Texas Instruments TPS62876EVM-199
- Part No.:
- TPS62876EVM-199
- Manufacturer:
- Texas Instruments
- Package:
- Datasheet:
-
TPS62876EVM-199.pdf
- Description:
- EVAL BOARD FOR TPS62876
- Quantity:
- Payment:

- Shipping:

Inventory:1,305
Please send an inquiry. Send us your inquiry, and we will respond immediately.
Product details
Overview
TPS62876EVM-199 from Texas Instruments is an evaluation module designed to validate stacked configurations of three TPS62876-Q1 synchronous buck converters, delivering 0.75 V at up to 75 A from a 2.7–6.0 V input. It supports I²C-controlled voltage adjustment, droop compensation, remote sensing, and frequency synchronization for automotive and high-density power system development.
For engineers reviewing the TPS62876EVM-199 datasheet, TPS62876EVM-199 board layout, TPS62876EVM-199 test results, or TPS62876EVM-199 BOM, this module provides validated hardware reference for multi-phase 25-A per-channel buck converter stacking, transient response characterization, and I²C-based digital power management integration.
Technical Context
The TPS62876EVM-199 implements a triple-stack topology using three identical TPS62876QWRZVRQ1 ICs in parallel, each housed in a 4.05 mm × 3.05 mm VQFN-24 package. It enables phase interleaving via SYNC_OUT and MODE/SYNC jumper control, supporting fixed-frequency PWM or auto-power-save operation.
Board-level features include configurable switching frequency (default 2.25 MHz), adjustable output voltage (0.75 V default, programmable via R103/R104 or I²C), and full remote sense capability with dedicated VOSNS/GOSNS pads. Input and output capacitance is expandable via footprint provisions to optimize ripple and load-step response.
Key Specifications
| Parameter | Value and Actual Design Meaning |
|---|---|
| Input Voltage Range | 2.7 V to 6.0 V - Supports wide-input automotive and industrial supply rails including 3.3 V, 5 V, and battery-derived sources. |
| Output Voltage | 0.75 V (default) - Fixed low-voltage rail optimized for core power delivery to advanced SoCs and FPGAs. |
| Maximum Output Current | 75 A - Achieved via three parallel 25-A TPS62876-Q1 channels with interleaved operation to reduce input/output ripple. |
| Switching Frequency | 2.25 MHz (default) - Enables compact magnetics and high transient response; adjustable via resistor network on all three channels. |
| I²C Interface | Standard-mode (100 kHz) and fast-mode (400 kHz) support - Allows real-time voltage ramp control, soft-start tuning, status monitoring, and droop compensation configuration. |
| Remote Sensing | Dedicated VOSNS/GOSNS pads per channel - Enables accurate load-point regulation by compensating for PCB trace IR drop. |
| Stackability Support | Hardware-synchronized SYNC_IN/SYNC_OUT and shared MODE/SYNC control - Ensures deterministic phase alignment across all three converters. |
Availability
TPS62876EVM-199 is available at Aetrix Electronics and suitable for automotive ADAS domain controllers, AI accelerator power subsystems, and high-current FPGA/ASIC core voltage applications requiring stable component supply, rapid prototyping validation, and production-ready power architecture benchmarking.
Supply support for TPS62876EVM-199 includes scheduled delivery planning, volume procurement assistance, BOM continuity management, traceable sourcing, and lifecycle availability coordination for OEM customers, industrial embedded developers, connected-device designers, and electronics production programs.
Manufacturer
Texas Instruments is a global semiconductor company specializing in analog, embedded processing, and power management technologies, with leadership in automotive-grade and industrial-grade power solutions.
The TPS62876EVM-199 belongs to TI's stackable buck converter evaluation platform family, engineered to accelerate design-in of high-efficiency, digitally controllable, multi-phase DC/DC systems for next-generation automotive and computing power architectures.
FAQ
What is the primary function of the TPS62876EVM-199?
The TPS62876EVM-199 is an evaluation module that validates stacked operation of three TPS62876-Q1 buck converters. It delivers 0.75 V at up to 75 A from a 2.7–6.0 V input and supports I²C programming, remote sensing, and synchronized switching. The TPS62876EVM-199 enables rapid testing of multi-phase power delivery for automotive and high-performance computing applications.
Can the TPS62876EVM-199 evaluate other devices besides the TPS62876-Q1?
Yes - the TPS62876EVM-199 is compatible with the full TPS6287x-Q1 family, including TPS62874-Q1, TPS62875-Q1, and TPS62877-Q1. All share the same pinout, stackability interface, and control architecture, allowing the TPS62876EVM-199 to serve as a unified platform for evaluating different current-rated variants (12 A to 25 A per channel) under identical thermal and layout conditions.
How is output voltage configured on the TPS62876EVM-199?
The TPS62876EVM-199 supports dual-mode output voltage configuration: hardware-based via resistors R103 and R104 for fixed 0.75 V (or other setpoints), and dynamic digital control via its onboard I²C interface. This allows runtime adjustment of voltage, ramp rate, soft-start time, and droop compensation - all verified using the TPS62876EVM-199 during characterization of the TPS62876-Q1 data sheet performance curves.
Does the TPS62876EVM-199 support phase synchronization across all three channels?
Yes - the TPS62876EVM-199 provides hardware-level synchronization through dedicated SYNC_IN and SYNC_OUT connections between channels, plus a shared MODE/SYNC jumper header (JP2). This ensures deterministic interleaving and eliminates beat-frequency artifacts. The TPS62876EVM-199's layout maintains matched trace lengths and controlled impedance to preserve timing integrity across all three TPS62876-Q1 devices.
What are the key mechanical and layout features of the TPS62876EVM-199?
The TPS62876EVM-199 is a 9-layer PCB with optimized thermal vias, split ground planes, and symmetric power delivery paths to support 75 A continuous output. It includes MH-series screw terminals for high-current input/output, dedicated Kelvin sense headers (JP8, J1), and accessible test points for all critical signals. Gerber files and full schematic/BOM are publicly available on the TI TPS62876EVM-199 tool page.
TPS62876EVM-199 Specifications
- Product attributes
- Attribute value
- Manufacturer:
- Texas Instruments
- Series:
- -
- Packaging:
- Box
- Product Status:
- Active
- Main Purpose:
- DC/DC, Step Down
- Outputs and Type:
- 1 Non-Isolated Output
- Voltage - Output:
- -
- Current - Output:
- 0.75V
- Voltage - Input:
- 75A
- Regulator Topology:
- 2.7V ~ 6V
- Frequency - Switching:
- Buck
- Contents:
- 2.25MHz
- Utilized IC / Part:
- Board(s)
- Power - Output:
- TPS62876
TPS62876EVM-199 FAQ
1.How can I place an order for TPS62876EVM-199 through Aetrix?
Please submit a Request for Quotation (RFQ) for TPS62876EVM-199 on Aetrix. Our sales agent will provide a competitive quotation and guide you through the order confirmation once you accept the terms.
2.Are the price and stock information for TPS62876EVM-199 reliable?
The price and inventory of TPS62876EVM-199 are updated periodically and may fluctuate due to market conditions. Stock and pricing data are typically refreshed every 24 hours. Quotation validity for TPS62876EVM-199 is usually 5 days.
3.What payment methods are accepted for TPS62876EVM-199?
We accept Wire Transfer, PayPal, Credit Card, Western Union, MoneyGram, and Escrow for TPS62876EVM-199 transactions.
Note: Certain payment methods may incur a processing fee.
4.How is shipping managed for TPS62876EVM-199?
TPS62876EVM-199 orders can be shipped via leading logistics carriers, including DHL, UPS, FedEx, TNT, or Registered Mail.
Once your TPS62876EVM-199 order is processed, you will receive an email with the shipment details and tracking number.
Note: Tracking information may take up to 24 hours to appear. Express delivery typically takes 3–5 business days.
5.How can I obtain technical support or documentation for TPS62876EVM-199?
For technical support, including TPS62876EVM-199 datasheets, pinout diagrams, or application guidance, please contact our engineering support team. They can provide detailed documentation and assistance for your TPS62876EVM-199 requirements.
6.How does Aetrix verify that TPS62876EVM-199 is sourced from the original manufacturer or authorized distributors?
All TPS62876EVM-199 products on Aetrix are procured from qualified distributors and authorized channels. Our dedicated quality assurance team conducts strict verification, including traceability checks and, if necessary, third-party testing. This ensures that TPS62876EVM-199 meets industry standards.
7.What is the process for return or replacement of TPS62876EVM-199?
All TPS62876EVM-199 units undergo pre-shipment inspection (PSI). If there is an issue with TPS62876EVM-199, returns or replacements are accepted under the following conditions:
1.Quantity discrepancies, incorrect items, or visible external defects (such as breakage or corrosion), acknowledged by Aetrix.
2.The issue is reported within 90 days of delivery.
3.The TPS62876EVM-199 part is unused and in its original packaging.
Return procedure for TPS62876EVM-199:
1.Submit a request within 90 days.
2.Obtain a Return Material Authorization (RMA) from Aetrix.
TPS62876EVM-199 Tags

