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    Rfq
    74ABT544D,602
    Transceiver, Inverting 1 Element 8 Bit per Element 3-State Output 24-SO
    2527
    24-SOIC (0.295", 7.50mm Width)
    XC56309VF100AR2
    IC DSP 24BIT 100MHZ 196-MABGA
    3408
    196-LBGA
    MC9S08DZ128CLF
    S08 S08 Microcontroller IC 8-Bit 40MHz 128KB (128K x 8) FLASH 48-LQFP (7x7)
    6568
    48-LQFP
    PCA9539APW,118
    I/O Expander 16 I²C, SMBus 400 kHz 24-TSSOP
    5
    24-TSSOP (0.173", 4.40mm Width)
    SPC5748GK1MKU6R
    e200z2, e200z4, e200z4 MPC57xx Microcontroller IC 32-Bit Tri-Core 80MHz/160MHz 6MB (6M x 8) FLASH 176-LQFP (24x24)
    3356
    176-LQFP Exposed Pad
    S912ZVMBA6F0VLFR
    S12Z S12 MagniV Microcontroller IC 16-Bit 32MHz 64KB (64K x 8) FLASH 48-LQFP (7x7)
    4004
    48-LQFP
    NTB0102DP-Q100125
    Element Bit per Element Output
    2846
    74HCU04PW,112
    Inverter IC 6 Channel 14-TSSOP
    27
    14-TSSOP (0.173", 4.40mm Width)
    A Comprehensive Guide To S9S12G96F0VLFR Microcontroller IC 16-Bit 25MHz 96KB (96K x 8) FLASH 48-LQFP (7x7)

    12V1 HCS12 Microcontroller IC 16-Bit 25MHz 96KB (96K x 8) FLASH 48-LQFP (7x7)


    Introduction

    The MC9S12G-Family is an optimized, automotive, 16-bit microcontroller product line focused on

    low-cost, high-performance, and low pin-count. This family is intended to bridge between high-end 8-bit

    microcontrollers and high-performance 16-bit microcontrollers, such as the MC9S12XS-Family. The

    MC9S12G-Family is targeted at generic automotive applications requiring CAN or LIN/J2602

    communication. Typical examples of these applications include body controllers, occupant detection, door

    modules, seat controllers, RKE receivers, smart actuators, lighting modules, and smart junction boxes.

    The MC9S12G-Family uses many of the same features found on the MC9S12XS- and MC9S12P-Family,

    including error correction code (ECC) on flash memory, a fast analog-to-digital converter (ADC) and a

    frequency modulated phase locked loop (IPLL) that improves the EMC performance. 

    The MC9S12G-Family is optimized for lower program memory sizes down to 16k. In order to simplify

    customer use it features an EEPROM with a small 4 bytes erase sector size.

    The MC9S12G-Family deliver all the advantages and efficiencies of a 16-bit MCU while retaining the low

    cost, power consumption, EMC, and code-size efficiency advantages currently enjoyed by users of NXP’s

    existing 8-bit and 16-bit MCU families. Like the MC9S12XS-Family, the MC9S12G-Family run 16-bit

    wide accesses without wait states for all peripherals and memories. The MC9S12G-Family is available in

    100-pin LQFP, 64-pin LQFP, 48-pin LQFP/QFN, 32-pin LQFP and 20-pin TSSOP package options and

    aims to maximize the amount of functionality especially for the lower pin count packages. In addition to

    the I/O ports available in each module, further I/O ports are available with interrupt capability allowing

    wake-up from stop or wait modes.


    Chip-Level Features

    On-chip modules available within the family include the following features:

    • S12 CPU core

    • Up to 240 Kbyte on-chip flash with ECC

    • Up to 4 Kbyte EEPROM with ECC

    • Up to 11 Kbyte on-chip SRAM

    • Phase locked loop (IPLL) frequency multiplier with internal filter

    • 4–16 MHz amplitude controlled Pierce oscillator

    • 1 MHz internal RC oscillator

    • Timer module (TIM) supporting up to eight channels that provide a range of 16-bit input capture,

    output compare, counter, and pulse accumulator functions

    • Pulse width modulation (PWM) module with up to eight x 8-bit channels

    • Up to 16-channel, 10 or 12-bit resolution successive approximation analog-to-digital converter

    (ADC)

    • Up to two 8-bit digital-to-analog converters (DAC)

