SBVS056L
January 2005 – February 2022
TPS799
PRODUCTION DATA
1
Features
2
Applications
3
Description
4
Revision History
5
Pin Configuration and Functions
6
Specifications
6.1
Absolute Maximum Ratings
6.2
ESD Ratings
6.3
Recommended Operating Conditions
6.4
Thermal Information
6.5
Electrical Characteristics
6.6
Typical Characteristics
7
Detailed Description
7.1
Overview
7.2
Functional Block Diagrams
7.3
Feature Description
7.3.1
Internal Current Limit
7.3.2
Shutdown
7.3.3
Start Up
7.3.4
Undervoltage Lockout (UVLO)
7.4
Device Functional Modes
8
Application and Implementation
8.1
Application Information
8.2
Typical Application
8.2.1
Design Requirements
8.2.2
Detailed Design Procedure
8.2.2.1
Input and Output Capacitor Requirements
8.2.2.2
Output Noise
8.2.2.3
Dropout Voltage
8.2.2.4
Transient Response
8.2.2.5
Minimum Load
8.2.2.6
Feedback Capacitor Requirements (TPS79901 Only)
8.2.3
Application Curve
8.3
What To Do and What Not To Do
9
Power Supply Recommendations
10
Layout
10.1
Layout Guidelines
10.1.1
Board Layout Recommendations to Improve PSRR and Noise Performance
10.1.2
Thermal Information
10.1.2.1
Thermal Protection
10.1.2.2
Power Dissipation
10.1.2.3
Package Mounting
10.2
Layout Example
11
Device and Documentation Support
11.1
Device Support
11.1.1
Development Support
11.1.1.1
Evaluation Modules
11.1.1.2
Spice Models
11.1.2
Device Nomenclature
11.2
Documentation Support
11.2.1
Related Documentation
11.3
Receiving Notification of Documentation Updates
11.4
Support Resources
11.5
Trademarks
11.6
Electrostatic Discharge Caution
11.7
Glossary
12
Mechanical, Packaging, and Orderable Information
Package Options
Mechanical Data (Package|Pins)
DDC|5
MPDS123G
DRV|6
MPDS216E
YZU|5
MXBG350
Thermal pad, mechanical data (Package|Pins)
DRV|6
QFND087M
Orderable Information
sbvs056l_oa
sbvs056l_pm
6.3
Recommended Operating Conditions
over operating junction temperature range (unless otherwise noted)
MIN
NOM
MAX
UNIT
V
IN
Input voltage
(1)
2.7
6.5
V
I
OUT
Output current
0.5
200
mA
T
J
Operating junction temperature
–40
125
°C
(1)
Minimum V
IN
= V
OUT
+ V
DO
or 2.7 V, whichever is greater.