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MAX232EEPE
IC TRANSCEIVER FULL 2/2 16DIP
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規格
| Package | Tube |
| ProductStatus | Obsolete |
| Type | Transceiver |
| Protocol | RS232 |
| NumberofDrivers/Receivers | 2/2 |
| Duplex | Full |
| ReceiverHysteresis | 500 mV |
| DataRate | 120Kbps |
| Voltage-Supply | 4.5V ~ 5.5V |
| OperatingTemperature | -40°C ~ 85°C |
| MountingType | Through Hole |
| Package/Case | 16-DIP (0.300, 7.62mm) |
概述
Description
The MAX232EEPE is a widely used integrated circuit (IC) designed for serial communication, particularly in converting signals between RS-232 and TTL (Transistor-Transistor Logic) levels. It features dual-channel capability, allowing for both transmission and reception of data. The chip integrates multiple charge pumps to generate the necessary voltage levels, enabling it to properly convert the ±12V RS-232 signals to standard TTL levels (0V to +5V).
Key characteristics of the MAX232EEPE include low power consumption, a wide operating temperature range, and the ability to support data rates up to 120 kbps. Its compact 16-pin package makes it suitable for a variety of applications in embedded systems, microcontrollers, and communication devices.
Overall, the MAX232EEPE is essential for interfacing microcontrollers with RS-232 devices, ensuring reliable data transmission while simplifying circuit design.
Key characteristics of the MAX232EEPE include low power consumption, a wide operating temperature range, and the ability to support data rates up to 120 kbps. Its compact 16-pin package makes it suitable for a variety of applications in embedded systems, microcontrollers, and communication devices.
Overall, the MAX232EEPE is essential for interfacing microcontrollers with RS-232 devices, ensuring reliable data transmission while simplifying circuit design.
Features
The MAX232EEPE is a dual voltage-level translator designed for serial communication between TTL and RS-232 compatible devices. Key features include:
1. Dual Transceivers: Contains two drivers and two receivers for simultaneous communication.
2. Voltage Range: Operates with a single supply voltage from +3V to +5.5V.
3. Integrated Capacitors: Internal charge pump eliminates the need for external capacitors, simplifying design.
4. Data Rate: Supports data rates up to 120 kbps.
5. Low Power Consumption: Designed for low power usage, suitable for battery-operated devices.
6. Wide Temperature Range: Operates over a temperature range of -40°C to +85°C.
7. Small Package: Available in a 16-pin DIP and SOIC packages for space-constrained applications.
8. Enhanced ESD Protection: Provides robust protection against electrostatic discharge.
These features make the MAX232EEPE an ideal choice for interfacing microcontrollers and other logic devices with RS-232 communication standards.
1. Dual Transceivers: Contains two drivers and two receivers for simultaneous communication.
2. Voltage Range: Operates with a single supply voltage from +3V to +5.5V.
3. Integrated Capacitors: Internal charge pump eliminates the need for external capacitors, simplifying design.
4. Data Rate: Supports data rates up to 120 kbps.
5. Low Power Consumption: Designed for low power usage, suitable for battery-operated devices.
6. Wide Temperature Range: Operates over a temperature range of -40°C to +85°C.
7. Small Package: Available in a 16-pin DIP and SOIC packages for space-constrained applications.
8. Enhanced ESD Protection: Provides robust protection against electrostatic discharge.
These features make the MAX232EEPE an ideal choice for interfacing microcontrollers and other logic devices with RS-232 communication standards.
Package
The MAX232EEPE is packaged in an 8-pin PDIP (Plastic Dual In-line Package) form factor. This package type allows for easy integration into circuit boards and provides reliable performance for RS-232 communication applications.
Pinout
The MAX232EEPE is a dual RS-232 line driver/receiver designed to convert signals between TTL/CMOS and RS-232 voltage levels. It features 16 pins in total.
### Pin Count and Functions:
1. V+ (Pin 1): Positive voltage supply (typically +5V).
2. V- (Pin 2): Negative voltage supply (typically -5V).
3. C1+ (Pin 3): Capacitor connection for charge pump.
4. C1- (Pin 4): Capacitor connection for charge pump.
5. C2+ (Pin 5): Capacitor connection for charge pump.
6. C2- (Pin 6): Capacitor connection for charge pump.
7. T1IN (Pin 7): TTL input for the first transmitter.
8. T1OUT (Pin 8): RS-232 output for the first transmitter.
9. R1IN (Pin 9): RS-232 input for the first receiver.
10. R1OUT (Pin 10): TTL output for the first receiver.
11. T2IN (Pin 11): TTL input for the second transmitter.
12. T2OUT (Pin 12): RS-232 output for the second transmitter.
13. R2IN (Pin 13): RS-232 input for the second receiver.
14. R2OUT (Pin 14): TTL output for the second receiver.
15. GND (Pin 15): Ground connection.
16. NC (Pin 16): No connection.
This device is commonly used in serial communication applications.
### Pin Count and Functions:
1. V+ (Pin 1): Positive voltage supply (typically +5V).
2. V- (Pin 2): Negative voltage supply (typically -5V).
3. C1+ (Pin 3): Capacitor connection for charge pump.
4. C1- (Pin 4): Capacitor connection for charge pump.
5. C2+ (Pin 5): Capacitor connection for charge pump.
6. C2- (Pin 6): Capacitor connection for charge pump.
7. T1IN (Pin 7): TTL input for the first transmitter.
8. T1OUT (Pin 8): RS-232 output for the first transmitter.
9. R1IN (Pin 9): RS-232 input for the first receiver.
10. R1OUT (Pin 10): TTL output for the first receiver.
11. T2IN (Pin 11): TTL input for the second transmitter.
12. T2OUT (Pin 12): RS-232 output for the second transmitter.
13. R2IN (Pin 13): RS-232 input for the second receiver.
14. R2OUT (Pin 14): TTL output for the second receiver.
15. GND (Pin 15): Ground connection.
16. NC (Pin 16): No connection.
This device is commonly used in serial communication applications.
Manufacturer
The MAX232EEPE is manufactured by Maxim Integrated, a company that specializes in semiconductor design and manufacturing. Maxim Integrated focuses on developing analog and mixed-signal integrated circuits (ICs) for a variety of applications, including communications, automotive, industrial, and consumer electronics. The company is known for its innovative products that enhance performance and efficiency in electronic systems. In 2021, Maxim Integrated was acquired by Analog Devices, Inc., further expanding their portfolio in the analog and mixed-signal markets.
Application
The MAX232EEPE is primarily used for converting TTL (Transistor-Transistor Logic) levels to RS-232 serial communication levels and vice versa. Its application areas include interfacing microcontrollers with RS-232 devices, such as modems, printers, and computers. It's commonly utilized in embedded systems, communications equipment, and automation controls where reliable serial data transmission is required.
Equivalent
Equivalent products to the MAX232EEPE chip include:
1. MAX232 - Standard version.
2. MAX233 - No external capacitors required.
3. TC232 - From Texas Instruments.
4. SP232 - From Sipex.
5. ADM202 - From Analog Devices.
6. LM232 - From National Semiconductor.
Ensure compatibility with voltage and specifications for your application.
1. MAX232 - Standard version.
2. MAX233 - No external capacitors required.
3. TC232 - From Texas Instruments.
4. SP232 - From Sipex.
5. ADM202 - From Analog Devices.
6. LM232 - From National Semiconductor.
Ensure compatibility with voltage and specifications for your application.
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