3.5A /5.5A, 36V Synchronous, 400kHz, Step-Down Converter
Product details
Parameters
Package | Pins | Size
Features
- AEC-Q100 Qualified for Automotive Applications
- Device Temperature Grade 1: –40°C to +125°C Ambient Operating Temperature
- Device HBM Classification Level 2
- Device CDM Classification Level C6
- 96% Peak Efficiency While Converting 12 V to 5 V
- Low EMI and Minimized Switch Node Ringing
- 400-kHz (±10%) Fixed Switching Frequency
- –40°C to +150°C Junction Temperature Range
- External Frequency Synchronization
- RESET Output With Internal Filter and 3-ms Release Timer
- Automatic Light Load Mode for Improved Efficiency
- Pin-Selectable Forced PWM Mode
- Built-In Compensation, Soft Start, Current Limit, Thermal Shutdown, and UVLO
- 0.35-V Dropout With 3.5-A Load at 25°C (Typical)
- 18-µA IQ_VIN: Quiescent Current at 3.3 VOUT and No Load (Typical)
- Output Voltage: 5 V, 3.3 V, and ADJ (1 V to 20 V)
- ±1.5% Reference Voltage Tolerance
All trademarks are the property of their respective owners.
Description
The LMS3635-Q1 and LMS3655-Q1 synchronous buck regulators are optimized for high performance applications, providing an output voltage of 3.3 V, 5 V, or an adjustable output of 1 V to 20 V. Seamless transition between PWM and PFM modes, along with a low quiescent current, ensures high efficiency and superior transient responses at all loads.
Advanced high-speed circuitry allows the LMS3655-Q1 to regulate an input of 24 V to an output of 3.3 V at a fixed frequency of 400 kHz while also enabling a continuous load current of 5.5 A. An innovative frequency foldback architecture allows this device to regulate a 3.3-V output from an input voltage of only 3.5 V. The input voltage can range up to 36 V, with transient tolerance up to 42 V, easing input surge protection design.
An open-drain reset output, with built-in filtering and delay, provides a true indication of system status. This feature negates the requirement for an additional supervisory component, saving cost and board space.
Technical documentation
Type | Title | Date | |
---|---|---|---|
* | Datasheet | LMS3635-Q1 3.5-A, LMS3655-Q1 5.5-A, 36-V Synchronous, 400-kHz Step-Down Converter datasheet (Rev. B) | Mar. 01, 2018 |
Technical articles | Optimizing flip-chip IC thermal performance in automotive designs | Dec. 11, 2019 | |
Technical articles | How to meet European Commission ADAS requirements with TI DC/DC converters | May 08, 2019 | |
Technical articles | Minimize the impact of the MLCC shortage on your power application | Mar. 29, 2019 | |
Selection guide | Automotive Infotainment EE Buck Converter/Controller Selection Guide (Rev. A) | Jan. 15, 2019 | |
User guide | LMS36x5-Q1 EVM User's Guide (Rev. A) | Apr. 13, 2018 | |
Technical articles | Designing USB into challenging automotive applications | Apr. 04, 2018 | |
Application note | Designing High Performance, Low-EMI, Automotive Power Supplies | Sep. 30, 2017 |
Design & development
For additional terms or required resources, click any title below to view the detail page where available.Hardware development
Description
Features
- High Efficiency with 400kHz and Auto Light Mode PFM/PWM or Forced PWM Mode operation
- /RESET Power Good output with 3ms delay on timer
- External Frequency Synchronisation Input
- Low EMI
- Fully Synchronous with integrated HS and LS FET
Description
Features
- High Efficiency with 400kHz and Auto Light Mode PFM/PWM or Forced PWM Mode operation
- /RESET Power Good output with 3ms delay on timer
- Low EMI
- Fully Synchronous with integrated HS and LS FET
Description
Features
- High Efficiency with 400kHz and Auto Light Mode PFM/PWM or Forced PWM Mode operation
- /RESET Power Good output with 3ms delay on time/RESET Power Good output with 3ms delay on timer
- External Frequency Synchronisation Input
- Low EMI
- Fully Synchronous with integrated HS and LS FET
Design tools & simulation
Features
- Leverages Cadence PSpice Technology
- Preinstalled library with a suite of digital models to enable worst-case timing analysis
- Dynamic updates ensure you have access to most current device models
- Optimized for simulation speed without loss of accuracy
- Supports simultaneous analysis of multiple products
- (...)
Reference designs
Design files
-
download PMP20249 BOM.pdf (101KB) -
download PMP20249 Assembly Drawing.pdf (104KB) -
download PMP20249 PCB.pdf (1023KB) -
download PMP20249 Altium.zip (5418KB) -
download PMP20249 Gerber.zip (400KB)
Design files
-
download TIDA-01388 BOM.pdf (62KB) -
download TIDA-01388 Assembly Drawing.pdf (110KB) -
download TIDA-01388 PCB.pdf (683KB) -
download TIDA-01388 CAD Files.zip (953KB) -
download TIDA-01388 Gerber.zip (423KB)
Design files
-
download TIDA-01253 BOM.pdf (56KB) -
download TIDA-01253 Assembly Drawing (PMP20423).pdf (86KB) -
download TIDA-01253 PCB (PMP20423).pdf (633KB) -
download TIDA-01253 CAD Files (PMP20423).zip (5826KB) -
download TIDA-01253 Gerber (PMP20423).zip (1438KB)
Design files
-
download TIDA-01524 BOM.pdf (58KB) -
download TIDA-01524 Assembly Drawing.pdf (59KB) -
download TIDA-01524 PCB.pdf (566KB) -
download TIDA-01524 CAD Files.zip (1102KB) -
download TIDA-01524 Gerber.zip (541KB)
CAD/CAE symbols
Package | Pins | Download |
---|---|---|
VQFN-HR (RNL) | 22 | View options |
Ordering & quality
- RoHS
- REACH
- Device marking
- Lead finish/Ball material
- MSL rating/Peak reflow
- MTBF/FIT estimates
- Material content
- Qualification summary
- Ongoing reliability monitoring
Recommended products may have parameters, evaluation modules or reference designs related to this TI product.
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.