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LZS-A500-3 Power Supply

4. GUIDE TO APPLICATION

4.1 SAFETY NOTICE

Dangerous voltages exist in this equipment. Observe the usual safety precautions when operat-

ing, wiring, or servicing to reduce the risk of shock or injury.

4.2 INPUT VOLTAGE

See table 3 on page 4.

4.3 OUTPUT VOLTAGE

This power supply operates as a constant-voltage source with maximum load ratings as listed 

on page 4.  If the load current tries to exceed 110% of the 60°C rating, the output voltage will 

begin to decrease, thereby limiting the power delivered to the load.  Upon removal of overload, 

normal operation will resume.

When shipped from the factory, the power supply is ready for use with output voltage (Vout) set 

to its nominal rating of 24.0V.  Jumpers are in place on TB201 for local voltage sensing.  Where 

precise regulation is required directly at the load, remote voltage sensing can be utilized.  This 

can be achieved by utilizing the remote sense terminals on TB201 or "D" connector (see Figs.2 

and 3).  The output voltage can be increased by turning the Vout adjust potentiometer clock-

wise.  The output voltage is decreased by turning the Vout adjust potentiometer counter clock-

wise.

As shown on page 4, LZS-A500 power supplies have both a maximum current rating and a

maximum output power rating (as a function of ambient temperature). Care should be taken to 

limit both output current and output power to be within specified limits.  If these limitations are 

not adhered to, the internal thermal protection circuit may shut down the power supply's opera-

tion.  For remote voltage sensing, the maximum limits for output power, as given on page 4, 

apply at the power supply output terminals, not at the remote sensing point.

When adjusting the output voltage above 24.0V, ensure that there is sufficient OVP margin with 

respect to the output voltage, to avoid nuisance tripping.

4.4 OVERVOLTAGE PROTECTION CIRCUIT ADJUSTMENT

The overvoltage protection circuit provides an adjustable means of disabling the DC output if it 

should exceed a pre-determined safe value.  When shipped from the factory, the overvoltage 

level on each LZS unit is set as given in table 6 on page 5.  If a different OVP threshold is 

required, it can be adjusted using the following method:

1. Turn the OVP Adjust potentiometer fully clockwise (at least 10 turns).

2. With the power supply unloaded, set Vout to the OVP threshold desired.  In cases where the

desired OVP threshold exceeds the unit’s adjustment range maximum of 29.4V, a programming

resistor (see figures 4 & 5) will temporarily be needed to provide the higher output voltage to

perform the adjustment. Once adjusted, remove the programming resistor. Alternatively, you

may use an external voltage source to set the OVP threshold as shown in figures 4 & 5.

3. Slowly turn the OVP adjust control counter clockwise while monitoring the output voltage.

Stop turning the control immediately when the red FAULT indicator lights, indicating an OVP

shutdown. At that point, the OVP threshold is set to the desired value.

4.5 OVERTEMPERATURE AND OVERVOLTAGE SHUTDOWN

LZS-A500 power supplies will automatically shut down if operating conditions cause excessive 

internal heating or excessive output voltage.  After the occurrence of an overvoltage shut down, 

input power must be interrupted or the remote on/off feature must be toggled to re-establish the 

output. Overtemp shutdown resets itself once the unit has cooled off by approximately 10

°

C.  

4.6 AUXILIARY CONTROL AND ALARM SIGNALS

LZSa power supplies provide auxiliary control and alarm signals per page 5.  These signals are 

accessible via the 15-pin, sub miniature "D" connector, located below the output terminals of the 

unit.

Revision N : January 2022

Page. 7

1-800-LAMBDA-4

Содержание LZS-A500-3

Страница 1: ...a office Environmental These products are IPX0 and therefore chemicals solvents cleaning agents and other liquids must not be used Environment This power supply is a switch mode power supply for use i...

Страница 2: ...nt for mechanical electric shock and fire hazard protection Energy Hazards The main output of this product is capable of providing hazardous energy 240VA Final equipment manufacturers must provide pro...

Страница 3: ...Konformit t mit der EMV Richtlinie muss in der finalen Gesamtinstallation betrachtet werden Bitte kontaktieren Sie Ihr regionales TDK Lambda Vertriebsb ro im Falle von R ckfragen Umwelt Diese Produkt...

Страница 4: ...vor der Gefahr von mechanischen Risiken Stromschl gen und Brandschutz in dem Endger t vorgesehen werden Gefahren durch elektrische Energie Von bestimmten Modulen kann je nach Einstellung der Ausgangs...

Страница 5: ...ntacter votre bureau TDK Lambda le plus proche Environnement Ces produits sont IPX0 et donc on ne doit pas utiliser des produits chimiques solvants des produits de nettoyage et d autres liquides Envir...

