mc9s08je128 Freescale Semiconductor, Inc, mc9s08je128 Datasheet

no-image

mc9s08je128

Manufacturer Part Number
mc9s08je128
Description
Covers Mc9s08je128 And Mc9s08je64 ? 8-bit Hcs08 Central Processor Unit Cpu
Manufacturer
Freescale Semiconductor, Inc
Datasheet

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
mc9s08je128CLH
Manufacturer:
Freescale Semiconductor
Quantity:
10 000
Part Number:
mc9s08je128CLK
Manufacturer:
Freescale Semiconductor
Quantity:
10 000
Part Number:
mc9s08je128CMB
Manufacturer:
Freescale Semiconductor
Quantity:
10 000
Part Number:
mc9s08je128VLH
Manufacturer:
Freescale Semiconductor
Quantity:
10 000
Part Number:
mc9s08je128VLK
Manufacturer:
Freescale Semiconductor
Quantity:
10 000
MC9S08JE128 series
Covers: MC9S08JE128 and MC9S08JE64
8-Bit HCS08 Central Processor Unit (CPU)
On-Chip Memory
Power-Saving Modes
Clock Source Options
System Protection
Development Support
Peripherals
Freescale Semiconductor
Data Sheet: Advanced Information
An Energy-Efficient Solution from Freescale
This document contains information on a new product. Specifications and information herein are subject to change without notice.
© Freescale Semiconductor, Inc., 2009-2010. All rights reserved.
Up to 48-MHz CPU above 2.4 V, 40 MHz CPU above 2.1 V, and
20 MHz CPU above 1.8 V across temperature of -40°C to 105°C
HCS08 instruction set with added BGND instruction
Support for up to 32 interrupt/reset sources
128 K Dual Array Flash read/program/erase over full operating
voltage and temperature
12 KB Random-access memory (RAM)
Security circuitry to prevent unauthorized access to RAM and
Flash
Two ultra-low power stop modes. Peripheral clock enable register
can disable clocks to unused modules to reduce currents
Time of Day (TOD) — Ultra-low power 1/4 sec counter with up to
64s timeout.
Ultra-low power external oscillator that can be used in stop modes
to provide accurate clock source to the TOD. 6 usec typical wake
up time from stop3 mode
Oscillator (XOSC1) — Loop-control Pierce oscillator; 32.768 kHz
crystal or ceramic resonator dedicated for TOD operation.
Oscillator (XOSC2) — for high frequency crystal input for MCG
reference to be used for system clock and USB operations.
Multipurpose Clock Generator (MCG) — PLL and FLL; precision
trimming of internal reference allows 0.2% resolution and 2%
deviation over temperature and voltage; supports CPU
frequencies from 4 kHz to 48 MHz.
Watchdog computer operating properly (COP) reset Watchdog
computer operating properly (COP) reset with option to run from
dedicated 1-kHz internal clock source or bus clock
Low-voltage detection with reset or interrupt; selectable trip points;
separate low-voltage warning with optional interrupt; selectable
trip points
Illegal opcode and illegal address detection with reset
Flash block protection for each array to prevent accidental
write/erasure
Hardware CRC to support fast cyclic redundancy checks
Single-wire background debug interface
Real-time debug with 6 hardware breakpoints (4 PC, 1 address
and 1 data) Breakpoint capability to allow single breakpoint setting
during in-circuit debugging
On-chip in-circuit emulator (ICE) debug module containing 3
comparators and 9 trigger modes
CMT— Carrier Modulator timer for remote control
communications. Carrier generator, modulator and driver for
dedicated infrared out. Can be used as an output compare timer.
IIC— Up to 100 kbps with maximum bus loading; Multi-master
operation; Programmable slave address; Interrupt driven
Preliminary — Subject to Change
64-LQFP 10mm x 10mm
Input/Output
Package Options
byte-by-byte data transfer; supports broadcast mode and 11-bit
addressing
PRACMP — Analog comparator with selectable interrupt;
compare option to programmable internal reference voltage;
operation in stop3
SCI — Two serial communications interfaces with optional 13-bit
break; option to connect Rx input to PRACMP output on SCI1 and
SCI2; High current drive on Tx on SCI1 and SCI2; wake-up from
stop3 on Rx edge
SPI1— Serial peripheral interface (SPI) with 64-bit FIFO buffer;
16-bit or 8-bit data transfers; full-duplex or single-wire
bidirectional; double-buffered transmit and receive; master or
slave mode; MSB-first or LSB-first shifting
SPI2— Serial peripheral interface with full-duplex or single-wire
bidirectional; Double-buffered transmit and receive; Master or
Slave mode; MSB-first or LSB-first shifting
TPM — Two 4-channel Timer/PWM Module; Selectable input
capture, output compare, or buffered edge- or center-aligned
PWM on each channel; external clock input/pulse accumulator
USB — Supports USB in full-speed device configuration. On-chip
transceiver and 3.3V regulator help save system cost, fully
compliant with USB Specification 2.0. Allows control, bulk,
interrupt and isochronous transfers.
ADC12 — 12-bit Successive approximation ADC with up to 4
dedicated differential channels and 8 single-ended channels;
range compare function; 1.7 mV/°C temperature sensor; internal
bandgap reference channel; operation in stop3; fully functional
from 3.6V to 1.8V, Configurable hardware trigger for 8 Channel
select and result registers
PDB — Programmable delay block with 16-bit counter and
modulus and prescale to set reference clock to bus divided by 1 to
bus divided by 2048; 8 trigger outputs for ADC12 module provides
periodic coordination of ADC sampling sequence with sequence
completion interrupt; Back-to-Back mode and Timed mode
DAC — 12-bit resolution; 16-word data buffers with configurable
watermark.
Up to 47 GPIOs and 2 output-only pin and 1 input-only pin.
Voltage Reference output (VREFO).
Dedicated infrared output pin (IRO) with high current sink
capability.
Up to 16 KBI pins with selectable polarity.
81-MBGA 10x10 mm
80-LQFP 12x12 mm
64-LQFP 10x10 mm
Document Number: MC9S08JE128
80-LQFP 12mm x 12mm
Rev. 3, 04/2010
81-MapBGA 10mm x10mm

