TDK FPS-S1U, FPS1000-12 manual Basic Connections for Operation FPS-T1U Rack, 19.2 On/Off control

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FPS-T1U Instruction Manual

CHAPTER 19 BASIC CONNECTIONS FOR OPERATION FPS-T1U RACK

19.1 Connecting Single Load, Remote Sensing

Remote sensing is used in cases where the load regulation is important at the load terminals. Use twisted or shielded wires to minimize noise pick-up. If shielded wires are used, the shield should be connected to the ground at one point, either the power supply side or the load. The optimal point for the shield ground should be determined by experimentation. Refer to the power supply specifications for the maximum voltage drop allowed at the load wires.

FPS-T1U

+V

+S

 

 

 

FPS-1000 Module A

 

 

-S

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

-V

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

+V

 

 

FPS-1000 Module B

 

 

+S

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

-S

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

-V

 

 

 

 

 

 

 

 

 

 

 

 

+V

 

 

FPS-1000 Module C

 

 

 

 

 

 

+S

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

ON/

 

ON/

ON/

-S

 

OFF_1

 

OFF_1

OFF_1

 

 

 

 

A

 

B

C

 

 

-V

J1(A)-3

 

J1(A)-12

 

J2(B)-3

 

J2(B)-12

 

J3(C)-3

 

J3(C)-12

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

Load line. Up to 1V drop.

 

+V

J1-8

LOAD

J1-7

 

 

-V

 

+V

J2-8

LOAD

J2-7

 

 

-V

 

+V

J3-8

LOAD

J3-7

 

 

-V

Sense lines

Load line.

Twisted pairs

Up to 1V drop.

Fig 19-1: Remote sensing, three load.

*In Local sense applications, the +/- sense have to be connected to the

+/-Local Sense terminals of the FPS-T1U prior to operating the FPS1000 units plugged in.

19.2 On/Off control

Fig 19-2 and Fig 19.3 shows typical connection for individual On/Off control of each installed FPS1000 unit.

ON/OFF Control_1

FPS-T1U

FPS-1000 Module A

FPS-1000 Module B

FPS-1000 Module C

J1(A)-12

ON OFF J1(A)-3 J2(B)-12

ON OFF J2(B)-3 J3(C)-12

ON OFF J3(C)-3

Fig 19-2

ON/OFF Control_2

FPS-T1U

FPS-1000 Module A

FPS-1000 Module B

FPS-1000 Module C

ON/ ON/ ON/ ON/ ON/ ON/

OFF OFF1 OFF OFF1 OFF OFF1 SLCT A SLCT B SLCT C

J1(A)-13

J1(A)-12

J2(B)-13

J2(B)-12

J3(C)-13

J3(C)-12

J1(A)-4

OFF ON J1(A)-3 J2(B)-4

OFF ON J2(B)-3 J3(C)-4

OFF ON J3(C)-3

Fig 19-3

Connection for negative logic: Closed: On Open: Off Factory default: ON/OFF Control_1

