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MAX1358BETL+ from MAXIM,MAXIM - Dallas Semiconductor

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MAX1358BETL+

Manufacturer: MAXIM

16-Bit, Data-Acquisition System with ADC, DACs, UPIOs, RTC, Voltage Monitors, and Temp Sensor

Partnumber Manufacturer Quantity Availability
MAX1358BETL+,MAX1358BETL MAXIM 6686 In Stock

Description and Introduction

16-Bit, Data-Acquisition System with ADC, DACs, UPIOs, RTC, Voltage Monitors, and Temp Sensor The MAX1358BETL+ is a highly integrated, low-power, mixed-signal front-end IC designed for portable and battery-powered applications. Here are its key specifications, descriptions, and features:

### **Manufacturer:**  
MAXIM (now part of Analog Devices)  

### **Specifications:**  
- **Supply Voltage:** 2.7V to 3.6V  
- **Operating Temperature Range:** -40°C to +85°C  
- **Package:** 40-Pin TQFN (6mm x 6mm)  
- **Power Consumption:** Ultra-low power, optimized for battery life  
- **ADC Resolution:** 16-bit  
- **Data Interface:** SPI-compatible serial interface  
- **Input Channels:** Multiple analog inputs with flexible configuration  

### **Descriptions:**  
The MAX1358BETL+ integrates a high-resolution ADC, a low-noise programmable gain amplifier (PGA), and a precision voltage reference. It is designed for sensor signal conditioning in portable and low-power applications, such as medical devices, industrial sensors, and portable instrumentation.  

### **Features:**  
- **16-Bit Sigma-Delta ADC:** High-resolution conversion for accurate measurements.  
- **Programmable Gain Amplifier (PGA):** Adjustable gain settings for signal conditioning.  
- **Low-Power Operation:** Optimized for battery-powered applications.  
- **On-Chip Voltage Reference:** Reduces external component count.  
- **Flexible Input Configuration:** Supports differential and single-ended inputs.  
- **SPI-Compatible Interface:** Easy integration with microcontrollers.  
- **Internal Oscillator:** Eliminates the need for an external clock.  
- **Small Form Factor:** 40-pin TQFN package saves board space.  

This device is ideal for applications requiring high precision and low power consumption.

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