Related parts for mc9s08je128

mc9s08je128 Summary of contents

Page 1

... Freescale Semiconductor Data Sheet: Advanced Information An Energy-Efficient Solution from Freescale MC9S08JE128 series Covers: MC9S08JE128 and MC9S08JE64 – 8-Bit HCS08 Central Processor Unit (CPU) – 48-MHz CPU above 2 MHz CPU above 2.1 V, and 20 MHz CPU above 1.8 V across temperature of -40°C to 105°C – ...

Page 2

... Contents 1 Devices in the MC9S08JE128 series.................. 3 2 Preliminary Electrical Characteristics............. 12 2.1 Parameter Classification ......................................................... 12 2.2 Absolute Maximum Ratings .................................................... 13 2.3 Thermal Characteristics .......................................................... 14 2.4 Electrostatic Discharge (ESD) Protection Characteristics ...... 15 2.5 DC Characteristics .................................................................. 16 2.6 Supply Current Characteristics ............................................... 19 2.7 Comparator (PRACMP) Electricals......................................... 21 2.8 12-Bit Digital-to-Analog Converter (DAC12LV) Electricals ...... 22 2.9 ADC Characteristics................................................................ 23 2.10 MCG and External Oscillator (XOSC) Characteristics .......... 28 2 ...

Page 3

... Devices in the MC9S08JE128 series The following table summarizes the feature set available in the MC9S08JE128 series of MCUs. Table 1. MC9S08JE128 series Features by MCU and Package Pin quantity FLASH size (bytes) RAM size (bytes) Programmable Analog Comparator (PRACMP) Debug Module (DBG) Multipurpose Clock Generator (MCG) ...

Page 4

... Cyclic Redundancy Check (CRC) Keyboard Interrupt (KBI) Voltage Reference (VREF) Voltage Regulator (VREG) Interrupt Request (IRQ) Flash Wrapper GPIO Port Control The block diagram in Figure 1 shows the structure of the MC9S08JE128 series MCU. 4 Table 2. Versions of On-Chip Modules Preliminary — Subject to Change Version ...

