Os motores de busca de Datasheet de Componentes eletrônicos
  Portuguese  ▼
ALLDATASHEETPT.COM

X  

CC1150-RTR1 Folha de dados(PDF) 28 Page - Texas Instruments

Nome de Peças CC1150-RTR1
Descrição Electrónicos  Low Power Sub-1 GHz RF Transmitter
PDF  67 Pages
Scroll/Zoom Zoom In 100%  Zoom Out
Fabricante Electrônico  TI [Texas Instruments]
Página de início  http://www.ti.com
Logo TI - Texas Instruments

CC1150-RTR1 Folha de dados(HTML) 28 Page - Texas Instruments

Back Button CC1150-RTR1 Datasheet HTML 24Page - Texas Instruments CC1150-RTR1 Datasheet HTML 25Page - Texas Instruments CC1150-RTR1 Datasheet HTML 26Page - Texas Instruments CC1150-RTR1 Datasheet HTML 27Page - Texas Instruments CC1150-RTR1 Datasheet HTML 28Page - Texas Instruments CC1150-RTR1 Datasheet HTML 29Page - Texas Instruments CC1150-RTR1 Datasheet HTML 30Page - Texas Instruments CC1150-RTR1 Datasheet HTML 31Page - Texas Instruments CC1150-RTR1 Datasheet HTML 32Page - Texas Instruments Next Button
Zoom Inzoom in Zoom Outzoom out
 28 / 67 page
background image
CC1150
SWRS037A
Page 28 of 60
14.3
Amplitude Modulation
CC1150 supports two different forms of
amplitude modulation: On-Off Keying (OOK)
and Amplitude Shift Keying (ASK).
OOK modulation simply turns on or off the PA
to modulate 1 and 0 respectively.
The ASK variant supported by the
CC1150
allows programming of the modulation depth
(the difference between 1 and 0), and shaping
of the pulse amplitude. Pulse shaping will
produce a more bandwidth constrained output
spectrum.
Note that the OOK/ASK pulse shaping feature
on the
CC1150 does only support output power
up to about -1 dBm.
The DEVIATN register has no effect when
using ASK/OOK.
15 Forward Error Correction with Interleaving
15.1
Forward Error Correction (FEC)
CC1150 has built in support for Forward Error
Correction (FEC) that can be used with
CC1101
at the receiver end. To enable this option, set
MDMCFG1.FEC_EN
to 1. FEC is only supported
in fixed packet length mode, i.e. when
PKTCTRL0.LENGTH_CONFIG=0.
FEC
is
employed on the data field and CRC word in
order to reduce the gross bit error rate when
operating
near
the
sensitivity
limit.
Redundancy is added to the transmitted data
in such a way that the receiver can restore the
original data in the presence of some bit
errors.
The use of FEC allows correct reception at a
lower Signal-to-Noise RATIO (SNR), thus
extending communication range. Alternatively,
for a given SNR, using FEC decreases the bit
error rate (BER). As the packet error rate
(PER) is related to BER by
length
packet
BER
PER
_
)
1
(
1
=
A lower BER can be used to allow longer
packets, or a higher percentage of packets of
a given length, to be transmitted successfully.
Finally, in realistic ISM radio environments,
transient and time-varying phenomena will
produce occasional errors even in otherwise
good reception conditions. FEC will mask such
errors and, combined with interleaving of the
coded data, even correct relatively long
periods of faulty reception (burst errors).
The FEC scheme adopted for
CC1150 is
convolutional coding, in which n bits are
generated based on k input bits and the m
most recent input bits, forming a code stream
able to withstand a certain number of bit errors
between each coding state (the m-bit window).
The convolutional coder is a rate 1/2 code with
a constraint length of m=4. The coder codes
one input bit and produces two output bits;
hence, the effective data rate is halved. This
means that in order to transmit at the same
effective data rate when using FEC, it is
necessary to use twice as high over-the-air
data rate.
15.2
Interleaving
Data received through real radio channels will
often
experience
burst
errors
due
to
interference and time-varying signal strengths.
In order to increase the robustness to errors
spanning multiple bits, interleaving is used
when FEC is enabled. After de-interleaving, a
continuous span of errors in the received
stream will become single errors spread apart.
CC1150 employs matrix interleaving, which is
illustrated
in
Figure
15.
The
on-chip
interleaving buffer is a 4 x 4 matrix. In the
transmitter, the data bits are written into the
rows of the matrix, whereas the bit sequence
to be transmitted is read from the columns of
the matrix and fed to the rate ½ convolutional
coder. Conversely, in a
CC1101 receiver, the
received symbols are written into the rows of
the matrix, whereas the data passed onto the
convolutional decoder is read from the
columns of the matrix.
When FEC and interleaving is used, at least
one
extra
byte
is
required
for
trellis
termination. In addition, the amount of data
transmitted over the air must be a multiple of



Html Pages

1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60 61 62 63 64 65 66 67


Folha de dados Download

Go To PDF Page


Ligação URL



ALLDATASHEET é útil para você?  [ DONATE ] 

Sobre Alldatasheet   |   Publicidade   |   Contato conosco   |   Privacy Policy   |   Link para a ficha técnica    |   roca de Link   |   Lista de Fabricantes
All Rights Reserved©Alldatasheet.com


Mirror Sites
English : Alldatasheet.com  |   English : Alldatasheet.net  |   Chinese : Alldatasheetcn.com  |   German : Alldatasheetde.com  |   Japanese : Alldatasheet.jp
Russian : Alldatasheetru.com  |   Korean : Alldatasheet.co.kr  |   Spanish : Alldatasheet.es  |   French : Alldatasheet.fr  |   Italian : Alldatasheetit.com
Portuguese : Alldatasheetpt.com  |   Polish : Alldatasheet.pl  |   Vietnamese : Alldatasheet.vn
Indian : Alldatasheet.in  |   Mexican : Alldatasheet.com.mx  |   British : Alldatasheet.co.uk  |   New Zealand : Alldatasheet.co.nz
Family Site : ic2ic.com  |   icmetro.com