SPRSP68B January 2023 – November 2023 TMS320F2800152-Q1 , TMS320F2800153-Q1 , TMS320F2800154-Q1 , TMS320F2800155 , TMS320F2800155-Q1 , TMS320F2800156-Q1 , TMS320F2800157 , TMS320F2800157-Q1
PRODMIX
Refer to the PDF data sheet for device specific package drawings
TIDM-02002 CLLLC resonant dual active bridge for HEV/EV onboard charger
(Video)
The CLLLC resonant DAB with bidirectional power flow capability and soft switching characteristics is an ideal candidate for Hybrid Electric Vehicle/Electric Vehicle (HEV/EV) on-board chargers and energy storage applications. This design illustrates control of this power topology using a C2000™ MCU in closed voltage and closed current-loop mode. The hardware and software available with this design help accelerate
your time to market.
PMP23069 3.6-kW single-phase totem-pole bridgeless PFC reference
design with a > 180-W/in³ power density
This reference design is a GaN-based 3.6-kW
single-phase continuous conduction mode (CCM) totem-pole power factor correction
(PFC) converter targeting maximum power density. The power stage is followed by a
small boost converter, which helps to reduce the size of the bulk capacitor. The
LMG3522 top-side cooled GaN with integrated driver and protection enables higher
efficiency and reduces power supply size and complexity. The F28004x or F28002x
C2000 controller is used for all the advanced controls that includes fast relay
control; baby boost operation during AC dropout event; reverse-current-flow
protection; and communication between the PFC and the housekeeping controller. The
PFC operates at a switching frequency of 65 kHz and achieves peak efficiency of
98.7%.
TIDUEG2C TIDM-02002 Bidirectional CLLLC resonant dual active bridge (DAB) reference design for HEV/EV onboard charger
The CLLLC resonant DAB with bidirectional power flow capability and soft switching characteristics is an ideal candidate for Hybrid Electric Vehicle/Electric Vehicle (HEV/EV) on-board chargers and energy storage applications. This design illustrates control of this power topology using a C2000™ MCU in closed voltage and closed current-loop mode. The hardware and software available with this design help accelerate
your time to market.
TIDUAI7
TIDM-BIDIR-400-12: Bidirectional 400-V/12-V DC/DC Converter Reference
Design
The Bidirectional 400V-12V DC/DC Converter Reference
Design is a microcontroller-based implementation of an isolated bidirectional DC-DC
converter. A phase-shifted full-bridge (PSFB) with synchronous rectification
controls power flow from a 400-V bus/battery to the 12-V battery in step-down mode,
while a push-pull stage controls the reverse power flow from the low-voltage battery
to the high-voltage bus/battery in boost mode. In this implementation, closed-loop
control for both directions of power flow is implemented using a Texas Instruments
TMS320F28035 32-bit microcontroller, which is placed on the LV side. This digital
controller system can implement advanced control strategies to optimally control the
power stage under different conditions and also provide system-level intelligence to
make safe and seamless transitions between operation modes and PWM switching
patterns.
TIDM-1000 Vienna Rectifier-Based Three Phase Power Factor Correction Reference Design Using C2000 MCU
The Vienna rectifier power topology is used in high-power, three-phase power factor correction applications such as off-board electric vehicle charging and telecom rectifiers. This design illustrates how to control a Vienna rectifier using a C2000 MCU.