Page 5

... Figure 1. MC9S08JE128 series Block Diagram Freescale Semiconductor Preliminary — Subject to Change Devices in the MC9S08JE128 series 5 ...

Page 6

... Devices in the MC9S08JE128 series 1.1 Pin Assignments This section shows the pin assignments for the MC9S08JE128 series devices. 1.1.1 64-Pin LQFP The following two figures show the 64-pin LQFP pinout configuration. PTA0/SS1 IRO PTA4 PTA5 PTA6 PTA7 PTB0 PTB1/BLMS VSSA VREFL NC NC DADP2 ...

Page 7

... Figure 3. 80-Pin LQFP Preliminary — Subject to Change Devices in the MC9S08JE128 series PTE4/CMPP3/TPMCLK/IRQ PTE3/KBI2P6 PTE2/KBI2P5 PTE1/KBI2P4 PTE0/KBI2P3 PTD7/RX1 PTD6/TX1 PTD5/SCL/TPM1CH3 PTD4/SDA/TPM1CH2 PTD3/TPM1CH1 PTD2/TPM1CH0 PTD1/CMPP2/RESET PTD0/BKGD/MS PTC7/KBI2P2/CLKOUT/ADP11 PTC6/KBI2P1/PRACMPO/ADP10 PTC5/KBI2P0/CMPP1/ADP9 PTC4/KBI1P7/CMPP0/ADP8 PTC3/KBI1P6/SS2/ADP7 PTC2/KBI1P5/SPSCK2/ADP6 PTC1/MISO2 7 ...

Page 8

... Devices in the MC9S08JE128 series 1.1.3 81-Pin MAPBGA The following figure shows the 81-pin MAPBGA pinout configuration IRO PTG0 A PTF7 PTA0 B PTA4 PTA5 C D PTA7 DADM2 E F DADP2 DADP0 DACO G DADM0 DADM1 H VSSA VREFL PTF6 USB_DP VBUS VUSB33 PTG1 USB_DM ...

Page 9

... Preliminary — Subject to Change Devices in the MC9S08JE128 series Composite Pin Name PTA0/SS1 IRO PTA1/KBI1P0/TX1 PTA2/KBI1P1/RX1/ADP4 PTA3/KBI1P2/ADP5 PTA4 PTA5 PTA6 PTA7 PTB0 PTB1/BLMS VSSA VREFL NC NC ...

Page 10

... Devices in the MC9S08JE128 series Table 3. Package Pin Assignments (Continued) Package Default Function VREFH VDDA VSS2 PTB2 PTB3 VDD2 PTB4 PTB5 G6 38 — PTB6 F7 39 — PTB7 PTC0 PTC1 PTC2 H5 43 ...

Page 11

... MOSI1 — — MISO1 — — SPSCK1 — — — — — Preliminary — Subject to Change Devices in the MC9S08JE128 series Composite Pin Name VSS3 VDD3 PTE5/TX2 PTE6/RX2 PTE7/TPM2CH3 PTF0/TPM2CH2 PTF1/RX2/TPM2CH1 PTF2/TX2/TPM2CH0 PTF3/SCL PTF4/SDA PTF5/KBI2P7 VUSB33 USB_DM USB_DP VBUS ...

Page 12

... Preliminary Electrical Characteristics This section contains electrical specification tables and reference timing diagrams for the MC9S08JE128/64 microcontroller, including detailed information on power considerations, DC/AC electrical characteristics, and AC timing specifications. The electrical specifications are preliminary and are from previous designs or design simulations. These specifications may not be fully tested or guaranteed at this early stage of the product life cycle ...

Page 13

Absolute Maximum Ratings Absolute maximum ratings are stress ratings only, and functional operation at the maxima is not guaranteed. Stress beyond the limits specified in the following table may affect device reliability or cause permanent damage to the device. ...

Page 14

... I will be very small Table 6. Thermal Characteristics Rating MC9S08JE128 MC9S08JE64 1,2,3,4 Single-layer board — 1s 81-pin MBGA 80-pin LQFP 64-pin LQFP Four-layer board — 2s2p 81-pin MBGA 80-pin LQFP 64-pin LQFP ) in ° ...

