Column Control DTX

E5080B Method of Implementation (MOI) for USB TypeC to Legacy Cable Assembly Compliance Test

Configuration Guides

1.       Revision History

 

Revision

Comments

Date

1.0

First draft for E5080B series

30-Nov-2020

1.1

Updated new release of USB-IF compliance tool 

12-Jan-2021

 

 

2.       Configuration Requirements

 

Description 

Test Equipment 

Qty

Network Analyzer 

Keysight Network Analyzer: 

(20 GHz is recommended as USB4/Type-C cable/connector requires measurements up to 20 GHz)

 

•  E5080B-4K0: 4-port test set, 9 kHz to 20 GHz or

•  P5024/25A Streamline USB Series VNA or

•  M9804/05A PXI Multiport VNA

 

Note: Ensure that E5080B firmware revision is at least version A.14.10 or above (Windows 10)

1 ea.

Software

S9x011A/B Enhanced time-domain analysis with TDR

Selection is based on the VNA platforms. x=6 for ENA, x=7 for Streamline USB, x=5 for PXI 

1 ea.

Compliance Tool

Compliance Tool provided by USB-IF:

https://compliance.usb.org/files/IntePar_1p6.zip

(Released 3-Jan-2021)

1 ea.

ECal or Mechanical

Cal Kit 

N4433D-010/0DC 4-Ports Electronic Calibration (ECal)

Module or 85052D Economy Mechanical Calibration Kit

1 ea.

Test Fixture 

USB Type-C official test fixture and calibration standards, or an equivalent set of fixtures and standards.

Note: Fixtures for testing USB Type-C connectors and cable assemblies are available for purchase through LUXSHARE-ICT.

 

1 ea.

Adapter

(for E5080B only)

Coaxial straight Female-SMA Female-SMA 50-Ohm adapters (Keysight 1250-1666).

4 ea.

RF cable

3.5 mm or SMA cables of 4 GHz bandwidth or more

(EG: 5062-6691)

* Y1740A-100 (3.5-mm m-m, 36 inch) cable is recommended for USB and PXI VNA.

4 ea.

Terminator

50-ohm terminations to terminate unused channels.

14 ea.

 

3.       Test Procedure

 

3.1   Test flow chart

 

Steps

Procedure

Step 1

The VNA should be powered on and allowed to warm up - recommendation is for 24 hours prior to measurement.

- Recommended to set the frequency sweep range 20 GHz for the USB Type-C SuperSpeed pairs as required by the spec.

- The IF Bandwidth should be low enough to help reduce noise effects (e.g. < 300 Hz).

Step 2

Set measurement conditions by recalling a state file or manual setup. 

There are 3 type of USB Type-C Cable-Connector tests state files and MOIs. Choose the right one base on your DUT type.

- Type-C to Type-C Passive Cable Assemblies (for High Speed Signal and Low Speed Signals)

- Type-C to Legacy USB Cable Assemblies

- Type-C to Legacy USB Adapter Assemblies

Step 3

Connect USB Type-C Test fixture to test ports of the VNA.

Step 4

For Time Domain Measurements, perform Electronic Calibration (ECal) and deembedding.

Step 5

For Frequency Domain Measurements, perform Electronic Calibration (ECal) and deembedding.

Step 6

Perform Time Domain Measurements

-  D+/D- Differential Impedance (Normative)

-  D+/D- Intra-Pair Skew (Normative)

-  D+/D- Propagation Delay (Normative)

-  [Raw Cable] Characteristic Impedance (Informative)

-  [Raw Cable] Intra-Pair Skew (Informative)

-  [Mated Connector] Differential Impedance (Informative)

-  Differential Impedance (Informative)

Step 7

Perform Frequency Domain Measurements

-  D+/D- Pair Attenuation (Normative)

-  Channel Metrics (ILfitatNq, IMR, IXT, IRL) (Normative)

-  Differential-to-Common Mode conversion (Normative)

-  Cable Shielding Effectiveness (Normative)

-  [Raw Cable] Differential Insertion Loss (Informative)

-  [Mated Connector] Differential Insertion Loss (Informative)

-  [Mated Connector] Differential Return Loss (Informative)

-  [Mated Connector] Differential NEXT & FEXT between SS Signal Pairs (Informative)

-  [Mated Connector] Differential NEXT & FEXT between D+/D- Pair and SS Signal Pairs (Informative)

-  [Mated Connector] Differential to Common Mode Conversion (Informative)

-  Differential Insertion Loss (Informative)

-  Differential NEXT between SS Signal Pairs (Informative)

-  Differential NEXT & FEXT between D+/D- Pair and SS Signal Pairs (Informative)

 

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