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    Rfq
    LS1088AXE7Q1A
    ARM® Cortex®-A53 Microprocessor IC QorIQ® Layerscape 8 Core, 64-Bit 1.6GHz 780-FBGA (23x23)
    3060
    780-BFBGA, FCBGA
    BZX585-C4V3135
    Zener Diode 4.3 V 300 mW ±5% Surface Mount SOD-523
    7659
    SC-79, SOD-523
    MC9S08DN60ACLH
    S08 S08 Microcontroller IC 8-Bit 40MHz 60KB (60K x 8) FLASH 64-LQFP (10x10)
    316
    64-LQFP
    A Comprehensive Guide To S9S12P32J0MLH Microcontroller IC 16-Bit 32MHz 32KB (32K x 8) FLASH 64-LQFP (10x10)

    HCS12 HCS12 Microcontroller IC 16-Bit 32MHz 32KB (32K x 8) FLASH 64-LQFP (10x10)


    MC9S12P128

    Covers also MC9S12P-Family

    MC9S12P96

    MC9S12P64

    MC9S12P32


    Introduction

    The MC9S12P family is an optimized, automotive, 16-bit microcontroller product line focused on lowcost,

    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

    MC9S12P 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 MC9S12P family uses many of the same features found on the MC9S12XS 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 MC9S12P 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 MC9S12XS family, the MC9S12P family run

    16-bit wide accesses without wait states for all peripherals and memories. The MC9S12P family is

    available in 80-pin QFP, 64-pin LQFP, and 48-pin QFN package options and aims to maximize pin

    compatibility with the MC9S12XS family. 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 128 Kbyte on-chip flash with ECC

    • 4 Kbyte data flash with ECC

    • Up to 6 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 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 6 x 8-bit channels

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

    • One serial peripheral interface (SPI) module

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

    • 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)


    How read the label of the NXP chip?What is the naming rules of NXP microcontrollers?




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



    1276
    64-LQFP
    MPC855TVR50D4R2
    MPC8xx Microprocessor IC MPC8xx 1 Core, 32-Bit 50MHz 357-PBGA (25x25)
    8127
    357-BBGA
    MRF5S21130HSR5
    RF Mosfet 28 V 1.2 A 2.11GHz ~ 2.17GHz 13.5dB 28W NI-880S
    6338
    NI-880S
    MC34912G5AC
    System Basis Chip PMIC 32-LQFP (7x7)
    230
    32-LQFP
    PCF8576CU/F1,026
    LCD Driver Die
    3722
    Die
    UJA1079ATW/5V0/WDJ
    Automotive Interface 32-HTSSOP
    1815
    32-TSSOP (0.240", 6.10mm Width) Exposed Pad
    LS2048AXN7V1B
    ARM® Cortex®-A72 Microprocessor IC QorIQ® Layerscape 4 Core, 64-Bit 2.0GHz 1292-FCPBGA (37.5x37.5)
    8145
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    TDA18250HN/C1
    IC DGTL CABLE SIL TUNER 48HVQFN
    8506
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    LPC11U36FBD64/401151
    ARM® Cortex®-M0 LPC11Uxx Microcontroller IC 32-Bit Single-Core 50MHz 96KB (96K x 8) FLASH 64-LQFP (10x10)

    How do you identify which pin is pin 1 of an IC integrated circuit chip? |ICONECHIP

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    A Comprehensive Guide To MC9S12DG128CFUE Microcontroller IC 16-Bit 25MHz 128KB (128K x 8) FLASH 80-QFP (14x14)

    HCS12 HCS12 Microcontroller IC 16-Bit 25MHz 128KB (128K x 8) FLASH 80-QFP (14x14)


    MC9S12DT128

    Covers MC9S12DT128E, MC9S12DG128E,

    MC9S12DJ128E, MC9S12DG128, MC9S12DJ128,

    MC9S12DB128, MC9S12A128, SC515846, SC515847,

    SC515848, SC515849, SC101161DT, SC101161DG,

    SC101161DJ, SC102202, SC102203, SC102204,

    SC102205


    Overview

    The MC9S12DT128 microcontroller unit (MCU) is a 16-bit device composed of standard on-chip

    peripherals including a 16-bit central processing unit (HCS12 CPU), 128K bytes of Flash EEPROM, 8K

    bytes of RAM, 2K bytes of EEPROM, two asynchronous serial communications interfaces (SCI), two

    serial peripheral interfaces (SPI), an 8-channel IC/OC enhanced capture timer, two 8-channel, 10-bit

    analog-to-digital converters (ADC), an 8-channel pulse-width modulator (PWM), a digital Byte Data Link

