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CC113LRGPR датащи(PDF) 8 Page - Texas Instruments

номер детали CC113LRGPR
подробное описание детали  CC113L Value Line Receiver
PDF  87 Pages
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производитель  TI2 [Texas Instruments]
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CC113LRGPR датащи(HTML) 8 Page - Texas Instruments

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CC113L
SWRS108B – MAY 2011 – REVISED JUNE 2014
www.ti.com
4.5
Current Consumption
TA = 25°C, VDD = 3.0 V if nothing else stated. All measurement results are obtained using SWRR046 and SWRR045.
Reduced current settings, MDMCFG2.DEM_DCFILT_OFF=1, gives a slightly lower current consumption at the cost of a
reduction in sensitivity. See Section 4.6 for additional details on current consumption and sensitivity.
Parameter
Min
Typ
Max
Unit
Condition
Voltage regulator to digital part off, register values retained (SLEEP state). All GDO pins programmed to 0x2F
0.2
1
µA
(HW to 0)
Current consumption
in power down
Voltage regulator to digital part off, register values retained, XOSC running (SLEEP state with
100
µA
modes
MCSM0.OSC_FORCE_ON set)
165
µA
Voltage regulator to digital part on, all other modules in power down (XOFF state)
1.7
mA
Only voltage regulator to digital part and crystal oscillator running (IDLE state)
Current consumption
8.4
mA
The current consumption for the intermediate states when going from IDLE to RX, including the calibration state
15.4
mA
Receive mode, 1.2 kBaud, reduced current, input at sensitivity limit
14.4
mA
Receive mode, 1.2 kBaud, register settings optimized for reduced current, input well above sensitivity limit
15.2
mA
Receive mode, 38.4 kBaud, register settings optimized for reduced current, input at sensitivity limit
Current consumption,
315 MHz
14.3
mA
Receive mode, 38.4 kBaud, register settings optimized for reduced current, input well above sensitivity limit
16.5
mA
Receive mode, 250 kBaud, register settings optimized for reduced current, input at sensitivity limit
15.1
mA
Receive mode, 250 kBaud, register settings optimized for reduced current, input well above sensitivity limit
16.0
mA
Receive mode, 1.2 kBaud, register settings optimized for reduced current, input at sensitivity limit
15.0
mA
Receive mode, 1.2 kBaud, register settings optimized for reduced current, input well above sensitivity limit
15.7
mA
Receive mode, 38.4 kBaud, register settings optimized for reduced current, input at sensitivity limit
Current consumption,
433 MHz
15.0
mA
Receive mode, 38.4 kBaud, register settings optimized for reduced current, input well above sensitivity limit
17.1
mA
Receive mode, 250 kBaud, register settings optimized for reduced current, input at sensitivity limit
15.7
mA
Receive mode, 250 kBaud, register settings optimized for reduced current, input well above sensitivity limit
Receive mode, 1.2 kBaud, register settings optimized for reduced current, input at sensitivity limit.
15.7
mA
See Figure 4-1 through Figure 4-3 for current consumption with register settings optimized for sensitivity.
Receive mode, 1.2 kBaud, register settings optimized for reduced current, input well above sensitivity limit.
14.7
mA
See Figure 4-1 through Figure 4-3 for current consumption with register settings optimized for sensitivity.
Receive mode, 38.4 kBaud, register settings optimized for reduced current, input at sensitivity limit.
15.6
mA
See Figure 4-1 through Figure 4-3 for current consumption with register settings optimized for sensitivity.
Current consumption,
868/915 MHz
Receive mode, 38.4 kBaud, register settings optimized for reduced current, input well above sensitivity limit.
14.6
mA
See Figure 4-1 through Figure 4-3 for current consumption with register settings optimized for sensitivity.
Receive mode, 250 kBaud, register settings optimized for reduced current, input at sensitivity limit.
16.9
mA
See Figure 4-1 through Figure 4-3 for current consumption with register settings optimized for sensitivity.
Receive mode, 250 kBaud, register settings optimized for reduced current, input well above sensitivity limit.
15.6
mA
See Figure 4-1 through Figure 4-3 for current consumption with register settings optimized for sensitivity.
4.5.1
Typical RX Current Consumption over Temperature and Input Power Level, 868/915 MHz
See Section 4.12.1.
8
Specifications
Copyright © 2011–2014, Texas Instruments Incorporated
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Product Folder Links: CC113L



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