050-346 - mission-critical interconnect solutions · 050-346 product brief ruggedized &...

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BF14U2-1439 THIS COPYRIGHTED DOCUMENT IS THE PROPERTY OF GLENAIR, INC. AND IS FURNISHED ON THE CONDITION THAT IT IS NOT TO BE DISCLOSED, REPRODUCED IN WHOLE OR IN PART, OR USED TO SOLICIT QUOTATIONS FROM COMPETITIVE SOURCES, OR USED FOR MANUFACTURE BY ANYONE OTHER THAN GLENAIR, INC. WITHOUT WRITTEN PERMISSION FROM GLENAIR, INC. THE INFORMATION HEREIN HAS BEEN DEVELOPED AT GLENAIR'S EXPENSE AND MAY BE USED FOR ENGINEERING EVALUATION AND INCORPORATION INTO TECHNICAL SPECIFICATIONS AND OTHER DOCUMENTS WHICH SPECIFY PROCUREMENT OF PRODUCTS FROM GLENAIR, INC. 050-346 PRODUCT BRIEF QUAD PARALLEL FIBER-OPTICS TRANSCEIVER, UP TO 14GBPS PER FIBER, RUGGEDIZED & HERMETICALLY SEALED

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Page 1: 050-346 - Mission-Critical Interconnect Solutions · 050-346 Product Brief Ruggedized & Hermetic 4-Channel Transceiver, Parallel Optics, MMF environments. than commercial products

BF14U2-1439

THIS COPYRIGHTED DOCUMENT IS THE PROPERTY OF GLENAIR, INC. AND IS FURNISHED ON THE CONDITION THAT IT IS NOT TO

BE DISCLOSED, REPRODUCED IN WHOLE OR IN PART, OR USED TO SOLICIT QUOTATIONS FROM COMPETITIVE SOURCES, OR USED

FOR MANUFACTURE BY ANYONE OTHER THAN GLENAIR, INC. WITHOUT WRITTEN PERMISSION FROM GLENAIR, INC. THE INFORMATION

HEREIN HAS BEEN DEVELOPED AT GLENAIR'S EXPENSE AND MAY BE USED FOR ENGINEERING EVALUATION AND INCORPORATION

INTO TECHNICAL SPECIFICATIONS AND OTHER DOCUMENTS WHICH SPECIFY PROCUREMENT OF PRODUCTS FROM GLENAIR, INC.

050-346 PRODUCT BRIEF

QUAD PARALLEL FIBER-OPTICS TRANSCEIVER, UP TO 14GBPS PER FIBER, RUGGEDIZED & HERMETICALLY SEALED

Page 2: 050-346 - Mission-Critical Interconnect Solutions · 050-346 Product Brief Ruggedized & Hermetic 4-Channel Transceiver, Parallel Optics, MMF environments. than commercial products

©2019 Glenair, Inc. REV: 20 US Cage Code 06324 Printed in USA

GLENAIR, INC. ∙ 1211 AIR WAY ∙ GLENDALE, CA 91201-2497 ∙ TEL: 818-247-6000 ∙ FAX: 818-500-9912

www.glenair.com PAGE 2 of 23 E-mail: [email protected]

050-346 Product Brief

Ruggedized & Hermetic

4-Channel Transceiver, Parallel Optics, MMF

The Glenair 050-346 is a ruggedized, harsh environment, 4-Channel PCB-mounted transceiver engine that provides electro-optical conversion over the full range of -40C to +85C in high shock and vibration environments. The Glenair 050-346 is ideally-suited to convert systems from commercial parallel optical transceivers, such as 40G QSFP+, to a ruggedized interface to survive extreme environmental conditions for military, aerospace and industrial applications. The 050-346 employs a unique hermetically-sealed design for the optoelectronic hybrid components, permitting extended operation in high humidity environments. Proprietary optical alignment technique provides higher output power than commercial products for enhanced link margin. The mechanical design is compact and suited to the harsh temperature and vibration environments found in military, aerospace, railway, and industrial applications. The 050-346 has an internal microprocessor and factory-calibration that provides automatic compensation of transceiver parameters over temperature, maintaining excellent eye mask margin and extinction ratio from -40C to +85C. The transceiver is held securely with captive screws using Glenair threaded inserts in the host PCB. The optical interface is a 12-fiber MTP® connector socket for ease of use and compatibility with existing network infrastructure.

