SIM3L136-C-GM Silicon Labs, SIM3L136-C-GM Datasheet - Page 33

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SIM3L136-C-GM

Manufacturer Part Number
SIM3L136-C-GM
Description
ARM Microcontrollers - MCU 32KB, DC-DC, 32x4 LCD, AES, QFN64
Manufacturer
Silicon Labs
Datasheet

Specifications of SIM3L136-C-GM

Rohs
yes
Core
ARM Cortex M3
Processor Series
SiM3L1xx
Data Bus Width
32 bit
Maximum Clock Frequency
50 MHz
Program Memory Size
32 KB
Data Ram Size
8 KB
On-chip Adc
Yes
Operating Supply Voltage
1.8 V to 3.8 V
Operating Temperature Range
- 40 C to + 85 C
Package / Case
QFN-64
Mounting Style
SMD/SMT
A/d Bit Size
12 bit
A/d Channels Available
23
Interface Type
I2C, SPI
Length
9 mm
Maximum Operating Temperature
+ 85 C
Minimum Operating Temperature
- 40 C
Number Of Programmable I/os
51
Number Of Timers
3
On-chip Dac
Yes
Program Memory Type
Flash
Supply Voltage - Max
3.8 V
Supply Voltage - Min
1.8 V
4.1. Power
The SiM3L1xx devices include a dc-dc buck converter that can take an input from 1.8–3.8 V and create an output
from 1.25–3.8 V. In addition, SiM3L1xx devices include three low dropout regulators as part of the LDO0 module:
one LDO powers the analog subsystems, one LDO powers the flash and SRAM memory at 1.8 V, and one LDO
powers the digital and core circuitry. Each of these regulators can be independently powered from the dc-dc
converter or directly from the battery voltage, and their outputs are adjustable to conserve system power. SiM3L1xx
devices also include a low power charge pump in the PMU module for use in low power modes (PM8) to further
reduce the power consumption of the device.
Figure 4.2 shows the power system configuration of these devices.
4.1.1. DC-DC Buck Converter (DCDC0)
SiM3L1xx devices include an on-chip step-down dc-dc converter to efficiently utilize the energy stored in the
battery, thus extending the operational life time. The dc-dc converter is a switching buck converter with a
programmable output voltage that should be at least 0.45 V lower than the input battery voltage; if this criteria is not
met and the converter can no longer operate, the output of the dc-dc converter automatically connects to the
battery. The dc-dc converter can supply up to 100 mA and can be used to power the MCU and/or external devices
in the system.
The dc-dc converter has a built in voltage reference and oscillator and will automatically limit or turn off the
switching activity in case the peak inductor current rises beyond a safe limit or the output voltage rises above the
programmed target value. This allows the dc-dc converter output to be safely overdriven by a secondary power
source (when available) in order to preserve battery life. When enabled, the dc-dc converter can source current
into the output capacitor, but cannot sink current.
The dc-dc converter includes the following features:





Efficiently utilizes the energy stored in a battery, extending its operational lifetime.
Input range: 1.8 to 3.8 V.
Output range: 1.25 to 3.8 V in 50 mV (1.25–1.8 V) or 100 mV (1.8–3.8 V) steps.
Supplies up to 100 mA.
Includes a voltage reference and an oscillator.
VBAT/VBATDC
LDO0
Figure 4.2. SiM3L1xx Power
Converter
SiM3L1xx Device
DC-DC
Mode Charge
Low Power
Memory LDO
Analog LDO
Digital LDO
Pump
Rev 0.5
to digital
and core
to memory
to analog
to PM8
peripherals
IND
VDC
VSSDC
VSS
VDRV
SiM3L1xx
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