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TPS65086

ACTIVO

PMIC multicarril configurable para dispositivos que funcionan con batería de iones de litio de 2S y

Detalles del producto

Processor supplier Xilinx Processor name Artix-7, Zynq Ultrascale+ Product type Processor and FPGA Regulated outputs (#) 13 Step-down DC/DC converter 3 Step-up DC/DC converter 0 LDO 4 Vin (min) (V) 5.6 Vin (max) (V) 21 Vout (min) (V) -0.3 Vout (max) (V) 3.575 Iout (max) (A) 21, 25 Configurability Factory programmable, Software configurable Features Comm control, Dynamic voltage scaling, Enable, Enable pin, I2C control, Overcurrent protection, Power good, Power sequencing, Synchronous rectification, Thermal shutdown, UVLO fixed Rating Catalog Operating temperature range (°C) -40 to 85 Step-down DC/DC controller 3 Step-up DC/DC controller 0 Iq (typ) (mA) 0.3 Switching frequency (max) (kHz) 3100 Shutdown current (ISD) (typ) (µA) 65 Switching frequency (typ) (kHz) 2500
Processor supplier Xilinx Processor name Artix-7, Zynq Ultrascale+ Product type Processor and FPGA Regulated outputs (#) 13 Step-down DC/DC converter 3 Step-up DC/DC converter 0 LDO 4 Vin (min) (V) 5.6 Vin (max) (V) 21 Vout (min) (V) -0.3 Vout (max) (V) 3.575 Iout (max) (A) 21, 25 Configurability Factory programmable, Software configurable Features Comm control, Dynamic voltage scaling, Enable, Enable pin, I2C control, Overcurrent protection, Power good, Power sequencing, Synchronous rectification, Thermal shutdown, UVLO fixed Rating Catalog Operating temperature range (°C) -40 to 85 Step-down DC/DC controller 3 Step-up DC/DC controller 0 Iq (typ) (mA) 0.3 Switching frequency (max) (kHz) 3100 Shutdown current (ISD) (typ) (µA) 65 Switching frequency (typ) (kHz) 2500
VQFN (RSK) 64 64 mm² (8 mm × 8 mm)
  • Wide VIN Range From 5.6V to 21 V
  • Three Variable-Output Voltage Synchronous
    Step-Down Controllers With DCAP2™ Topology
    • Scalable Output Current Using External FETs
      With Selectable Current Limit
    • I2C DVS Control From 0.41 V to 1.67 V in
      10-mV Steps or 1 V to 3.575 V in 25-mV Steps
  • Three Variable-Output Voltage Synchronous Step-Down
    Converters With DCS-Control Topology
    • VIN Range From 4.5 V to 5.5 V
    • Up to 3 A of Output Current
    • I2C DVS Control From 0.41 V to 1.67 V
      in 10-mV Steps or 0.425 V to 3.575 V in 25-mV
      Steps
  • Three LDO Regulators With Adjustable Output Voltage
    • LDOA1: I2C-Selectable Output Voltage
      From 1.35 V to 3.3 V for up to 200 mA of Output
      Current
    • LDOA2 and LDOA3: I2C-Selectable Output
      Voltage From 0.7 V to 1.5 V for up to 600 mA of
      Output Current
  • VTT LDO for DDR Memory Termination
  • Three Load Switches With Slew Rate Control
    • Up to 300 mA of Output Current With Voltage
      Drop Less Than 1.5% of Nominal Input Voltage
    • RDSON < 96 mΩ at Input Voltage
      of 1.8 V
  • 5-V Fixed-Output Voltage LDO (LDO5)
    • Power Supply for Gate Drivers of SMPS and
      for LDOA1
    • Automatic Switch to External 5-V Buck for Higher
      Efficiency
  • Built-in Flexibility and Configurability by Factory
    OTP Programming
    • Six GPI Pins Configurable to Enable (CTL1 to CTL6)
      or Sleep Mode Entry (CTL3 and CTL6) of Any Selected
      Rails
    • Four GPO Pins Configurable to Power Good of Any
      Selected Rails
    • Open-Drain Interrupt Output Pin
  • I2C Interface Supports:
    • Standard Mode (100 kHz)
    • Fast Mode (400 kHz)
    • Fast Mode Plus (1 MHz)
  • Wide VIN Range From 5.6V to 21 V
  • Three Variable-Output Voltage Synchronous
    Step-Down Controllers With DCAP2™ Topology
    • Scalable Output Current Using External FETs
      With Selectable Current Limit
    • I2C DVS Control From 0.41 V to 1.67 V in
      10-mV Steps or 1 V to 3.575 V in 25-mV Steps
  • Three Variable-Output Voltage Synchronous Step-Down
    Converters With DCS-Control Topology
    • VIN Range From 4.5 V to 5.5 V
    • Up to 3 A of Output Current
    • I2C DVS Control From 0.41 V to 1.67 V
      in 10-mV Steps or 0.425 V to 3.575 V in 25-mV
      Steps
  • Three LDO Regulators With Adjustable Output Voltage
    • LDOA1: I2C-Selectable Output Voltage
      From 1.35 V to 3.3 V for up to 200 mA of Output
      Current
    • LDOA2 and LDOA3: I2C-Selectable Output
      Voltage From 0.7 V to 1.5 V for up to 600 mA of
      Output Current
  • VTT LDO for DDR Memory Termination
  • Three Load Switches With Slew Rate Control
    • Up to 300 mA of Output Current With Voltage
      Drop Less Than 1.5% of Nominal Input Voltage
    • RDSON < 96 mΩ at Input Voltage
      of 1.8 V
  • 5-V Fixed-Output Voltage LDO (LDO5)
    • Power Supply for Gate Drivers of SMPS and
      for LDOA1
    • Automatic Switch to External 5-V Buck for Higher
      Efficiency
  • Built-in Flexibility and Configurability by Factory
    OTP Programming
    • Six GPI Pins Configurable to Enable (CTL1 to CTL6)
      or Sleep Mode Entry (CTL3 and CTL6) of Any Selected
      Rails
    • Four GPO Pins Configurable to Power Good of Any
      Selected Rails
    • Open-Drain Interrupt Output Pin
  • I2C Interface Supports:
    • Standard Mode (100 kHz)
    • Fast Mode (400 kHz)
    • Fast Mode Plus (1 MHz)

