Texas Instruments_AMC1301DWVR

Texas Instruments
AMC1301DWVR  
OP Amps, Buffer Amps ICs

Texas Instruments
AMC1301DWVR
687-AMC1301DWVR
Ersa
Texas Instruments-AMC1301DWVR-datasheets-3898272.pdf
IC OPAMP ISOLATION 1 CIRC 8SOIC
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    AMC1301DWVR Description

    The AMC1301DWVR is a high-performance, low-power, single-chip Bluetooth Low Energy (BLE) SoC (System on Chip) from Texas Instruments. It is designed to provide a comprehensive solution for wireless connectivity in a wide range of applications, including home automation, health and fitness, and industrial control.

    Description:

    The AMC1301DWVR is a highly integrated BLE SoC that combines a powerful ARM Cortex-M3 processor, a high-performance BLE radio, and a rich set of peripherals. It is built on a 40nm CMOS process, which enables it to achieve ultra-low power consumption while maintaining high performance.

    Features:

    1. ARM Cortex-M3 Processor: The AMC1301DWVR features a 32-bit ARM Cortex-M3 processor that operates at up to 48MHz, providing high computational power for complex applications.
    2. BLE Radio: The SoC includes a high-performance BLE radio that supports Bluetooth 5.0 and is compatible with Apple's iBeacon and Google's Eddystone protocols.
    3. Low Power Consumption: The AMC1301DWVR is designed for ultra-low power operation, with a typical current consumption of less than 3mA in active mode and less than 1µA in sleep mode.
    4. Rich Peripheral Set: The SoC includes a wide range of peripherals, including UART, SPI, I2C, ADC, and PWM, to support various application requirements.
    5. Integrated Memory: The AMC1301DWVR features up to 256KB of flash memory and 32KB of RAM, providing ample storage for application code and data.
    6. Security Features: The SoC includes advanced security features, such as AES-128 encryption and secure boot, to protect against unauthorized access and tampering.
    7. Development Tools: Texas Instruments provides a comprehensive set of development tools, including the Code Composer Studio (CCS) IDE, a range of software libraries, and a development board for the AMC1301DWVR.

    Applications:

    The AMC1301DWVR is suitable for a wide range of applications that require wireless connectivity and low power consumption. Some of the key applications include:

    1. Home Automation: The AMC1301DWVR can be used to create smart home devices, such as smart switches, smart plugs, and smart lighting systems, that can be controlled remotely via a smartphone or tablet.
    2. Health and Fitness: The SoC can be used in wearable devices, such as fitness trackers and heart rate monitors, to wirelessly transmit data to a smartphone or tablet for analysis and tracking.
    3. Industrial Control: The AMC1301DWVR can be used in industrial control systems, such as sensor networks and remote monitoring systems, to transmit data wirelessly to a central control unit.
    4. Asset Tracking: The SoC can be used in asset tracking systems to monitor the location and status of valuable assets in real-time.
    5. Medical Devices: The AMC1301DWVR can be used in wireless medical devices, such as glucose monitors and blood pressure monitors, to transmit data to a smartphone or tablet for analysis and storage.

    In summary, the AMC1301DWVR from Texas Instruments is a powerful, low-power BLE SoC that offers a comprehensive solution for wireless connectivity in a wide range of applications. Its advanced features, such as a powerful ARM Cortex-M3 processor, high-performance BLE radio, and rich set of peripherals, make it an ideal choice for developers looking to create innovative and energy-efficient wireless devices.

    Tech Specifications

    Voltage - Supply Span (Max)
    Number of Channels per Chip
    Power Supply Type
    Maximum Supply Voltage Range (V)
    Maximum Input Offset Voltage (mV)
    PPAP
    Gain Bandwidth Product
    Product Status
    Current - Input Bias
    Automotive
    Supplier Package
    Package / Case
    REACH Status
    Maximum Operating Supply Voltage (V)
    EU RoHS
    Amplifier Type
    Maximum Dual Supply Voltage (V)
    Moisture Sensitivity Level (MSL)
    Operating Temperature
    ECCN
    Supplier Temperature Grade
    Mounting Type
    Current - Supply
    Standard Package Name
    Pin Count
    Mounting
    Minimum PSRR (dB)
    Typical Dual Supply Voltage (V)
    Voltage - Supply Span (Min)
    Lead Shape
    HTSUS
    Package
    Current - Output / Channel
    Minimum CMRR (dB)
    PCB changed
    Output Type
    HTS
    Number of Elements per Chip
    ECCN (US)
    Maximum Power Dissipation (mW)
    Supplier Device Package
    Minimum CMRR Range (dB)
    Minimum Operating Temperature (°C)
    Maximum Operating Temperature (°C)
    Package Height
    Mfr
    RoHS Status
    Maximum Input Bias Current (uA)
    Slew Rate
    Package Length
    Minimum Dual Supply Voltage (V)
    Maximum Supply Current (mA)
    Voltage - Input Offset
    Series
    Type
    Part Status
    Number of Circuits
    Package Width
    Base Product Number
    Unit Weight
    3 dB Bandwidth
    Vos - Input Offset Voltage
    Product
    Isolation Type
    RoHS
    Supply Voltage - Min
    Operating Supply Current
    Number of Channels
    Gain Error
    Maximum Operating Temperature
    Ib - Input Bias Current
    Supply Voltage - Max
    Mounting Style
    Isolation Voltage
    PSRR - Power Supply Rejection Ratio
    Gain V/V
    Minimum Operating Temperature
    CMRR - Common Mode Rejection Ratio
    Shutdown
    Moisture Sensitive
    Output Current per Channel
    Pd - Power Dissipation
    USHTS
    GBP - Gain Bandwidth Product

    AMC1301DWVR Documents

    Download datasheets and manufacturer documentation for AMC1301DWVR

    Ersa Data Sheet Change (PDF)      
    Ersa Mechanical Outline Drawing      
    Ersa Product Change Notification 2024-06-11 (PDF)       Product Change Notification (PDF)      
    Ersa AMC1301DWVR Symbol & Footprint by SnapMagic      
    Ersa Understanding isolation terminology and relevance      
    Ersa Interfacing a Differential-Output (Isolated) Amp to a Single-Ended Input ADC       Isolated Voltage-Measurement Circuit With +/-250-mV Input and Differential Output (Rev. A)       Thermocouple Temperature Measurements Using Isolated Amplifiers (Rev. A)       Isolated voltage-measurement circuit with ±250-mV input and differential output      
    Ersa AMC1301 TINA-TI Reference Design (Rev. A)      
    Ersa AMC1301 PSpice Model (Rev. B)       AMC1301 TINA-TI Spice Model (Rev. A)       AMC1301 PSpice Model (Rev. D)      

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