    • Up to one 5V analog comparator (ACMP)

    • Up to three serial peripheral interface (SPI) modules

    • Up to three serial communication interface (SCI) modules supporting LIN communications

    • Up to one multi-scalable controller area network (MSCAN) module (supporting CAN protocol

    2.0A/B)

    • On-chip voltage regulator (VREG) for regulation of input supply and all internal voltages

    • Autonomous periodic interrupt (API)

    • Precision fixed voltage reference for ADC conversions

    • Optional reference voltage attenuator module to increase ADC accuracy


    8542
    48-LQFP
    74ALVT162240DL,112
    Buffer, Inverting 4 Element 4 Bit per Element 3-State Output 48-SSOP
    7319
    48-BSSOP (0.295", 7.50mm Width)
    XPC8260CZUIFBC
    PowerPC G2 Microprocessor IC MPC82xx 1 Core, 32-Bit 200MHz 480-TBGA (37.5x37.5)
    2530
    480-LBGA Exposed Pad
    MC9S08FL16CBM
    S08 S08 Microcontroller IC 8-Bit 20MHz 16KB (16K x 8) FLASH 32-SDIP
    5751
    32-SDIP (0.400", 10.16mm)
    74HC7403D-Q100,518
    Asynchronous, Synchronous FIFO 256 (64 x 4) Uni-Directional 30MHz 49ns 16-SO
    1716
    16-SOIC (0.295", 7.50mm Width)
    MKV46F128VLL16
    ARM® Cortex®-M4 Kinetis KV Microcontroller IC 32-Bit Single-Core 168MHz 128KB (128K x 8) FLASH 100-LQFP (14x14)
    6873
    100-LQFP
    SPC5747CFK0AVMJ6
    e200z2, e200z4 MPC57xx Microcontroller IC 32-Bit Dual-Core 80MHz/160MHz 4MB (4M x 8) FLASH 176-LQFP (24x24)
    8804
    176-LQFP Exposed Pad
    74LV4094DB,118
    Shift Shift Register 1 Element 8 Bit 16-SSOP
    3
    16-SSOP (0.209", 5.30mm Width)
    BZV85-C11,133
    Zener Diode 11 V 1.3 W ±5% Through Hole DO-41
    30
    DO-204AL, DO-41, Axial
    A Comprehensive Guide To S912XHY128F0VLM Microcontroller IC 16-Bit 40MHz 128KB (128K x 8) FLASH 112-LQFP (20x20)

    HCS12X HCS12X Microcontroller IC 16-Bit 40MHz 128KB (128K x 8) FLASH 112-LQFP (20x20)


    Introduction

    The MC9S12XHY family is an optimized, automotive, 16-bit microcontroller product line that is

    specifically designed for entry level instrument clusters. This family also services generic automotive

    applications requiring CAN, LCD, Motor driver control or LIN/SAE J2602. Typical examples of these

    applications include instrument clusters for automobiles and 2 or 3 wheelers, HVAC displays, general

    purpose motor control and body controllers.

    The MC9S12XHY family uses many of the same features found on the MC9S12XS family and

    MC9S12HY/HA family, including error correction code (ECC) on flash memory, a separate data-flash

    module for diagnostic or data storage, a fast analog-to-digital converter (ATD) and a frequency modulated

    phase locked loop (IPLL) that improves the EMC performance. The MC9S12XHY family features a 40x4

    liquid crystal display (LCD) controller/driver and a motor pulse width modulator (MC) consisting of up to

    16 high current outputs. The device is capable of stepper motor stall detection (SSD) via hardware or

    software, please contact Freescale sales office for detailed information on software SSD.

    The MC9S12XHY family deliver all the advantages and efficiencies of a 16-bit MCU while retaining the

    low cost, power consumption, EMC, and code-size efficiency advantages currently enjoyed by users of

    Freescale’s existing 8-bit and 16-bit MCU families. Like the MC9S12HY/HA family, the MC9S12XHY

    family run 16-bit wide accesses without wait states for all peripherals and memories. The MC9S12XHY

    family is available in 112-pin LQFP and 100-pin LQFP package options. In addition to the I/O ports

    available in each module, further I/O ports are available with interrupt capability allowing wake-up from

    stop or wait modes.


