TPS7H5001-SP

ACTIVE

Radiation-hardened, QMLV and QMLP 2-MHz dual-output PWM controller with synchronous rectification

TPS7H5001-SP

ACTIVE

Product details

Vin (max) (V) 14 Operating temperature range (°C) -55 to 125 Control mode Current Topology Active clamp, Boost, Buck, Flyback, Forward, Full bridge, Half bridge, Push pull Rating Space Features Dead time control, Leading edge blanking, Low power, Multi-topology Duty cycle (max) (%) 100
Vin (max) (V) 14 Operating temperature range (°C) -55 to 125 Control mode Current Topology Active clamp, Boost, Buck, Flyback, Forward, Full bridge, Half bridge, Push pull Rating Space Features Dead time control, Leading edge blanking, Low power, Multi-topology Duty cycle (max) (%) 100
CFP (HFT) 22 60.221856 mm² 6.211 x 9.696 DIESALE (KGD) See data sheet TSSOP (PW) 24 49.92 mm² 7.8 x 6.4
  • Radiation performance:
    • Radiation hardness assured (RHA) up to TID 100krad(Si)
    • SEL, SEB, and SEGR immune to LET = 75MeV-cm2/mg
    • SET and SEFI characterized up to LET = 75MeV-cm2/mg
    • No cross-conduction events for controller outputs observed during SET characterization
  • Input voltage: 4V to 14V
  • 0.613V +0.7%/–1% voltage reference over temperature, radiation, and line and load regulation
  • Switching frequency from 100kHz to 2MHz
  • External clock synchronization capability
  • Synchronous rectification outputs
    • TPS7H5001-SP, TPS7H5002-SP, TPS7H5003-SP
  • Adjustable dead time
    • TPS7H5001-SP, TPS7H5002-SP
  • Adjustable leading edge blank time
    • TPS7H5001-SP, TPS7H5002-SP, TPS7H5004-SP
  • Configurable duty cycle limit
    • TPS7H5001-SP, TPS7H5002-SP, TPS7H5003-SP
  • Adjustable slope compensation and soft start
  • Package options include CFP and TSSOP
  • Radiation performance:
    • Radiation hardness assured (RHA) up to TID 100krad(Si)
    • SEL, SEB, and SEGR immune to LET = 75MeV-cm2/mg
    • SET and SEFI characterized up to LET = 75MeV-cm2/mg
    • No cross-conduction events for controller outputs observed during SET characterization
  • Input voltage: 4V to 14V
  • 0.613V +0.7%/–1% voltage reference over temperature, radiation, and line and load regulation
  • Switching frequency from 100kHz to 2MHz
  • External clock synchronization capability
  • Synchronous rectification outputs
    • TPS7H5001-SP, TPS7H5002-SP, TPS7H5003-SP
  • Adjustable dead time
    • TPS7H5001-SP, TPS7H5002-SP
  • Adjustable leading edge blank time
    • TPS7H5001-SP, TPS7H5002-SP, TPS7H5004-SP
  • Configurable duty cycle limit
    • TPS7H5001-SP, TPS7H5002-SP, TPS7H5003-SP
  • Adjustable slope compensation and soft start
  • Package options include CFP and TSSOP

The TPS7H500x-SP family of high speed radiation-hardness-assured PWM controllers. The controllers provide a number of features that are beneficial for the design of DC-DC converter topologies intended for space applications. The controllers have a 0.613V +0.7%/–1% accurate internal reference and configurable switching frequency up to 2MHz. Each device offers programmable slope compensation and soft-start.

The TPS7H500x-SP series can be driven using an external clock through the SYNC pin or by using the internal oscillator at a frequency programmed by the user. The controller family offers the user various options for switching outputs, synchronous rectification capability, dead time (fixed or configurable), leading edge blank time (fixed or configurable), and duty cycle limit. Each device in the TPS7H500x-SP series is available in both a 22-pin CFP ceramic package and a 24-pin TSSOP plastic package.

