mc9s08lg32 Freescale Semiconductor, Inc, mc9s08lg32 Datasheet

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mc9s08lg32

Manufacturer Part Number
mc9s08lg32
Description
8-bit Hcs08 Central Processor Unit
Manufacturer
Freescale Semiconductor, Inc
Datasheet

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MC9S08LG32 Series
Covers: MC9S08LG32 and
MC9S08LG16
Features
• 8-bit HCS08 Central Processor Unit (CPU)
• On-Chip Memory
• Power-Saving Modes
• Clock Source Options
• System Protection
• Development Support
Freescale Semiconductor
Data Sheet: Technical Data
© Freescale Semiconductor, Inc., 2009. All rights reserved.
Freescale reserves the right to change the detail specifications as may be required to permit
improvements in the design of its products.
– Up to 40 MHz CPU at 5.5 V to 2.7 V across temperature
– HCS08 instruction set with added BGND instruction
– Support for up to 32 interrupt/reset sources
– 32 KB or 18 KB dual array flash; read/program/erase
– 1984 byte random access memory (RAM)
– Security circuitry to prevent unauthorized access to
– Two low-power stop modes (stop2 and stop3)
– Reduced-power wait mode
– Peripheral clock gating register can disable clocks to
– Low power on-chip crystal oscillator (XOSC) that can
– 100 μs typical wakeup time from stop3 mode
– Oscillator (XOSC) — Loop-control Pierce oscillator;
– Internal Clock Source (ICS) — Internal clock source
– COP reset with option to run from dedicated 1 kHz
– Low-voltage warning with interrupt
– Low-voltage detection with reset
– Illegal opcode detection with reset
– Illegal address detection with reset
– Flash and RAM protection
– Single-wire background debug interface
– Breakpoint capability to allow single breakpoint setting
range of –40 °C to 85 °C and –40 °C to 105 °C
over full operating voltage and temperature
RAM and flash contents
unused modules, thereby reducing currents
be used in low-power modes to provide accurate clock
source to real time counter and LCD controller
crystal or ceramic resonator range of 31.25 kHz to
38.4 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; supports
bus frequencies from 1 MHz to 20 MHz.
internal clock or bus clock
during in-circuit debugging (plus two more breakpoints
in on-chip debug module)
Preliminary - Subject to Change Without Notice
• Peripherals
• Input/Output
• Package Options
– On-chip in-circuit emulator (ICE) debug module containing
– LCD — Up to 4 × 41 or 8 × 37 LCD driver with internal
– ADC — Up to 16-channel, 12-bit resolution; 2.5 μs
– SCI — Full duplex non-return to zero (NRZ); LIN master
– SPI — Full-duplex or single-wire bidirectional;
– IIC — With up to 100 kbps with maximum bus loading;
– TPMx — One 6 channel and one 2 channel; selectable input
– MTIM — 8-bit counter with match register; four clock
– RTC — 8-bit modulus counter with binary or decimal based
– KBI — One keyboard control module capable of supporting
– IRQ — External pin for wakeup from low-power modes
– 39, 53, or 69 GPIOs
– 8 KBI and 1 IRQ interrupt with selectable polarity
– Hysteresis and configurable pullup device on all input pins;
– 48-pin LQFP, 64-pin LQFP, and 80-pin LQFP
three comparators and nine trigger modes; eight deep FIFO
for storing change-of-flow addresses and event-only data;
debug module supports both tag and force breakpoints
charge pump.
conversion time; automatic compare function; temperature
sensor; internal bandgap reference channel; runs in stop3 and
can wake up the system; fully functional from 5.5 V to 2.7 V
extended break generation; LIN slave extended break
detection; wakeup on active edge
double-buffered transmit and receive; master or slave mode;
MSB-first or LSB-first shifting
multi-master operation; programmable slave address;
interrupt driven byte-by-byte data transfer; supports
broadcast mode and 10-bit addressing
capture, output compare, or buffered edge or center-aligned
PWM on each channel
sources with prescaler dividers; can be used for periodic
wakeup
prescaler; three clock sources including one external source;
can be used for time base, calendar, or task scheduling
functions
8 × 8 keyboard matrix
configurable slew rate and drive strength on all output pins.
80-LQFP
Case 917A
14 mm × 14 mm
MC9S08LG32
Document Number: MC9S08LG32
Rev. 4, 2/2009
64-LQFP
Case 840F
10 mm × 10 mm
48-LQFP
Case 932
7 mm × 7mm

