5.11 ADC Characteristics Characteristic Conditions Supply ...

Page 29

– Figure 25. ADC Input Impedance Equivalency Diagram Table 15. 10-Bit ADC Characteristics (V C Characteristic Conditions Supply current ADLPC = 1 T ADLSMP = 1 ADCO = 1 Supply current ADLPC ...

Page 30

Electrical Characteristics Table 15. 10-Bit ADC Characteristics (V C Characteristic Conditions Conversion Short sample (ADLSMP = 0) P time (including Long sample (ADLSMP = 1) sample time) Short sample (ADLSMP = 0) P Sample time Long sample (ADLSMP = 1) ...

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C Characteristic Supply voltage for program/erase D –40 ° °C D Supply voltage for read operation 1 D Internal FCLK frequency D Internal FCLK period (1/FCLK) P Byte program time (random location) P Byte program time (burst mode) ...

Page 32

... Data based on qualification test results. 6 Ordering Information This section contains ordering information for MC9S08SV16 series devices. See below for an example of the device numbering system. Device Number MC9S08SV16 MC9S08SV8 1 See the reference manual, MC9S08SV16 Series Reference Manual, for a complete description of modules included on each device. 2 See Table 19 for package information ...

Page 33

Package Information Pin Count Package Type 32 Low Quad Flat Package 32 Shrink Dual In-line Package 7.1 Mechanical Drawings The following pages are mechanical drawings for the packages described in Freescale Semiconductor Table 19. Package Descriptions Abbreviation Designator LQFP ...

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... Freescale Semiconductor was negligent regarding the design or manufacture of the part. Freescale™ and the Freescale logo are trademarks of Freescale Semiconductor, Inc. All other product or service names are the property of their respective owners. © Freescale Semiconductor, Inc. 2009. All rights reserved. ...

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