ATMEGA128RZBV-8AU Atmel, ATMEGA128RZBV-8AU Datasheet - Page 227

MCU ATMEGA1280/AT86RF230 100TQFP

ATMEGA128RZBV-8AU

Manufacturer Part Number
ATMEGA128RZBV-8AU
Description
MCU ATMEGA1280/AT86RF230 100TQFP
Manufacturer
Atmel
Series
ATMEGAr
Datasheets

Specifications of ATMEGA128RZBV-8AU

Frequency
2.4GHz
Data Rate - Maximum
2Mbps
Modulation Or Protocol
802.15.4 Zigbee
Applications
General Purpose
Power - Output
3dBm
Sensitivity
-101dBm
Voltage - Supply
1.8 V ~ 3.6 V
Data Interface
PCB, Surface Mount
Memory Size
128kB Flash, 4kB EEPROM, 8kB RAM
Antenna Connector
PCB, Surface Mount
Package / Case
100-TQFP
Wireless Frequency
2.4 GHz
Interface Type
JTAG, SPI
Output Power
3 dBm
For Use With
ATAVRISP2 - PROGRAMMER AVR IN SYSTEMATSTK501 - ADAPTER KIT FOR 64PIN AVR MCUATSTK500 - PROGRAMMER AVR STARTER KIT
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Operating Temperature
-
Current - Transmitting
-
Current - Receiving
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
For Use With/related Products
ATmega128
21.9.5
21.10 Examples of Baud Rate Setting
Table 21-9.
2549M–AVR–09/10
14.4 K
19.2 K
28.8 K
38.4 K
Baud
(bps)
Rate
2400
4800
9600
UBRRnL and UBRRnH – USART Baud Rate Registers
UBRR
25
12
6
3
2
1
1
Examples of UBRRn Settings for Commonly Used Oscillator Frequencies
U2Xn = 0
f
-18.6%
osc
-7.0%
Error
0.2%
0.2%
8.5%
8.5%
8.5%
= 1.0000 MHz
• Bit 15:12 – Reserved Bits
These bits are reserved for future use. For compatibility with future devices, these bit must be
written to zero when UBRRH is written.
• Bit 11:0 – UBRR11:0: USART Baud Rate Register
This is a 12-bit register which contains the USART baud rate. The UBRRH contains the four
most significant bits, and the UBRRL contains the eight least significant bits of the USART baud
rate. Ongoing transmissions by the Transmitter and Receiver will be corrupted if the baud rate is
changed. Writing UBRRL will trigger an immediate update of the baud rate prescaler.
For standard crystal and resonator frequencies, the most commonly used baud rates for asyn-
chronous operation can be generated by using the UBRR settings in
on page
get baud rate, are bold in the table. Higher error ratings are acceptable, but the Receiver will
have less noise resistance when the error ratings are high, especially for large serial frames (see
“Asynchronous Operational Range” on page
lowing equation:
Bit
Read/Write
Initial Value
UBRR
51
25
12
8
6
3
2
U2Xn = 1
231. UBRR values which yield an actual baud rate differing less than 0.5% from the tar-
-3.5%
-7.0%
Error
0.2%
0.2%
0.2%
8.5%
8.5%
R/W
15
R
7
0
0
UBRR
47
23
11
7
5
3
2
R/W
U2Xn = 0
14
R
6
0
0
Error[%]
f
osc
ATmega640/1280/1281/2560/2561
Error
0.0%
0.0%
0.0%
0.0%
0.0%
0.0%
0.0%
R/W
13
=
= 1.8432 MHz
R
5
0
0
BaudRate
------------------------------------------------------- - 1
UBRR
95
47
23
15
11
BaudRate
R/W
7
5
12
R
4
0
0
U2Xn = 1
220). The error values are calculated using the fol-
UBRR[7:0]
Closest Match
Error
0.0%
0.0%
0.0%
0.0%
0.0%
0.0%
0.0%
R/W
R/W
11
3
0
0
UBRR
R/W
R/W
51
25
12
10
2
0
0
8
6
3
2
UBRR[11:8]
100%
U2Xn = 0
f
Table 21-9
osc
-3.5%
-7.0%
Error
0.2%
0.2%
0.2%
8.5%
8.5%
R/W
R/W
9
1
0
0
= 2.0000 MHz
UBRR
R/W
R/W
103
8
0
0
0
51
25
16
12
to
8
6
U2Xn = 1
Table 21-12
UBRRHn
UBRRLn
-3.5%
-7.0%
Error
0.2%
0.2%
0.2%
2.1%
0.2%
227

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