Category: Integrated Circuit (IC)
Use: Non-volatile Serial EEPROM Memory
Characteristics: - Low power consumption - High reliability - Wide operating voltage range - Small package size - Easy to integrate into various electronic devices
Package: SOP-8 (Small Outline Package)
Essence: BR93C86-WMN6TP is a non-volatile serial EEPROM memory IC that provides reliable and low-power data storage for electronic devices.
Packaging/Quantity: The BR93C86-WMN6TP is typically sold in reels, with each reel containing a specific quantity of ICs. The exact packaging and quantity may vary depending on the manufacturer or supplier.
The BR93C86-WMN6TP IC has a total of 8 pins arranged as follows:
┌───┬───┐
│ 1 │ 8 │
│ │ │
└───┴───┘
Pin Description: 1. Chip Select (CS): Used to enable/disable the IC for communication. 2. Serial Clock (SCK): Provides the clock signal for data transfer. 3. Serial Data Input (SDI): Used to input data to the IC during write operations. 4. Serial Data Output (SDO): Outputs data from the IC during read operations. 5. Write Protect (WP): Allows write protection for the memory. 6. Ground (GND): Connected to the ground reference of the system. 7. Serial Data Out (SDO): Outputs data from the IC during read operations. 8. Power Supply (VCC): Connected to the power supply of the system.
Advantages: - Reliable data storage - Easy integration with various devices - Low power consumption - Wide operating voltage range - Small package size
Disadvantages: - Limited memory size (16 Kbits) - Slower data transfer rate compared to some other memory technologies
The BR93C86-WMN6TP utilizes a floating gate transistor technology to store data. It employs an I2C serial interface for communication with the host device. When data needs to be written, the IC receives the data through the SDI pin and stores it in the non-volatile memory cells. During read operations, the stored data is retrieved and sent back to the host device through the SDO pin.
The BR93C86-WMN6TP can be used in various applications, including but not limited to: - Consumer electronics - Automotive systems - Industrial control systems - Medical devices - Smart meters - Internet of Things (IoT) devices
Some alternative models to the BR93C86-WMN6TP include: - AT24C02: 2 Kbit I2C EEPROM - CAT24C16: 16 Kbit I2C EEPROM - M24C64: 64 Kbit I2C EEPROM - 25AA1024: 1 Mbit SPI EEPROM
These alternative models offer similar functionality and can be considered as replacements depending on specific requirements.
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Sure! Here are 10 common questions and answers related to the application of BR93C86-WMN6TP:
Q: What is BR93C86-WMN6TP? A: BR93C86-WMN6TP is a specific model of EEPROM (Electrically Erasable Programmable Read-Only Memory) chip manufactured by ROHM Semiconductor.
Q: What is the storage capacity of BR93C86-WMN6TP? A: BR93C86-WMN6TP has a storage capacity of 16 kilobits (or 2 kilobytes).
Q: What is the operating voltage range for BR93C86-WMN6TP? A: The operating voltage range for BR93C86-WMN6TP is typically between 1.8V and 5.5V.
Q: What is the maximum clock frequency supported by BR93C86-WMN6TP? A: BR93C86-WMN6TP supports a maximum clock frequency of 3 MHz.
Q: Can BR93C86-WMN6TP be used in automotive applications? A: Yes, BR93C86-WMN6TP is designed to meet the requirements of automotive applications and can operate in harsh environments.
Q: Does BR93C86-WMN6TP support hardware write protection? A: Yes, BR93C86-WMN6TP provides hardware write protection through a dedicated pin (WP).
Q: What is the endurance rating of BR93C86-WMN6TP? A: BR93C86-WMN6TP has an endurance rating of at least 1 million write cycles.
Q: Can BR93C86-WMN6TP retain data during power loss? A: Yes, BR93C86-WMN6TP has built-in data retention capability, allowing it to retain data for a minimum of 40 years.
Q: Is BR93C86-WMN6TP compatible with standard microcontrollers? A: Yes, BR93C86-WMN6TP uses a standard SPI (Serial Peripheral Interface) protocol, making it compatible with most microcontrollers.
Q: Are there any specific programming considerations for BR93C86-WMN6TP? A: Programming BR93C86-WMN6TP requires following the timing specifications mentioned in the datasheet and ensuring proper voltage levels during programming operations.
Please note that these answers are general and may vary depending on the specific application and requirements. It is always recommended to refer to the datasheet and consult with the manufacturer for detailed information.