FIFO Memory

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72V3650L15PFI
Renesas Electronics
3.45V TQFP-128 20mm*14mm*1.4mm
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72215LB15TF8
Renesas Electronics
9Kbit Yes 4.5V 60mA 5.5V no unidirectional synchronization TQFP-64 glue mount 10mm*10mm*1.4mm
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72V3670L6BB
Renesas Electronics
288K(8K x 36) yes Yes 3.15V 40mA 3.45V yes synchronization width,depth unidirectional PBGA-144 SMD mount 13mm*13mm*1.76mm
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723624L15PF
Renesas Electronics
18Kbit Yes 4.5V 400mA 5.5V yes bidirectional synchronization TQFP-128 20mm*14mm*1.4mm
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72V3690L6BBG
Renesas Electronics
1.152M(32K x 36) yes Yes 32 k x 36 1 3.15V 40mA 3.45V 166MHz yes synchronization width,depth 36bit unidirectional synchronization PBGA-144 SMD mount 13mm*13mm*1.76mm
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72V3690L6BB8
Renesas Electronics
1.152M(32K x 36) yes Yes 3.15V 40mA 3.45V yes synchronization width,depth unidirectional PBGA-144 SMD mount 13mm*13mm*1.76mm
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72251L15PFGI
Renesas Electronics
72K(8K x 9) none Yes 4.5V 50mA 5.5V no synchronization width,depth unidirectional TQFP-32 SMD mount 7mm*7mm*1.4mm
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72225LB10TF8
Renesas Electronics
18Kbit Yes 4.5V 60mA 5.5V no unidirectional synchronization TQFP-64 glue mount 10mm*10mm*1.4mm
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72255LA15TF8
Renesas Electronics
IC FIFO SYNC 8KX18 10NS 64TQFP
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72V205L20TF
Renesas Electronics
4.608 kbit Yes 256 x 18 1 3V 30mA 3.6V 50MHz yes 18bit unidirectional synchronization TQFP-64 SMD mount 10mm*10mm*1.4mm
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72V245L20PF8
Renesas Electronics
72Kbit Yes 3V 30mA 3.6V yes unidirectional synchronization TQFP-64 glue mount 14mm*14mm*1.4mm
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72V255LA15PFI
Renesas Electronics
3.6V TQFP-64 14mm*14mm*1.4mm
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SN74V273-7GGM
Texas Instruments
288 kbit 32 k x 9,16 k x 18 2 35mA 3.45V 133MHz 9bit,18bit unidirectional synchronization BGA-100 SMD mount 10mm(width)*900μm(height)
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184+ $33.5861
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72265LA10TF8
Renesas Electronics
IC FIFO SYNC 16KX18 8NS 64TQFP
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72V265LA15TFI8
Renesas Electronics
3.6V TQFP-64 glue mount 10mm*10mm*1.4mm
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7285L20PA
Renesas Electronics
72 kbit 8 k x 9 2 150mA 5.5V 9bit bidirectional asynchronous TSSOP-56 SMD mount 14mm*6.1mm*1mm
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72255LA15PFI8
Renesas Electronics
IC FIFO SYNC 8KX18 10NS 64TQFP
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72V3690L7-5PF
Renesas Electronics
Yes 3.15V 40mA 3.45V yes unidirectional TQFP-128 20mm*14mm*1.4mm
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72205LB15J
Renesas Electronics
5.5V PLCC-68 24mm*24mm*3.63mm
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72235LB10TF8
Renesas Electronics
5.5V TQFP-64 glue mount 10mm*10mm*1.4mm
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72235LB15TF8
Renesas Electronics
5.5V TQFP-64 glue mount 10mm*10mm*1.4mm
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72T3655L6-7BB
Renesas Electronics
72Kbit Yes 2.375V 70mA 2.625V yes unidirectional asynchronous PBGA-208 17mm*17mm*1.76mm
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72V285L10TF
Renesas Electronics
3.6V TQFP-64 10mm*10mm*1.4mm
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72265LA20TFI8
Renesas Electronics
288Kbit Yes 4V 80mA 5.5V yes unidirectional synchronization TQFP-64 glue mount 10mm*10mm*1.4mm
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72245LB15TF
Renesas Electronics
72Kbit Yes 4.5V 60mA 5.5V no unidirectional synchronization TQFP-64 10mm*10mm*1.4mm
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FIFO Memory

FIFOs (First-In, First-Out) Memory

Definition:
A FIFO (First-In, First-Out) memory is a type of buffer storage mechanism used in computer systems and digital electronics. It operates on the principle that the first data item stored is the first one to be retrieved, much like a real-world queue.

Function:
FIFOs serve as temporary storage areas for data. They are essential for managing data flow between processes or components that operate at different speeds. The primary function of a FIFO is to ensure that data is processed in the order it was received, preventing data loss and maintaining the integrity of the information.

Applications:
1. Data Buffering: In systems where data is generated faster than it can be processed, FIFOs act as buffers to store the excess data.
2. Communication Protocols: They are used in network protocols to manage data packets and ensure they are processed in the correct sequence.
3. Processor Design: In computer architecture, FIFOs are used in cache memory and register files to manage data flow.
4. Real-Time Systems: They are crucial in real-time systems where data must be processed in a timely manner to meet strict deadlines.

Selection Criteria:
1. Size: The capacity of the FIFO should match the expected data volume to avoid overflow or underutilization.
2. Speed: The access speed of the FIFO should be compatible with the system's requirements to ensure timely data processing.
3. Latency: Lower latency is preferred for systems where real-time data processing is critical.
4. Reliability: The FIFO should have error detection and correction mechanisms to ensure data integrity.
5. Cost: The cost of the FIFO should be considered in relation to the system's budget and performance requirements.
6. Scalability: The ability to scale the FIFO's capacity as the system's needs grow is an important consideration for long-term planning.

In summary, FIFOs are critical components in digital systems that manage data flow and ensure orderly processing. Their selection should be based on the specific requirements of the system, including size, speed, latency, reliability, cost, and scalability.
Please refer to the product rule book for details.