SN74LV367APWR
Manufacturer No:
SN74LV367APWR
Manufacturer:
Description:
IC BUF NON-INVERT 5.5V 16TSSOP
Datasheet:
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In Stock : 25873
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SN74LV367APWR Specifications
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TypeParameter
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Supplier Device Package16-TSSOP
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Package / Case16-TSSOP (0.173", 4.40mm Width)
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Mounting TypeSurface Mount
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Operating Temperature-40°C ~ 85°C (TA)
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Voltage - Supply2V ~ 5.5V
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Current - Output High, Low16mA, 16mA
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Output Type3-State
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Input Type-
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Number of Bits per Element2, 4 (Hex)
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Number of Elements2
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Logic TypeBuffer, Non-Inverting
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PackagingCut Tape (CT)
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PackagingTape & Reel (TR)
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Product StatusActive
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Series74LV
The dsPIC33FJ64MC710-I/PT is a microcontroller integrated circuit (IC) chip designed by Microchip Technology. It is a high-performance digital signal controller (DSC) that combines the capabilities of a microcontroller and a digital signal processor (DSP). Here are some advantages and application scenarios for this particular IC chip:Advantages:1. High Performance: The dsPIC33FJ64MC710-I/PT offers high performance through its 16-bit microcontroller core and powerful DSP capabilities. It can execute instructions at 40 MIPS (Million Instructions Per Second), enabling efficient processing of computationally intensive tasks.2. Digital Signal Processing (DSP) Capabilities: The integrated DSP functionality allows the chip to efficiently handle algorithms and computations required in various applications such as audio processing, motor control, power electronics, and more.3. Anaboda Enhanced PWM (EPWM) Modules: This IC chip has advanced EPWM modules that offer high-resolution pulse-width modulation (PWM) outputs, enabling precise control over timing and signal generation. This makes it suitable for applications like motor control, power converters, and lighting control.4. Peripherals and Communication Interfaces: The dsPIC33FJ64MC710-I/PT offers a wide range of peripherals and communication interfaces, including multiple UART, SPI, I2C, and USB interfaces. It also provides a rich set of timers and interrupts, enabling seamless communication with other devices and peripherals.5. Low Power Consumption: This IC chip features power-saving modes and techniques, allowing it to be used in power-constrained applications and battery-operated devices. The power-saving modes help optimize power consumption without compromising performance.Application Scenarios:1. Motor Control: The dsPIC33FJ64MC710-I/PT is suitable for motor control applications, such as servo motors, brushless DC motors, stepper motors, and AC induction motors. Its high-performance core and DSP capabilities enable precise and efficient control algorithms for motor speed, position, and torque.2. Power Electronics: With its enhanced PWM modules and powerful DSP capabilities, this IC chip is well-suited for applications in power electronics, such as inverters, power converters, uninterruptible power supplies (UPS), and power factor correction. It allows for accurate control of power switching devices and efficient power management.3. Audio Processing: The integrated DSP functionalities make the dsPIC33FJ64MC710-I/PT an excellent choice for audio processing applications like audio effects, sound synthesis, and digital audio processing. It can efficiently handle computations required for audio algorithms and provide high-quality output.4. Industrial Automation: The IC chip's high-performance core, rich set of peripherals, and communication interfaces make it suitable for industrial automation applications like PLCs (Programmable Logic Controllers), robotics, and industrial control systems.5. Lighting Control: The advanced EPWM modules and communication interfaces enable the dsPIC33FJ64MC710-I/PT to be used in lighting control applications, including LED lighting, dimming systems, and color mixing. It allows precise control over lighting parameters and offers flexibility in creating various lighting effects.Overall, the dsPIC33FJ64MC710-I/PT IC chip offers a combination of high-performance computing, powerful DSP capabilities, and versatile peripherals, making it suitable for a wide range of applications requiring efficient signal processing, control, and communication.
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