104005-C ATGBICS

Document overview

  • Manufacturer or author: Provided By alldatasheet.com(free datasheet download site)
  • PDF pages: 6

Technical content

ATGBICS® All rights reserved. EOE Ref: ATGBICS_104005-C_V1 Page 1 of 6 Product Datasheet 104005-C Extreme® Compatible 100Gb/s SFP28 Direct Attach Cable Copper, Passive, 50cm

FEATURES

  • Compatible with IEEE 802.3bj and InfiniBand EDR
  • In accordance with the paging function in the protocol SFF-8636, paging can be selected 00H or 02H in 127 bytes
  • Supports aggregate data rates of 100Gbps
  • Optimized construction to minimize insertion loss and cross talk
  • Backward compatible with existing QSFP+ connectors and cages
  • Pull-to-release slide latch design
  • 26AWG through 30AWG cable
  • Straight and break out assembly configurations available
  • Customized cable braid termination limits EMI radiation
  • Customizable EEPROM mapping for cable signature
  • RoHS compliant

APPLICATIONS

  • Switches, servers, and routers
  • Data Center networks STORAGE AREA NETWORKS
  • High performance computing
  • Telecommunication and wireless infrastructure
  • Medical diagnostics and networking
  • Test and measurement equipment INDUSTRIAL STANDARDS
  • InfiniBand Trade Association (IBTA)
  • IEEE802.3ba
  • 40Gigabit Ethernet (40G BASE – CR4)

ATGBICS® All rights reserved. EOE Ref: ATGBICS_104005-C_V1 Page 2 of 6 Product Datasheet

DESCRIPTION

ATGBICS QSFP28 passive copper cable assembly feature eight differential copper pairs, providing four data transmission channels at speeds up to 28Gbps per channel, and meets 100G Ethernet,25G Ethernet and InfiniBand Enhanced Data Rate (EDR) requirements. Available in a broad range of wire gages-from 26AWG through 30AWG-this 100G copper cable assembly features low insertion loss and low cross talk. Designed for applications in the data center, networking and telecommunications markets that require a high speed, reliable cable assembly, this next generation product shares the same mating interface with QSFP+ form factor, making it backward compatible with existing QSFP ports. QSFP28 can be used with current 10G and 14G applications with substantial signal integrity margin High Speed Characteristics Notes: 1. Reflection Coefficient given by equation SDD11(dB) < -16.5 + 2 × SQRT (f), with f in GHz 2. Reflection Coefficient given by equation SDD11(dB) < -10.66 + 14 × log10(f/5.5), with f in GHz 3. Reflection Coefficient given by equation SCD11(dB) < -22 + (20/25.78) * f, with f in GHz 4. Reflection Coefficient given by equation SCD11(dB) < -15 + (6/25.78) * f, with f in GHz 5. Reflection Coefficient given by equation SCD21(dB) < -27 + (29/22) * f, with f in GHz Parameter Symbol Min Typical Max Unit Note Differential Impedance TDR 90 100 110 Ώ Insertion loss SDD21 -22.48 dB At 12.8906 GHz Differential Return Loss SDD11 SDD22 See 1 dB At 0.05 to 4.1 GHz See 2 dB At 4.1 to 19 GHz Common-mode to common- mode output return loss SCC11 SCC22 -2 dB At 0.2 to 19 GHz Differential to common mode return loss SCD11 SCD22 See 3 dB At 0.01 to 12.89 GHz See 4 At 12.89 to 19 GHz Differential to common Mode Conversion Loss SCD21-IL -10 dB At 0.01 to 12.89 GHz See 5 At 12.89 to 15.7 GHz -6.3 At 15.7 to 19 GHz

ATGBICS® All rights reserved. EOE Ref: ATGBICS_104005-C_V1 Page 3 of 6 Product Datasheet QSFP28 Pin Function Definition Pin Logic Symbol Description

1 GND Ground

2 CML-I Tx2n Transmitter Inverted Data Input

3 CML-I Tx2p Transmitter Non-Inverted Data Input

4 GND Ground

5 CML-I Tx4n Transmitter Inverted Data Input

6 CML-I Tx4p Transmitter Non-Inverted Data Input

7 GND Ground

8 LVTTL-I ModSelL Module Select

9 LVTTL-I ResetL Module Reset

10 Vcc Rx +3.3V Power Supply Receiver LVCMOS- SCL 2-wire serial interface clock I/O LVCMOS- SDA 2-wire serial interface data I/O

13 GND Ground

14 CML-O Rx3p Receiver Non-Inverted Data Output

15 CML-O Rx3n Receiver Inverted Data Output

16 GND Ground

17 CML-O Rx1p Receiver Non-Inverted Data Output

18 CML-O Rx1n Receiver Inverted Data Output

19 GND Ground

20 GND Ground

21 CML-O Rx2n Receiver Inverted Data Output

22 CML-O Rx2p Receiver Non-Inverted Data Output

23 GND Ground

24 CML-O Rx4n Receiver Inverted Data Output

25 CML-O Rx4p Receiver Non-Inverted Data Output

26 GND Ground

27 LVTTL-O ModPrsL Module Present

28 LVTTL-O IntL Interrupt

29 Vcc Tx +3.3V Power supply transmitter 30 Vcc1 +3.3V Power supply

31 LVTTL-I LPMode Low Power Mode

32 GND Ground

33 CML-I Tx3p Transmitter Non-Inverted Data Input

34 CML-I Tx3n Transmitter Inverted Data Input

35 GND Ground

36 CML-I Tx1p Transmitter Non-Inverted Data Input

37 CML-I Tx1n Transmitter Inverted Data Input

38 GND Ground

ATGBICS® All rights reserved. EOE Ref: ATGBICS_104005-C_V1 Page 4 of 6 Product Datasheet QSFP+ Pin Function Definition Pin Logic Symbol Description 10 Vcc Rx +3.3V Power Supply Receiver

11 LVCMOS-

I/O SCL 2-wire serial interface clock

12 LVCMOS-

I/O SDA 2-wire serial interface data 29 Vcc Tx +3.3V Power supply transmitter

ATGBICS® All rights reserved. EOE Ref: ATGBICS_104005-C_V1 Page 5 of 6 Product Datasheet 30 Vcc1 +3.3V Power supply The connector is compatible with the SFF-8436 specification Length (m) Cable AWG 1 30 2 30 3 26/30 4 26 5 26

ATGBICS® All rights reserved. EOE Ref: ATGBICS_104005-C_V1 Page 6 of 6 Product Datasheet Regulatory Compliance Feature Test Method Performance Electrostatic Discharge (ESD) to the Electrical Pins MIL-STD-883C Method 3015.7 Class 1(>2000 Volts) Electromagnetic Interference (EMI) FCC Class B Compliant with Standards CENELEC EN55022 Class B CISPR22 ITE Class B RF Immunity (RFI) IEC61000-4-3 Typically Show no Measurable Effect from a 10V/m Field Swept from 80 to 1000MHz RoHS Compliance RoHS Directive 2011/65/EU and it's Amendment Directives(EU) RoHS(EU)2015/863 compliant REACH Compliance REACH Regulation (EC) No 1907/2006 REACH (EC) No 1907/2006 compliant