| ATmega169P Automotive |
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picoPower technology AVR Microcontroller.
16-Kbyte self-programming Flash Program Memory, 1-Kbyte SRAM, 512 Byte EEPROM, 8 Channel 10-bit A/D-converter. JTAG interface for on-chip-debug. 4 X 25 Segment LCD Driver. Up to 16 MIPS throughput at 16 MHz. 2.7 - 5.5 Volt Operation. |
| Flash (Kbytes) |
16 |
| EEPROM (Kbytes) |
0.5 |
| SRAM (Bytes) |
1024 |
| Max I/O Pins |
54 |
| F.max (MHz) |
16 |
| Vcc (V) |
2.7 - 5.5 |
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TQFP 64
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ATmega169P Automotive Preliminary Summary
(373 pages, revision B, updated 12/07)
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ATmega169P Automotive Preliminary
(373 pages, revision B, updated 12/07)
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AVR042: AVR Hardware Design Considerations
(14 pages, revision F, updated 4/08)
This Application Note covers the most common problems encountered when switching to a new microcontroller architecture like the AVR. Solutions and considerations for the most common design challenges are covered.
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AVR509: Migration between ATmega169P and ATmega329P
(4 pages, revision B, updated 11/06)
The ATmega169P and ATmega329P are designed to be a pin and functionality compatible sub family, but because of the differences in memory sizes and other issues mentioned in this application note there may be a need for minor modifications in the application when porting code between the devices.
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AVR JTAGICE mkII |
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AVR Studio 4 |
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See more FAQs |
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AVR and AVR32 - Quick Reference Guide
(Overview, 68 pages, revision I, updated 5/09)
Introduction of the product range of AVR and AVR32 microcontrollers and application processors:
- Device family description
- Key features
- Device selection guides
- Application oriented device families
- Tools offer
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AVR Instruction Set
(User Guide, 155 pages, revision H, updated 7/09)
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AVR Microcontrollers for Automotive
(Brochure, 12 pages, revision F, updated 10/08)
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Innovative Techniques for Extremely Low Power Consumption with 8-bit Microcontrollers
(White Paper, 16 pages, revision A, updated 02/06)
This white paper highlight some of the challenges of modern microcontroller design and how the new picoPower techniques used in the AVR microcontroller is addressing them. |
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