BSL Equipment
Home / Bit Error Rate Testing / Quantifi Photonics BERT-1102-8-PXIE

Quantifi Photonics BERT-1102-8-PXIE

Quantifi Photonics · Model: BERT-1102-8-PXIE Made to order
Quantifi Photonics BERT-1102-8-PXIE
Request a quote

Quantifi Photonics BERT-1102-8-PXIE is an 8-channel bit error rate tester supporting up to 29 GBaud/s in NRZ and PAM4 formats for optical transceiver and SerDes testing with integrated clock recovery.

Model BERT-1102-8-PXIE
Manufacturer Quantifi Photonics
Category Bit Error Rate Testing
Availability Made to order

Overview

The Quantifi Photonics BERT-1102-8-PXIE is a high-performance bit error rate tester and pulse pattern generator designed for the design, characterization, and manufacturing test of optical transceivers and opto-electrical components. Supporting symbol rates up to 29 GBaud/s in both NRZ and PAM4 formats, this 8-channel PXIe module provides a cost-effective solution for testing up to 400 Gb/s communication systems.

Key Features

  • 8 channels per two-slot PXIe module with up to 64 synchronized channels (29 GBaud each) per mainframe
  • Programmable 7-tap PPG Tx de-emphasis and CTLE receiver equalization for coaxial cable loss compensation
  • Independent clock-and-data recovery (CDR) on each error detect channel
  • Integrated clock synthesizer eliminates need for external clock generator
  • Intuitive cohesionUI GUI for controlling all channels and integrated Quantifi Photonics modules
  • Single-platform integration of optical and electrical testing within PXIe chassis

Applications

  • Multi-channel BER testing for optical and electrical transceivers up to 29 GBaud per channel
  • Active optical cable testing and characterization
  • High-speed SerDes, clock-data-recovery, and laser-driver characterization
  • General-purpose 29 GBaud pulse pattern generation (NRZ and PAM4)
  • Automated manufacturing test utilizing PXIe platform for comprehensive optical and electrical testing
Programmable de-emphasis and CTLE Processor Programmable 7-tap PPG Tx de-emphasis and error detector receiver continuous-time linear equalizer (CTLE) allow the user to compensate for finite coaxial cable interconnect loss.
Single Platform Testing Conduct all your DUT characterization on one platform (optical and electrical testing can be integrated in PXIe) and spend less time switching cables and patchcords between instruments.
Built-in clock Recovery Each error detect channel has its own independent, simultaneous, clock-and-data recovery (CDR); this makes BERT testing a versatile and easy-to-use instrument. There is no need for additional clock recovery hardware.
Simple Control with Intuitive GUI Save time and reduce complexity with the easy-to-use cohesionUI GUI. Control all channels and functions from its single panel interface (including all other Quantifi Photonics modules in the system from the same intuitive interface).
Internal Clock Synthesizer An integrated clock synthesizer is provided internally as part of the PPG for additional convenience and hassle-free operation. No external clock generator is required.
Extremely High Channel Density in PXI With up to 8-channels per two-slot PXIe module, fit up to 64 synchronized 29 GBaud channels (with either NRZ or PAM4 per channel) per single PXIe mainframe.
Bus Connection PXIeUSB and Ethernet
Slot Count 2-
Number Of Channels 4 or 84 or 8
Dimensions (H x W x D) 130 x 40 x 215 mm 5.1 x 1.6 x 8.5 inches 53 x 120 x 202 mm 2.1 x 4.7 x 8.0 inches
Weight ~ 1 kg ~ 2.2 lbs ~ 1.1 kg ~ 2.4 lbs
Operating Temperature Range 5°C to 45°C 41°F to 113°F 5°C to 45°C 41°F to 113°F
Storage Temperature Range -40°C to 70°C -40°F to 158°F -40°C to 70°C -40°F to 158°F
Model (Bert-XXXX) Description
1102 1 to 29 GBaud, NRZ and PAM4 (includes necessary BERT-9007 male breakout cables)
8 8 channels
BERT - XXXX - X - PXIE PXI - Modular
Quantifi Photonics BERT-1102-8-PXIE

Request a quote

Quantifi Photonics BERT-1102-8-PXIE

Response within 24 hours
No obligation
Direct communication

By submitting this form, you agree to the processing of your personal data in accordance with our privacy policy.