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Typical Current Waveform
Figure 3. Typical Current Waveform for a Maximum Length Frame with Downlink Receive at 14 dBm Output Power
Typical Current Waveform − Maximum Length Frame with Downlink Receive, Pout = 14 dBm
Time [s]
2010 30 400
10
0
20
30
40
50
60
Current [mA]
Battery Life Examples
Scenario 1:
CR2032 coin cell battery
One OOB frame transmitter per day at Pout=0 dBm
Device in Sleep
Neglecting battery self discharge
CR2032 capacity 225 mAh * 3600 s/h 810 C
Sleep charge per day
1.3 mA * 86400 s
0.11 C/day
OOB frame transmission 0.12 C/day
Total Charge consumption 0.23 C/day
Battery life 9.6 Years
Scenario 2:
2 AAA Alkaline batteries in series
One OOB frame transmitter per day at Pout=14 dBm
Four maximum length frames with downlink receive
per day at Pout=14 dBm
Device in Sleep
Neglecting battery self discharge
2 AAA alkaline capacity 1500 mAh * 3600 s/h 5400 C
Sleep charge per day
1.3 mA * 86400 s
0.11 C/day
OOB frame transmission 0.28 C/day
Frame transmission with downlink 4 * 0.46 C/day 1.84 C/day
Total Charge consumption 2.26 C/day
Battery life 6.5 Years
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Table 5. LOGIC
Symbol Description Condition Min Typ Max Units
Digital Inputs
V
T+
Schmitt trigger low to high threshold point
VDD_IO = 3.3 V
1.55 V
V
T−
Schmitt trigger high to low threshold point 1.25 V
V
IL
Input voltage, low 0.8 V
V
IH
Input voltage, high 2.0 V
V
IPA
Input voltage range, GPIO[3:0] −0.5 VDD_IO V
V
IPBC
Input voltage range, GPIO[9:4], UARTRX −0.5 5.5 V
I
L
Input leakage current −10 10
mA
R
PU
Programmable Pull−Up Resistance 65
kW
Digital Outputs
I
OH
Output Current, high
Ports GPIO[9:0], UARTTX, TXLED, RXLED,
TXLED, CPULED
V
OH
= 2.4 V 8 mA
I
OL
Output Current, low
GPIO[9:0], UARTTX, TXLED, RXLED, TXLED,
CPULED
V
OL
= 0.4 V 8 mA
I
OZ
Tri−state output leakage current −10 10
mA
AC Characteristics
Table 6. TCXO REFERENCE INPUT
Symbol Description Condition Min Typ Max Units
f
TCXO
TCXO frequency A passive network between the TCXO output
and the pins CLKP and CLKN is required.
For detailed TCXO network recommendations
depending on the TCXO output swing refer to
the AX5043 Application Note: Use with a
TCXO Reference Clock.
For TCXO recommendations see the
Ax−SFEU Application Note: Sigfox Compliant
Reference Design
48 MHz
Table 7. TRANSMITTER
Conditions for transmitter specifications unless otherwise specified with the antenna network from AX−SFEU Application Note: Sigfox
Compliant Reference Design and at 868.130 MHz.
Symbol Description Condition Min Typ Max Units
SBR Signal bit rate 100 bps
PTX
min
Lowest Transmitter output power AT$CW=868130000,1,0 0 dBm
PTX
max
Highest Transmitter output power AT$CW=868130000,1,14 14 dBm
PTX
step
Programming step size output power 1 dB
dTX
temp
Transmitter power variation vs.
temperature
−40°C to +85°C ±0.5 dB
dTX
Vdd
Transmitter power variation vs. VDD_IO 1.8 to 3.6 V ±0.5 dB
PTX
harm2
Emission @ 2
nd
harmonic −51
dBc
PTX
harm3
Emission @ 3
rd
harmonic −63
PTX
harm4
Emission @ 4
th
harmonic −84
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Figure 4. Typical Spectrum with Harmonics at 14 dBm Output Power
Table 8. RECEIVER
Conditions for transmitter specifications unless otherwise specified with the antenna network from AX−SFEU Application Note: Sigfox
Compliant Reference Design and at 869.525 MHz.
Symbol Description Condition Min Typ Max Units
SBR Signal bit rate 600 bps
IS
BER868
AT$SB=x,1, AT$SF=x,1, AT$SR
PER < 0.1
−126 dBm
BLK
2M_868
Blocking at ±2 MHz
offset
Channel/Blocker @ PER = 0.1, wanted signal
level is +3 dB above the typical sensitivity, the
blocker signal is CW
68 dB
BLK
10M_868
Blocking at ±10 MHz
offset
Channel/Blocker @ PER = 0.1, wanted signal
level is +3 dB above the typical sensitivity, the
blocker signal is CW
78 dB

AX-SFEU-1-01-TB05

Mfr. #:
Manufacturer:
ON Semiconductor
Description:
RF System on a Chip - SoC SigFox SoC for Uplink/Downlink
Lifecycle:
New from this manufacturer.
Delivery:
DHL FedEx Ups TNT EMS
Payment:
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