Страница 6: ...l pour assurer la protection contre les chocs m caniques les chocs lectriques et l incendie Energies dangereuses Certains modules peuvent g n rer une nergie dangereuse 240 VA selon le r glage de tensi...

Страница 7: ...ana sono a vostra disposizione per ulteriori ragguagli Condizioni ambientali Questi prodotti sono classificati come IPX0 dunque non devono essere utilizzati sostanze chimiche solventi prodotti per la...

Страница 8: ...sse elettriche e dai pericoli di incendio Pericoli energetici Alcuni moduli sono in grado di erogare energia pericolosa 240 VA a seconda della tensione in uscita impostata I produttori delle apparecch...

Страница 9: ...contacto con su oficina local de TDK Lambda Medioambiental Estos productos son IPX0 y por tanto no pueden utilizarse sustancias qu micas disolventes agentes de limpieza ni otros l quidos Medio ambient...

Страница 10: ...ra incendios de protecci n mec nica contra descargas el ctricas y contra el peligro de incendios Peligros de energ a Algunos m dulos pueden generar energ a peligrosa 240VA dependiendo de la configurac...

Страница 11: ...tre em contacto com seu escrit rio TDK Lambda mais pr ximo Ambiental Estes produtos s o IPX0 e como tal n o se devem utilizar qu micos solventes agentes de limpeza e outros l quidos Ambiente Esta font...

Страница 12: ...cer energia perigosa 240 VA de acordo com a configura o da tens o de sa da O equipamento final do fabricante deve garantir que o pessoal de assist ncia est protegido contra contactos inadvertidos com...

Страница 13: ...LZS A500 3 POWER SUPPLY Installation Operation and Maintenance Manual IM LZSA500 3 January 2022 Revision N...

Страница 14: ...rovals 2 2 RATINGS AND SPECIFICATIONS 4 3 FEATURES 5 4 GUIDE TO APPLICATION 7 4 1 Safety Notice 7 4 2 Input Voltage 7 4 3 Output Voltage 7 4 4 Overvoltage Protection Circuit Adjustment 7 4 5 Overtempe...

Страница 15: ...he rating stated on the power supply label 8 Openings in the product case are designed for ventilation and must not be obstructed when the product is installed and or operated 9 Never push objects of...

Страница 16: ...ine 3m Criteria A Lightning Surge IEC61000 4 5 2 kV line to GND CM Criteria A 1 kV line to line DM Criteria A Conducted RF Common Mode IEC61000 4 6 10 V m RMS 150 kHz 80 MHz 80 AM at 1kHz Power Freque...

Страница 17: ...ower 84 typical 110VAC line Output Performance Specifications Units LZS A500 3 Table 4 Voltage Line Regulation 0 1 Voltage Load Regulation 0 1 Ripple and Noise 20 MHz measurement Bandwidth PARD mVP P...

Страница 18: ...7 of D connector see Fig 9 Signals Isolation Pins 6 and 7 are fully isolated from all other power supply terminals Signal Logic Logic zero below 0 7 V short circuit or open circuit disables power supp...

Страница 19: ...to power supply is 1 4 Requires No M4 metric hardware supplied with unit Input and Output Connections Table 11 Input Heavy duty terminal block Chassis Ground Tapped hole and screw provided in chassis...

Страница 20: ...here is sufficient OVP margin with respect to the output voltage to avoid nuisance tripping 4 4 OVERVOLTAGE PROTECTION CIRCUIT ADJUSTMENT The overvoltage protection circuit provides an adjustable mean...

Страница 21: ...LZS A500 3 Power Supply Figure 1 PIN Assignments for TB201 and chassis mounted D connector 5 Figures 1 800 LAMBDA 4 Revision N January 2022 Page 8...

Страница 22: ...500 3 Power Supply Figure 3 Typical Remote Sense Connection Figure 2 Typical Local Sense Connection LS Local Sense S Remote Sense LS Local Sense S Remote Sense Revision N January 2022 Page 9 1 800 LAM...

Страница 23: ...rnal Programming Resistor or Voltage Source Remote Sensing Figure 4 Remote Voltage Control with an External Programming Resistor or Voltage Source Local Sensing LS Local Sense S Remote Sense LS Local...

Страница 24: ...LZS A500 3 Power Supply Figure 6 Parallel Operation Revision N January 2022 Page 11 1 800 LAMBDA 4...

Страница 25: ...LZS A500 3 Power Supply Figure 7 Series Operation 1 800 LAMBDA 4 Revision N January 2022 Page 12...

Страница 26: ...LZS A500 3 Power Supply Figure 8 Outline Drawing Revision N January 2022 Page 13 1 800 LAMBDA 4...

Страница 27: ...LZS A500 3 Power Supply Figure 9 Remote Output On Off Control Figure 10 Input Good Inverter Good Output Good Signals 1 800 LAMBDA 4 Revision N January 2022 Page 14...

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