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CC1021-RTR1 Datasheet(PDF) 63 Page - Texas Instruments

No. de pieza CC1021-RTR1
Descripción Electrónicos  Single Chip Low Power RF Transceiver for Narrowband Systems
PDF  92 Pages
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Fabricante Electrónico  TI [Texas Instruments]
Página de inicio  http://www.ti.com
Logo TI - Texas Instruments

CC1021-RTR1 Datasheet(HTML) 63 Page - Texas Instruments

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CC1021
SWRS045
Page 63 of 91
is used. The switching between the two
frequencies is done through the MAIN
register. Several features have been
included to do the hopping without a need
to re-synchronize the receiver. For more
details refer to Application Note AN014
Frequency Hopping Systems available
from the Chipcon web site.
In order to implement a frequency hopping
system with CC1021 do the following:
Set the desired frequency, calibrate and
store the following register settings in non-
volatile memory:
STATUS1[3:0]: CHP_CURRENT[3:0]
STATUS2[4:0]: VCO_ARRAY[4:0]
STATUS3[5:0]:VCO_CAL_CURRENT[5:0]
Repeat the calibration for each desired
frequency. VCO_CAL_CURRENT[5:0] is
not dependent on the RF frequency and
the same value can be used for all
frequencies. When performing frequency
hopping, write the stored values to the
corresponding TEST1, TEST2 and TEST3
registers, and enable override:
TEST1[3:0]: CHP_CO[3:0]
TEST2[4:0]: VCO_AO[4:0]
TEST2[5]: VCO_OVERRIDE
TEST2[6]: CHP_OVERRIDE
TEST3[5:0]: VCO_CO[5:0]
TEST3[6]: VCO_CAL_OVERRIDE
CHP_CO[3:0] is the register setting read
from CHP_CURRENT[3:0], VCO_AO[4:0]
is
the register setting read from
VCO_ARRAY[4:0] and VCO_CO[5:0] is
the
register
setting
read
from
VCO_CAL_CURRENT[5:0].
Assume channel 1 defined by register
FREQ_A is currently being used and that
CC1021 should operate on channel 2 next
(to change channel simply write to register
MAIN[6]). The channel 2 frequency can be
set by register FREQ_B which can be
written to while operating on channel 1.
The calibration data must be written to the
TEST1-3 registers after switching to the
next frequency. That is, when hopping to a
new channel write to register MAIN[6] first
and the test registers next. The PA should
be switched off between each hop and the
PLL should be checked for lock before
switching the PA back on after a hop has
been performed.
Note
that
the
override
bits
VCO_OVERRIDE, CHP_OVERRIDE and
VCO_CAL_OVERRIDE must be disabled
when performing a re-calibration.
24.
PCB Layout Recommendations
The top layer should be used for signal
routing, and the open areas should be
filled with metallization connected to
ground using several vias.
The area under the chip is used for
grounding and must be connected to the
bottom ground plane with several vias. In
the Chipcon reference designs we have
placed 9 vias inside the exposed die
attached pad. These vias should be
ìtentedî (covered with solder mask) on the
component side of the PCB to avoid
migration of solder through the vias during
the solder reflow process.
Each decoupling capacitor should be
placed as close as possible to the supply
pin it is supposed to decouple. Each
decoupling capacitor should be connected
to the power line (or power plane) by
separate vias. The best routing is from the
power line (or power plane) to the
decoupling capacitor and then to the
CC1021 supply pin. Supply power filtering
is very important, especially for pins 23,
22, 20 and 18.
Each decoupling capacitor ground pad
should be connected to the ground plane
using a separate via. Direct connections
between neighboring power pins will
increase noise coupling and should be
avoided unless absolutely necessary.
The external components should ideally
be as small as possible and surface mount
devices are highly recommended.



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