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MAX2205EBS-T10 from DALLAS,MAXIM - Dallas Semiconductor

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MAX2205EBS-T10

Manufacturer: DALLAS

RF Power Detectors in UCSP

Partnumber Manufacturer Quantity Availability
MAX2205EBS-T10,MAX2205EBST10 DALLAS 758 In Stock

Description and Introduction

RF Power Detectors in UCSP The MAX2205EBS-T10 is a part manufactured by Dallas Semiconductor (now part of Maxim Integrated). Below are its specifications, descriptions, and features based on available factual information:  

### **Specifications:**  
- **Manufacturer:** Dallas Semiconductor (Maxim Integrated)  
- **Part Number:** MAX2205EBS-T10  
- **Type:** RS-232 Transceiver  
- **Data Rate:** Up to 250kbps  
- **Supply Voltage:** +3.0V to +5.5V  
- **Number of Drivers/Receivers:** 1 Driver, 1 Receiver  
- **Operating Temperature Range:** -40°C to +85°C  
- **Package:** 16-pin SSOP (Shrink Small Outline Package)  
- **Features AutoShutdown™ Plus:** Yes (Low-power mode when inactive)  
- **ESD Protection:** ±15kV (Human Body Model)  

### **Descriptions:**  
The MAX2205EBS-T10 is a low-power, single-driver/single-receiver RS-232 transceiver designed for battery-powered and portable applications. It integrates a capacitive charge pump to generate RS-232 voltage levels from a single +3V to +5.5V supply.  

### **Features:**  
- **Low Power Consumption:**  
  - 1µA shutdown current (AutoShutdown Plus feature)  
  - 300µA active supply current (typical)  
- **RS-232 Compliance:** Meets EIA/TIA-232 and V.28/V.24 standards  
- **Enhanced ESD Protection:** ±15kV on I/O lines  
- **Small Footprint:** 16-pin SSOP package for space-constrained designs  
- **Capacitor-Free Operation:** Requires no external capacitors for charge pump  
- **AutoShutdown Plus:** Automatically enters low-power mode when no valid RS-232 signal is detected  

This information is based on the manufacturer's datasheet and technical documentation. For detailed electrical characteristics and application notes, refer to the official Maxim Integrated (formerly Dallas Semiconductor) datasheet.

Application Scenarios & Design Considerations

RF Power Detectors in UCSP

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