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NXP USA Inc.

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Results: 110021
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    Rfq
    BFU550XRVL
    RF Transistor NPN 12V 50mA 11GHz 450mW Surface Mount SOT-143R
    4012
    SOT-143R
    SPC5602DF1MLL4R
    e200z0h MPC56xx Qorivva Microcontroller IC 32-Bit Single-Core 48MHz 256KB (256K x 8) FLASH 100-LQFP (14x14)
    5026
    100-LQFP
    HEC4013BT/C118
    Flip Flop Element Bit
    10
    74HC27PW,112
    NOR Gate IC 3 Channel 14-TSSOP
    9350
    14-TSSOP (0.173", 4.40mm Width)
    SPC5777CSK3MME4R
    * Microcontroller IC
    5072
    P87LPC778FDH,529
    8051 LPC700 Microcontroller IC 8-Bit 20MHz 8KB (8K x 8) OTP 20-TSSOP
    7799
    20-TSSOP (0.173", 4.40mm Width)
    KMPC855TZQ80D4
    MPC8xx Microprocessor IC MPC8xx 1 Core, 32-Bit 80MHz 357-PBGA (25x25)
    2597
    357-BBGA
    MCF52100CAE80
    Coldfire V2 MCF521xx Microcontroller IC 32-Bit Single-Core 80MHz 64KB (64K x 8) FLASH 64-LQFP (10x10)
    1818
    64-LQFP
    BFU610F,115
    RF Transistor NPN 5.5V 10mA 15GHz 136mW Surface Mount 4-DFP
    2
    SOT-343F
    LPC11U68JBD48E
    ARM® Cortex®-M0+ LPC11Uxx Microcontroller IC 32-Bit Single-Core 50MHz 256KB (256K x 8) FLASH 48-LQFP (7x7)
    2190
    48-LQFP
    SPC5603BAVLQ4
    e200z0h MPC56xx Qorivva Microcontroller IC 32-Bit Single-Core 48MHz 384KB (384K x 8) FLASH 144-LQFP (20x20)
    1932
    144-LQFP
    HEF4011BT/C1118
    IC Channel
    4444
    S9KEAZ64ACLH
    ARM® Cortex®-M0+ Kinetis KEA Microcontroller IC 32-Bit Single-Core 48MHz 64KB (64K x 8) FLASH 64-LQFP (10x10)
    6549
    64-LQFP
    A Comprehensive Guide To MC56F8345MFGE Microcontroller IC 16-Bit 60MHz 128KB (64K x 16) FLASH 128-LQFP (14x20)

    56800E 56F8xxx Microcontroller IC 16-Bit 60MHz 128KB (64K x 16) FLASH 128-LQFP (14x20)


    Device Description

    The 56F8345 and 56F8145 are members of the 56800E core-based family of controllers. Each combines,

    on a single chip, the processing power of a Digital Signal Processor (DSP) and the functionality of a

    microcontroller with a flexible set of peripherals to create an extremely cost-effective solution. Because

    of their low cost, configuration flexibility, and compact program code, the 56F8345 and 56F8145 are

    well-suited for many applications. The devices include many peripherals that are especially useful for

    motion control, smart appliances, steppers, encoders, tachometers, limit switches, power supply and

    control, automotive control (56F8345 only), engine management, noise suppression, remote utility

    metering, industrial control for power, lighting, and automation applications.

    The 56800E core is based on a Harvard-style architecture consisting of three execution units operating in

    parallel, allowing as many as six operations per instruction cycle. The MCU-style programming model and

    optimized instruction set allow straightforward generation of efficient, compact DSP and control code.

    The instruction set is also highly efficient for C/C++ Compilers to enable rapid development of optimized

    control applications.

    The 56F8345 and 56F8145 support program execution from internal memories. Two data operands can be

    accessed from the on-chip data RAM per instruction cycle. These devices also provide two external

    dedicated interrupt lines and up to 49 General Purpose Input/Output (GPIO) lines, depending on peripheral

    configuration


    56F8345 Features

    The 56F8345 controller includes 128KB of Program Flash and 8KB of Data Flash (each programmable

    through the JTAG port) with 4KB of Program RAM and 8KB of Data RAM. A total of 8KB of Boot Flash

    is incorporated for easy customer inclusion of field-programmable software routines that can be used to

    program the main Program and Data Flash memory areas. Both Program and Data Flash memories can be

    independently bulk erased or erased in pages. Program Flash page erase size is 1KB. Boot and Data Flash

    page erase size is 512 bytes. The Boot Flash memory can also be either bulk or page erased.