Page 15

Solving Equation 1 and Equation 2 for K gives: where constant pertaining to the particular part. K can be determined from for a known T . Using this value of K, the values for ...

Page 16

Preliminary Electrical Characteristics 2.5 DC Characteristics This section includes information about power supply requirements, I/O pin characteristics, and power supply current in various operating modes. Num Symbol Characteristic V Operating DD 1 Voltage V Output high OH 2 voltage I ...

Page 17

Num Symbol Characteristic 7 V Input low voltage all digital inputs IL V Input hysteresis hys 8 |I Input leakage In| 9 current |I Hi-Z (off-state) OZ| 10 leakage current |I | Leakage current OZ for analog output 11 pins ...

Page 18

Preliminary Electrical Characteristics Num Symbol Characteristic 9 V Low-voltage LVDH detection 20 threshold — high range V Low-voltage LVDL detection 21 threshold — 9 low range V Low-voltage LVWH warning 22 threshold — 9 high range V Low-voltage LVWL warning ...

Page 19

Power supply must maintain regulation within operating V maximum current conditions. If positive injection current (V may flow out of V and could result in external power supply going out of regulation. Ensure external V DD load will shunt ...

Page 20

Preliminary Electrical Characteristics 2.6 Supply Current Characteristics # Symbol Parameter RI Run FEI mode DD supply All modules ON 1 current RI Run FEI mode; All modules OFF DD 2 supply current RI Run LPS=0; All modules OFF DD supply ...

Page 21

Table 10. Supply Current Characteristics (Continued) # Symbol Parameter Wait mode FEI mode, all modules OFF WI 5 supply cur- DD rent Stop2 mode S2I 6 supply cur- DD rent Stop3 mode No clocks active S3I 7 supply cur- DD ...

Page 22

Preliminary Electrical Characteristics # Parameter 1 LPO EREFSTEN RANGE = HGO = IREFSTEN TOD Does not include clock source 4 current 1 5 LVD LVDSE = 1 1 ACMP Not using the bandgap 6 (BGBE = ...

Page 23

Characteristic 10 Programmable reference generator inputs Programmable reference generator setup 11 delay Programmable reference generator step 12 size Programmable reference generator voltage 13 range 2.8 12-bit DAC Electricals Table 13. DAC 12LV Operating Requirements # Characteristic 1 Supply voltage ...

Page 24

Preliminary Electrical Characteristics # Characteristic 1 Resolution Supply current low-power mode 2 Supply current high-power mode 3 Full-scale Settling time (±0.5 LSB) 4 (0x080 to 0xF7F or 0xF7F to 0x080) low-power mode Full-scale Settling time (±0.5 LSB) 5 (0x080 to ...

Page 25

ADC Characteristics # Symb Characteristic 1 V Supply voltage DDAD ΔV DDAD 2 ΔV Ground voltage SSAD Ref Voltage High REFH 5 V Ref Voltage Low REFL 6 V Input Voltage ADIN C Input ADIN 7 ...

Page 26

Preliminary Electrical Characteristics – Figure 6. ADC Input Impedance Equivalency Diagram 26 SIMPLIFIED INPUT PIN EQUIVALENT CIRCUIT Pad Z AS leakage due to input protection + V ADIN – INPUT PIN INPUT PIN ...

Page 27

Table 16. 12-bit SAR ADC Characteristics full operating range (V Characterist Conditions ic Supply ADLPC=1, ADHSC=0 Current ADLPC=0, ADHSC=0 ADLPC=0, ADHSC=1 Supply Stop, Reset, Module Off Current ADC ADLPC=1, ADHSC=0 Asynchronou ADLPC=0, ADHSC=0 s Clock Source ADLPC=0, ADHSC=1 Sample Time ...

Page 28

Preliminary Electrical Characteristics Table 16. 12-bit SAR ADC Characteristics full operating range ( REFH Characterist Conditions ic Zero-Scale 12-bit single-ended mode Error 11-bit differential mode 10-bit single-ended mode 9-bit differential mode 8-bit single-ended mode Full-Scale 12-bit single-ended mode ...