    Controller (BDLC), 29 discrete digital I/O channels (Port A, Port B, Port K and Port E), 20 discrete digital

    I/O lines with interrupt and wakeup capability, three CAN 2.0 A, B software compatible modules

    (MSCAN12), a Byteflight module and an Inter-IC Bus. The MC9S12DT128 has full 16-bit data paths

    throughout. However, the external bus can operate in an 8-bit narrow mode so single 8-bit wide memory

    can be interfaced for lower cost systems. The inclusion of a PLL circuit allows power consumption and

    performance to be adjusted to suit operational requirements.


    Features

    • HCS12 Core

    – 16-bit HCS12 CPU

    i. Upward compatible with M68HC11 instruction set

    ii. Interrupt stacking and programmer’s model identical to M68HC11

    iii.20-bit ALU

    iv. Instruction queue

    v. Enhanced indexed addressing

    – MEBI (Multiplexed External Bus Interface)

    – MMC (Module Mapping Control)

    – INT (Interrupt control)

    – BKP (Breakpoints)

    – BDM (Background Debug Module)

    • CRG (Clock and Reset Generator)

    – Choice of low current Colpitts oscillator or standard Pierce Oscillator

    – PLL

    – COP watchdog

    – real time interrupt

    – clock monitor

    • 8-bit and 4-bit ports with interrupt functionality

    – Digital filtering

    – Programmable rising or falling edge trigger

    • Memory

    – 128K Flash EEPROM

    – 2K byte EEPROM

    – 8K byte RAM

    • Two 8-channel Analog-to-Digital Converters

    – 10-bit resolution

    – External conversion trigger capability

    • Three 1M 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

    • Enhanced Capture Timer

    – 16-bit main counter with 7-bit prescaler

    – 8 programmable input capture or output compare channels

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

    • 8 PWM channels

    – Programmable period and duty cycle

    – 8-bit 8-channel or 16-bit 4-channel

    – Separate control for each pulse width and duty cycle

    – Center-aligned or left-aligned outputs

    – Programmable clock select logic with a wide range of frequencies

    – Fast emergency shutdown input

    – Usable as interrupt inputs

    • Serial interfaces

    – Two asynchronous Serial Communications Interfaces (SCI)

    – Two Synchronous Serial Peripheral Interface (SPI)

    – Byteflight

    • Byte Data Link Controller (BDLC)

    • SAE J1850 Class B Data Communications Network Interface

    – Compatible and ISO Compatible for Low-Speed (<125 Kbps) Serial Data Communications in

    Automotive Applications

    • Inter-IC Bus (IIC)

    – Compatible with I2C Bus standard

    – Multi-master operation

    – Software programmable for one of 256 different serial clock frequencies

    • 112-Pin LQFP and 80-Pin QFP package options

    – I/O lines with 5V input and drive capability

    – 5V A/D converter inputs

    – Operation at 50MHz equivalent to 25MHz Bus Speed

    – Development support

    – Single-wire background debug™ mode

    – On-chip hardware breakpoints



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    MRF5S9101MBR1
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    6361
    TO-272BB
    MC68HC11E1MFNE3
    HC11 HC11 Microcontroller IC 8-Bit 3MHz ROMless 52-PLCC (19.1x19.1)
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    TDA19977AHV15C184,
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    7702
    MKV46F256VLL16
    ARM® Cortex®-M4 Kinetis KV Microcontroller IC 32-Bit Single-Core 168MHz 256KB (256K x 8) FLASH 100-LQFP (14x14)
    7309
    100-LQFP
    LS2088AXN7V1B
    ARM® Cortex®-A72 Microprocessor IC QorIQ® Layerscape 8 Core, 64-Bit 2.0GHz 1292-FCPBGA (37.5x37.5)
    4673
    1292-BFBGA, FCBGA
    GTL2010BS
    Translator Circuit Channel
    2916
    LPC1813JET100551
    ARM® Cortex®-M3 LPC18xx Microcontroller IC 32-Bit Single-Core 180MHz 512KB (512K x 8) FLASH 100-TFBGA (9x9)

