ATxmega128B1 Atmel Corporation, ATxmega128B1 Datasheet - Page 383

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ATxmega128B1

Manufacturer Part Number
ATxmega128B1
Description
Manufacturer
Atmel Corporation
Datasheets

Specifications of ATxmega128B1

Flash (kbytes)
128 Kbytes
Pin Count
100
Max. Operating Frequency
32 MHz
Cpu
8-bit AVR
# Of Touch Channels
16
Hardware Qtouch Acquisition
No
Max I/o Pins
53
Ext Interrupts
53
Usb Transceiver
1
Usb Speed
Full Speed
Usb Interface
Device
Spi
3
Twi (i2c)
1
Uart
2
Segment Lcd
160
Graphic Lcd
No
Video Decoder
No
Camera Interface
No
Adc Channels
16
Adc Resolution (bits)
12
Adc Speed (ksps)
2000
Analog Comparators
4
Resistive Touch Screen
No
Temp. Sensor
Yes
Crypto Engine
AES/DES
Sram (kbytes)
8
Eeprom (bytes)
2048
Self Program Memory
YES
Dram Memory
No
Nand Interface
No
Picopower
Yes
Temp. Range (deg C)
-40 to 85
I/o Supply Class
1.6 to 3.6
Operating Voltage (vcc)
1.6 to 3.6
Fpu
No
Mpu / Mmu
no / no
Timers
3
Output Compare Channels
10
Input Capture Channels
10
Pwm Channels
10
32khz Rtc
Yes
Calibrated Rc Oscillator
Yes

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29. Memory Programming
29.1
29.2
8291A–AVR–10/11
Features
Overview
This section describes how to program the nonvolatile memory (NVM) in Atmel AVR XMEGA
devices, and covers both self-programming and external programming. The NVM consists of the
flash program memory, user signature and calibration rows, fuses and lock bits, and EEPROM
data memory. For details on the actual memories, how they are organized, and the register
description for the NVM controller used to access the memories, refer to
The NVM can be accessed for read and write from application software through self-program-
ming and from an external programmer. Accessing the NVM is done through the NVM controller,
and the two methods of programming are similar. Memory access is done by loading address
and/or data to the selected memory or NVM controller and using a set of commands and triggers
that make the NVM controller perform specific tasks on the nonvolatile memory.
From external programming, all memory spaces can be read and written, except for the produc-
tion signature row, which can only be read. The device can be programmed in-system and is
accessed through the PDI using the PDI or JTAG physical interfaces.
on page 398
Self-programming and boot loader support allows application software in the device to read and
write the flash, user signature row and EEPROM, write the lock bits to a more secure setting,
and read the production signature row and fuses. The flash allows read-while-write self-pro-
gramming, meaning that the CPU can continue to operate and execute code while the flash is
being programmed.
detail.
For both self-programming and external programming, it is possible to run a CRC check on the
flash or a section of the flash to verify its content after programming.
Read and write access to all memory spaces from
Self-programming and boot loader support
External programming
High security with separate boot lock bits for:
Reset fuse to select reset vector address to the start of the
– External programmers
– Application software self-programming
– Read-while-write self-programming
– CPU can run and execute code while flash is being programmed
– Any communication interface can be used for program upload/download
– Support for in-system and production programming
– Programming through serial PDI or JTAG interface
– External programming access
– Boot loader section access
– Application section access
– Application table access
– Application section, or
– Boot loader section
describes PDI and JTAG in detail.
”Self-programming and Boot Loader Support” on page 387
Atmel AVR XMEGA B
”External Programming”
”Memories” on page
describes this in
383
19.

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