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LANGER EMV-Technik A100-2 set Optical Fiber Probe 2-Channel, 25 kHz

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Technical parameters

Bandwidth: DC ... 25 kHz

Sampling rate: 125 ksps

Resolution: 12 Bit

AE 100 Optical Receiver

Bandwidth: DC ... 25 kHz

Optical input: Optical fiber: Ø 2.2 mm

Voltage range - output: 0 V ... 10 V

Supply voltage: 12 V ... 16 V

Current input: ≈ 30 mA

Connector - output: BNC

AS 100 Optical Sensor

Bandwidth: DC ... 25 kHz

Sampling rate: 125 ksps

Measuring range: 0 V ... 50 V / 0 V ... 10 V DC (switchable)

Input resistance: 100 kΩ

Radiated immunity: > 200 V/m

Supply voltage: 3 V ... 16 V

Current input: ≈ 3 mA

Optical fibre length: 1 m ... 20 m

Scope of delivery

2x AE 100, Optical Receiver

2x AS 100, Optical Sensor (50 / 10) V DC

2x LWL Ø 2.2 mm 6 m, Optical Fiber, Single 6 m

1x NT FRI EU, Power Supply Unit

1x A100-2 acc, Accessories

1x A100-2 case, System Case

1x Analog m, User Manual

Short description

The A100-2 set is used for oscillographing analog signals under EFT/ESD/RF interference. The set is particularly suitable for the measurement of analog signals when testing the immunity of electrical or electronical devices (equipment) against high frequency electromagnetic fields (IEC 61000-4-3 to IEC 61000-4-6). This system is suitable for signal control in an anechoic chamber or EMC-compliant space.

The set consists of two sensors which measure an analog signal within the device under test and transform it into optical signals. The optical signals are transmitted via a fiber optical cable to the optical receiver which then transforms them into electrical signals. Those can be seen with an oscilloscope or can be used for controlling other devices.

For signal detecting within the device under test several sensor types AS 100, AS 110 or AS 120 with different measuring ranges are available.

By applying the prescribed modulation models for electromagnetic fields, signal influences can be easily detected using the A100 set, A200 set and A300 set analog measuring systems.

With the optical transmission system hard- and software can be EMC-optimized, because disturbed signals can be easily detected.

Datasheet


Manual

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