UCC28730-Q1
- AEC-Q100 Qualified for Automotive Applications:
- Device Temperature Grade 1: –40⁰C to +125⁰C
- Device HBM Classification Level 2: ±2 kV
- Device CDM Classification Level C4B: ±750 V
- Functional Safety-Capable
- Documentation available to aid functional safety system design
- Enables Zero-Power (< 5 mW) Standby Consumption
- Primary-Side Regulation (PSR) Eliminates Opto-coupler
- ±5% Voltage Regulation and Current Regulation Across Line and Load
- 700-V Start-up Switch with 30-V Minimum Start-up Voltage
- 83-kHz Maximum Switching Frequency Enables Low Stand-by Power Charger Designs
- Resonant-Ring Valley-Switching Operation for Highest Overall Efficiency
- Frequency-Dither to Ease EMI Compliance
- Clamped Gate-Drive Output for MOSFET
- Over-Voltage, Low-Line, and Over-Current Protection Functions
- Programmable Cable Compensation
- SOIC-7 Package
The UCC28730-Q1 isolated-flyback power supply controller provides constant-voltage (CV) and constant-current (CC) output regulation without the use of an optical coupler. A minimum switching frequency of 30 Hz achieves less than 5 mW of no-load power.
This device processes information from the primary power switch and an auxiliary flyback winding for precise control of output voltage and current.
An internal 700-V start-up switch, dynamically- controlled operating states and a tailored modulation profile support ultra-low stand-by power without sacrificing start-up time or output transient response. Control algorithms in the UCC28730-Q1 allow operating efficiencies to meet or exceed applicable standards. Discontinuous conduction mode (DCM) operation with valley-switching reduces switching losses. Modulation of the switching frequency and primary current peak amplitude (FM and AM) keeps the conversion efficiency high across the entire load and line ranges.
Technical documentation
Type | Title | Date | ||
---|---|---|---|---|
* | Data sheet | UCC28730-Q1 Zero-Power Standby PSR Flyback Controller for Automotive datasheet (Rev. B) | PDF | HTML | 30 Nov 2020 |
White paper | Isolated Bias Power Supply Architecture for HEV and EV Traction Inverters | PDF | HTML | 11 Oct 2023 | |
Application brief | Designing a Robust Traction Inverter Redundant Power Supply From 800 V Battery (Rev. C) | PDF | HTML | 16 Feb 2023 | |
Functional safety information | UCC28730-Q1 Functional Safety, FIT Rate, Failure Mode Distribution and Pin FMA | PDF | HTML | 18 Aug 2020 | |
Application note | Minimize Standby Consumption for UCC287XX Family | 01 Aug 2019 | ||
White paper | Driving the future of HEV/EV with high-voltage solutions (Rev. B) | 16 May 2018 | ||
EVM User's guide | Using the UCC28730EVM-552 10-W Adaptor Module With PSR and Wake-Up Monitor | 06 Feb 2015 |
Design & development
For additional terms or required resources, click any title below to view the detail page where available.
UCC28730EVM-552 — UCC28730 Primary Side Flyback Controller with UCC24650 Secondary Side Wake Up
The UCC28730EVM-552 evaluation module is a 10-W off-line discontinuous mode (DCM) flyback converter that provides constant-voltage (CV) and constant-current (CC) output regulation without the use of an optical coupler. The primary side controller detects a wake-up signal from the secondary (...)
TINA-TI — SPICE-based analog simulation program
PMP23431 — 60V to 1000V input, triple output 10W PSR flyback reference design
PMP31248 — 230V AC input 12V primary side regulated flyback reference design
PMP22288 — 15-W flyback reference design for automotive inverter power
PMP22557 — High voltage buck converter reference design for E-motorcycle BMS applications
PMP22487 — High voltage buck converter reference design for BMS applications
Package | Pins | CAD symbols, footprints & 3D models |
---|---|---|
SOIC (D) | 7 | Ultra Librarian |
Ordering & quality
- RoHS
- REACH
- Device marking
- Lead finish/Ball material
- MSL rating/Peak reflow
- MTBF/FIT estimates
- Material content
- Qualification summary
- Ongoing reliability monitoring
- Fab location
- Assembly location
Support & training
TI E2E™ forums with technical support from TI engineers
Content is provided "as is" by TI and community contributors and does not constitute TI specifications. See terms of use.
If you have questions about quality, packaging or ordering TI products, see TI support.