Odin-1G-3S-6P-T1

A 6 port 1 Gbps/100Mbps/10Mbps test module designed for Automotive Ethernet test applications

The Odin-1G-3S-6P-T1 is a 6 port 1 Gbps/100/10Mbps Ethernet test module designed for Automotive Ethernet test applications.

The module has native 1000BASE-T1, 100BASE-T1 and 10BASE-T1S interfaces. Based on Xena’s advanced architecture, the Odin-1G-3S-6P-T1 is the obvious choice for testing Automotive Ethernet up to 1G at Layers 2-3.

The Odin-1G-3S-6P-T1 is available for both the 4U 12-slot ValkyrieBay chassis and the robust transportable 1U ValkyrieCompact chassis and is provided with a full range of test software, as part of Xena Value Pack. This includes the predefined test suites for RFC 2544 as well as comprehensive test automation options.

Specifications

PORT LEVEL FEATURES

  1. Interface category

    10/100/1000M Ethernet

  2. Total number of test ports

    6 x 100/1000M, 2 x 10M

  3. Interface options

    1000BASE-T1 or 100BASE-T1 or 10BASE-T1S

  4. Number of physical interface form factor

    6 x Molex HSAG (10/100M), 2 x Molex HSAG (10M)

  5. Port statistics 1)

    • Link state, FCS errors, pause frames, ARP/PING, error injections, training packet
    • All traffic: RX and TX Mbit/s, packets/s, packets, bytes
    • Traffic w/o test payload: RX and TX Mbit/s, packets/s, packets, bytes
  6. Adjustable Inter Frame Gap (IFG)

    Configurable from 16 to 56 bytes, default is 20B (12B IFG + 8B preamble)

  7. Transmit line rate adjustment

    Ability to adjust the effective line rate by forcing idle gaps equivalent to -1000 ppm (increments of 10 ppm)

  8. ARP/PING

    Supported (configurable IP and MAC address per port)

  9. Field upgradeable

    System is fully field upgradeable to product releases (FPGA images and software)

  10. Histogram statistics 1)

    Two real-time histograms per port. Each histogram can measure one of RX/TX packet length, IFG, jitter,
    or latency distribution for all traffic, a specific stream, or a filter

  11. Tx disable

    Enable/disable of copper link

  12. IGMPv2 multicast join/leave

    IGMPv2 continuous multicast join, with configurable repeat interval

  13. Oscillator characteristics

    • Initial Accuracy is 3 ppm
    • Frequency drift over 1st year: +/- 3 ppm (over 15 years: +/- 15 ppm)
    • Temperature Stability: +/- 20 ppm (Total Stability is +/- 35 ppm)

TRANSMIT ENGINES

  1. Number of transmit streams per port

    256 (wire-speed). Each stream can generate millions of traffic flows through the use of field modifiers

  2. Test payload insertion per stream

    Wire-speed packet generation with timestamps, sequence numbers, and data integrity signature optionally inserted into each packet.

  3. Stream statistics 1)

    TX Mbit/s, packets/s, packets, bytes, FCS error, Pause

  4. Bandwidth profiles

    Burst size and density can be specified. Uniform and bursty bandwidth profile streams can be interleaved

  5. Field modifiers

    16-bit header field modifiers with inc, dec, or random mode. Each modifier has configurable bit-mask, repetition, min, max, and step parameters. 6 modifiers per stream

  6. Packet length controls

    Fixed, random, butterfly, and incrementing packet length distributions from 56 to 16384 bytes

  7. Packet payloads

    Repeated user specified 1 to 18B pattern, an 8-bit incrementing pattern

  8. Error generation

    Undersize length (56B min) and oversize length (16384 max.) packet lengths, injection of sequence, misorder, payload integrity, and FCS errors

  9. TX packet header support and RX autodecodes

    Ethernet, Ethernet II, VLAN, ARP, IPv4, IPv6, UDP, TCP, LLC, SNAP, GTP, ICMP, RTP, RTCP, STP, MPLS, PBB, or fully specified by user

  10. Packet scheduling modes

    • Normal (stream interleaved mode) – standard scheduling mode, precise rates, minor variation in packet inter-frame gap.
    • Strict Uniform – new scheduling mode, with 100% uniform packet inter-frame gap, minor deviation from configured rates.
    • Sequential packet scheduling (sequential stream scheduling). Streams are scheduled continuously in sequential order, with configurable number of packets per stream.
    • Burst. Packets in a stream are organized in bursts. Bursts from active streams form a burst group. The user specifies time from start of one burst group till start of next burst group.

RECEIVE ENGINE

  1. Number of traceable Rx streams per port

    2016 (wire-speed)

  2. Automatic detection of test payload for received packets

    Real-time reporting of statistics and latency, loss, payload integrity, sequence error, and mis-order error checking

  3. Jitter measurement

    Jitter (Packet Delay Variation) measurements compliant to MEF10 standard with 8 ns accuracy
    Jitter can be measured on up to 32 streams

  4. Stream statistics 1)

    • RX Mbit/s, packets/s, packets, bytes.
    • Loss, payload integrity errors, sequence errors, misorder errors
    • Min latency, max latency, average latency
    • Min jitter, max jitter, average jitter
  5. Latency measurements accuracy

    ±32 ns

  6. Latency measurement resolution

    8 ns (Latency measurements can calibrate and remove latency from transceiver modules)

  7. Number of filters:

    • 6 x 64-bit user-definable match-term patterns with mask, and offset
    • 6 x frame length comparator terms (longer, shorter)
    • 6 x user-defined filters expressed from AND/OR’ing of the match and length terms.
  8. Filter statistics 1)

    Per filter: RX Mbit/s, packets/s, packets, bytes.

CAPTURE

  1. Capture criteria

    All traffic, stream, FCS errors, filter match, or traffic without test payloads

  2. Capture start/stop triggers

    Capture start and stop trigger: none, FCS error, filter match

  3. Capture limit per packet

    16 – 16384 bytes

  4. Wire-speed capture buffer per port

    16 kB

  5. Low speed capture buffer per port (10Mbit/sec)

    4096 packets (any size)

10MEthernet – 10BASE-T1S Functionality

  1. Functionality

    TBA

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