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CC113LRGPR.B датащи(PDF) 48 Page - Texas Instruments

номер детали CC113LRGPR.B
подробное описание детали  CC113L Value Line Receiver
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CC113LRGPR.B датащи(HTML) 48 Page - Texas Instruments

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CC113L
SWRS108B – MAY 2011 – REVISED JUNE 2014
www.ti.com
5.20 System Consideration and Guidelines
5.20.1 SRD Regulations
International regulations and national laws regulate the use of radio receivers and transmitters. Short
Range Devices (SRDs) for license free operation below 1 GHz are usually operated in the 315 MHz, 433
MHz, 868 MHz or 915 MHz frequency bands. The CC113L is specifically designed for such use with its
300 - 348 MHz, 387 - 464 MHz, and 779 - 928 MHz operating ranges. The most important regulations
when using the CC113L in the 315 MHz, 433 MHz, 868 MHz, or 915 MHz frequency bands are EN 300
220 V2.3.1 (Europe) and FCC CFR47 part 15 (USA).
For compliance with modulation bandwidth requirements under EN 300 220 V2.3.1 in the 863 to 870 MHz
frequency range it is recommended to use a 26 MHz crystal for frequencies below 869 MHz and a 27 MHz
crystal for frequencies above 869 MHz.
Please note that compliance with regulations is dependent on the complete system performance. It is the
customer’s responsibility to ensure that the system complies with regulations.
5.20.2 Calibration in Multi-Channel Systems
CC113L is highly suited for multi-channel systems due to its agile frequency synthesizer and effective
communication interface.
Charge pump current, VCO current, and VCO capacitance array calibration data is required for each
frequency when implementing a multi-channel system. There are 3 ways of obtaining the calibration data
from the chip:
1. Calibration for every frequency change. The PLL calibration time is 712/724
μs (26 MHz crystal and
TEST0 = 0x09/0B, see Table 5-13). The blanking interval between each frequency is then 787/799
μs.
2. Perform all necessary calibration at startup and store the resulting FSCAL3, FSCAL2, and FSCAL1
register values in MCU memory. The VCO capacitance calibration FSCAL1 register value must be
found for each RF frequency to be used. The VCO current calibration value and the charge pump
current calibration value available in FSCAL2 and FSCAL3 respectively are not dependent on the RF
frequency, so the same value can therefore be used for all RF frequencies for these two registers.
Between each frequency change, the calibration process can then be replaced by writing the FSCAL3,
FSCAL2 and FSCAL1 register values that corresponds to the next RF frequency. The PLL turn on time
is approximately 75
μs (Table 5-12). The blanking interval between each frequency hop is then
approximately 75
μs.
3. Run calibration on a single frequency at startup. Next write 0 to FSCAL3[5:4] to disable the charge
pump calibration. After writing to FSCAL3[5:4], strobe SRX with MCSM0.FS_AUTOCAL=1 for each
new frequency. That is, VCO current and VCO capacitance calibration is done, but not charge pump
current calibration. When charge pump current calibration is disabled the calibration time is reduced
from 712/724
μs to 145/157 μs (26 MHz crystal and TEST0 = 0x09/0B, see Table 5-13). The blanking
interval between each frequency hop is then 220/232
μs.
There is a trade-off between blanking time and memory space needed for storing calibration data in non-
volatile memory. Solution 2) above gives the shortest blanking interval, but requires more memory space
to store calibration values. This solution also requires that the supply voltage and temperature do not vary
much in order to have a robust solution. Solution 3) gives 567
μs smaller blanking interval than solution 1).
The recommended settings for TEST0.VCO_SEL_CAL_EN change with frequency. This means that one
should always use SmartRF Studio [4] to get the correct settings for a specific frequency before doing a
calibration, regardless of which calibration method is being used.
NOTE
The content in the TEST0 register is not retained in SLEEP state, thus it is necessary to re-
write this register when returning from the SLEEP state.
48
Detailed Description
Copyright © 2011–2014, Texas Instruments Incorporated
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Product Folder Links: CC113L



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