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R5F564MFDDLC#21
Renesas Electronics
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1 | The RX64M Group 32-bit microcontrollers are capable of operating at up to 120 MHz, providing a leading edge performance of 5.06 CoreMark/MHz. The RX64M employs the powerfully evolved RXv2 core, which is backward compatible with the RX core employed in existing RX products.The RXv2 core enables 1.48 times the CoreMark/MHz performance and a 40% reduction in power consumption compared to existing RX products, and even higher code efficiency, allowing the realization of high-speed, low consumption systems. The | Other | R5F564MFDDLC#21 |
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24LC21-I/SN
Microchip
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1 | EEPROM 2.5V Dual Mode | Small Outline Packages | 24LC21-I/SN |
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TDA8020HL/C2,118
NXP
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1 | NXP - TDA8020HL/C2,118 - SMART CARD INTERFACE, 6.5V, LQFP-32 | Quad Flat Packages | TDA8020HL/C2,118 |
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R5F564MGCDLC#21
Renesas Electronics
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1 | The RX64M Group 32-bit microcontrollers are capable of operating at up to 120 MHz, providing a leading edge performance of 5.06 CoreMark/MHz. The RX64M employs the powerfully evolved RXv2 core, which is backward compatible with the RX core employed in existing RX products.The RXv2 core enables 1.48 times the CoreMark/MHz performance and a 40% reduction in power consumption compared to existing RX products, and even higher code efficiency, allowing the realization of high-speed, low consumption systems. The | Other | R5F564MGCDLC#21 |
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R5F564MGHDLC#21
Renesas Electronics
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1 | The RX64M Group 32-bit microcontrollers are capable of operating at up to 120 MHz, providing a leading edge performance of 5.06 CoreMark/MHz. The RX64M employs the powerfully evolved RXv2 core, which is backward compatible with the RX core employed in existing RX products.The RXv2 core enables 1.48 times the CoreMark/MHz performance and a 40% reduction in power consumption compared to existing RX products, and even higher code efficiency, allowing the realization of high-speed, low consumption systems. The | Other | R5F564MGHDLC#21 |
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24LC21A-I/SNG
Microchip
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1 | 1K 2.5V Dual Mode I2C Serial EEPROM | Small Outline Packages | 24LC21A-I/SNG |
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R5F564MLDDLC#21
Renesas Electronics
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1 | The RX64M Group 32-bit microcontrollers are capable of operating at up to 120 MHz, providing a leading edge performance of 5.06 CoreMark/MHz. The RX64M employs the powerfully evolved RXv2 core, which is backward compatible with the RX core employed in existing RX products.The RXv2 core enables 1.48 times the CoreMark/MHz performance and a 40% reduction in power consumption compared to existing RX products, and even higher code efficiency, allowing the realization of high-speed, low consumption systems. The | Other | R5F564MLDDLC#21 |
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24LC21A-I/SN
Microchip
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1 | Microchip 24LC21A-I/SN EEPROM Memory, 1kb, 3500ns, 2.5 → 5.5 V 8-Pin SOIC | Other | 24LC21A-I/SN |
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R5F564MFCDLC#21
Renesas Electronics
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1 | The RX64M Group 32-bit microcontrollers are capable of operating at up to 120 MHz, providing a leading edge performance of 5.06 CoreMark/MHz. The RX64M employs the powerfully evolved RXv2 core, which is backward compatible with the RX core employed in existing RX products.The RXv2 core enables 1.48 times the CoreMark/MHz performance and a 40% reduction in power consumption compared to existing RX products, and even higher code efficiency, allowing the realization of high-speed, low consumption systems. The | Other | R5F564MFCDLC#21 |
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R5F564MLGDLC#21
Renesas Electronics
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1 | The RX64M Group 32-bit microcontrollers are capable of operating at up to 120 MHz, providing a leading edge performance of 5.06 CoreMark/MHz. The RX64M employs the powerfully evolved RXv2 core, which is backward compatible with the RX core employed in existing RX products.The RXv2 core enables 1.48 times the CoreMark/MHz performance and a 40% reduction in power consumption compared to existing RX products, and even higher code efficiency, allowing the realization of high-speed, low consumption systems. The | Other | R5F564MLGDLC#21 |
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R5F564MJHDLC#21
Renesas Electronics
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1 | The RX64M Group 32-bit microcontrollers are capable of operating at up to 120 MHz, providing a leading edge performance of 5.06 CoreMark/MHz. The RX64M employs the powerfully evolved RXv2 core, which is backward compatible with the RX core employed in existing RX products.The RXv2 core enables 1.48 times the CoreMark/MHz performance and a 40% reduction in power consumption compared to existing RX products, and even higher code efficiency, allowing the realization of high-speed, low consumption systems. The | Other | R5F564MJHDLC#21 |
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R5F564MJGDLC#21
Renesas Electronics
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1 | The RX64M Group 32-bit microcontrollers are capable of operating at up to 120 MHz, providing a leading edge performance of 5.06 CoreMark/MHz. The RX64M employs the powerfully evolved RXv2 core, which is backward compatible with the RX core employed in existing RX products.The RXv2 core enables 1.48 times the CoreMark/MHz performance and a 40% reduction in power consumption compared to existing RX products, and even higher code efficiency, allowing the realization of high-speed, low consumption systems. The | Other | R5F564MJGDLC#21 |
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R5F564MJDDLC#21
Renesas Electronics