Page 29

MCG and External Oscillator (XOSC) Characteristics Table 17. MCG (Temperature Range = –40 to 105 # Rating 1 Internal reference startup time 2 Average internal reference frequency DCO output frequency range - 3 trimmed Resolution of trimmed DCO output ...

Page 30

Preliminary Electrical Characteristics 3 This specification applies to any time the PLL VCO divider or reference divider is changed, or changing from PLL disabled (BLPE, BLPI) to PLL enabled (PBE, PEE crystal/resonator is being used as the reference, ...

Page 31

Table 18. XOSC (Temperature Range = –40 to 105 # Characteristic 4, 5 Crystal start-up time 6 1 Data in Typical column was characterized at 3.0 V, 25° typical recommended value. 2 When MCG is configured for FEE ...

Page 32

Preliminary Electrical Characteristics 2.11 AC Characteristics This section describes ac timing characteristics for each peripheral system. 2.11.1 Control Timing # Symbol f Bus frequency (t Bus 1 t Internal low-power oscillator LPO 2 period t External reset pulse width extrst ...

Page 33

Symbol Port rise and fall time (load = 50 pF) Rise Fall 1 Typical values are based on characterization data This is the shortest pulse that is guaranteed to be recognized as ...

Page 34

Preliminary Electrical Characteristics 2.11.2 TPM 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 current ...

Page 35

SPI Characteristics Table 21 and Figure 11 through Figure 14 1 No. Characteristic Operating frequency 1 SPSCK period 2 Enable lead time 3 Enable lag time 4 Clock (SPSCK) high or low time 5 Data setup time (inputs) 6 ...

Page 36

Preliminary Electrical Characteristics 1 SS (OUTPUT) 2 SCK (CPOL = 0) (OUTPUT) SCK (CPOL = 1) (OUTPUT) 6 MISO MSB IN (INPUT) 11 MOSI (OUTPUT) NOTES output mode (MODFEN = 1, SSOE = 1). 2. LSBF = 0. ...

Page 37

SS (INPUT) SCK (CPOL = 0) (INPUT) 2 SCK (CPOL = 1) (INPUT) 8 MISO SLAVE (OUTPUT) 6 MOSI MSB IN (INPUT) NOTE: 1. Not defined, but normally MSB of character just received SS (INPUT) SCK (CPOL = 0) (INPUT) ...

Page 38

... This section provides details about program/erase times and program-erase endurance for the Flash memory. Program and erase operations do not require any special power sources other than the normal V information about program/erase operations, see the Memory chapter in the Reference Manual for this device (MC9S08JE128RM). # Characteristic ...

Page 39

USB Electricals The USB electricals for the USB On-the-Go module conform to the standards documented by the Universal Serial Bus Implementers Forum. For the most up-to-date standards, visit If the Freescale USB On-the-Go implementation has electrical characteristics that deviate ...

Page 40

Preliminary Electrical Characteristics 2.15 VREF Electrical Specifications Num Characteristic 1 Supply voltage 2 Temperature 3 Output Load Capacitance 4 Maximum Load Voltage Reference Output with Factory 5 Trim Temperature Drift (Vmin - Vmax across 6 ...

Page 41

... Ordering Information This appendix contains ordering information for the device numbering system. MC9S08JE128 and MC9S08JE64 devices. Freescale Semiconductor Figure 15. Typical Output vs. Temperature TBD Figure 16. Typical Output vs. V Preliminary — Subject to Change Ordering Information DD 41 ...

Page 42

... MAPBGA Package 3.3 Mechanical Drawings Table 28 provides the available package types and their document numbers. The latest package outline/mechanical drawings are available on the MC9S08JE128 series Product Summary pages at http://www.freescale.com. To view the latest drawing, either: • Click on the appropriate link in Table 28, ® ...

Page 43

Revision History To provide the most up-to-date information, the revision of our documents on the World Wide Web will be the most current. Your printed copy may be an earlier revision. To verify you have the latest information available, ...

Page 44

... Freescale Semiconductor Literature Distribution Center http://compass.freescale.net/go/168063291 1-800-441-2447 or 1-303-675-2140 Fax: 1-303-675-2150 LDCForFreescaleSemiconductor@hibbertgroup.com Document Number: MC9S08JE128 Rev. 3 04/2010 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 ...

Related keywords