Related parts for mc9s08lg32

mc9s08lg32 Summary of contents

Page 1

... Hysteresis and configurable pullup device on all input pins; configurable slew rate and drive strength on all output pins. • Package Options – 48-pin LQFP, 64-pin LQFP, and 80-pin LQFP Preliminary - Subject to Change Without Notice Document Number: MC9S08LG32 Rev. 4, 2/2009 MC9S08LG32 64-LQFP Case 840F 10 mm × ...

Page 2

... LQFP . . . . . . . . . . . . . . . . . . . . . . . . . . .38 4.1.2 64-pin LQFP . . . . . . . . . . . . . . . . . . . . . . . . . . .41 4.1.3 48-pin LQFP . . . . . . . . . . . . . . . . . . . . . . . . . . .44 5 Revision History . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .46 List of Figures Figure 1. MC9S08LG32 Series Block Diagram . . . . . . . . . . . . . . 3 Figure 2. 80-Pin LQFP . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 5 Figure 3. 64-Pin LQFP . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 6 Figure 4. 48-Pin LQFP . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 7 Figure 5. Typical Low-side Drive (sink) characteristics – High Drive (PTxDSn = Figure 6. Typical Low-side Drive (sink) characteristics – Low Drive (PTxDSn = Figure 7. Typical High-side Drive (source) characteristics – ...

Page 3

... INTERFACE (SCI2) XTAL EXTAL 12-BIT ANALOG-TO-DIGITAL CONVERTER (ADC) Available only on 80-pin package Available only on 64-pin and 80-pin package */Default function out of reset/* MC9S08LG32 Series Data Sheet, Rev. 4 Preliminary - Subject to Change Without Notice LCD28/ADC5/TCLK/PTA7 LCD27/ADC4/T2CH1/KBI7/PTA6 LCD26/ADC3/T2CH0/KBI6/PTA5 LCD25/ADC2/RX2/KBI5/PTA4 LCD24/ADC1/TX2/KBI4/PTA3 LCD23/ADC0/SDA/PTA2 LCD22/SCL/PTA1 LCD21/PTA0 ...

Page 4

... TPM1 channels TPM2 channels XOSC 1 Pin Assignments This section shows the pin assignments for the MC9S08LG32 series devices. The priority of functions on a pin is in ascending order from left to right and bottom to top. Another view of pinouts and function priority is given in 4 MC9S08LG32 32,768 ...

Page 5

... V 19 LL1 V 20 LL2 V /V are internally connected to V REFH REFL Freescale Semiconductor 80-Pin LQFP Figure 2. 80-Pin LQFP NOTE /V . DDA SSA MC9S08LG32 Series Data Sheet, Rev. 4 Preliminary - Subject to Change Without Notice Pin Assignments PTC4/LCD20 60 PTA0/LCD21 59 PTG2/LCD35 58 PTG3/LCD36 57 PTA1/SCL/LCD22 56 PTA2/SDA/ADC0/LCD23 55 PTA3/KBI4/TX2/ADC1/LCD24 54 PTA4/KBI5/RX2/ADC2/LCD25 53 ...