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1 | The RX64M Group 32-bit microcontrollers are capable of operating at up to 120 MHz, providing a leading edge performance of 5.06 CoreMark/MHz. The RX64M employs the powerfully evolved RXv2 core, which is backward compatible with the RX core employed in existing RX products.The RXv2 core enables 1.48 times the CoreMark/MHz performance and a 40% reduction in power consumption compared to existing RX products, and even higher code efficiency, allowing the realization of high-speed, low consumption systems. The | Other | R5F564MJDDLC#21 |
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R5F564MFHDLC#21
Renesas Electronics
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1 | The RX64M Group 32-bit microcontrollers are capable of operating at up to 120 MHz, providing a leading edge performance of 5.06 CoreMark/MHz. The RX64M employs the powerfully evolved RXv2 core, which is backward compatible with the RX core employed in existing RX products.The RXv2 core enables 1.48 times the CoreMark/MHz performance and a 40% reduction in power consumption compared to existing RX products, and even higher code efficiency, allowing the realization of high-speed, low consumption systems. The | Other | R5F564MFHDLC#21 |
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R5F564MLHDLC#21
Renesas Electronics
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1 | The RX64M Group 32-bit microcontrollers are capable of operating at up to 120 MHz, providing a leading edge performance of 5.06 CoreMark/MHz. The RX64M employs the powerfully evolved RXv2 core, which is backward compatible with the RX core employed in existing RX products.The RXv2 core enables 1.48 times the CoreMark/MHz performance and a 40% reduction in power consumption compared to existing RX products, and even higher code efficiency, allowing the realization of high-speed, low consumption systems. The | Other | R5F564MLHDLC#21 |
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R5F564MGDDLC#21
Renesas Electronics
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1 | The RX64M Group 32-bit microcontrollers are capable of operating at up to 120 MHz, providing a leading edge performance of 5.06 CoreMark/MHz. The RX64M employs the powerfully evolved RXv2 core, which is backward compatible with the RX core employed in existing RX products.The RXv2 core enables 1.48 times the CoreMark/MHz performance and a 40% reduction in power consumption compared to existing RX products, and even higher code efficiency, allowing the realization of high-speed, low consumption systems. The | Other | R5F564MGDDLC#21 |
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R5F564MGGDLC#21
Renesas Electronics
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1 | The RX64M Group 32-bit microcontrollers are capable of operating at up to 120 MHz, providing a leading edge performance of 5.06 CoreMark/MHz. The RX64M employs the powerfully evolved RXv2 core, which is backward compatible with the RX core employed in existing RX products.The RXv2 core enables 1.48 times the CoreMark/MHz performance and a 40% reduction in power consumption compared to existing RX products, and even higher code efficiency, allowing the realization of high-speed, low consumption systems. The | Other | R5F564MGGDLC#21 |
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24LC21AT/SN
Microchip
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1 | EEPROM 2.5V Dual Mode | Small Outline Packages | 24LC21AT/SN |
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R5F564MFGDLC#21
Renesas Electronics
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1 | The RX64M Group 32-bit microcontrollers are capable of operating at up to 120 MHz, providing a leading edge performance of 5.06 CoreMark/MHz. The RX64M employs the powerfully evolved RXv2 core, which is backward compatible with the RX core employed in existing RX products.The RXv2 core enables 1.48 times the CoreMark/MHz performance and a 40% reduction in power consumption compared to existing RX products, and even higher code efficiency, allowing the realization of high-speed, low consumption systems. The | Other | R5F564MFGDLC#21 |
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R5F564MJCDLC#21
Renesas Electronics
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1 | The RX64M Group 32-bit microcontrollers are capable of operating at up to 120 MHz, providing a leading edge performance of 5.06 CoreMark/MHz. The RX64M employs the powerfully evolved RXv2 core, which is backward compatible with the RX core employed in existing RX products.The RXv2 core enables 1.48 times the CoreMark/MHz performance and a 40% reduction in power consumption compared to existing RX products, and even higher code efficiency, allowing the realization of high-speed, low consumption systems. The | Other | R5F564MJCDLC#21 |
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R5F564MLCDLC#21
Renesas Electronics
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1 | The RX64M Group 32-bit microcontrollers are capable of operating at up to 120 MHz, providing a leading edge performance of 5.06 CoreMark/MHz. The RX64M employs the powerfully evolved RXv2 core, which is backward compatible with the RX core employed in existing RX products.The RXv2 core enables 1.48 times the CoreMark/MHz performance and a 40% reduction in power consumption compared to existing RX products, and even higher code efficiency, allowing the realization of high-speed, low consumption systems. The | Other | R5F564MLCDLC#21 |
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LC21.4-1.0/04
Vectron International (now Microchip)
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1 | Band Pass Filter, 21.4MHz | LC21.4-1.0/04 |
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LC21.4-2.0/04V1
Microsemi Corporation (now Microchip)
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1 | Band Pass Filter, 21.4MHz | LC21.4-2.0/04V1 |
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LC21.4-2.0/07V2
Vectron International (now Microchip)
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1 | Band Pass Filter, 21.4MHz | LC21.4-2.0/07V2 |
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LC21.4-5.0/04V1
Microchip Technology Inc
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1 | Band Pass Filter, 21.4MHz | LC21.4-5.0/04V1 |
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