The TPS7H500x-SP family of high speed radiation-hardness-assured PWM controllers. The controllers provide a number of features that are beneficial for the design of DC-DC converter topologies intended for space applications. The controllers have a 0.613V +0.7%/–1% accurate internal reference and configurable switching frequency up to 2MHz. Each device offers programmable slope compensation and soft-start.

The TPS7H500x-SP series can be driven using an external clock through the SYNC pin or by using the internal oscillator at a frequency programmed by the user. The controller family offers the user various options for switching outputs, synchronous rectification capability, dead time (fixed or configurable), leading edge blank time (fixed or configurable), and duty cycle limit. Each device in the TPS7H500x-SP series is available in both a 22-pin CFP ceramic package and a 24-pin TSSOP plastic package.

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Technical documentation

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Type Title Date
* Data sheet TPS7H500x-SP Radiation-Hardness-Assured 2MHz Current Mode PWM Controllers datasheet (Rev. F) PDF | HTML 14 Aug 2024
* Radiation & reliability report TPS7H5005-SEP and TPS7H5001-SP QMLP Neutron Displacement Damage (NDD) Characterization Report (Rev. A) 15 Aug 2024
* Radiation & reliability report TPS7H5001-SP QMLP total Ionizing Dose (TID) Report (Rev. A) 12 Sep 2023
* Radiation & reliability report TPS7H500x-SP Single-Event Effects (SEE) Radiation Report (Rev. B) PDF | HTML 01 Sep 2023
* SMD TPS7H5001-SP SMD 5962-18222 08 Jun 2022
* Radiation & reliability report TPS7H5001-SP QMLV total Ionizing Dose (TID) Report (Rev. A) 11 Feb 2022
* Radiation & reliability report TPS7H5001-SP Neutron Displacement Damage (NDD) Characterization 21 Jan 2022
Application brief DLA Approved Optimizations for QML Products (Rev. B) PDF | HTML 17 May 2024
Selection guide TI Space Products (Rev. J) 12 Feb 2024
Technical article How can you optimize SWaP for next-generation satellites with electronic power systems? PDF | HTML 02 Jan 2024
Application note Using Space Grade Power Components to Power AMD Kintex XQRKU060 FPGA PDF | HTML 08 Nov 2023
Application note Using Space Grade Power Components to Power Microchip RTAX-S/SL FPGA PDF | HTML 29 Sep 2023
Application note Using Space Grade Power Components to Power Microchip RT PolarFire FPGA PDF | HTML 20 Sep 2023
More literature TI Engineering Evaluation Units vs. MIL-PRF-38535 QML Class V Processing (Rev. A) 31 Aug 2023
Application note QML flow, its importance, and obtaining lot information (Rev. C) 30 Aug 2023
Application note 12 VIN to 1 VOUT Single Phase Buck Converter Using TPS7H5001-SP Controller (Rev. B) PDF | HTML 26 May 2023
Application note TPS7H5001-SP 12 V to 0.8 V / 80 A Buck Converter Design Detailing Methodology an PDF | HTML 17 May 2023
Application note Space Grade Power Solution for Microsemi RTG4 PDF | HTML 02 May 2023
User guide 28-V to 5-V, 10-A Flyback Converter Design With TPS7H5001-SP PDF | HTML 13 Apr 2023
Circuit design Space-Grade, Overcurrent Protection Circuit for TPS7H500x-SP Using the INA901-SP PDF | HTML 16 Mar 2023
User guide TPS7H5001-SP Worst Case Analysis Model (Rev. A) PDF | HTML 07 Feb 2023
Application note Heavy Ion Orbital Environment Single-Event Effects Estimations (Rev. A) PDF | HTML 17 Nov 2022
Technical article Key considerations for advancing satellite electrical power systems PDF | HTML 31 Oct 2022
Application note Single-Event Effects Confidence Interval Calculations (Rev. A) PDF | HTML 19 Oct 2022
EVM User's guide TPS7H5001-SP Evaluation Module User's Guide PDF | HTML 09 Jul 2021
Application brief Controlling Input Power for Present and Next-Generation Power Controllers PDF | HTML 14 Dec 2020
Application note DLA Standard Microcircuit Drawings (SMD) and JAN Part Numbers Primer 21 Aug 2020
Application note Hermetic Package Reflow Profiles, Termination Finishes, and Lead Trim and Form PDF | HTML 18 May 2020
E-book Radiation Handbook for Electronics (Rev. A) 21 May 2019

Design & development

For additional terms or required resources, click any title below to view the detail page where available.