Page 6

... REFH REFL 64-Pin LQFP Figure 3. 64-Pin LQFP NOTE /V . DDA SSA MC9S08LG32 Series Data Sheet, Rev. 4 Preliminary - Subject to Change Without Notice PTC4/LCD20 48 PTA0/LCD21 47 PTG2/LCD35 46 PTG3/LCD36 45 PTA1/SCL/LCD22 44 PTA2/SDA/ADC0/LCD23 43 PTA3/KBI4/TX2/ADC1/LCD24 42 PTA4/KBI5/RX2/ADC2/LCD25 41 PTA5/KBI6/TPM2CH0/ADC3/LCD26 40 PTA6/KBI7/TPM2CH1/ADC4/LCD27 39 PTA7/TCLK/ADC5/LCD28 38 PTC5/BKGD/MS 37 PTC6/RESET ...

Page 7

... Freescale Semiconductor 48-Pin LQFP Figure 4. 48-Pin LQFP NOTE /V . DDA SSA MC9S08LG32 Series Data Sheet, Rev. 4 Preliminary - Subject to Change Without Notice Pin Assignments 37 36 PTC4/LCD20 35 PTA0/LCD21 34 PTA1/SCL/LCD22 33 PTA2/SDA/ADC0/LCD23 32 PTA3/KBI4/TX2/ADC1/LCD24 31 PTA4/KBI5/RX2/ADC2/LCD25 30 PTA5/KBI6/TPM2CH0/ADC3/LCD26 29 PTA6/KBI7/TPM2CH1/ADC4/LCD27 28 PTA7/TCLK/ADC5/LCD28 27 PTC5/BKGD/MS 26 PTC6/RESET ...

Page 8

... PTF7 EXTAL PTF6 XTAL V V DDA REFH V V SSA REFL PTH6 TPM2CH5 PTF2 SPSCK TPM1CH1 MC9S08LG32 Series Data Sheet, Rev. 4 Preliminary - Subject to Change Without Notice Priority --> Highest Alt 2 Alt 3 — — — — — — — — — — — — ...

Page 9

... PTG7 LCD44 PTG6 LCD43 PTG5 LCD42 PTG4 LCD41 PTG1 LCD34 PTG0 LCD33 PTE5 LCD13 PTE4 LCD12 MC9S08LG32 Series Data Sheet, Rev. 4 Preliminary - Subject to Change Without Notice Pin Assignments Priority --> Highest Alt 2 Alt 3 ADC13 KBI3 TPM2CH2 KBI0 TPM2CH5 KBI3 TPM1CH0 KBI2 TPM1CH1 ADC9 — ...

Page 10

... Electrical Characteristics 2.1 Introduction This section contains electrical and timing specifications for the MC9S08LG32 series of microcontrollers available at the time of publication. 2.2 Parameter Classification The electrical parameters shown in this supplement are guaranteed by various methods. To give the customer a better understanding the following classification is used and the parameters are tagged accordingly in the tables where appropriate: Those parameters are guaranteed during production testing on each individual device ...

Page 11

... θ JA θ °C can be obtained from: J × θ MC9S08LG32 Series Data Sheet, Rev. 4 Preliminary - Subject to Change Without Notice Electrical Characteristics Value Unit –0.3 to +5.8 V 120 mA –0 0 ±25 mA ±2 °C –55 to 150 ) and negative (V ...

Page 12

... and T can be obtained by solving D J Table 6. ESD and Latch-Up Test Conditions Description Symbol R1 C — — — MC9S08LG32 Series Data Sheet, Rev. 4 Preliminary - Subject to Change Without Notice and T ( neglected I (at equilibrium) D Equation 1 and Equation 2 Unit Value Ω ...

Page 13

... for all ports MC9S08LG32 Series Data Sheet, Rev. 4 Preliminary - Subject to Change Without Notice Electrical Characteristics Min Max Unit 2500 — V 750 — V ±100 — Min Typ Max — ...

Page 14

... range during instantaneous and operating maximum current DD > greater than I , the injection current may flow out MC9S08LG32 Series Data Sheet, Rev. 4 Preliminary - Subject to Change Without Notice 1 Min Typ Max I — — — — 25 — ...

