optoUSB3.0, Fiber-optic Link for USB 3.0

optoUSB3.0, Fiber-optic Link for USB 3.0

optoTTL 12-5-u, Fiber-optic Link for 5V & 12V TTL signals

optoTTL 12-5-u, Fiber-optic Link for 5V & 12V TTL signals

U2/12-10M, 2 Channel, 10 MHz, Analog Fiber-optic links

U2/12-10M, 2 Channel, 10 MHz, Analog Fiber-optic links

U2/12-1M, 2 Channel, 1 MHz, Analog Fiber-optic links

U2/12-1M, 2 Channel, 1 MHz, Analog Fiber-optic links

U8/12-1M, 8 Channel, 1 MHz, Analog Fiber-optic links

U8/12-1M, 8 Channel, 1 MHz, Analog Fiber-optic links

Ux/14-BNC, 1-16 Channels, 100 kHz, Analog Fiber-optic links

Ux/14-BNC, 1-16 Channels, 100 kHz, Analog Fiber-optic links

Ux/14-SUBD, 1-16 Channels, 100 kHz, Analog Fiber-optic links

Ux/14-SUBD, 1-16 Channels, 100 kHz, Analog Fiber-optic links

LSAOL 1.0, Laser Powered RF Link, 9kHz - 6GHz w/5-12VDC 2W power sourse

LSAOL 1.0, Laser Powered RF Link, 9kHz - 6GHz w/5-12VDC 2W power sourse

LSAOL 1.1, Laser Powered RF Link, 9kHz - 6GHz

LSAOL 1.1, Laser Powered RF Link, 9kHz - 6GHz

Products

optoUSB3.0, Fiber-optic Link for USB 3.0

The optoUSB-3.0 system can be used for the optical transmission of USB signals up to a data rate of 5Gbit/s according to the USB3.0 standard. It can be used to transmit USB signals over long distances (up to 50m) or to handle ground potential problems. With the optical transmission and the shielded case, the system is well equipped for EMI and EME tests.

  • optoUSB3.0 USB hub with 2 USB ports (not as EMI robust as 2.0-RBRIR version)
  • optoUSB2.0 USB hub with 4 USB ports (not as EMI robust as -RBRIR version)
  • optoUSB2.0-RBDIR uses a Rosenberger connector which has been proven to be more EMI robust)

optoTTL 12-5-u, Fiber-optic Link for 5V & 12V TTL signals

The optoTTL 12-5-u is used for the optical transmission of 12-volt and 5-volt TTL (Transistor-Transistor Logic) digital signals. Up to 16 digital signals with a sampling rate of 40 MS/s (each channel) can be transmitted. The system consists of a transmitter supplied by batteries, a simplex-62,5/125µm-multimode optical cable, and a receiver – which has integrated batteries as well.

U2/12-10M, 2 Channel, 10 MHz, Analog Fiber-optic links

These measuring systems are used for the optical, digital transmission of analog signals:

  • 2 Channels
  • With a resolution of 10 Bit
  • maximal analog bandwidth of 10 MHz.

U2/12-1M, 2 Channel, 1 MHz, Analog Fiber-optic links

These measuring systems are used for the optical, digital transmission of analog signals:

  • 2 Channels
  • With a resolution of 10 Bit
  • maximal analog bandwidth of 1 MHz.

U8/12-1M, 8 Channel, 1 MHz, Analog Fiber-optic links

These measuring systems are used for the optical, digital transmission of analog signals:

  • 8 Channels
  • With a resolution of 10 Bit
  • maximal analog bandwidth of 1 MHz.

Ux/14-BNC, 1-16 Channels, 100 kHz, Analog Fiber-optic links

These measuring systems are used for the optical, digital transmission of analog signals:

  • 1-16 Channels
  • With a resolution of 10 Bit
  • maximal analog bandwidth of 100 kHz.

Ux/14-SUBD, 1-16 Channels, 100 kHz, Analog Fiber-optic links

These measuring systems are used for the optical, digital transmission of analog signals:

  • 1-16 Channels
  • With a resolution of 10 Bit
  • maximal analog bandwidth of 100 kHz.

LSAOL 1.0, Laser Powered RF Link, 9kHz - 6GHz w/5-12VDC 2W power sourse

The LSAOL 1.0/1.1 Laser-Powered Analog Optical Links with integrated pre-amplifiers are low-noise RF signal transmission systems for 9 kHz to 6 GHz.

  • They are ideally suited for EMC emission testing.
  • The need for batteries is eliminated through laser-powered operation.
  • The LSAOL Front Unit is laser-powered and equipped with both low and high-band pre-amplifiers
  • LSAOL 1.0 provides an adjustable, 5 V to 12 V phantom power supply delivering up to 2W to external devices such as active antennas or pre-amplifiers.

LSAOL 1.1, Laser Powered RF Link, 9kHz - 6GHz

The LSAOL 1.0/1.1 Laser-Powered Analog Optical Links with integrated pre-amplifiers are low-noise RF signal transmission systems for 9 kHz to 6 GHz.

  • They are ideally suited for EMC emission testing.
  • The need for batteries is eliminated through laser-powered operation.
  • The LSAOL Front Unit is laser-powered and equipped with both low and high-band pre-amplifiers
  • LSAOL 1.0 provides an adjustable, 5 V to 12 V phantom power supply delivering up to 2W to external devices such as active antennas or pre-amplifiers.

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