-
DFR0571
DFRobot

-
DFR0379
DFRobot

-
DFR0205
DFRobot

-
1385
Adafruit Industries LLC
-
COM-15208
SparkFun Electronics

-
1944
Adafruit Industries LLC

-
2465
Adafruit Industries LLC

-
DC2468A
Analog Devices Inc.

-
DC2841A
Analog Devices Inc.

-
TPS552892EVM-111
Texas Instruments

-
TPS55289EVM-093
Texas Instruments

-
EPC9158
EPC
Tech Hub
A practical engineering guide to 3.3V and 5V logic compatibility, input thresholds, resistor dividers, translator ICs, MOSFET level shifting, I2C pull-ups, timing limits and power-sequencing risks.
The 74HC595 uses push-pull logic outputs, while the TPIC6B595 uses 50 V open-drain DMOS sinks for higher-power loads. This guide compares timing, current limits, 3.3 V interfacing, load wiring, thermal…
The 74HC595 converts serial data into eight stable parallel outputs. This guide covers pin functions, shift and storage timing, OE and MR behavior, drive-current limits, cascading, voltage compatibilit…
A technical comparison of level-sensitive latches and edge-triggered flip-flops, covering timing windows, setup and hold limits, master–slave operation, time borrowing, race-through, HDL inference and…
A D latch stores one bit while Enable controls when data can pass. This reference covers gate-level operation, truth tables, transparency, setup and hold timing, LE versus OE, common ICs and practical …
An SR latch stores one bit through cross-coupled feedback. This engineering reference covers NOR and NAND implementations, truth tables, forbidden-state recovery, gated operation, switch debouncing, fa…
Latch circuits retain one bit through feedback. This technical reference covers SR and D latches, truth tables, transparency, timing limits, latch-versus-flip-flop behavior, applications and common log…
An engineering guide to LED driver operation, constant-current and constant-voltage outputs, linear and switching topologies, dimming, IC selection, calculations, replacement compatibility, and fault c…
Operational amplifier guide covering op amp basics, feedback, ideal vs real op amps, common configurations, buffer circuits, offset, bias current, gain-bandwidth, slew rate, rail-to-rail limits and sel…
Jumper cables guide covering safe connection order, red and black clamp placement, final ground connection, cable gauge, length, clamp quality, copper vs CCA cables, jump starter comparison and battery…
