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71V2546S100PFG8 Renesas Electronics
1 The 71V2546 3.3V CMOS Synchronous SRAM is organized as 128K x 36. It is designed to eliminate dead bus cycles when turning the bus around between reads and writes, or writes and reads. Thus, it has been given the name ZBTTM, or Zero Bus Turnaround. The 71V2546 has an on-chip burst counter. In the burst mode, it can provide four cycles of data for a single address presented to the SRAM. Quad Flat Packages 71V2546S100PFG8 1 Download Model
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71V25761S200BG Renesas Electronics
1 The 71V25761 3.3V CMOS Synchronous SRAM is organized as 128K x 36 and contains write, data, address and control registers. The burst mode feature offers the highest level of performance to the system designer, as the 71V25761 can provide four cycles of data for a single address presented to the SRAM. BGA 71V25761S200BG 1 Download Model
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71V2556S150PFGI8 Renesas Electronics
1 The 71V2556 3.3V CMOS Synchronous SRAM is organized as 128K x 36. It is designed to eliminate dead bus cycles when turning the bus around between reads and writes, or writes and reads. Thus, it has been given the name ZBTTM, or Zero Bus Turnaround. The 71V2556 contains data I/O, address and control signal registers. It can provide four cycles of data for a single address presented to the SRAM. Quad Flat Packages 71V2556S150PFGI8 1 Download Model
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71V2556S166PFGI Renesas Electronics
1 The 71V2556 3.3V CMOS Synchronous SRAM is organized as 128K x 36. It is designed to eliminate dead bus cycles when turning the bus around between reads and writes, or writes and reads. Thus, it has been given the name ZBTTM, or Zero Bus Turnaround. The 71V2556 contains data I/O, address and control signal registers. It can provide four cycles of data for a single address presented to the SRAM. Quad Flat Packages 71V2556S166PFGI 1 Download Model
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71V2556S133PFGI Renesas Electronics
1 The 71V2556 3.3V CMOS Synchronous SRAM is organized as 128K x 36. It is designed to eliminate dead bus cycles when turning the bus around between reads and writes, or writes and reads. Thus, it has been given the name ZBTTM, or Zero Bus Turnaround. The 71V2556 contains data I/O, address and control signal registers. It can provide four cycles of data for a single address presented to the SRAM. Quad Flat Packages 71V2556S133PFGI 1 Download Model
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71V2546S150PFG8 Renesas Electronics
1 The 71V2546 3.3V CMOS Synchronous SRAM is organized as 128K x 36. It is designed to eliminate dead bus cycles when turning the bus around between reads and writes, or writes and reads. Thus, it has been given the name ZBTTM, or Zero Bus Turnaround. The 71V2546 has an on-chip burst counter. In the burst mode, it can provide four cycles of data for a single address presented to the SRAM. Quad Flat Packages 71V2546S150PFG8 1 Download Model
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71V2556S150PFGI Renesas Electronics
1 The 71V2556 3.3V CMOS Synchronous SRAM is organized as 128K x 36. It is designed to eliminate dead bus cycles when turning the bus around between reads and writes, or writes and reads. Thus, it has been given the name ZBTTM, or Zero Bus Turnaround. The 71V2556 contains data I/O, address and control signal registers. It can provide four cycles of data for a single address presented to the SRAM. Quad Flat Packages 71V2556S150PFGI 1 Download Model
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71V2556SA100BG Renesas Electronics
1 The 71V2556 3.3V CMOS Synchronous SRAM is organized as 128K x 36. It is designed to eliminate dead bus cycles when turning the bus around between reads and writes, or writes and reads. Thus, it has been given the name ZBTTM, or Zero Bus Turnaround. The 71V2556 contains data I/O, address and control signal registers. It can provide four cycles of data for a single address presented to the SRAM. BGA 71V2556SA100BG 1 Download Model
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71V2556SA133BG Renesas Electronics
1 The 71V2556 3.3V CMOS Synchronous SRAM is organized as 128K x 36. It is designed to eliminate dead bus cycles when turning the bus around between reads and writes, or writes and reads. Thus, it has been given the name ZBTTM, or Zero Bus Turnaround. The 71V2556 contains data I/O, address and control signal registers. It can provide four cycles of data for a single address presented to the SRAM. BGA 71V2556SA133BG 1 Download Model
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71V2556SA133BGI Renesas Electronics
1 The 71V2556 3.3V CMOS Synchronous SRAM is organized as 128K x 36. It is designed to eliminate dead bus cycles when turning the bus around between reads and writes, or writes and reads. Thus, it has been given the name ZBTTM, or Zero Bus Turnaround. The 71V2556 contains data I/O, address and control signal registers. It can provide four cycles of data for a single address presented to the SRAM. BGA 71V2556SA133BGI 1 Download Model
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71V25761S166PFGI Renesas Electronics
1 SRAM 128Kx36 SYNC 3.3V PIPELINED BURST SRAM Quad Flat Packages 71V25761S166PFGI 1 Download Model
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71V25761S183BG Renesas Electronics
1 The 71V25761 3.3V CMOS Synchronous SRAM is organized as 128K x 36 and contains write, data, address and control registers. The burst mode feature offers the highest level of performance to the system designer, as the 71V25761 can provide four cycles of data for a single address presented to the SRAM. BGA 71V25761S183BG 1 Download Model
