| Allicdata Part #: | AD674BKNZ-ND |
| Manufacturer Part#: |
AD674BKNZ |
| Price: | $ 0.00 |
| Product Category: | Integrated Circuits (ICs) |
| Manufacturer: | Analog Devices Inc. |
| Short Description: | IC ADC 12BIT MONO 3OUT 28DIP |
| More Detail: | 12 Bit Analog to Digital Converter 2 Input 1 SAR 2... |
| DataSheet: | AD674BKNZ Datasheet/PDF |
| Quantity: | 10 |
| Number of A/D Converters: | 1 |
| Base Part Number: | AD674 |
| Supplier Device Package: | 28-PDIP |
| Package / Case: | 28-DIP (0.600", 15.24mm) |
| Operating Temperature: | 0°C ~ 70°C |
| Features: | -- |
| Voltage - Supply, Digital: | 5V |
| Voltage - Supply, Analog: | ±11.4 V ~ 16.5 V |
| Reference Type: | External, Internal |
| Architecture: | SAR |
| Series: | -- |
| Ratio - S/H:ADC: | -- |
| Configuration: | ADC |
| Data Interface: | Parallel |
| Input Type: | Single Ended |
| Number of Inputs: | 2 |
| Sampling Rate (Per Second): | -- |
| Number of Bits: | 12 |
| Part Status: | Active |
| Packaging: | Tube |
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Data Acquisition - Analog to Digital Converters (ADC) encompasses a range of technologies used to convert analog signals, such as voltage, current, or pressure, into digital signals analogous to ones and zeros. The way they work is through the comparison of a measured input sample with a reference voltage, finding the point of equilibrium by continuously adjusting the sample against the reference voltage until the two signals match. As a result, this enables analog-to-digital converters to convert complex analog signals into bytes of data.The AD674BKNZ is an analog to digital converter in particular. It is a precision 8-bit monolithic CMOS converter that accepts analog voltages ranging from 0 to 7.5 Volts. It is a single-slope integrating design, meaning that each analog-to-digital conversion takes a finite amount of time when compared to a successive-approximation design. This gives it a relatively slow conversion time of 320µs. The device features an on-chip reference, temperature sensor, and calibration controller, enabling the converter to achieve an accuracy of ±2 LSB maximum.The AD674BKNZ is used in a variety of applications. It is ideal for industrial and medical instrumentation, controlling systems, and other applications where low-cost, low-power, and low-distortion operation are requirements. For example, it is typically used as a data acquisition component in laboratory instruments and medical equipment. Additionally, it is often used as an A/D converter in motor control and feedback control systems, as well as power management systems. It can be used to monitor temperatures in HVAC systems, and even in smart meters and low-cost energy monitoring systems.The device features a dual-range A/D input stage that allows it to take readings from both low-level signals (±1.25V) and higher-level signals (0-7.5V). Its low-voltage offset and 24mV transfer function also make it ideal for various voltage source monitoring applications, such as automotive or industrial battery systems.The working principle of the AD674BKNZ is relatively simple. It uses the dual-range A/D input stage to continuously monitor the input signal and compare it with the on-chip reference voltage. When the voltage difference between the two signals is reduced to within a predetermined precision, the converter will output a digital number in binary form, representing the magnitude of the measured signal. In other words, the device is continuously adjusting the sample against the reference voltage until the two signals match, thereby achieving the desired accuracy.To summarize, the AD674BKNZ is an analog to digital converter, designed for industrial and medical instrumentation and systems where low-cost, low-power, and low-distortion operation are required. It is a precision 8-bit monolithic CMOS device featuring a dual-range A/D input stage and on-chip reference, temperature sensor, and calibration controller. It has a relatively slow conversion time of 320µs and can be used to measure various voltage sources, such as automotive or industrial battery systems. The working principle of the device is based on the continuous comparing of the input signal to the on-chip reference voltage, until the two signals match, at which point the converter will output a digital number in binary form, representing the magnitude of the measured signal.
The specific data is subject to PDF, and the above content is for reference
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AD674BKNZ Datasheet/PDF