ATA5428-PLQW80 Atmel, ATA5428-PLQW80 Datasheet - Page 25

RF Transceiver ASK/FSK Transceiver 434 and 868MHz

ATA5428-PLQW80

Manufacturer Part Number
ATA5428-PLQW80
Description
RF Transceiver ASK/FSK Transceiver 434 and 868MHz
Manufacturer
Atmel
Datasheet

Specifications of ATA5428-PLQW80

Wireless Frequency
226 KHz, 237 KHz
Interface Type
4-Wire SPI
Noise Figure
7 dB
Output Power
10 dBm
Operating Supply Voltage
2.4 V to 3.6 V
Maximum Operating Temperature
+ 85 C
Mounting Style
SMD/SMT
Package / Case
QFN-48
Maximum Data Rate
20 Kbps
Minimum Operating Temperature
- 40 C
Modulation
ASK, FSK
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
4. XTO
4841D–WIRE–10/07
The XTO is an amplitude-regulated Pierce oscillator type with integrated load capacitances
(2
lation frequency f
designing the system in terms of receiving and transmitting frequency offset, the accuracy of the
crystal and XTO have to be considered.
The synthesizer can adjust the local oscillator frequency for the initial frequency error in f
This is done at nominal supply voltage and temperature with the control registers 2 and 3 (see
Table 7-7
and temperature is then < ±0.5 ppm. The XTO’s gm has very low influence of less than ±2 ppm
on the frequency at nominal supply voltage and temperature.
In a single channel system less than ±150 ppm should be corrected to avoid that harmonics of
the CLK output disturb the receive mode. If the CLK is not used or if it is carefully laid out on the
application PCB (as needed for multi channel systems), more than ±150 ppm can be
compensated.
Over temperature and supply voltage, the XTO's additional pulling is only ±2 ppm. The XTAL
versus temperature and its aging is then the main source of frequency error in the local
oscillator.
The XTO frequency depends on XTAL properties and the load capacitances C
and XTAL2. The pulling of f
C
found in its data sheet. C
sists of C
Figure 4-1.
With C
P ±100 ppm and with C
is P ±50 ppm.
Since typical crystals have less than ±50 ppm tolerance at 25°C, the compensation is not criti-
cal, and can in both cases be done with the ±150 ppm.
P
m
=
is the crystal's motional, C
C
------- -
18 pF with a tolerance of ±17%) hence C
2
m
m
L1
14 fF, C
------------------------------------------------------------ -
and
C
and C
0
+
XTAL with Load Capacitance
Table
C
C
LN
L2
XTO
LN
0
in series connection.
C
L1
7-10). The remaining local oscillator tolerance at nominal supply voltage
is the reference frequency FREF for the fractional-N synthesizer. When
1.5 pF, C
C
ATA5423/ATA5425/ATA5428/ATA5429
C
L
L
0
XTAL
m
+
is the total actual load capacitance of the crystal in the circuit and con-
XTO
7 fF, C
C
L
0
from the nominal f
LN
the shunt and C
10
= 9 pF and C
0
6
ppm.
1.5 pF, C
C
L2
Lmin
LN
L
XTAL
LN
= 9 pF and C
= 7.4 pF to 10.6 pF, the pulling amounts to
= 7.4 pF and C
C
the nominal load capacitance of the XTAL
Crystal equivalent circuit
L
is calculated using the following formula:
= C
L
m
L1
C
C
L2
m
L
/ (C
C
= 7.4 pF to 10.6 pF, the pulling
0
Lmax
L1
R
+ C
m
= 10.6 pF. The XTO oscil-
L2
)
L1, 2
at pin XTAL1
XTO
25
.

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