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SimCom SIM900 Hardware Design

SimCom SIM900
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SIM900 Hardware Design
Max:300mV
VBAT
Burst:2A
IVBAT
4.615ms
577us
Figure 5: VBAT voltage drop during transmit burst
3.3.1 Power Supply Pins
Three VBAT pins are dedicated to connect the supply voltage and fifteen GND pins are dedicated to connect
ground. VRTC pin can be used to back up the RTC.
3.3.2 Minimizing Power Losses
When designing the power supply for your application please pay specific attention to power losses. Ensure that
the input voltage VBAT never drops below 3.1V even in a transmit burst where current consumption can rise to
typical peaks of 2A. If the power voltage drops below 3.1V, the module may be switched off. The PCB traces
from the VBAT pins to the power source must be wide enough to decrease voltage drops in the transmitting burst
mode.
3.3.3 Monitoring Power Supply
To monitor the supply voltage, you can use the “AT+CBC” command which include a parameter: voltage value
(in mV).
The voltage is continuously measured at intervals depending on the operating mode. The displayed voltage (in
mV) is averaged over the last measuring period before the AT+CBC command is executed.
For details please refer to document [1]
3.4 Power Up and Power Down Scenarios
In general, be sure not to turn on SIM900 while it is beyond the safety limits of voltage and temperature stated in
Chapter 3.4.2. SIM900 would immediately switch off after having started and detected these inappropriate
conditions. In extreme cases this can cause permanent damage to the module.
3.4.1 Turn on SIM900
SIM900 can be turned on by two ways, which are described in following chapters:
SIM900_HD_V1.05 06.23.2010
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SimCom SIM900 Specifications

General IconGeneral
BrandSimCom
ModelSIM900
CategoryModem
LanguageEnglish