Connection for positive logic: Closed: Off Open: On

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Contents FPS Series 1000W In 1U FPS1000 Series Table of Contents Warranty Service WarrantyLimitation of Warranty DisclaimerFPS1000 Power Supply and FPS-S1U Rack Safety Instructions Safety Symbols FPS1000 Series Specifications Outline Drawings FPS 1000 Series Outline Drawings FPS 1000/P Series Outline Drawings FPS1000 Power Supply Installation Current Carrying Capacity Connecting the LoadLoad Wiring Making the load connections Noise and Impedance EffectsInductive loads Input/Output connector information Repackaging for ShipmentFunctions and Features Remote On/Off control Dcok signalACFail signal FPS10004.7KΩRemote Sensing Connecting Multiple loads, radial distribution method Connecting single load, Local sensingConnecting Single Load, Remote Sensing Basic Connections for OperationMultiple loads connection with distribution terminals Grounding outputsParallel operation with Remote sensing Parallel and Series OperationParallel operation Output voltage trimming at parallel operationSignal Return bus at parallel operation Remote On/Off control at parallel operationSeries operation Series connection for positive and negative output voltageI2C BUS Interface Option Eeprom functions Block diagram of the I2C optionOperation and functions 7.4.1. Digital status Output current readback Analog functions4 A/D Scaling Typical application diagram FPS1000FPS1000 Maintenance FPS-S1U 19 Rack Single Output Chapter FPS-S1U Rack Specifications Maximum output powerFPS-S1U Rack Installation FPS-S1U Rack MountingControl and monitoring signals connector Rear panel descriptionSCL I2C Modules location Blank panelsFPS-S1U and FPS-S1U/P Outline Drawings FPS-S1U/P Outline Drawing Basic Connections for Operation FPS-S1U Rack Multiple loads connectionOutput voltage trimming Supervisory signals12.4 On/Off control Parallel operation with Remote sensing Signal Return bus at parallel operation Output voltage trimming at parallel operationRemote On/Off control at parallel operation Addressing A0, A1, A2 FPS-S1U I2C BUS Interface OptionIntroduction Periodic maintenance FPS-S1U MaintenanceUnits under warranty Adjustments and CalibrationFPS-T1U 19 Rack Triple Output FPS-T1U Rack Specifications ChapterFPS-T1U Rack Installation FPS-T1U Rack MountingFPS-T1U Rear panel J1A, J2B, J3C Conector Description Modules location FPS-T1U and FPS-T1U/P Outline Drawings FPS-T1U/P Outline Drawing Basic Connections for Operation FPS-T1U Rack 19.2 On/Off controlOutput Voltag Trimming Load Series operation FPS-T1U I2C BUS Interface Option Module a Module B Module CFPS-T1U Maintenance

FPS1000-32, FPS-S1U, FPS1000-48, FPS1000-12, FPS-T1U specifications

TDK has established itself as a leading innovator in power supply solutions with its range of FPS series products, specifically designed for various demanding applications. Among these, the FPS1000-24, FPS-T1U, FPS1000-12, FPS1000-48, and FPS-S1U models stand out due to their advanced features, robust technologies, and versatile characteristics.

The FPS1000-24, catering to a voltage output of 24V, is ideal for both industrial and commercial applications. It delivers a notable output power of 1000 watts while boasting high efficiency, making it a reliable option for systems that require consistent power with minimal energy loss. The model incorporates advanced protection features including over-voltage, over-current, and short-circuit protection, ensuring that connected devices are safeguarded against potential electrical faults.

Similarly, the FPS1000-12 offers a 12V output with equivalent power ratings, making it suitable for applications such as telecommunications and medical devices where stability and reliability are paramount. This model also emphasizes thermal management, utilizing integrated cooling technologies to maintain optimal performance even under demanding conditions.

The FPS1000-48 distinguishes itself with a 48V output, which is increasingly prevalent in high-density computing environments and server applications. With enhanced scalability, this model allows for multiple unit configurations to support higher load demands while maintaining exceptional efficiency levels.

In addition to the standard offerings, TDK’s FPS-T1U and FPS-S1U models provide intelligent power management solutions. The FPS-T1U, being a compact version, is tailored for space-constrained environments, ensuring high performance without compromising on size. It features built-in monitoring capabilities that allow users to track power usage and efficiency metrics in real-time.

The FPS-S1U is particularly notable for its modular design, enabling easy integration into various systems. This flexibility allows users to adapt the power supply to specific system requirements, enhancing functionality across diverse applications. Both models leverage cutting-edge technology to ensure low standby power consumption, reducing the overall energy footprint.

Overall, TDK’s FPS series exemplifies a commitment to quality, performance, and adaptability, making them ideal candidates for modern power supply needs across industries. With their comprehensive protection mechanisms, efficiency, and innovative designs, they stand as reliable choices for engineers and designers looking to optimize their systems.