Buck 16 Click Board™
Product Code: MIKROE-4846
How Does The Buck 16 Click Board™ Work? The Buck 16 Click Board™ as its foundation uses the TPS62912, a low-noise, low-ripple synchronous buck converter with a fixed-frequency current-mode from Texas Instruments. This converter has a filtered internal reference that achieves a low-noise output similar to low-noise LDOs. Besides, it has an output-voltage error of less than 1%, which helps ensure tight output-voltage accuracy, and lower output voltage ripple achieved by using a switching frequency of either 2.2MHz or 1MHz. That's why this Click board™ is suitable for noise-sensitive applications that generally use an LDO for post-regulation. The Buck 16 Click Board™ communicates with MCU using one GPIO pin in addition to a 3-wire SPI serial interface. The device-enable feature, routed to the RST pin of the mikroBUS™ socket, optimizes power consumption and is used for power ON/OFF purposes (driver operation permission). Once the Click board™ is enabled, the operation mode is then set by the configuration of the CONF SEL (Smart Configuration) jumper by positioning the SMD jumper to an appropriate position marked as VIN or GND.
Besides, this pin is also used for device synchronization. Once an external clock signal, which must be within the clock synchronization frequency range set by the Smart Configuration jumper, is applied to this pin through an onboard header marked as SYNC, the device is enabled and reads the configuration of the Smart Configuration pin. When this signal changes from a clock to a static high, the device switches from an external clock to an internal clock.
With all that, this device also has a power-good output available on the onboard header labeled as PGOOD. The PGOOD pin goes into a high impedance state once the feedback pin voltage, obtained by the MCP4161 digital potentiometer and controlled by the DIGI POT switch, is above 95% of the nominal voltage and is driven low once the voltage falls below typically 90% of the nominal voltage. The power-good signal can be used to sequence multiple rails by connecting to the enable pin of other converters.
The Buck 16 Click Board™ can operate with both 3.3V and 5V logic voltage levels selected via the VCC SEL jumper. It allows for both 3.3V and 5V capable MCUs to use the communication lines properly. Additionally, there is a possibility for the TPS62912 power supply selection via jumper labeled as VIN SEL to supply the TPS62912 from an external power supply terminal in the range from 3 to 17V or with VCC voltage levels from mikroBUS™ power rails. However, the Click board™ comes equipped with a library containing easy-to-use functions and an example code that can be used, as a reference, for further development.
Specifications
Type
Buck
Applications
Can be used for noise-sensitive applications that generally use an LDO for post-regulation, such as high-speed ADCs, clock and jitter cleaner, serializer, de-serializer, and radar applications
On-board modules
TPS62912 - low-noise, low-ripple synchronous buck converter with a fixed-frequency current-mode from Texas Instrument
Key Features
Low output noise and voltage ripple, 2.2MHz or 1MHz fixed frequency peak current mode control, synchronizable with external clock, output voltage accuracy of ±1%, power-good output, and more
Interface
GPIO,SPI
Compatibility
mikroBUS
Click board size
L (57.15 x 25.4 mm)
Input Voltage
3.3V or 5V,External
Pinout diagram
This table shows how the pinout on the Buck 16 Click Board™ corresponds to the pinout on the mikroBUS™ socket (the latter shown in the two middle columns).
Notes
Pin
Pin
Notes
NC
1
AN
PWM
16
NC
Enable
RST
2
RST
INT
15
NC
SPI Chip Select
CS
3
CS
RX
14
NC
SPI Clock
SCK
4
SCK
TX
13
NC
NC
5
MISO
SCL
12
NC
SPI Data IN
SDI
6
MOSI
SDA
11
NC
Power Supply
3.3V
7
3.3V
5V
10
5V
Power Supply
Ground
GND
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