ATA6286N-PNPW Atmel, ATA6286N-PNPW Datasheet - Page 15

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ATA6286N-PNPW

Manufacturer Part Number
ATA6286N-PNPW
Description
IC CTRL/XMITTER 433MHZ 32-VQFN
Manufacturer
Atmel
Datasheet

Specifications of ATA6286N-PNPW

Frequency
433MHz
Applications
TPM (Tire Pressure Monitor)
Modulation Or Protocol
ASK, FSK
Data Rate - Maximum
20 kbps
Power - Output
6dBm
Current - Transmitting
8.5mA
Data Interface
PCB, Surface Mount
Antenna Connector
PCB, Surface Mount
Voltage - Supply
2 V ~ 3.6 V
Operating Temperature
-40°C ~ 125°C
Package / Case
32-VQFN Exposed Pad, 32-HVQFN, 32-SQFN, 32-DHVQFN
Processor Series
ATA6x
Core
AVR8
Data Bus Width
8 bit
Program Memory Type
Flash
Program Memory Size
128 KB
Data Ram Size
512 B
Interface Type
SPI
Maximum Clock Frequency
40 MHz
Number Of Programmable I/os
85
Number Of Timers
9
Maximum Operating Temperature
+ 85 C
Mounting Style
SMD/SMT
3rd Party Development Tools
EWAVR, EWAVR-BL
Minimum Operating Temperature
- 40 C
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Features
-
Memory Size
-
Lead Free Status / Rohs Status
 Details
4.5.3
4.5.4
4.5.5
4958BS–AUTO–01/09
Accuracy of Frequency Deviation
Accuracy of the Center Frequency
CLK Output
The accuracy of the frequency deviation using the XTAL pulling method is about ±20% if the fol-
lowing tolerances are considered. One important aspect is that the values of C
typical crystals are strongly correlated which reduces the tolerance of the frequency deviation.
Figure 4-6.
Using a crystal with a motional capacitance of C
of CL
C
internal FSK switch with C
the resulting C
deviation of ±19.3 kHz with worst case tolerances of ±15.8 kHz to ±23.2 kHz.
The imaginary part of the impedance in large signal steady state oscillation IM
pin 7 (XTO1), causes some additional frequency tolerances, due to pulling of the XTO oscillation
frequency. These tolerances have to be added to the tolerances of the crystal itself (adjustment
tolerance, temperature stability and ageing) and the influence to the center frequency due to tol-
erances of C
should be absorbed into the C
choosing C
quency deviation is as expected. Then, from the nominal value, the IM
using the pulling formula P = –IM
additional frequency tolerance of P = ±16.86 ppm results. If using crystals with other C
additional frequency tolerance can be calculated in the same way. For example, a lower
C
increases the tolerance to 21.07 ppm.
An output CLK signal of 1.64 MHz (ATA6285N operating at 315 MHz) and 1.69 MHz
(ATA6286N operating at 433.92 MHz) is provided for a connected microcontroller. The delivered
signal is CMOS-compatible with a High and Low time of >125 ns if the load capacitance is lower
than 20 pF. The CLK output is Low in power-down mode due to an internal pull-down resistor.
After enabling the PLL and XTO the signal stays Low until the amplitude of the crystal oscillator
has reached 35% to 80% of its amplitude. Then, the CLK output is activated synchronously with
its output signal so that the first period of the CLK output signal is a full period.
0
M
= 297
= 3.1 fF will reduce the frequency tolerance to 11.87 ppm, where a higher C
NOM
= 18 pF and a parallel capacitance of C
4
C
and C
M
4
4
, C
Tolerances of Frequency Modulation
(the correlation has a tolerance of 10%, so C
and C
5
XTAL
, C
5
, so that the XTO center frequency equals the crystal frequency, and the fre-
V
S
Switch
5
values are C
Switch
and C
ATA6285N/ATA6286N [Preliminary]
= 0.9 pF ±20% and estimated parasitics of C
4
XTO
and C
Stray
Crystal equivalent circuit
4
C
= 10 pF ±1% and C
. The nominal value of IM
M
C
5
M
values by using a crystal with known frequency and
L
C
M
0
Pi
M
f
R
XTO
= 4.37 fF ±15%, a nominal load capacitance
S
0
with f
= 1.30 pF correlated with C
5
= 15 pF ±1% for a nominal frequency
XTO
0
C
= 267 to 326
Stray
= 13.56 MHz and C
C
XTO
5
C
= 110 , C
Switch
C
XTO
4
has ±90 tolerances,
Stray
XTO
C
Switch
= 0.7 pF ±10%,
M
, seen into the
). If using the
M
0
M
= 4.4 fF an
and C
and C
M
results in
= 5.5 fF
M
M
Stray
the
15
of

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