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    A Comprehensive Guide To MC56F8135VFGE Microcontroller IC 16-Bit 40MHz 64KB (32K x 16) FLASH 128-LQFP (14x20)

    56800E 56F8xxx Microcontroller IC 16-Bit 40MHz 64KB (32K x 16) FLASH 128-LQFP (14x20)


    Overview

    Freescale Semiconductor's digital signal controllers (DSC) combine the ease-of-programming provided

    by a microcontroller unit (MCU) with the signal processing power and efficiency of a digital signal

    processor (DSP). The microprocessor-style programming model and optimized instruction set

    allow straightforward generation of efficient, compact code for both DSP and MCU applications.

    The 56F8100 and 56F8300 series are based on the 56800E digital signal controller core that utilizes

    a Harvard architecture consisting of three execution units operating in parallel, allowing as many as six

    operations per instruction cycle. From the broad portfolio of pin-compatible components with various

    combinations of peripheral modules, memory densities and clock speeds, system designers will

    find an ideal component to create their product.

    The 56F8100 series was developed for price-sensitive industrial and consumer applications.

    Devices in the series are ideal for applications requiring intensive computation (for example,

    advanced motor control while handling incoming data). Industrial scenarios include digital power

    conversion, three-phase motor control, power monitoring and building control. Consumer

    applications include electric lawn equipment or exercise equipment such as a treadmill.

    The 56F8100 series includes 40 MIPS processing power, on-chip flash memory and a full assortment 

    of analog and digital peripherals. For applications that require more performance, features, controller

    area network (CAN) connectivity or an extended temperature range, Freescale also offers the

    pin-compatible 56F8300 series.


    56800E Core Features

    > Up to 40 MIPS at a guaranteed 40 MHz core frequency

    > DSP and MCU functionality in a unified, C-efficient architecture

    > JTAG/enhanced on-chip emulation (EOnCE™) for unobtrusive,

    real-time debugging

    > Four 36-bit accumulators

    > 16- and 32-bit bidirectional barrel shifter

    > Parallel instruction set with unique addressing modes

    > Hardware DO and REP loops available

    > Three internal address buses

    > Four internal data buses

    > Architectural support for 8-, 16- and 32-bit single-cycle data fetches

    > MCU-style software stack support

    > Controller-style addressing modes and instructions

    > Single-cycle 16 x 16-bit parallel multiplier-accumulator (MAC)

    > Proven to deliver more control functionality with a smaller memory

    footprint than competing architectures


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





    9343
    128-LQFP
    XPC850SRVR80BU
    MPC8xx Microprocessor IC MPC8xx 1 Core, 32-Bit 80MHz 256-PBGA (23x23)
    3511
    256-BBGA
    MRF6S19120HSR3
    RF Mosfet 28 V 1 A 1.99GHz 15dB 19W NI-780S
    6008
    NI-780S
    MC8640DVU1250HC
    PowerPC e600 Microprocessor IC MPC86xx 2 Core, 32-Bit 1.25GHz 1023-FCCBGA (33x33)
    5405
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    TDA8595SD/N2S,112
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    6275
    MCHC11F1VFNE4
    HC11 HC11 Microcontroller IC 8-Bit 4MHz ROMless 68-PLCC (24.21x24.21)
    4472
    68-LCC (J-Lead)
    MC33771BTP1AER2
    Battery Battery Cell Controller IC Lithium Ion 64-LQFP (10x10)
    4946
    64-LQFP Exposed Pad
    PN7150B0UK/C11002,012
    NFC CONTROLLER WITH INTEGRATED F
    1813
    MC9S08JS16LCFK557
    * Microcontroller IC
    1974
    A Comprehensive Guide To S9S12G128AVLH Microcontroller IC 16-Bit 25MHz 128KB (128K x 8) FLASH 64-LQFP (10x10)

    12V1 HCS12 Microcontroller IC 16-Bit 25MHz 128KB (128K x 8) FLASH 64-LQFP (10x10)


    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


    6149
    64-LQFP
    TEA1522T/N2,518
    Converter Offline Flyback Topology 10kHz ~ 200kHz 14-SO
    5187
    14-SOIC (0.154", 3.90mm Width)
    MRF6S21100HR3
    RF Mosfet 28 V 950 mA 2.11GHz ~ 2.17GHz 15.9dB 23W NI-780H-2L
    1782
    SOT-957A
    MC8641DTHX1000NC
    PowerPC e600 Microprocessor IC MPC86xx 2 Core, 32-Bit 1.0GHz 1023-FCCBGA (33x33)
    4856
    1023-BBGA, FCBGA
    LPC1316FBD48,551
    ARM® Cortex®-M3 LPC13xx Microcontroller IC 32-Bit Single-Core 72MHz 48KB (48K x 8) FLASH 48-LQFP (7x7)

    What are the most common mistakes made when sourcing electronic component? | ICONECHIP

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    A Comprehensive Guide To S9S12G96J0CLF Microcontroller IC 16-bit 25MHz 96KB(96K x 8) Flash 48-LQFP(7x7)

    S12 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

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    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

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    2152
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    S12Z S12 MagniV Microcontroller IC 16-Bit 32MHz 64KB (64K x 8) FLASH 32-LQFP (7x7)
    5050
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    Battery Battery Cell Controller IC Lithium Ion 48-HLQFP (7x7)
    2473
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    12V1 HCS12 Microcontroller IC 16-Bit 25MHz 32KB (32K 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


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    48-LQFP
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