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71V256SA12PZG Renesas Electronics
1 The 71V256SA 3.3V CMOS Asynchronous SRAM is organized as 32K x 8. When in standby mode, its very low power characteristics contribute to extended battery life. Under full standby mode (CS at CMOS level, f=0), power consumption is guaranteed to be less than 6.6mW. Fully static asynchronous circuitry is used; no clocks or refreshes are required for operation. Other 71V256SA12PZG 1 Download Model
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71V25761S183BG8 Renesas Electronics
1 The 71V25761 3.3V CMOS Synchronous SRAM is organized as 128K x 36 and contains write, data, address and control registers. The burst mode feature offers the highest level of performance to the system designer, as the 71V25761 can provide four cycles of data for a single address presented to the SRAM. BGA 71V25761S183BG8 1 Download Model
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71V2576S133PFG Renesas Electronics
1 This product is obsolete. Quad Flat Packages 71V2576S133PFG 1 Download Model
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71V256SA15PZGI Renesas Electronics
1 The 71V256SA 3.3V CMOS Asynchronous SRAM is organized as 32K x 8. When in standby mode, its very low power characteristics contribute to extended battery life. Under full standby mode (CS at CMOS level, f=0), power consumption is guaranteed to be less than 6.6mW. Fully static asynchronous circuitry is used; no clocks or refreshes are required for operation. Other 71V256SA15PZGI 1 Download Model
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71V256SA12PZG8 Renesas Electronics
1 The 71V256SA 3.3V CMOS Asynchronous SRAM is organized as 32K x 8. When in standby mode, its very low power characteristics contribute to extended battery life. Under full standby mode (CS at CMOS level, f=0), power consumption is guaranteed to be less than 6.6mW. Fully static asynchronous circuitry is used; no clocks or refreshes are required for operation. Other 71V256SA12PZG8 1 Download Model
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71V256SA15PZG8 Renesas Electronics
1 The 71V256SA 3.3V CMOS Asynchronous SRAM is organized as 32K x 8. When in standby mode, its very low power characteristics contribute to extended battery life. Under full standby mode (CS at CMOS level, f=0), power consumption is guaranteed to be less than 6.6mW. Fully static asynchronous circuitry is used; no clocks or refreshes are required for operation. Other 71V256SA15PZG8 1 Download Model
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71V256SA15YGI8 Renesas Electronics
1 The 71V256SA 3.3V CMOS Asynchronous SRAM is organized as 32K x 8. When in standby mode, its very low power characteristics contribute to extended battery life. Under full standby mode (CS at CMOS level, f=0), power consumption is guaranteed to be less than 6.6mW. Fully static asynchronous circuitry is used; no clocks or refreshes are required for operation. Other 71V256SA15YGI8 1 Download Model
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71V2576S150PFG Renesas Electronics
1 This product is obsolete. Quad Flat Packages 71V2576S150PFG 1 Download Model
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71V256SA12YGI Renesas Electronics
1 The 71V256SA 3.3V CMOS Asynchronous SRAM is organized as 32K x 8. When in standby mode, its very low power characteristics contribute to extended battery life. Under full standby mode (CS at CMOS level, f=0), power consumption is guaranteed to be less than 6.6mW. Fully static asynchronous circuitry is used; no clocks or refreshes are required for operation. Other 71V256SA12YGI 1 Download Model
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71V25761S183PFGI Renesas Electronics
1 The 71V25761 3.3V CMOS Synchronous SRAM is organized as 128K x 36 and contains write, data, address and control registers. The burst mode feature offers the highest level of performance to the system designer, as the 71V25761 can provide four cycles of data for a single address presented to the SRAM. Quad Flat Packages 71V25761S183PFGI 1 Download Model
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71V256SA15PZG Renesas Electronics
1 The 71V256SA 3.3V CMOS Asynchronous SRAM is organized as 32K x 8. When in standby mode, its very low power characteristics contribute to extended battery life. Under full standby mode (CS at CMOS level, f=0), power consumption is guaranteed to be less than 6.6mW. Fully static asynchronous circuitry is used; no clocks or refreshes are required for operation. Small Outline Packages 71V256SA15PZG 1 Download Model
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71V256SA20PZGI8 Renesas Electronics
1 The 71V256SA 3.3V CMOS Asynchronous SRAM is organized as 32K x 8. When in standby mode, its very low power characteristics contribute to extended battery life. Under full standby mode (CS at CMOS level, f=0), power consumption is guaranteed to be less than 6.6mW. Fully static asynchronous circuitry is used; no clocks or refreshes are required for operation. Other 71V256SA20PZGI8 1 Download Model
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71V256SA20PZG Renesas Electronics
1 The 71V256SA 3.3V CMOS Asynchronous SRAM is organized as 32K x 8. When in standby mode, its very low power characteristics contribute to extended battery life. Under full standby mode (CS at CMOS level, f=0), power consumption is guaranteed to be less than 6.6mW. Fully static asynchronous circuitry is used; no clocks or refreshes are required for operation. Other 71V256SA20PZG 1 Download Model
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