    A key application-specific feature of the 56F8345 is the inclusion of two Pulse Width Modulator (PWM)

    modules. These modules each incorporate three complementary, individually programmable PWM signal

    output pairs (each module is also capable of supporting six independent PWM functions, for a total of 12

    PWM outputs) to enhance motor control functionality. Complementary operation permits programmable

    dead time insertion, distortion correction via current sensing by software, and separate top and bottom

    output polarity control. The up-counter value is programmable to support a continuously variable PWM

    frequency. Edge-aligned and center-aligned synchronous pulse width control (0% to 100% modulation) is

    supported. The device is capable of controlling most motor types: ACIM (AC Induction Motors); both

    BDC and BLDC (Brush and Brushless DC motors); SRM and VRM (Switched and Variable Reluctance

    Motors); and stepper motors. The PWMs incorporate fault protection and cycle-by-cycle current limiting

    with sufficient output drive capability to directly drive standard optoisolators. A “smoke-inhibit”,

    write-once protection feature for key parameters is also included. A patented PWM waveform distortion

    correction circuit is also provided. Each PWM is double-buffered and includes interrupt controls to permit

    integral reload rates to be programmable from 1 to 16. The PWM modules provide reference outputs to

    synchronize the Analog-to-Digital Converters through two channels of Quad Timer C.

    The 56F8345 incorporates two Quadrature Decoders capable of capturing all four transitions on the

    two-phase inputs, permitting generation of a number proportional to actual position. Speed computation

    capabilities accommodate both fast- and slow-moving shafts. An integrated watchdog timer in the

    Quadrature Decoder can be programmed with a time-out value to alert when no shaft motion is detected.

    Each input is filtered to ensure only true transitions are recorded.

    This controller also provides a full set of standard programmable peripherals that include two Serial

    Communications Interfaces (SCIs); two Serial Peripheral Interfaces (SPIs); and four Quad Timers. Any of

    these interfaces can be used as General Purpose Input/Outputs (GPIOs) if that function is not required. A

    Flex Controller Area Network (FlexCAN) interface (CAN Version 2.0 B-compliant) and an internal

    interrupt controller are also a part of the 56F8345.


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





    4507
    128-LQFP
    PCA9538PW,118
    I/O Expander 8 I²C, SMBus 400 kHz 16-TSSOP
    1
    16-TSSOP (0.173", 4.40mm Width)
    KMPC857TVR100B
    MPC8xx Microprocessor IC MPC8xx 1 Core, 32-Bit 100MHz 357-PBGA (25x25)
    1103
    357-BBGA
    MCF54451CVM180
    Coldfire V4 MCF5445x Microcontroller IC 32-Bit Single-Core 180MHz ROMless 256-MAPBGA (17x17)
    2430
    256-LBGA
    ADC1012D125HN/C1,5
    Bit Analog to tal Converter Input
    7920
    PCA9616PW,118
    Buffer, ReDriver 3 Channel 400kHz 16-TSSOP
    14
    16-TSSOP (0.173", 4.40mm Width)
    SPC5603BK0CLQ4R
    e200z0h MPC56xx Qorivva Microcontroller IC 32-Bit Single-Core 48MHz 384KB (384K x 8) FLASH 144-LQFP (20x20)
    5717
    144-LQFP
    74HC4050D-Q100118
    Buffer, Non-Inverting 6 Element 1 Bit per Element Push-Pull Output 16-SO
    8078
    16-SOIC (0.154", 3.90mm Width)
    MC34SB0800AER2
    Pump, Valve Controller PMIC 64-LQFP (10x10)
    4
    64-LQFP Exposed Pad
    A Comprehensive Guide To MC9S12C32CFUE25 Microcontroller IC 16-Bit 25MHz 32KB (32K x 8) FLASH 80-QFP (14x14)

    HCS12 HCS12 Microcontroller IC 16-Bit 25MHz 32KB (32K x 8) FLASH 80-QFP (14x14)


    Introduction

    The MC9S12C-Family / MC9S12GC-Family are 48/52/80 pin Flash-based MCU families, which deliver

    the power and flexibility of the 16-bit core to a whole new range of cost and space sensitive, general

    purpose industrial and automotive network applications. All MC9S12C-Family / MC9S12GC-Family

    members feature standard on-chip peripherals including a 16-bit central processing unit (CPU12), up to

    128K bytes of Flash EEPROM, up to 4K bytes of RAM, an asynchronous serial communications interface

    (SCI), a serial peripheral interface (SPI), an 8-channel 16-bit timer module (TIM), a 6-channel 8-bit pulse

    width modulator (PWM), an 8-channel, 10-bit analog-to-digital converter (ADC).

    The MC9S12C128-Family members also feature a CAN 2.0 A, B software compatible module

    (MSCAN12).