    Chip-Level Features

    On-chip modules available within the family include the following features:

    • CPU12XV1 CPU core

    • Up to 256 Kbyte on-chip flash with ECC

    • 8Kbyte data flash with ECC

    • Up to 12Kbyte on-chip SRAM

    • Phase locked loop (IPLL) frequency multiplier with internal filter

    • 4–16 MHz amplitude controlled Pierce oscillator

    • Two timer modules (TIM0 and TIM1) supporting input/output channels that provide a range of 16-

    bit input capture, output compare, counter and pulse accumulator functions

    • Pulse width modulation (PWM) module with up to 8 x 8-bit channels

    • Up to 12-channel, 10-bit resolution successive approximation analog-to-digital converter (ATD)

    • Up to 40x4 LCD driver

    • PWM motor controller (MC) with up to 16 high current drivers

    • Output slew rate control on Motor driver pad

    • One serial peripheral interface (SPI) module

    • One Inter-IC bus interface (IIC) module

    • Two serial communication interface (SCI) module supporting LIN communications

    • Two multi-scalable controller area network (MSCAN) module (supporting CAN protocol 2.0A/B)

    • On-chip voltage regulator (VREG) for regulation of input supply and all internal voltages

    • Autonomous periodic interrupt (API)

    • Stepper Motor Controller with up to drivers for up to 4 motors

    • Four Stepper Stall Detector modules (one for each motor)

    • Up to 25 key wakup inputs


    NXP Electronics components unboxing,humidity card changed color chip can used?




    7371
    112-LQFP
    74AVCM162836DGG,11
    Universal Bus Driver 56-TSSOP
    3558
    56-TFSOP (0.240", 6.10mm Width)
    XPC850DSLCZT50BU
    MPC8xx Microprocessor IC MPC8xx 1 Core, 32-Bit 50MHz 256-PBGA (23x23)
    1486
    256-BGA
    MC9S08JS8LCFK
    S08 S08 Microcontroller IC 8-Bit 48MHz 8KB (8K x 8) FLASH 24-HVQFN (5x5)
    1441
    24-VQFN Exposed Pad
    DC6M601X6/15S,135
    Buck Switching Regulator IC Positive Fixed 1.5V 1 Output 650mA 6-XFBGA, WLCSP
    4144
    6-XFBGA, WLCSP
    M82174G13
    Microprocessor IC *
    1911
    MC07XSF517BEKR2
    Power Switch/Driver 1:1 N-Channel 5.5A, 11A 54-HSOP
    8324
    54-SSOP (0.295", 7.50mm Width) Exposed Pad
    74LVC374ADB,112
    Flip Flop Element Bit
    5
    BZX79-B24143
    Zener Diode
    124
    A Comprehensive Guide To S912XET256BVAA Microcontroller IC 16-Bit 50MHz 256KB (256K x 8) FLASH 80-QFP (14x14)

    HCS12X HCS12X Microcontroller IC 16-Bit 50MHz 256KB (256K x 8) FLASH 80-QFP (14x14)


    Introduction

    The MC9S12XE-Family of micro controllers is a further development of the S12XD-Family including

    new features for enhanced system integrity and greater functionality. These new features include a

    Memory Protection Unit (MPU) and Error Correction Code (ECC) on the Flash memory together with

    enhanced EEPROM functionality (EEE), an enhanced XGATE, an Internally filtered, frequency

    modulated Phase Locked Loop (IPLL) and an enhanced ATD. The E-Family extends the S12X product

    range up to 1MB of Flash memory with increased I/O capability in the 208-pin version of the flagship

    MC9S12XE100.

    The MC9S12XE-Family delivers 32-bit performance with all the advantages and efficiencies of a 16 bit

    MCU. It retains the low cost, power consumption, EMC and code-size efficiency advantages currently

    enjoyed by users of Freescale’s existing 16-Bit MC9S12 and S12X MCU families. There is a high level of

    compatibility between the S12XE and S12XD families.

    The MC9S12XE-Family features an enhanced version of the performance-boosting XGATE co-processor

    which is programmable in “C” language and runs at twice the bus frequency of the S12X with an

    instruction set optimized for data movement, logic and bit manipulation instructions and which can service

    any peripheral module on the device. The new enhanced version has improved interrupt handling

    capability and is fully compatible with the existing XGATE module.