Page 15

... DD 0.90 0.80 0.70 0.60 0.50 0.40 0.30 0.20 0.10 0. 1.2 1.0 0.8 0.6 0.4 0.2 0 MC9S08LG32 Series Data Sheet, Rev. 4 Preliminary - Subject to Change Without Notice Electrical Characteristics Typical V vs Hot (105°C) Room (25°C) Cold (-40° (mA) OL Typical V vs ...

Page 16

... I (mA) OH Figure 8. Typical High-side Drive (source) characteristics – Low Drive (PTxDSn = 1.2 1.0 0.8 0.6 0.4 0.2 0 MC9S08LG32 Series Data Sheet, Rev. 4 Preliminary - Subject to Change Without Notice Typical vs = Hot (105°C) Room (25°C) Cold (-40° ...

Page 17

... WI 20 MHz MHz 20 MHz 5 1 MHz S2I n S3I n MC9S08LG32 Series Data Sheet, Rev. 4 Preliminary - Subject to Change Without Notice Electrical Characteristics Temp 1 Max Unit Typ (°C) –40 ° °C 16.38 27.85 mA –40 °C to105 °C 28.05 –40 ° °C 1.67 2.84 –40 °C to105 °C 2.87 – ...

Page 18

... Gain) 2 with rbias (High Gain) with Cpump oscillator 2 with rbias (Low Gain) 2 with rbias (High Gain) with Cpump MC9S08LG32 Series Data Sheet, Rev. 4 Preliminary - Subject to Change Without Notice Max Unit Typ (V) –40 °C to 105 °C 3 210 — nA μ ...

Page 19

... Bus Symbol Freq — n/a LVD LVD connected LL3 Figure 9. Typical Run I for FBE Mode at 1 MHz DD MC9S08LG32 Series Data Sheet, Rev. 4 Preliminary - Subject to Change Without Notice Electrical Characteristics Max Unit Typ (V) μA –40 °C to 105 °C 3 4.58 — 71.7 — ...

Page 20

... Electrical Characteristics I DD Figure 10. Typical Run Figure 11. Typical Run for FBE Mode at 20 MHz for FEE Mode at 1 MHz DD MC9S08LG32 Series Data Sheet, Rev. 4 Preliminary - Subject to Change Without Notice Freescale Semiconductor ...

Page 21

... I DD Figure 12. Typical Run Freescale Semiconductor V DD for FEE Mode at 20 MHz Figure 13. Typical Stop2 I DD MC9S08LG32 Series Data Sheet, Rev. 4 Preliminary - Subject to Change Without Notice Electrical Characteristics 21 ...

Page 22

... High range (RANGE = 1) FEE or FBE mode • High range (RANGE = 1, HGO = 1) BLPE mode • High range (RANGE = 1, HGO = 0) BLPE mode 2 D Load capacitors Figure 14. Typical Stop3 I Characteristic 2 MC9S08LG32 Series Data Sheet, Rev. 4 Preliminary - Subject to Change Without Notice DD 1 Symbol Min Typ Max f 32 — 38.4 ...

Page 23

... Figure 15. Typical Crystal or Resonator Circuit: High Range and Low Range/High Gain Freescale Semiconductor Characteristic ≥8 MHz 4 MHz 1 MHz 5 5 XOSC EXTAL R F Crystal or Resonator C 1 MC9S08LG32 Series Data Sheet, Rev. 4 Preliminary - Subject to Change Without Notice Electrical Characteristics 1 Symbol Min Typ Max R F — 10 — — 1 — ...

Page 24

... Acquire C and V and variation in the crystal oscillator frequency increase the C SS MC9S08LG32 Series Data Sheet, Rev. 4 Preliminary - Subject to Change Without Notice XTAL 1 Min Typ Max — 32.768 — int_ft f 31.25 — 39.0625 int_t — ...

