No. | Partie # | Fabricant | Description | Fiche Technique |
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Motorola Semiconductor |
8-Bit Microcomputer |
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Motorola |
8-BIT MICROCOMPUTER available in addition to the normal M6801 features include: • 4K Bytes of ROM • 512 Bytes of EEPROM • 256 Bytes of RAM (All Saved During Standby) • Enhanced 16-Bit Timer System Four Stage Programmable Prescaler Three Input Capture Functions Five Outp |
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Motorola |
MICROCOMPUTER |
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Motorola |
8-BIT MICROCOMPUTER ............................... . 3-185 3-185 Section 2 Functional Pin Description, Memory, CPU, And Registers I 2.1 2.1.1 2.1.2 Functional Pin Description .............. . VCC and VSS · · · · · · · · · · · · · · · · · · ·. IRQ........... ...................... . |
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Motorola |
HCMOS Microcomputer |
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Motorola |
Microcomputer / Microprocessor |
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Motorola |
Microcomputer / Microprocessor |
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Motorola |
HCMOS Microcomputer |
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Motorola |
HCMOS Microcomputer |
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Motorola |
HCMOS Microcomputer |
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Motorola |
HCMOS Microcomputer |
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Motorola |
8-Bit EPROM Microcomputer |
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Motorola |
(MPU131 - MPU133) Transistors |
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Motorola |
8-Bit Microcomputer |
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Motorola |
8-BIT MICROCOMPUTER • 8-Bit Architecture • 112 Bytes of Standby RAM • Standby RAM Power Pin • Memory Mapped I/O • 1100 Bytes of User ROM • 20 TTL/CMOS Compatible Bidirectional I/O Lines (8 Lines are LED Compatible) • On-Chip Clock Generator • Self-Check Mode • Zero-Cros |
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Motorola |
8-BIT EPROM MICROCOMPUTER of the MC1468705G2 EPROM MCU. HARDWARE FEATURES • Typical Full Speed Operating Power of 20 mW at 5 V • Typical WAIT Mode Power of 5 mW • Typical STOP Mode Power of 5 p,W • Fully Static Operation • 112 Bytes of On-Chip RAM • 2106 Bytes of UV Erasable, |
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Motorola |
HCMOS Microcomputer |
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Motorola |
HCMOS Microcomputer |
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Motorola |
HCMOS Microcomputer |
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Motorola Inc |
High-density Complementary Metal Oxide Semiconductor (HCMOS) Microcomputer Unit ............................................................................................................... 1-2 Mask options for the MC68HC05B6 ..................................................................... 1-2 2 MODES OF OPERATION AND PI |
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