    All MC9S12C-Family / MC9S12GC-Family devices feature full 16-bit data paths throughout. The

    inclusion of a PLL circuit allows power consumption and performance to be adjusted to suit operational

    requirements. In addition to the I/O ports available in each module, up to 10 dedicated I/O port bits are

    available with wake-up capability from stop or wait mode. The devices are available in 48-, 52-, and 80-

    pin QFP packages, with the 80-pin version pin compatible to the HCS12 A, B, and D Family derivatives.


    Features

    • 16-bit HCS12 core:

    — HCS12 CPU

    – Upward compatible with M68HC11 instruction set

    – Interrupt stacking and programmer’s model identical to M68HC11

    – Instruction queue

    – Enhanced indexed addressing

    — MMC (memory map and interface)

    — INT (interrupt control)

    — BDM (background debug mode)

    — DBG12 (enhanced debug12 module, including breakpoints and change-of-flow trace buffer)

    — MEBI (multiplexed expansion bus interface) available only in 80-pin package version

    • Wake-up interrupt inputs:

    — Up to 12 port bits available for wake up interrupt function with digital filtering

    • Memory options:

    — 16K or 32Kbyte Flash EEPROM (erasable in 512-byte sectors)

    64K, 96K, or 128Kbyte Flash EEPROM (erasable in 1024-byte sectors)

    — 1K, 2K or 4K Byte RAM

    • Analog-to-digital converters:

    — One 8-channel module with 10-bit resolution

    — External conversion trigger capability

    • Available on MC9S12C Family:

    — One 1M bit per second, CAN 2.0 A, B software compatible module

    — 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

    • Timer module (TIM):

    — 8-channel timer

    — Each channel configurable as either input capture or output compare

    — Simple PWM mode

    — Modulo reset of timer counter

    — 16-bit pulse accumulator

    — External event counting

    — Gated time accumulation

    • PWM module:

    — Programmable period and duty cycle

    — 8-bit 6-channel or 16-bit 3-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

    • Serial interfaces:

    — One asynchronous serial communications interface (SCI)

    — One synchronous serial peripheral interface (SPI)

    • CRG (clock reset generator module)

    — Windowed COP watchdog

    — Real time interrupt

    — Clock monitor

    — Pierce or low current Colpitts oscillator

    — Phase-locked loop clock frequency multiplier

    — Limp home mode in absence of external clock

    — Low power 0.5MHz to 16MHz crystal oscillator reference clock

    • Operating frequency:

    — 32MHz equivalent to 16MHz bus speed for single chip

    — 32MHz equivalent to 16MHz bus speed in expanded bus modes

    — Option of 9S12C Family: 50MHz equivalent to 25MHz bus speed

    — All 9S12GC Family members allow a 50MHz operating frequency.

    • Internal 2.5V regulator:

    — Supports an input voltage range from 2.97V to 5.5V

    — Low power mode capability

    — Includes low voltage reset (LVR) circuitry

    — Includes low voltage interrupt (LVI) circuitry

    • 48-pin LQFP, 52-pin LQFP, or 80-pin QFP package:

    — Up to 58 I/O lines with 5V input and drive capability (80-pin package)

    — Up to 2 dedicated 5V input only lines (IRQ, XIRQ)

    — 5V 8 A/D converter inputs and 5V I/O

    • Development support:

    — Single-wire background debug™ mode (BDM)

    — On-chip hardware breakpoints

    — Enhanced DBG12 debug features


    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?



    8920
    80-QFP
    PCA9543AD,118
    2-Channel I²C Multiplexer Interface 14-SO
    289
    14-SOIC (0.154", 3.90mm Width)
    KMPC860DPVR80D4
    MPC8xx Microprocessor IC MPC8xx 1 Core, 32-Bit 80MHz 357-PBGA (25x25)
    2496
    357-BBGA
    MCIMX31CVKN5CR2
    ARM1136JF-S Microprocessor IC i.MX31 1 Core, 32-Bit 532MHz 457-LFBGA (14x14)
    1537
    457-LFBGA
    TDA19989AET/C181'5
    Video Transmitter IC I²C CEA-861B, DVI 1.0, HDCP 1.3, HDMI v1.3a, ITU656 64-TFBGA (4.5x4.5) Package
    1507
    64-TFBGA
    TDA8035HN/C1/S1QL
    Interface 32-HVQFN (5x5)
    6179
    32-VFQFN Exposed Pad
    SPC5603EEF2MLH
    e200z0h MPC56xx Qorivva Microcontroller IC 32-Bit Single-Core 64MHz 512KB (512K x 8) FLASH 64-LQFP (10x10)
    5403
    64-LQFP
    74AHC00D/C4118
    IC Channel
    6056

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