Evaluation board

TPS7H5001EVM-CVAL — TPS7H5001 evaluation module for 2-MHz dual-output PWM controller with synchronous rectification

The TPS7H5001EVM-CVAL evaluation module (EVM) is a platform for testing the TPS7H5001-SP controller. TPS7H5001-SP can be operated in open loop.

User guide: PDF | HTML
Not available on TI.com
Simulation model

TPS7H5001-SP PSpice Transient Model (Rev. C)

SLVMDN1C.ZIP (87 KB) - PSpice Model
Simulation model

TPS7H5001-SP SIMPLIS Model (Buck Schematic)

SLVMDU0.ZIP (29 KB) - SIMPLIS Model
Simulation model

TPS7H5001-SP SIMPLIS Model (Flyback Reference Schematic)

SLVMDP9.ZIP (28 KB) - SIMPLIS Model
Simulation model

TPS7H5001-SP SIMPLIS Model (Full-Bridge Reference Schematic)

SLVMDW3.ZIP (29 KB) - SIMPLIS Model
Simulation model

TPS7H5001-SP SIMPLIS Transient Model

SLVMDM7.ZIP (30 KB) - SIMPLIS Model
Simulation model

TPS7H5001-SP SIMPLIS Worst-Case Analysis (WCA) Model

SLVMDU4.ZIP (29 KB) - SIMPLIS Model
Calculation tool

SLVRBI1 TPS7H5001-SP Push-Pull Converter Calculator

Supported products & hardware

Supported products & hardware

Products
AC/DC & DC/DC controllers (external FET)
TPS7H5001-SP Radiation-hardened, QMLV and QMLP 2-MHz dual-output PWM controller with synchronous rectification
Calculation tool

SLVRBI2 TPS7H5001-SP Buck Converter Calculator

Supported products & hardware

Supported products & hardware

Products
AC/DC & DC/DC controllers (external FET)
TPS7H5001-SP Radiation-hardened, QMLV and QMLP 2-MHz dual-output PWM controller with synchronous rectification
Calculation tool

SLVRBI6 TPS7H5001-SP Flyback Converter Calculator

Supported products & hardware

Supported products & hardware

Products
AC/DC & DC/DC controllers (external FET)
TPS7H5001-SP Radiation-hardened, QMLV and QMLP 2-MHz dual-output PWM controller with synchronous rectification
Reference designs

PMP23200 — 100W, 5V output hard-switched full-bridge converter reference design for 100kRad applications

This reference design uses the TPS7H5001-SP pulse-width modulation (PWM) controller and three TPS7H6003-SP half-bridge drivers to contruct a hard-switched full-bridge converter that takes an input ranging from 22V to 36V and generates an isolated 5V output capable of 100W loading. The controller, (...)
Test report: PDF
Reference designs

PMP23193 — 50- to 150-VIN, 28-V 5-A synchronous buck converter reference design for 100-kRad space applications

This reference design is a 28-V output, 5-A synchronous buck converter for space applications operating from a 50-V to 150-V input range. The TPS7H5001-SP PWM controller controls the power stage. The INA901-SP senses the inductor current and provides current feedback to the controller enabling (...)
Test report: PDF
Package Pins CAD symbols, footprints & 3D models
CFP (HFT) 22 Ultra Librarian
DIESALE (KGD)
TSSOP (PW) 24 Ultra Librarian

Ordering & quality

Information included:
  • RoHS
  • REACH
  • Device marking
  • Lead finish/Ball material
  • MSL rating/Peak reflow
  • MTBF/FIT estimates
  • Material content
  • Qualification summary
  • Ongoing reliability monitoring
Information included:
  • Fab location
  • Assembly location

Support & training

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