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NLVHC4020ADTR2 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-55°C ~ 125°C
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Voltage - Supply2 V ~ 6 V
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Trigger TypeNegative Edge
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Count Rate50 MHz
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Timing-
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ResetAsynchronous
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Number of Bits per Element14
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Number of Elements1
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DirectionUp
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Logic TypeBinary Counter
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PackagingTape & Reel (TR)
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Product StatusObsolete
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Series4000B
The NLVHC4020ADTR2 is a specific integrated circuit chip that belongs to the 4000 series of CMOS logic chips. It is a 14-stage binary counter/divider chip with a built-in oscillator and ripple carry output. Here are some advantages and application scenarios of this chip:Advantages: 1. Low power consumption: The NLVHC4020ADTR2 operates at very low power levels, making it suitable for battery-powered devices and energy-efficient applications. 2. Wide operating voltage range: It can operate within a wide voltage range, typically from 3V to 15V, allowing flexibility in various electronic systems. 3. High noise immunity: The CMOS technology used in this chip provides high noise immunity, making it less susceptible to external interference. 4. Compact size: The chip is available in a small surface-mount package, enabling it to be easily integrated into compact electronic designs.Application scenarios: 1. Frequency division: The NLVHC4020ADTR2 can be used as a frequency divider to divide the input clock signal by a factor of 2^14 (16,384). This is useful in applications where a lower frequency clock signal is required, such as in digital clocks, timers, or frequency synthesizers. 2. Time delay generation: By utilizing the ripple carry output, the chip can be used to generate precise time delays. This can be useful in applications like sequential logic circuits, where specific timing sequences need to be achieved. 3. Event counting: The chip can be used to count events or pulses up to 14 bits, allowing for a wide range of counting applications. For example, it can be used in industrial automation systems to count the number of products on a conveyor belt or to monitor the number of rotations of a motor. 4. Frequency measurement: By connecting an external oscillator to the chip's clock input, it can be used to measure the frequency of the input signal. This can be applied in frequency meters, signal analyzers, or other frequency measurement devices.It's important to note that the specific application scenarios may vary depending on the overall system requirements and the integration of this chip with other components.
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