    The MC9S12XE-Family is composed of standard on-chip peripherals including up to 64Kbytes of RAM,

    eight asynchronous serial communications interfaces (SCI), three serial peripheral interfaces (SPI), an 8-

    channel IC/OC enhanced capture timer (ECT), two 16-channel, 12-bit analog-to-digital converters, an 8-

    channel pulse-width modulator (PWM), five CAN 2.0 A, B software compatible modules (MSCAN12),

    two inter-IC bus blocks (IIC), an 8-channel 24-bit periodic interrupt timer (PIT) and an 8-channel 16-bit

    standard timer module (TIM).

    The MC9S12XE-Family uses 16-bit wide accesses without wait states for all peripherals and memories.

    The non-multiplexed expanded bus interface available on the 144/208-Pin versions allows an easy

    interface to external memories.

    In addition to the I/O ports available in each module, up to 26 further I/O ports are available with interrupt

    capability allowing Wake-Up from STOP or WAIT modes. The MC9S12XE-Family is available in 208-

    Pin MAPBGA, 144-Pin LQFP, 112-Pin LQFP or 80-Pin QFP options.


    Features

    • 16-Bit CPU12X

    — Upward compatible with MC9S12 instruction set with the exception of five Fuzzy instructions

    (MEM, WAV, WAVR, REV, REVW) which have been removed

    — Enhanced indexed addressing

    — Access to large data segments independent of PPAGE

    • INT (interrupt module)

    — Eight levels of nested interrupts

    — Flexible assignment of interrupt sources to each interrupt level.

    — External non-maskable high priority interrupt (XIRQ)

    — Internal non-maskable high priority Memory Protection Unit interrupt

    — Up to 24 pins on ports J, H and P configurable as rising or falling edge sensitive interrupts

    • EBI (external bus interface)(available in 208-Pin and 144-Pin packages only)

    — Up to four chip select outputs to select 16K, 1M, 2M and up to 4MByte address spaces

    — Each chip select output can be configured to complete transaction on either the time-out of one

    of the two wait state generators or the deassertion of EWAIT signal

    • MMC (module mapping control)

    • DBG (debug module)

    — Monitoring of CPU and/or XGATE busses with tag-type or force-type breakpoint requests

    — 64 x 64-bit circular trace buffer captures change-of-flow or memory access information

    • BDM (background debug mode)

    • MPU (memory protection unit)

    — 8 address regions definable per active program task

    — Address range granularity as low as 8-bytes

    — No write / No execute Protection Attributes

    — Non-maskable interrupt on access violation

    • XGATE

    — Programmable, high performance I/O coprocessor module

    — Transfers data to or from all peripherals and RAM without CPU intervention or CPU wait states

    — Performs logical, shifts, arithmetic, and bit operations on data

    — Can interrupt the HCS12X CPU signalling transfer completion

    — Triggers from any hardware module as well as from the CPU possible

    — Two interrupt levels to service high priority tasks

    — Hardware support for stack pointer initialisation

    • OSC_LCP (oscillator)

    — Low power loop control Pierce oscillator utilizing a 4MHz to 16MHz crystal

    — Good noise immunity

    — Full-swing Pierce option utilizing a 2MHz to 40MHz crystal

    — Transconductance sized for optimum start-up margin for typical crystals

    • IPLL (Internally filtered, frequency modulated phase-locked-loop clock generation)

    — No external components required

    — Configurable option to spread spectrum for reduced EMC radiation (frequency modulation)

    • CRG (clock and reset generation)

    — COP watchdog

    — Real time interrupt

    — Clock monitor

    — Fast wake up from STOP in self clock mode

    • Memory Options

    — 128K, 256k, 384K, 512K, 768K and 1M byte Flash

    — 2K, 4K byte emulated EEPROM

    — 12K, 16K, 24K, 32K, 48K and 64K Byte RAM

    • Flash General Features

    — 64 data bits plus 8 syndrome ECC (Error Correction Code) bits allow single bit failure

    correction and double fault detection

    — Erase sector size 1024 bytes

    — Automated program and erase algorithm

    • D-Flash Features

    — Up to 32 Kbytes of D-Flash memory with 256 byte sectors for user access.

    — Dedicated commands to control access to the D-Flash memory over EEE operation.

    — Single bit fault correction and double bit fault detection within a word during read operations.

    — Automated program and erase algorithm with verify and generation of ECC parity bits.

    — Fast sector erase and word program operation.