The TPS650860 device is a single-chip power-management IC designed for multicore processors, FPGAs, and other System-on-Chips (SoCs). The TPS650860 offers an input range of 5.6 V to 21 V, enabling a wide range of applications. The device is well suited for NVDC and non-NVDC power architecture using 2S, 3S, or 4S Li-Ion battery packs. See the Application Section for 5-V input supplies. The D-CAP2 and DCS-Control high-frequency voltage regulators use small inductors and capacitors to achieve a small solution size. The D-CAP2 and DCS-Control topologies have excellent transient response performance, which is great for processor core and system memory rails that have fast load switching. An I2C interface allows simple control either by an embedded controller (EC) or by an SoC. The PMIC comes in an 8-mm × 8-mm, single-row VQFN package with thermal pad for good thermal dissipation and ease of board routing.

The TPS650860 device is a single-chip power-management IC designed for multicore processors, FPGAs, and other System-on-Chips (SoCs). The TPS650860 offers an input range of 5.6 V to 21 V, enabling a wide range of applications. The device is well suited for NVDC and non-NVDC power architecture using 2S, 3S, or 4S Li-Ion battery packs. See the Application Section for 5-V input supplies. The D-CAP2 and DCS-Control high-frequency voltage regulators use small inductors and capacitors to achieve a small solution size. The D-CAP2 and DCS-Control topologies have excellent transient response performance, which is great for processor core and system memory rails that have fast load switching. An I2C interface allows simple control either by an embedded controller (EC) or by an SoC. The PMIC comes in an 8-mm × 8-mm, single-row VQFN package with thermal pad for good thermal dissipation and ease of board routing.