Page 25

... DDAD ΔV –100 0 SSAD V — — REFH V — — REFL V V — ADIN REFL C — 4.5 ADIN MC9S08LG32 Series Data Sheet, Rev. 4 Preliminary - Subject to Change Without Notice Electrical Characteristics Max Unit Comment 5.5 V — +100 mV — +100 mV — — shorted to REFH V DDAD — ...

Page 26

... SIMPLIFIED INPUT PIN EQUIVALENT Z CIRCUIT ADIN Pad leakage due to input protection + V ADIN – INPUT PIN INPUT PIN INPUT PIN MC9S08LG32 Series Data Sheet, Rev. 4 Preliminary - Subject to Change Without Notice Max Unit Comment 7 kΩ — kΩ External to MCU 8.0 MHz — ...

Page 27

... I DDAD — I DDAD I DDAD f ADACK 1.25 t ADC t ADS E TUE DNL 3 3 INL E ZS MC9S08LG32 Series Data Sheet, Rev. 4 Preliminary - Subject to Change Without Notice Electrical Characteristics , DDAD REFL SSAD 1 Typ Max Unit μA — 195 — μA — 347 — μA — ...

Page 28

... DDAD Conditions Symb Min TEMP25 = 1.0 MHz unless otherwise stated. Typical values are for reference only ADCK MC9S08LG32 Series Data Sheet, Rev. 4 Preliminary - Subject to Change Without Notice , (continued) REFL SSAD 1 Typ Max Unit ±1 2 — — LSB ± ...

Page 29

... Rise t Fall = 5 °C unless otherwise stated. DD levels. Temperature range –40 °C to 105 °C. and 80 extrst Figure 19. Reset Timing MC9S08LG32 Series Data Sheet, Rev. 4 Preliminary - Subject to Change Without Notice Electrical Characteristics 1 Min Typ Max Unit dc — 20 MHz μs 700 — ...

Page 30

... Symbol f TCLK t TCLK t clkh t clkl t ICPW t TCLK t clkh Figure 21. Timer External Clock t ICPW t ICPW Figure 22. Timer Input Capture Pulse MC9S08LG32 Series Data Sheet, Rev. 4 Preliminary - Subject to Change Without Notice Min Max Unit Bus 4 — t cyc 1.5 — t cyc 1.5 — t cyc 1.5 — ...

Page 31

... SPSCK t Lead t Lag t WSPSCK dis MC9S08LG32 Series Data Sheet, Rev. 4 Preliminary - Subject to Change Without Notice Electrical Characteristics Min Max Unit Hz f /2048 f /2 Bus Bus Bus 2 2048 t 4 — t 1/2 — t SPSCK 1 — ...

Page 32

... BIT Figure 23. SPI Master Timing (CPHA = BIT BIT Figure 24. SPI Master Timing (CPHA =1) MC9S08LG32 Series Data Sheet, Rev. 4 Preliminary - Subject to Change Without Notice LSB IN 10 LSB OUT LSB IN MASTER LSB OUT PORT DATA ...

Page 33

... BIT Figure 25. SPI Slave Timing (CPHA = BIT MSB OUT 6 BIT Figure 26. SPI Slave Timing (CPHA = 1) MC9S08LG32 Series Data Sheet, Rev. 4 Preliminary - Subject to Change Without Notice Electrical Characteristics SEE SLAVE LSB OUT NOTE 1 ...

Page 34

... Burst t Page t Mass R — IDDBP R — IDDPE 4 10,000 t 15 D_ret . These values are measured at room temperatures DD MC9S08LG32 Series Data Sheet, Rev. 4 Preliminary - Subject to Change Without Notice Min Typ Max 2.7 — 5 — 100 100 — 100 100 — 2000 8000 supply ...

