DS1350WP-100IND
Manufacturer No:
DS1350WP-100IND
Manufacturer:
Description:
IC NVSRAM 4MBIT PAR 34PWRCAP
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In Stock : 0
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DS1350WP-100IND Specifications
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TypeParameter
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Supplier Device Package34-PowerCap Module
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Package / Case34-PowerCap™ Module
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Mounting TypeSurface Mount
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Operating Temperature-40°C ~ 85°C (TA)
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Voltage - Supply3V ~ 3.6V
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Access Time100 ns
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Write Cycle Time - Word, Page100ns
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Memory InterfaceParallel
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Memory Organization512K x 8
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Memory Size4Mbit
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TechnologyNVSRAM (Non-Volatile SRAM)
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Memory FormatNVSRAM
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Memory TypeNon-Volatile
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DigiKey ProgrammableNot Verified
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PackagingTube
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Product StatusObsolete
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Series-
The DS1350WP-100IND integrated circuit chips, also known as NV SRAMs (Non-volatile Static Random Access Memories), have several advantages and can be used in various application scenarios:1. Non-volatile memory: One of the significant advantages of the DS1350WP-100IND chips is that they combine the benefits of both traditional SRAM and non-volatile memory. They are non-volatile, which means that the data stored in these chips remains intact even during power loss or shutdown. This feature makes them suitable for applications where reliable data storage is essential.2. Fast access times: DS1350WP-100IND chips provide fast access and read/write times, similar to standard SRAMs. This attribute makes them suitable for applications that require quick data access or real-time processing.3. Low power consumption: These chips have low power requirements, both during active use and standby, making them energy-efficient. This feature makes them suitable for portable or battery-operated devices that prioritize power savings.4. High endurance: The DS1350WP-100IND chips have high endurance, capable of withstanding a large number of write cycles without any degradation. This characteristic makes them suitable for applications that require frequent and consistent writing of data, such as logging systems.5. Small form factor: The integration of non-volatile memory in a single chip enables a compact form factor, making it suitable for space-constrained applications or designs.6. Real-time clock functionality: Some variants of the DS1350WP-100IND chips incorporate real-time clock (RTC) functionality. This allows the chips to not only store data but also provide accurate timekeeping information. Such chips find applications in devices that require time-sensitive operations or time-stamping.Application scenarios for DS1350WP-100IND chips include:1. Data logging systems: The non-volatile nature and high endurance of the DS1350WP-100IND chips make them well-suited for data logging applications. They can record and store data reliably over long periods even in the event of power failures.2. Embedded systems: Due to their fast access times, low power consumption, and small form factor, DS1350WP-100IND chips are suitable for various embedded system applications. They can be used for buffering intermediate data or storing critical system parameters.3. Industrial automation: The reliability and non-volatile nature of these chips make them suitable for industrial automation systems. They can store critical configuration data, logs, or real-time data, ensuring the system remains operational even during power disruptions.4. Utility metering: DS1350WP-100IND chips can be used in utility metering applications to store meter readings and consumption data reliably, even during power outages or when changing batteries.5. Medical devices: These chips find applications in medical devices where data integrity and low power consumption are crucial. They can store patient information, sensor data, event logs, or device configurations.6. Internet of Things (IoT): The combination of non-volatile memory and RTC functionality in some DS1350WP-100IND chips makes them well-suited for IoT devices. They can store sensor data, connection parameters, or time-sensitive information in power-constrained environments.It is important to note that the DS1350WP-100IND chip is a specific model, and the advantages and application scenarios mentioned above are generally applicable to NV SRAM technology as a whole. The specific use cases may vary based on design requirements and other factors.
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