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Documentación técnica

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Documentación principal Tipo Título Opciones de formato Descargar la versión más reciente en inglés Fecha
* Hoja de datos TPS650860 Configurable Multirail PMU for Multicore Processors datasheet (Rev. A) PDF | HTML 10/12/2015
Nota sobre la aplicación Optimizing Resistor Dividers at a Comparator (Rev. B) PDF | HTML 30/04/2021
Nota sobre la aplicación How to Design Flexible Processor Power Systems Using PMICs (Rev. B) 27/01/2020
Guía del usuario TPS650860 PMIC User's Guide For I2C Configurable-Systems 18/01/2018
Nota sobre la aplicación Push-Button Circuit (Rev. B) 1/11/2017
Informe Simple power rail sequencing solutions for complex multi-rail systems 6/07/2016
Nota sobre la aplicación TPS65086x Schematic and Layout Checklist (Rev. A) 2/12/2015
Guía del usuario TPS65086x Design Guide 19/11/2015
Product overview TPS650860 PMIC Product Bulletin 28/09/2015
Nota sobre la aplicación Basic Calculation of a Buck Converter's Power Stage (Rev. B) PDF | HTML 17/08/2015
Informe Power management integrated buck controllers for distant point-of-load apps 14/08/2015
Nota sobre la aplicación Advantages of the Highly-Programmable DC/DC Controllers in the TPS65086x PMIC 27/03/2015
Analog Design Journal Controlling switch-node ringing in synchronous buck converters 26/04/2012
Nota sobre la aplicación Ringing Reduction Techniques for NexFET High Performance MOSFETs 16/11/2011

Diseño y desarrollo

Para conocer los términos adicionales o los recursos necesarios, haga clic en cualquier título de abajo para ver la página de detalles cuando esté disponible.

Placa de evaluación

TPS650860EVM-116 — Módulo de evaluación TPS650860

Evaluation Module (EVM) for the TPS65086x family. The EVM provides a platform for engineers to evaluate, test, and explore the TPS650860 in a real world application use. All of the sequencing and functionality required for the processor and system is demonstrated on this board. This EVM also (...)

Guía del usuario: PDF
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En inventario
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No disponible
Controlador o biblioteca

TPS65086SW-LINUX — Controlador Linux para TPS65086

The Linux driver supports the TPS65086 Power Management IC. The Linux driver supports communication through the I2C bus and interfaces with the Regulator sub-system.

 

Linux Mainline Status

Available in Linux Main line: Yes
Available through git.ti.com: N/A

Supported Devices:

  • tps65086

 

Linux Source Files

(...)

Productos y hardware compatibles
GUI para el módulo de evaluación (EVM)

IPG-UI — IPG-UI EVM GUI (Windows Installer)

La GUI IPG-UI se puede usar para configurar varios dispositivos PMIC a fin de evaluar las características y el rendimiento de dichos dispositivos.  Esta GUI se creó mediante tecnologías basadas en web y admite la interacción con el hardware EVM mediante una placa (...)

Productos y hardware compatibles
GUI para el módulo de evaluación (EVM)

IPG-UI-LINUX — IPG-UI EVM GUI (Linux Installer)

La GUI IPG-UI se puede usar para configurar varios dispositivos PMIC a fin de evaluar las características y el rendimiento de dichos dispositivos.  Esta GUI se creó mediante tecnologías basadas en web y admite la interacción con el hardware EVM mediante una placa (...)

Productos y hardware compatibles
GUI para el módulo de evaluación (EVM)

IPG-UI-OSX — IPG-UI EVM GUI (OSX Installer)

La GUI IPG-UI se puede usar para configurar varios dispositivos PMIC a fin de evaluar las características y el rendimiento de dichos dispositivos.  Esta GUI se creó mediante tecnologías basadas en web y admite la interacción con el hardware EVM mediante una placa (...)

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Soporte de software

SWCC016 — TPS650860 Device Installers v1.0

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Modelo de simulación

Flotherm Model for TPS65086x products

SWCM008.ZIP (0 KB) - Modelo térmico
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Modelo de simulación

TPS650860 RSK 64 BXL Schematic Symbols

SWCM007.ZIP (26 KB) - Modelo IBIS
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Modelo de simulación

TPS650860 RSK IBIS Model

SWCM006.ZIP (37 KB) - Modelo IBIS
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Diseño de referencia

PMP12004-HE — Diseño de referencia para la alimentación de un cabezal de radio remoto (RRH) o backhaul (BH) Xilinx

Este diseño para alimentar Remote Radio Heads (RRH) con Xilinx Zynq UltraScale+ (www.xilinx.com/power) incorpora el TPS6508640 y ofrece una solución compacta y de alta eficiencia. El PMIC reduce tamaño, costo y pérdidas de potencia al integrar múltiples carriles en un solo dispositivo, operar a (...)
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Pedidos y calidad

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