Page 35

... SAE Level Table 20. Conducted Susceptibility, EFT/B Symbol Conditions 5.5 CS_EFT + Package type = 80-pin LQFP MC9S08LG32 Series Data Sheet, Rev. 4 Preliminary - Subject to Change Without Notice Electrical Characteristics 1 Level f /f OSC BUS (Max) 32 kHz crystal TBD 20 MHz bus TBD TBD ...

Page 36

... TBD 18 KB TBD MC9S08LG32CLK 32 KB MC9S08LG32CLH MC9S08LG32CLF MC9S08LG16CLH 18 KB MC9S08LG16CLF 1 See the reference manual, MC9S08LG32RM, for a complete description of modules included on each device. 2 See Table 23 for package information. 3 Automotive part numbers will be available after automotive qualification in July'09. 36 Table 21. Performance Criteria The MCU performs as designed during and after exposure. ...

Page 37

... Package designator (see Temperature range (C = –40 ° °C) Approximate Flash size in KB Table 23. Package Descriptions Abbreviation Designator LQFP LK LQFP LH LQFP LF MC9S08LG32 Series Data Sheet, Rev. 4 Preliminary - Subject to Change Without Notice Package Information Table 23) Case No. Document No. 917A 98ASS23237W 840F 98ASS23234W 932 98ASH00962A Table 23 ...

Page 38

... Package Information 4.1.1 80-pin LQFP 38 MC9S08LG32 Series Data Sheet, Rev. 4 Preliminary - Subject to Change Without Notice Freescale Semiconductor ...

Page 39

... Freescale Semiconductor MC9S08LG32 Series Data Sheet, Rev. 4 Preliminary - Subject to Change Without Notice Package Information 39 ...

Page 40

... Package Information Figure 28. 80-pin LQFP Package Drawing (Case 917A, Doc #98ASS23237W) 40 MC9S08LG32 Series Data Sheet, Rev. 4 Preliminary - Subject to Change Without Notice Freescale Semiconductor ...

Page 41

... LQFP Freescale Semiconductor MC9S08LG32 Series Data Sheet, Rev. 4 Preliminary - Subject to Change Without Notice Package Information 41 ...

Page 42

... Package Information 42 MC9S08LG32 Series Data Sheet, Rev. 4 Preliminary - Subject to Change Without Notice Freescale Semiconductor ...

Page 43

... Figure 29. 64-pin LQFP Package Drawing (Case 840F, Doc #98ASS23234W) Freescale Semiconductor MC9S08LG32 Series Data Sheet, Rev. 4 Preliminary - Subject to Change Without Notice Package Information 43 ...

Page 44

... Package Information 4.1.3 48-pin LQFP 44 MC9S08LG32 Series Data Sheet, Rev. 4 Preliminary - Subject to Change Without Notice Freescale Semiconductor ...

Page 45

... Figure 30. 48-pin LQFP Package Drawing (Case 932, Doc #98ASH00962A) Freescale Semiconductor MC9S08LG32 Series Data Sheet, Rev. 4 Preliminary - Subject to Change Without Notice Package Information 45 ...

Page 46

... The following revision history table summarizes changes contained in this document. Revision Date 1 8/2008 First Initial release. 2 9/2008 Second Initial Release. 3 11/2008 Alpha Customer Release. 4 2/2009 Launch Release. 46 Table 24. Revision History Description of Changes MC9S08LG32 Series Data Sheet, Rev. 4 Preliminary - Subject to Change Without Notice Freescale Semiconductor ...

Page 47

... Freescale Semiconductor Literature Distribution Center P.O. Box 5405 Denver, Colorado 80217 1-800-441-2447 or 303-675-2140 Fax: 303-675-2150 LDCForFreescaleSemiconductor@hibbertgroup.com MC9S08LG32 Document Number: Rev. 4 2/2009 Information in this document is provided solely to enable system and software implementers to use Freescale Semiconductor products. There are no express or implied copyright licenses granted hereunder to design or fabricate any integrated circuits or integrated circuits based on the information in this document ...

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