Original and New ADC0808CCN PDIP-28 Analog to Digital Converter ADC
Number of Channels: It is a single-channel ADC, designed to convert one analog signal at a time.
Successive Approximation ADC: The ADC0808 uses the successive approximation technique to convert analog signals into digital data. It sequentially approximates the input voltage in comparison with a reference voltage.
Conversion Time: The conversion time for the ADC0808 is determined by the successive approximation process and typically ranges from microseconds to milliseconds, depending on the clock frequency.
Input Range: The input range of the ADC0808 depends on the reference voltage applied. It is essential to provide a stable and accurate reference voltage for proper conversion.
Analog Input Voltage Range: The analog input voltage range is typically determined by the reference voltage. Ensure that the input voltage does not exceed the reference voltage.
Digital Outputs: The ADC0808 provides 8 digital outputs representing the converted digital value. These outputs are available in parallel.
Clock Input: The ADC0808 requires an external clock signal (CLK) to control the conversion process.
Start Conversion: The conversion process is initiated by a start signal (ST) which can be triggered externally.
Output Latches: The ADC0808 features output latches that hold the digital output values until a new conversion is complete.
Power Supply: The ADC0808 typically operates on a single power supply in the range of 4.5 to 6V.
Original and New ADC0808CCN PDIP-28 Analog to Digital Converter ADC
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- Product SKU: INTEG013
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Warehouse Details
Specification
Description
The ADC0808 is an analog-to-digital converter (ADC) IC, specifically an 8-bit successive approximation type ADC.Here's a Brief Description:
Resolution: The ADC0808 has an 8-bit resolution, meaning it can represent analog signals with 2^8 = 256 different digital values.Number of Channels: It is a single-channel ADC, designed to convert one analog signal at a time.
Successive Approximation ADC: The ADC0808 uses the successive approximation technique to convert analog signals into digital data. It sequentially approximates the input voltage in comparison with a reference voltage.
Conversion Time: The conversion time for the ADC0808 is determined by the successive approximation process and typically ranges from microseconds to milliseconds, depending on the clock frequency.
Input Range: The input range of the ADC0808 depends on the reference voltage applied. It is essential to provide a stable and accurate reference voltage for proper conversion.
Analog Input Voltage Range: The analog input voltage range is typically determined by the reference voltage. Ensure that the input voltage does not exceed the reference voltage.
Digital Outputs: The ADC0808 provides 8 digital outputs representing the converted digital value. These outputs are available in parallel.
Clock Input: The ADC0808 requires an external clock signal (CLK) to control the conversion process.
Start Conversion: The conversion process is initiated by a start signal (ST) which can be triggered externally.
Output Latches: The ADC0808 features output latches that hold the digital output values until a new conversion is complete.
Power Supply: The ADC0808 typically operates on a single power supply in the range of 4.5 to 6V.
Applications:
Common applications include interfacing with microcontrollers and digital systems to convert analog sensor signals (such as temperature, light, etc.) into digital data.Technical Details
- Package/Case: PDIP-28
- Minimum Supply Voltage (V): 4.5
- Maximum Supply Voltage (V): 6 V
- Product Type: Analog to Digital Converters – ADC
- Product Series: ADC0808-N
- Mounting Type: Through Hole
- Resolution: 8 bit
- Number of Channels: 8 Channel
- Sampling Rate: 10 kS/s
- Input Type: Single-Ended
- Interface Type: Parallel
- Architecture: SAR
- Power Consumption: 15 mW
- Product Type: S/H ADC-Analog to Digital Converters
- Pd - Power Dissipation: 875 mW
Features
- Easy interface to all microprocessors 8 Bits Resolution
- Total Unadjusted Error ±½ LSB and ±1 LSB
- Low Power: 15 mW
- Conversion Time: 100 μs
- Operates ratiometrically or with 5VDC or analog span-adjusted voltage reference
- No zero or full-scale adjust required
- Green product and no Sb/Br
- Applications: Automation & Process Control, Signal Processing
Physical Attributes
- Dimensions (mm) LxWxH: 36.83 x 13.72 x 3.81
- Weight (gm) : 2