No. | Partie # | Fabricant | Description | Fiche Technique |
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NXP Semiconductors |
8-bit 80C51 3 V low power 16/32/64 kB fash microcontroller I I I I I I I I I I I I I 80C51 CPU 3 V operating voltage from 0 MHz to 33 MHz 16/32/64 kB of on-chip flash user code memory with ISP and IAP Supports 12-clock (default) or 6-clock mode selection via software or ISP SPI and enhanced UART PCA with PWM |
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NXP Semiconductors |
(P89LPC912 - P89LPC914) 8-bit microcontrollers s 1 kB byte-erasable Flash code memory organized into 256-byte sectors and 16-byte pages. Single-byte erasing allows any byte(s) to be used as non-volatile data storage. s 128-byte RAM data memory. s Two 16-bit counter/timers. Each timer may be config |
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NXP Semiconductors |
P89LPC901FN 2.1 Principal features s 1 kB byte-erasable Flash code memory organized into 256-byte sectors and 16-byte pages. Single-byte erasing allows any byte(s) to be used as non-volatile data storage. s 128-byte RAM data memory. s Two 16-bit counter/timers. |
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NXP Semiconductors |
(P89LPC9102 - P89LPC9107) 8-bit microcontrollers 2.1 Principal features s 1 kB byte-erasable Flash code memory organized into 256-byte sectors and 16-byte pages. Single-byte erasing allows any byte(s) to be used as non-volatile data storage. s 128-byte RAM data memory. s Two 16-bit timer/counters ( |
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NXP Semiconductors |
8-bit microcontrollers 2.1 Principal features s 1 kB byte-erasable Flash code memory organized into 256-byte sectors and 16-byte pages. Single-byte erasing allows any byte(s) to be used as non-volatile data storage. s 128-byte RAM data memory. s Two 16-bit counter/timers. |
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NXP Semiconductors |
8-bit microcontrollers 2.1 Principal features s 1 kB byte-erasable Flash code memory organized into 256-byte sectors and 16-byte pages. Single-byte erasing allows any byte(s) to be used as non-volatile data storage. s 128-byte RAM data memory. s Two 16-bit counter/timers. |
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NXP Semiconductors |
8-bit microcontrollers 2.1 Principal features I 2 kB byte-erasable flash code memory organized into 256-byte sectors and 16-byte pages. Single-byte erasing allows any byte(s) to be used as non-volatile data storage. I 256-byte RAM data memory. I Two 16-bit counter/timers. T |
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NXP Semiconductors |
(P89LPC912 - P89LPC914) 8-bit microcontrollers s 1 kB byte-erasable Flash code memory organized into 256-byte sectors and 16-byte pages. Single-byte erasing allows any byte(s) to be used as non-volatile data storage. s 128-byte RAM data memory. s Two 16-bit counter/timers. Each timer may be config |
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NXP Semiconductors |
P89LPC921 2.1 Principal features s 2 kB/4 kB/8 kB Flash code memory with 1 kB erasable sectors, 64-byte erasable page size, and single byte erase. s 256-byte RAM data memory. s Two 16-bit counter/timers. Each timer may be configured to toggle a port output upon |
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NXP Semiconductors |
8-bit microcontroller and benefits 2.1 Principal features 2 kB/4 kB/8 kB byte-erasable flash code memory organized into 1 kB sectors and 64-byte pages. Single-byte erasing allows any byte(s) to be used as non-volatile data storage. 256-byte RAM data memory. Two anal |
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NXP Semiconductors |
P89LPC936 and benefits 2.1 Principal features 4 kB/8 kB/16 kB byte-erasable flash code memory organized into 1 kB/2 kB sectors and 64-byte pages. Single-byte erasing allows any byte(s) to be used as non-volatile data storage. 256-byte RAM data memory. Both |
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NXP Semiconductors |
(P89LPC952 / P89LPC954) 8-bit microcontroller 2.1 Principal features I 8 kB/16 kB byte-erasable flash code memory organized into 1 kB sectors and 64-byte pages. Single-byte erasing allows any byte(s) to be used as non-volatile data storage. I 256-byte RAM data memory and a 256-byte auxiliary on-c |
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NXP Semiconductors |
(P89LPC9102 - P89LPC9107) 8-bit microcontrollers 2.1 Principal features s 1 kB byte-erasable Flash code memory organized into 256-byte sectors and 16-byte pages. Single-byte erasing allows any byte(s) to be used as non-volatile data storage. s 128-byte RAM data memory. s Two 16-bit timer/counters ( |
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NXP Semiconductors |
8-bit microcontrollers 2.1 Principal features I 2 kB byte-erasable flash code memory organized into 256-byte sectors and 16-byte pages. Single-byte erasing allows any byte(s) to be used as non-volatile data storage. I 256-byte RAM data memory. I Two 16-bit counter/timers. T |
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NXP Semiconductors |
(P89LPC952 / P89LPC954) 8-bit microcontroller 2.1 Principal features I 8 kB/16 kB byte-erasable flash code memory organized into 1 kB sectors and 64-byte pages. Single-byte erasing allows any byte(s) to be used as non-volatile data storage. I 256-byte RAM data memory and a 256-byte auxiliary on-c |
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NXP Semiconductors |
(P89LPC9102 - P89LPC9107) 8-bit microcontrollers 2.1 Principal features s 1 kB byte-erasable Flash code memory organized into 256-byte sectors and 16-byte pages. Single-byte erasing allows any byte(s) to be used as non-volatile data storage. s 128-byte RAM data memory. s Two 16-bit timer/counters ( |
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NXP Semiconductors |
(P89LPC912 - P89LPC914) 8-bit microcontrollers s 1 kB byte-erasable Flash code memory organized into 256-byte sectors and 16-byte pages. Single-byte erasing allows any byte(s) to be used as non-volatile data storage. s 128-byte RAM data memory. s Two 16-bit counter/timers. Each timer may be config |
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NXP Semiconductors |
8-bit microcontrollers 2.1 Principal features I 2 kB byte-erasable flash code memory organized into 256-byte sectors and 16-byte pages. Single-byte erasing allows any byte(s) to be used as non-volatile data storage. I 256-byte RAM data memory. I Two 16-bit counter/timers. T |
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NXP Semiconductors |
8-bit microcontroller and benefits 2.1 Principal features 4 kB/8 kB byte-erasable flash code memory organized into 1 kB sectors and 64-byte pages. Single-byte erasing allows any byte(s) to be used as non-volatile data storage. 256-byte RAM data memory. Both the P89LPC |
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NXP Semiconductors |
8-bit 80C51 3 V low power 16/32/64 kB fash microcontroller I I I I I I I I I I I I I 80C51 CPU 3 V operating voltage from 0 MHz to 33 MHz 16/32/64 kB of on-chip flash user code memory with ISP and IAP Supports 12-clock (default) or 6-clock mode selection via software or ISP SPI and enhanced UART PCA with PWM |
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