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VQFN (RJA)

UCD3138RJAR

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Texas Instruments

HIGHLY INTEGRATED DIGITAL CONTROLLER FOR ISOLATED POWER WITH 3 FEEDBACK LOOPS AND 8 DPWM OUTPUTS

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VQFN (RJA)

UCD3138RJAR

Active
Texas Instruments

HIGHLY INTEGRATED DIGITAL CONTROLLER FOR ISOLATED POWER WITH 3 FEEDBACK LOOPS AND 8 DPWM OUTPUTS

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Description

General part information

UCD3138 Series

The UCD3138 family is a digital power supply controller from Texas Instruments offering superior levels of integration and performance in a single chip solution. The UCD3138x, in comparison to Texas Instruments UCD3138x digital power controller offers 64 kB of program Flash memory in UCD3138A64 (128 KB in UCD3138128) and additional options for communication such as SPI and a second I2C port. The availability of program Flash memory in multiple 32 kB banks enables designers to implement dual images of firmware (e.g. one main image + one back-up image) in the device and provides the option to execute from either of the banks using appropriate algorithms. It also creates the unique opportunity for the processor to load a new program and subsequently execute that program without interrupting power delivery. This feature allows the end user to add new features to the power supply in the field while eliminating any down-time required to load the new program.

The flexible nature of the UCD3138 family makes it suitable for a wide variety of power conversion applications. In addition, multiple peripherals inside the device have been specifically optimized to enhance the performance of AC/DC and isolated DC/DC applications and reduce the solution component count in the IT and network infrastructure space. The UCD3138 family is a fully programmable solution offering customers complete control of their application, along with ample ability to differentiate their solution. At the same time, TI is committed to simplifying our customer’s development effort through offering best in class development tools, including application firmware, Code Composer StudioTMsoftware development environment, and TI’s Fusion Power Development GUI which enables customers to configure and monitor key system parameters.

At the core of the controller are the Digital Power Peripherals (DPP). Each DPP implements a high speed digital control loop consisting of a dedicated Error Analog to Digital Converter (EADC), a PID based 2 pole - 2 zero digital compensator and DPWM outputs with 250ps pulse width resolution. The device also contains a 12-bit, 267 ksps general purpose ADC with up to 15 channels, timers, interrupt control, PMBus, I2C, SPI and UART communications ports. The device is based on a 32-bit ARM7TDMI-S RISC microcontroller that performs real-time monitoring, configures peripherals and manages communications. The ARM microcontroller executes its program out of programmable flash memory as well as on chip RAM and ROM.

Technical Specifications

Parameters and characteristics for this part

SpecificationUCD3138RJAR
ApplicationsDigital Power Controller
Current - Supply100 mA
Mounting TypeSurface Mount
Operating Temperature (Max)125 °C
Operating Temperature (Min)-40 °C
Package / Case40-VFQFN Exposed Pad
Package Length6 mm
Package Name40-VQFN
Package Width6 mm
Voltage - Supply (Maximum)3.6 V
Voltage - Supply (Minimum)3 V

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CAD

3D models and CAD resources for this part

Documents

Technical documentation and resources

Reduce Electrical Stresses in a PFC stage during an AC drop test with UCD3138 (Rev. A)
Using the UCD3138OL64EVM-031
Using the UCD3138CC64EVM-030 (Rev. A)
Automatic Baud Rate Detection and Configuration in UCD3138 (Rev. A)
Introduction to UCD3138x Devices
Designing a UCD3138 Controlled Interleaved PFC
UCD3138 Highly Integrated Digital Controller for Isolated Power datasheet (Rev. J)
使用峰值電流模式控制進行功率因數修正
UCD3138064 Programmer's Manual (Rev. B)
UCD31xx Technical Reference Manual (Rev. E)
2Q 2016 Analog Applications Journal Issue
The secret life of MOSFET/IGBT gate drivers
Bidirection DC-to-DC Converter User's Guide (Rev. A)
Migrating from the UCD3138 to UCD3138A (Rev. D)
Analog Applications Journal 3Q 2015
How to reduce current spikes at AC zero-crossing for totem-pole PFC
Lockup Avoidance for UCD3138 Devices
Evaluating UCD3138 in Interleave PFC or Bridgeless PFC Configurations
Designing a digital-controlled power supply
1-kW Digital-Controlled Current Mode LLC Reference Design
Using the UCD3138PSFBEVM-027
Digital current balancing for an interleaved boost PFC
A novel charge-mode control algorithm for PFC
UCD3138 – Responding to Multiple PMBus Slave Addresses
Designing a digital power supply: How to write firmware
適用於 PFC 的創新充電模式控制演算法
Using the UCD3138064EVM-166
Load transient testing with high slew rates
UCD3138 PFC Tuning
Using the UCD3138HSFBEVM-029 (Rev. A)
Power factor correction using peak current-mode control
高轉換速率的負載暫態測試
2Q 2013 Issue Analog Applications Journal
UCD3138 Family - Practical Design Guideline (Rev. B)
Is your power supply smart enough to be cool
Are you ready for totem-pole PFC?
Designing a UCD3138 Controlled Single Phase PFC
Power Management Guide 2018 (Rev. R)
4Q 2015 Analog Applications Journal
THD Reduction of DCM PFC with UCD3138
Is integrated GaN changing the conventional wisdom?
UCD3138 Integral Branch of the PID Filter
Fast input-voltage transient response with digitally-controlled isolated DC/DC
Stack Overflow Detection on UCD3138 Devices
Fusion Digital Power Studio for UCD3138 Isolated Power Applications (Rev. C)
Increase power factor by digitally compensating PFC EMI-capacitor reactive curre
PFC THD Reduction and Efficiency Improvement by ZVS or Valley Switching
Using the UCD3138PFCEVM-026 (Rev. C)
Designing a UCD3138 Controlled Bridgeless PFC
Using the UCD3138OL40EVM-032
PFC를 위한 새로운 충전 모드 제어 알고리즘
피크 전류 모드 제어를 사용한 역률 보정