| Allicdata Part #: | MAX111BEWE+T-ND |
| Manufacturer Part#: |
MAX111BEWE+T |
| Price: | $ 6.63 |
| Product Category: | Integrated Circuits (ICs) |
| Manufacturer: | Maxim Integrated |
| Short Description: | IC ADC 14BIT 2CH 16-SOIC |
| More Detail: | 14 Bit Analog to Digital Converter 2 Input 1 Sigma... |
| DataSheet: | MAX111BEWE+T Datasheet/PDF |
| Quantity: | 1000 |
| 1000 +: | $ 6.02283 |
| Number of A/D Converters: | 1 |
| Base Part Number: | MAX111 |
| Supplier Device Package: | 16-SOIC |
| Package / Case: | 16-SOIC (0.295", 7.50mm Width) |
| Operating Temperature: | -40°C ~ 85°C |
| Features: | -- |
| Voltage - Supply, Digital: | 5V |
| Voltage - Supply, Analog: | 5V |
| Reference Type: | External |
| Architecture: | Sigma-Delta |
| Series: | -- |
| Ratio - S/H:ADC: | -- |
| Configuration: | MUX-ADC |
| Data Interface: | SPI |
| Input Type: | Differential |
| Number of Inputs: | 2 |
| Sampling Rate (Per Second): | 50 |
| Number of Bits: | 14 |
| Part Status: | Active |
| Packaging: | Tape & Reel (TR) |
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Data acquisition is a process used to convert signals from the physical world into digital data that can be used by computer systems. Analog to Digital Converters (ADCs) are a type of data acquisition device that can be used to convert analog signals into digital data. One type of ADC is the MAX111BEWE+T, which is a low-power, single-channel, C-MOS analog-to-digital converter.
The MAX111BEWE+T ADC provides accuracy of 15-bit over its entire conversion range, and features a wide power supply range. Its 10/14-pin dual-in-line package makes it ideal for applications where small size and low cost are important. The MAX111BEWE+T ADC works with an external precision reference voltage, and uses a successive approximation technique for converting analog inputs into the digital domain.
The MAX111BEWE+T ADC can be used in a variety of applications, including medical and consumer electronics, industrial, automotive, and measuring systems. It can be used to convert analog signals that represent temperature, humidity, pressure, strain, position and velocity into digital data. The ADC can be used to build a data acquisition system by interfacing with other components such as microcontrollers, microprocessors, and analog-to-digital transducers.
The MAX111BWE+T ADC works by first converting an analog voltage into a binary representation of the voltage. This is done by first converting the analog signal into a digital code by clocking the successive approximation register (SAR). The SAR then converts the input voltage into a digital code by comparing the input voltage to a reference voltage. The digital code is then stored in the output register. The ADC also features a zero-crossing detector (ZCD) to detect any voltages that are greater than or equal to zero, and a built-in temperature sensor to detect changes in temperature.
The MAX111BEWE+T ADC also features a range of other features such as Hz timer, an overvoltage detection circuit, and an autocalibration circuit. The Hz timer is used to measure the rate at which the analog voltage is changing, and the overvoltage detection circuit is used to detect any input voltages that are too high. The autocalibration circuit helps to maintain accuracy by automatically adjusting the reference voltage as the temperature changes. This helps to maintain accuracy over time.
Overall, the MAX111BEWE+T ADC is a low-cost, low-power solution for measuring small signals. Its accuracy, wide power supply range, and range of features make it ideal for applications where small size and cost are important. The ADC can be used to convert analog signals such as temperature, humidity, pressure, strain, and position into digital data, and can be used to build a data acquisition system by interfacing with other components.
The specific data is subject to PDF, and the above content is for reference
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MAX111BEWE+T Datasheet/PDF