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MAX196ACNI+ from MAXIM,MAXIM - Dallas Semiconductor

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MAX196ACNI+

Manufacturer: MAXIM

6-Channel, Multirange, 5V, 12-Bit DAS with 12-Bit Bus Interface and Fault Protection

Partnumber Manufacturer Quantity Availability
MAX196ACNI+,MAX196ACNI MAXIM 17 In Stock

Description and Introduction

6-Channel, Multirange, 5V, 12-Bit DAS with 12-Bit Bus Interface and Fault Protection The MAX196ACNI+ is a 12-bit, 8-channel, serial-output analog-to-digital converter (ADC) manufactured by Maxim Integrated. Below are its key specifications, descriptions, and features:

### **Specifications:**
- **Resolution:** 12-bit  
- **Channels:** 8 single-ended or 4 pseudo-differential  
- **Sampling Rate:** Up to 133ksps (kilosamples per second)  
- **Input Voltage Range:** 0V to VREF (programmable)  
- **Reference Voltage:** Internal (4.096V) or external (1.25V to VDD)  
- **Supply Voltage (VDD):** +5V ±10%  
- **Power Consumption:** 5mW (typical)  
- **Interface:** SPI/QSPI/MICROWIRE-compatible serial interface  
- **Operating Temperature Range:** -40°C to +85°C  
- **Package:** 28-pin PDIP  

### **Descriptions:**
- The MAX196ACNI+ is a high-speed, low-power, multichannel ADC with an internal track/hold circuit.  
- It features a successive-approximation register (SAR) architecture for accurate conversions.  
- The device includes a programmable internal reference and supports both single-ended and pseudo-differential input configurations.  
- It is designed for applications requiring high-speed data acquisition with minimal power consumption.  

### **Features:**
- **Low Power:** 5mW typical power consumption  
- **Flexible Input Configuration:** 8 single-ended or 4 pseudo-differential channels  
- **Internal Reference:** 4.096V with ±1% accuracy  
- **Serial Interface:** Compatible with SPI, QSPI, and MICROWIRE  
- **Software-Configurable:** Unipolar/bipolar, single-ended/differential modes  
- **Internal Track/Hold:** Eliminates the need for an external sample-and-hold circuit  
- **Power-Down Mode:** Reduces power consumption when idle  

This information is based on the manufacturer's datasheet for the MAX196ACNI+.

Application Scenarios & Design Considerations

6-Channel, Multirange, 5V, 12-Bit DAS with 12-Bit Bus Interface and Fault Protection
Partnumber Manufacturer Quantity Availability
MAX196ACNI+,MAX196ACNI MAXIM/DALLAS 17 In Stock

Description and Introduction

6-Channel, Multirange, 5V, 12-Bit DAS with 12-Bit Bus Interface and Fault Protection The MAX196ACNI+ is a 12-bit analog-to-digital converter (ADC) manufactured by Maxim Integrated (formerly Dallas Semiconductor).  

### **Specifications:**  
- **Resolution:** 12-bit  
- **Sampling Rate:** 133ksps (kilosamples per second)  
- **Input Channels:** 8 single-ended or 4 differential  
- **Input Voltage Range:** 0V to VREF (programmable)  
- **Reference Voltage:** Internal (4.096V) or external (1V to VDD)  
- **Supply Voltage:** +5V ±10%  
- **Power Consumption:** 10mW (typical)  
- **Interface:** Parallel  
- **Operating Temperature Range:** -40°C to +85°C  
- **Package:** 28-pin PDIP (Plastic Dual In-line Package)  

### **Descriptions:**  
The MAX196ACNI+ is a high-speed, low-power, 12-bit ADC with an 8-channel multiplexer. It features a successive-approximation register (SAR) architecture and includes a track/hold (T/H) circuit, eliminating the need for an external sample-and-hold amplifier. The device operates from a single +5V supply and provides flexible input configurations (single-ended or differential).  

### **Features:**  
- 12-bit resolution with no missing codes  
- 133ksps conversion rate  
- Internal or external reference options  
- Low power consumption (10mW typical)  
- Programmable input range (unipolar/bipolar)  
- Parallel interface for easy microcontroller interfacing  
- On-chip track/hold circuit  
- 8-channel multiplexer with address logic  

For detailed electrical characteristics and application circuits, refer to the official datasheet from Maxim Integrated.

Application Scenarios & Design Considerations

6-Channel, Multirange, 5V, 12-Bit DAS with 12-Bit Bus Interface and Fault Protection

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