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FRAM (Ferroelectric RAM)

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FM25L04B-DG
Ramtron International
2.7V 3.6V SPI SMD mount
Quantity: 29
Ship Date: 9-13 working days
12+
100+ $1.1994
300+ $1.1893
500+ $1.1792
1000+ $1.149
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x $1.1994
Ext. Price: $119.94
MOQ: 100
Mult: 1
SPQ: 1
FM25040B-G
Ramtron International
4.5V 5.5V SPI SOIC-8 SMD mount
Quantity: 18
Ship Date: 9-13 working days
11+
50+ $1.233
100+ $1.2127
300+ $1.2025
500+ $1.1923
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Ext. Price: $122.06
MOQ: 99
Mult: 1
SPQ: 1
FM25CL64-G
Ramtron International
8K x 8 2.7V 3.6V SPI SMD mount 4.9mm*3.9mm*1.5mm
Quantity: 0
Ship Date: 7-13 working days
1+ $4.833
5+ $4.8155
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Ext. Price: $28.99
MOQ: 6
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FM25040A-G
Ramtron International
512 x 8 bit 4.5V 5.5V SPI SOIC,SOP SMD mount 4.9mm*3.9mm*1.5mm
Quantity: 0
Ship Date: 7-13 working days
4+ $1.7686
20+ $1.7511
80+ $1.0434
200+ $0.8405
400+ $0.7665
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x $1.7686
Ext. Price: $28.29
MOQ: 16
Mult: 4
FM25L256B-G
Ramtron International
32K x 8 2.7V 3.6V SPI SMD mount 4.9mm*3.9mm*1.5mm
Quantity: 0
Ship Date: 7-13 working days
5+ $8.5804
20+ $5.0701
50+ $4.8818
100+ $4.1858
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x $8.5804
Ext. Price: $42.90
MOQ: 5
Mult: 1
FM25L04-G
Ramtron International
512 x 8 bit 2.7V 3.6V SPI SMD mount 4.9mm*3.9mm*1.5mm
Quantity: 0
Ship Date: 7-13 working days
20+ $1.7511
80+ $1.2012
200+ $0.9481
400+ $0.8876
- +
x $1.7511
Ext. Price: $35.02
MOQ: 20
Mult: 4

FRAM (Ferroelectric RAM)

FRAM, or Ferroelectric Random Access Memory, is a type of non-volatile memory (NVM) that retains data even when power is turned off. It is characterized by its fast read and write speeds, low power consumption, and high endurance, making it suitable for various applications.

Definition:
FRAM is a memory technology that uses ferroelectric materials to store data. The ferroelectric property allows the memory to maintain its state without a continuous power supply, unlike volatile memory types like DRAM or SRAM.

Function:
FRAM functions by utilizing a ferroelectric capacitor to store data. When a voltage is applied, the polarization of the ferroelectric material changes, representing a binary '1' or '0'. The data is non-volatile, meaning it remains intact even when power is removed.

Applications:
1. Embedded Systems: FRAM is used in systems that require frequent data updates and need to retain data in the event of power loss.
2. Industrial Control: It is ideal for applications where data integrity is critical, such as in sensors and control systems.
3. Automotive Systems: FRAM's endurance and non-volatility make it suitable for automotive electronics, where data must be retained through power cycles.
4. Smart Grids: FRAM can be used in smart meters and other grid management systems to ensure data is not lost during power outages.

Selection Criteria:
When choosing FRAM for a project, consider the following:
1. Capacity: Ensure the FRAM module has sufficient storage capacity for your data needs.
2. Speed: FRAM offers fast read and write speeds, but specific requirements may vary.
3. Endurance: FRAM can withstand a high number of write cycles, which is crucial for applications with frequent data updates.
4. Power Consumption: Evaluate the power consumption in both active and standby modes to ensure it fits within your system's power budget.
5. Reliability: Look for FRAM with a proven track record of reliability and data retention over time.
6. Cost: Compare the cost of FRAM with other memory technologies to determine the best value for your application.
7. Form Factor: Consider the physical size and form factor of the FRAM module to ensure it fits within your system's design constraints.

FRAM is a versatile memory solution that combines the benefits of non-volatility with the performance characteristics of volatile memory, making it an attractive option for a wide range of applications where data integrity and system reliability are paramount.
Please refer to the product rule book for details.