Characteristics

Power supplies

 

Power supplies for d.c. control circuits

 

Phaseo® modular regulated power supplies

Technical characteristics

Power supply type

 

 

ABL 7RM1202

ABL 7RM2401

ABL 7RM24025

Certifications

 

 

UL - CSA - TÜV

 

 

Conforming to standards

Safety

 

IEC/EN 60950-1 - IEC/EN 61131-2/A11

IEC/EN 60950-1

 

EMC

 

IEC/EN 61000-6-2 (IEC/EN 61000-6-1), IEC/EN 61000-6-3

Input circuit

 

 

 

 

 

LED indication

 

 

No

 

 

Input voltage

Nominal values

V

a 100 to 240

 

 

 

Permissible values

V

a 85 to 264

 

 

 

Permissible frequencies

Hz

47 to 63

 

 

 

Efficiency at nominal load

 

> 80%

 

> 84%

 

Current consumption

A

0.5 (100 V)/0.3 (240 V)

0.6 (100 V)/0.4 (240 V)

1.2 (120 V)/0.7 (240 V)

 

Current at switch-on

A

< 20

 

< 90 for 1 ms

 

Power factor

 

0.6

 

 

Output circuit

 

 

 

 

 

LED indication

 

 

Green LED

 

 

Nominal output voltage

 

V

c 12

c 24

 

Nominal output current

 

A

1.9

1.3

2.5

Precision

Output voltage

 

Adjustable

 

 

 

 

 

from 100 to 120%

 

 

 

Line and load regulation

 

± 4 %

± 3 %

 

 

Residual ripple - interference

mV

200

250

200

Micro-breaks

Holding time

ms

> 10

 

 

 

for I max and Ue min

 

 

 

 

Protection

Against short-circuits

 

Permanent/Thermal protection

 

 

Against overcurrent, cold state

 

< 1.7 In

< 1.6 In

< 1.4 In

 

Against overvoltage

V

< 10.5

< 19

 

Operating characteristics

 

 

 

 

Connections

Input

mm2

1 x 2.5 (#14 AWG) or 2 x 1.5 (#16 AWG) screw terminals

 

 

 

AWG

 

 

 

 

Output

mm2

1 x 2.5 (#14 AWG) or 2 x 1.5 (#16 AWG) screw terminals

 

 

 

AWG

 

 

 

Environment

Storage temperature

°C

- 25 to + 70 (-13 to + 158)

 

- 40 to + 70 (-40 to + 158)

 

 

(°F)

 

 

 

 

Operating temperature

°C

- 20 to + 55 (-4 to + 131)

 

 

 

 

(°F)

 

 

 

 

Maximum relative humidity

 

95 %

 

 

 

Degree of protection

 

IP 20

 

 

 

Vibration

 

IEC/EN 61131-2, IEC/EN 60068-2-6 test Fc

 

Operating position

 

 

Vertical

 

 

Connections

Series

 

No

 

 

 

Parallel

 

Yes (same references)

 

 

Dielectric strength

Input/output

 

3000 Vac/50 Hz/1 min

 

 

Protection class

 

 

Class II without PE

 

 

conforming to VDE 0106 1

 

 

 

 

 

Input fuse incorporated

 

 

Yes (not interchangeable)

 

 

Emissions

Conducted/radiated

 

IEC/EN 61000-6-3, EN 55011, EN 55022 CI:B

 

Immunity

Electrostatic discharge

 

IEC/EN 61000-6-2 (generic standard), IEC/EN 61000-4-2 (4 kV contact/8 kV air)

 

Electromagnetic

 

IEC/EN 61000-4-3 level 3 (10 V/m)

 

 

Conducted interference

 

IEC/EN 61000-4-4 level 3 (2 kV), IEC/EN 61000-4-6 (10 V)

 

Mains interference

 

IEC/EN 61000-4-11

 

 

 

 

 

 

 

 

Presentation:

References:

Dimensions:

Schemes:

page 54

page 57

page 57

page 57

 

 

 

 

55

Courtesy of Steven Engineering, Inc. ● 230 Ryan Way, South San Francisco, CA 94080-6370 ● General Inquiries: (800) 670-4183 ● www.stevenengineering.com

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Quantum Instruments Splitter Boxes Technical characteristics, Input circuit, Output circuit, Operating characteristics

Splitter Boxes specifications

Quantum Instruments Splitter Boxes represent a significant advancement in the realm of optical signal processing and distribution. These sophisticated devices are designed to efficiently split and manage optical signals while ensuring minimal loss and optimal performance. One of the standout features of Quantum Instruments Splitter Boxes is their robust construction, which is designed to withstand harsh environmental conditions, making them suitable for both indoor and outdoor applications.

A key technology utilized in these splitter boxes is the advanced fiber optic splitting technology, which employs high-quality optical fibers to achieve precise signal distribution. This technology allows for uniform splitting ratios, ensuring that each output maintains the integrity of the original signal. Furthermore, Quantum Instruments has integrated low-loss components into their splitter boxes, which contribute to high transmission efficiency and reduced signal attenuation.

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