Performance and application of AT24C04D-SSHM-T

Performance and application of AT24C04D-SSHM-T

AT24C04D-SSHM-T is a 4Kb EEPROM that provides a stable data storage solution and is suitable for saving important data during power outages. It supports I2C interface, allowing simple and efficient data transfer. Due to its durability and reliability, this chip is widely used in many fields, such as consumer electronics, automobiles, industrial control systems, medical equipment, etc., for storing configuration data, user preference settings, small databases, etc.

Product Features

512 x 8 (4 Kbit)

400 kHz (1.7V) and 1 MHz (>2.5V) clock compatibility

Supports up to 4 devices on the bus

Self-Timed Erase and Write Cycles (5 ms max.)

Read current 0.15 mA (Typ), 0.5 mA (Max)

Write current 0.2 mA (Typ), 1 mA (Max)

Standby current 0.1 uA (Typ), 0.8 uA (Max)

Hardware Write-Protect Pin

More than 1 million erase/write cycles

Data retention > 100 years

Factory Programming Available

Available in 8-lead SOIC, 8-lead TSSOP, 8-pad UDFN, 8-lead PDIP, 5-lead SOT23, and 8-ball VFBGA

development trend

1. Technological progress: With the continuous advancement of semiconductor technology, future EEPROM may have smaller size, higher storage density and lower power consumption. This means memories like the AT24C04D-SSHM-T may become more efficient and cost-effective to accommodate growing market demands.

2. Multi-function integration: In order to better meet market needs, future EEPROMs may integrate more functions, such as more advanced security features or built-in data processing capabilities, to provide higher value.

3. Changes in market demand: With the popularity of the Internet of Things (IoT) and wearable devices, the demand for small, low-power non-volatile storage solutions will continue to grow. EEPROMs, such as the AT24C04D-SSHM-T, may be the first choice for these applications due to their stability and reliability.

4. Environmental and economic benefits: With the increase in environmental awareness and pressure on manufacturing costs, future development may place more emphasis on the use of environmentally friendly materials and energy-saving technologies, as well as improving production efficiency and reducing waste.

5. Customization and flexibility: Customized solutions for specific applications may become a trend, including EEPROMs designed for specific industries or specific technical needs. This flexibility may be achieved through programmability, selective memory capacity and different interface options.

In summary, the future development of AT24C04D-SSHM-T and similar EEPROMs is likely to move in the direction of technological innovation, functional integration, market demand adaptation, environmental sustainability, and product customization. As technology advances and market demands change, we can expect these storage solutions to become more efficient, versatile, and environmentally friendly.

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