ATA8741-PXQW Atmel, ATA8741-PXQW Datasheet - Page 8

MCU W/TRANSMITTER ASK/FSK 24QFN

ATA8741-PXQW

Manufacturer Part Number
ATA8741-PXQW
Description
MCU W/TRANSMITTER ASK/FSK 24QFN
Manufacturer
Atmel
Datasheet

Specifications of ATA8741-PXQW

Frequency
310MHz ~ 350MHz
Applications
Home Automation, Remote Sensing, RKE
Modulation Or Protocol
ASK, FSK
Data Rate - Maximum
32 kBit/s
Power - Output
6dBm ~ 10.5dBm
Current - Transmitting
9.8mA
Data Interface
PCB, Surface Mount
Antenna Connector
PCB, Surface Mount
Memory Size
4kB Flash, 256B EEPROM, 256B SRAM
Voltage - Supply
2 V ~ 4 V
Operating Temperature
-40°C ~ 85°C
Package / Case
24-VQFN Exposed Pad, 24-HVQFN, 24-SQFN, 24-DHVQFN
Processor Series
ATA8x
Core
AVR8
Data Bus Width
8 bit
Program Memory Type
Flash
Program Memory Size
4 KB
Data Ram Size
256 B
Interface Type
SPI, USI
Maximum Clock Frequency
16 MHz
Number Of Programmable I/os
12
Number Of Timers
2
Maximum Operating Temperature
+ 85 C
Mounting Style
SMD/SMT
Development Tools By Supplier
ATASTK512-EK1-IND
Minimum Operating Temperature
- 40 C
On-chip Adc
10 bit, 8 Channel
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Features
-
Lead Free Status / Rohs Status
 Details

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
ATA8741-PXQW
Manufacturer:
ATMEL
Quantity:
6 000
3.1
3.2
3.3
8
Description of RF Transmitter
ASK Transmission
FSK Transmission
ATA8741
The integrated PLL transmitter is particularly suitable for simple, low-cost RF applications. The
VCO is locked to 32 f
other PLL and VCO peripheral elements are integrated.
The XTO is a series resonance oscillator so that only one capacitor together with a crystal con-
nected in series to GND are needed as external elements.
The crystal oscillator together with the PLL typically need < 3 ms until the PLL is locked and the
CLK output is stable. There is a wait time of
and the PA is switched on.
The power amplifier is an open-collector output delivering a current pulse, which is nearly inde-
pendent from the load impedance. Thus, the delivered output power is controllable via the
connected load impedance.
This output configuration enables simple matching to any kind of antenna or to 50 . This results
in a high power efficiency of = P
load impedance of Z
The RF TX block is activated by ENABLE = H. PA_ENABLE must remain L for typically
then the CLK signal is taken to clock the AVR and the output power can be modulated by means
of pin PA_ENABLE. After transmission, PA_ENABLE is switched to L and the microcontroller
switches back to internal clocking. The RF TX is switched back to standby mode with
ENABLE = L.
The RF TX is activated by ENABLE = H. PA_ENABLE must remain L for typically
the CLK signal is taken to clock the AVR and the power amplifier is switched on with
PA_ENABLE = H. The chip is then ready for FSK modulation. The AVR starts to switch on and
off the capacitor between the XTAL load capacitor and GND with an open-drain output port, thus
changing the reference frequency of the PLL. When the switch is closed, the output frequency is
lower than when the switch is open. After transmission, PA_ENABLE is switched to L and the
microcontroller switches back to internal clocking. The RF TX is switched back to standby mode
with ENABLE = L.
The accuracy of the frequency deviation with XTAL pulling method is about ±25% when the fol-
lowing tolerances are considered.
Figure 3-1.
Tolerances of Frequency Modulation
XTAL
V
Load
S
XTAL
= (255 + j192)
hence a 9.8438 MHz crystal is needed for a 315 MHz transmitter. All
C
Stray1
out
/(I
Crystal equivalent circuit
S,PA
C
M
is used at 3 V supply voltage.
V
S
L
C
) of 40% for the power amplifier when an optimized
M
0
3 ms until the CLK is used for the microcontroller
R
S
C
Stray2
C
5
C
Switch
C
4
9140C–INDCO–02/10
3 ms, then
3 ms,

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