    — Ability to program up to four words in a burst sequence

    • Emulated EEPROM Features

    — Automatic EEE file handling using an internal Memory Controller.

    — Automatic transfer of valid EEE data from D-Flash memory to buffer RAM on reset.

    — Ability to monitor the number of outstanding EEE related buffer RAM words left to be

    programmed into D-Flash memory.

    — Ability to disable EEE operation and allow priority access to the D-Flash memory.

    — Ability to cancel all pending EEE operations and allow priority access to the D-Flash memory.

    • Two 16-channel, 12-bit Analog-to-Digital Converters

    — 8/10/12 Bit resolution

    — 3µs, 10-bit single conversion time

    — Left/right, signed/unsigned result data

    — External and internal conversion trigger capability

    — Internal oscillator for conversion in Stop modes

    — Wake from low power modes on analog comparison > or <= match

    • Five MSCAN (1 M bit per second, CAN 2.0 A, B software compatible modules)

    — Five receive and three transmit buffers

    — Flexible identifier filter programmable as 2 x 32 bit, 4 x 16 bit, or 8 x 8 bit

    — Four separate interrupt channels for Rx, Tx, error, and wake-up

    — Low-pass filter wake-up function

    — Loop-back for self-test operation

    • ECT (enhanced capture timer)

    — 8 x 16-bit channels for input capture or output compare

    — 16-bit free-running counter with 8-bit precision prescaler

    — 16-bit modulus down counter with 8-bit precision prescaler

    — Four 8-bit or two 16-bit pulse accumulators

    • TIM (standard timer module)

    — 8 x 16-bit channels for input capture or output compare

    — 16-bit free-running counter with 8-bit precision prescaler

    — 1 x 16-bit pulse accumulator

    • PIT (periodic interrupt timer)

    — Up to eight timers with independent time-out periods

    — Time-out periods selectable between 1 and 224 bus clock cycles

    — Time-out interrupt and peripheral triggers

    • 8 PWM (pulse-width modulator) channels

    — 8 channel x 8-bit or 4 channel x 16-bit Pulse Width Modulator

    — programmable period and duty cycle per channel

    — Center- or left-aligned outputs

    — Programmable clock select logic with a wide range of frequencies

    — Fast emergency shutdown input

    • Three Serial Peripheral Interface Modules (SPI)

    — Configurable for 8 or 16-bit data size

    • Eight Serial Communication Interfaces (SCI)

    — Standard mark/space non-return-to-zero (NRZ) format

    — Selectable IrDA 1.4 return-to-zero-inverted (RZI) format with programmable pulse widths

    • Two Inter-IC bus (IIC) Modules

    — Multi-master operation

    — Software programmable for one of 256 different serial clock frequencies

    — Broadcast mode support

    — 10-bit address support

    • On-Chip Voltage Regulator

    — Two parallel, linear voltage regulators with bandgap reference

    — Low-voltage detect (LVD) with low-voltage interrupt (LVI)

    — Power-on reset (POR) circuit

    — 3.3V and 5V range operation

    — Low-voltage reset (LVR)

    • Low-power wake-up timer (API)

    — Available in all modes including Full Stop Mode

    — Trimmable to +-5% accuracy

    — Time-out periods range from 0.2ms to ~13s with a 0.2ms resolution

    • Input/Output

    — Up to 152 general-purpose input/output (I/O) pins plus 2 input-only pins

    — Hysteresis and configurable pull up/pull down device on all input pins

    — Configurable drive strength on all output pins

    • Package Options

    — 208-pin MAPBGA

    — 144-pin low-profile quad flat-pack (LQFP)

    — 112-pin low-profile quad flat-pack (LQFP)

    — 80-pin quad flat-pack (QFP)

    • 50MHz maximum CPU bus frequency, 100MHz maximum XGATE bus frequency


    8403
    80-QFP
    74HC58DB,112
    AND/OR Gate Configurable 2 Circuit 10 Input (3, 3, 2, 2) Input 14-SSOP
    5197
    14-SSOP (0.209", 5.30mm Width)
    DSP56301AG80B1
    IC DSP 24BIT 80MHZ GP 208-LQFP
    3987
    208-LQFP
    MC9S08QE8CTGR
    S08 S08 Microcontroller IC 8-Bit 20MHz 8KB (8K x 8) FLASH 16-TSSOP
    4302
    16-TSSOP (0.173", 4.40mm Width)

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