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    Introduction

    The MC9S12ZVM-Family is an automotive 16-bit microcontroller family using the NVM + UHV

    technology that offers the capability to integrate 40 V analog components. This family reuses many

    features from the existing S12/S12X portfolio. The particular differentiating features of this family are the

    enhanced S12Z core, the combination of dual-ADC synchronized with PWM generation and the

    integration of “high-voltage” analog modules, including the voltage regulator (VREG), Gate Drive Unit

    (GDU) and a Local Interconnect Network (LIN) physical layer. These features enable a fully integrated

    single chip solution to drive up to 6 external power MOSFETs for BLDC or PMSM motor drive

    applications.

    The MC9S12ZVM-Family includes error correction code (ECC) on RAM and flash memory, EEPROM

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

    locked loop (IPLL) that improves the EMC performance. The MC9S12ZVM-Family delivers an

    optimized solution with the integration of several key system components into a single device, optimizing

    system architecture and achieving significant space savings. The MC9S12ZVM-Family delivers 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 existing S12(X) families. The

    MC9S12ZVM-Family is available in different pin-out options, using the 64-pin LQFP-EP and 48-pin

    LQFP-EP packages to accommodate LIN, CAN and external PWM based application interfaces. 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.

    The MC9S12ZVM-Family is a general-purpose family of devices suitable for a range of applications,

    including:

    • 3-phase sensorless BLDC motor control for

    — Fuel pump

    — Water pump

    — Oil pump

    — A/C compressor

    — HVAC blower

    — Engine cooling fan

    — Electric vehicle battery cooling fan

    • Brush DC motor control requiring driving in 2 directions, along with PWM control for

    — Reversible wiper

    — Trunk opener


    Chip-Level Features

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

    • S12Z CPU core

    • 128, 64, 32 or 16KB on-chip flash with ECC

    • 512 or128 byte EEPROM with ECC

    • 8, 4 or 2 KB on-chip SRAM with ECC

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

    • 1 MHz internal RC oscillator with +/-1.3% accuracy over rated temperature range

    • 4-20MHz amplitude controlled pierce oscillator

    • Internal COP (watchdog) module

    • 6-channel, 15-bit pulse width modulator with fault protection (PMF)

    • Low side and high side FET pre-drivers for each phase

    — Gate drive pre-regulator

    — LDO (Low Dropout Voltage Regulator) (typically 11V)

    — High side gate supply generated using bootstrap circuit with external diode and capacitor

    — Sustaining charge pump with two external capacitors and diodes

    — High side drain (HD) monitoring on internal ADC channel using HD/5 voltage

    • Two parallel analog-to-digital converters (ADC) with 12-bit resolution and up to 9 channels

    available on external pins

    • Programmable Trigger Unit (PTU) for synchronization of PMF and ADC

    • One serial peripheral interface (SPI) module

    • One serial communication interface (SCI) module with interface to internal LIN physical layer

    transceiver (with RX connected to a timer channel for frequency calibration purposes, if desired)

    • Up to one additional SCI (not connected to LIN physical layer)

    • On-chip LIN physical layer transceiver fully compliant with the LIN 2.2 standard

    (S12ZVML versions)

    • One High Voltage physical interface. (S12ZVM32, S12ZVM16 versions only)

    • 4-channel timer module (TIM) with input capture/output compare

    • MSCAN (1 Mbit/s, CAN 2.0 A, B software compatible) module

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

    — Optional VREG ballast control output to supply an external CAN physical layer

    • Two current sense circuits for overcurrent detection or torque measurement

    • Autonomous periodic interrupt (API)

    • 20mA high-current output for use as Hall sensor supply

    • Supply voltage sense with low battery warning

    • Chip temperature sensor


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    How do you identify which pin is pin 1 of an IC integrated circuit chip? |ICONECHIP

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