SI4430-B1-FMR Silicon Laboratories Inc, SI4430-B1-FMR Datasheet - Page 52

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SI4430-B1-FMR

Manufacturer Part Number
SI4430-B1-FMR
Description
IC TXRX 900-960MHZ -8-13DB 20QFN
Manufacturer
Silicon Laboratories Inc
Datasheets

Specifications of SI4430-B1-FMR

Mfg Application Notes
Transitioning SI4430/31 to Rev B
Frequency
900MHz ~ 960MHz
Data Rate - Maximum
256kbps
Modulation Or Protocol
ISM
Applications
General Purpose
Power - Output
13dBm
Sensitivity
-121dBm
Voltage - Supply
1.8 V ~ 3.6 V
Current - Receiving
18.5mA
Current - Transmitting
30mA
Data Interface
PCB, Surface Mount
Antenna Connector
PCB, Surface Mount
Operating Temperature
-40°C ~ 85°C
Package / Case
20-VQFN
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Memory Size
-
Si4430/31/32-B1
8.3. General Purpose ADC
An 8-bit SAR ADC is integrated for general purpose use, as well as for digitizing the on-chip temperature sensor
reading. Registers 0Fh "ADC Configuration", 10h "Sensor Offset" and 4Fh "Amplifier Offset" can be used to
configure the ADC operation. Details of these registers are in “AN440: EZRadioPRO Detailed Register
Descriptions.”
Every time an ADC conversion is desired, bit 7 "adcstart/adcdone" in Register 0Fh “ADC Configuration” must be
set to 1. The conversion time for the ADC is 350 µs. After the ADC conversion is done and the adcdone signal is
showing 1, then the ADC value may be read out of “Register 11h: ADC Value." When the ADC is doing its
conversion, the adcstart/adcdone bit will read 0. When the ADC has finished its conversion, the bit will be set to 1.
A new ADC conversion can be initiated by writing a 1 to the adcstart/adcdone bit.
The architecture of the ADC is shown in Figure 27. The signal and reference inputs of the ADC are selected by
adcsel[2:0] and adcref[1:0] in register 0Fh “ADC Configuration”, respectively. The default setting is to read out the
temperature sensor using the bandgap voltage (VBG) as reference. With the VBG reference the input range of the
ADC is from 0–1.02 V with an LSB resolution of 4 mV (1.02/255). Changing the ADC reference will change the LSB
resolution accordingly.
A differential multiplexer and amplifier are provided for interfacing external bridge sensors. The gain of the amplifier
is selectable by adcgain[1:0] in Register 0Fh. The majority of sensor bridges have supply voltage (VDD) dependent
gain and offset. The reference voltage of the ADC can be changed to either V
dependent offset voltage can be added using soffs[3:0] in register 10h.
52
Add
0F
10
11
R/W
R/W
R/W
R
Function/Description
ADC Configuration
Sensor Offset
ADC Value
GPIO0
GPIO1
GPIO2
Temperature Sensor
V
V
V
DD
DD
BG
(1.2V)
/ 3
/ 2
Figure 27. General Purpose ADC Architecture
adcsel [2:0]
Diff. MUX
adcstart/adcdone
adc[7]
D7
aoffs [4:0]
adcgain [1:0]
Diff. Amp.
adcsel[2] adcsel[1]
adc[6]
soffs [3:0]
D6
Rev 1.1
adc[5]
D5
adcsel [2:0]
Input MUX
adcref [1:0]
Ref MUX
adcsel[0]
adc[4]
D4
V
V
adcref[1]
soffs[3]
in
ref
adc[3]
D3
0 -1020mV / 0-255
8-bit ADC
DD
/2 or V
adcref[0]
soffs[2]
adc[2]
D2
DD
adc [7:0]
adcgain[1] adcgain[0]
/3. A programmable V
soffs[1]
adc[1]
D1
soffs[0]
adc[0]
D0
POR Def.
00h
00h
DD

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