TABLE 1: HOW TO ORDER Part Number Two Wire Address Data Rate Heat Sink* Screw Length**

(Mod Code)

050-346 PCB Mount Transceiver, MMF, 850nm

Blank = A0h Other Options: C0, C2, C4, C6, C8, CA, CC, CE, D0, D2, D4, D6, D8, DA, DC, DE

Blank = Standard -14 = 14 Gbps per channel -MECH = Mechanical Sample not for sale. Only given upon request

BLANK = Convection cooling fin heat sink (STANDARD) -HS01= Conduction cooling heat sink *contact Glenair for other options

Blank = Standard -954-xxx = IAW Mod Code 954

Example: 050-346C0-14

PCB Mount Transceiver, MMF, 850nm, Two Wire Address = C0h, Data Rate = 14.025 Gbps per channel,

Standard Temperature Range, Standard Screw Length

** Screw Length Mod Codes will not be added onto Digital Memory ID (See Table 9)

*MTP® brand connector is a registered trademark of US Conec Ltd.

KEY FEATURES/BENEFITS QSFP+ CML-Compatible Electrical I/O signal levels QSFP+ compatible I2C Memory Map 850nm VCSEL lasers to support 10.3125 and 14.025

Gbps per channel PIN PD to support high sensitivity at 10.3125 and

14.025 Gbps Utilizes a 12-fiber MTP® connector and 50 μm core

ribbon cable for high density, thin & light-weight cable management.

Transceiver is securely mounted with screws to PCB to ensure excellent shock and vibration performance

High-Speed Electrical plug-in connector eliminates the need for soldering & enables ease of servicing

AS9100 Rev C Manufacturing in the USA.

-40°C to +85°C Operating Temperature

Automatic laser temperature control circuit Hermetic opto-electronic hybrid section Evaluation board available Digital Monitoring Interface (DMI) via I2C. Class 1M Lasers with enhanced output power enable

higher link margin than commercial products APPLICATIONS Harsh Environment high-speed parallel data transport for

Airborne, Tactical and Shipboard, Industrial, Railway and Oil and Gas applications

o ARINC 818, 10G Ethernet, FC 1x, 2x, 4x, 8x, 16x, sRIO, SpaceFibre

o Multiple FPGA protocols o Phased-array radars, EW systems, high-

performance computing, spacecraft

Page 3: 050-346 - Mission-Critical Interconnect Solutions · 050-346 Product Brief Ruggedized & Hermetic 4-Channel Transceiver, Parallel Optics, MMF environments. than commercial products

©2019 Glenair, Inc. REV: 20 US Cage Code 06324 Printed in USA

GLENAIR, INC. ∙ 1211 AIR WAY ∙ GLENDALE, CA 91201-2497 ∙ TEL: 818-247-6000 ∙ FAX: 818-500-9912

www.glenair.com PAGE 3 of 23 E-mail: [email protected]

050-346 Product Brief

Ruggedized & Hermetic

4-Channel Transceiver, Parallel Optics, MMF

TABLE 1A SCREW LENGTH OPTIONS

Page 4: 050-346 - Mission-Critical Interconnect Solutions · 050-346 Product Brief Ruggedized & Hermetic 4-Channel Transceiver, Parallel Optics, MMF environments. than commercial products

©2019 Glenair, Inc. REV: 20 US Cage Code 06324 Printed in USA

GLENAIR, INC. ∙ 1211 AIR WAY ∙ GLENDALE, CA 91201-2497 ∙ TEL: 818-247-6000 ∙ FAX: 818-500-9912

www.glenair.com PAGE 4 of 23 E-mail: [email protected]

050-346 Product Brief

Ruggedized & Hermetic

4-Channel Transceiver, Parallel Optics, MMF

Ratings and Specifications

TABLE 2 ABSOLUTE MAXIMUM RATINGS

Parameter Symbol Min Max Units Notes

Storage Temperature Ts -55 +100 °C

Supply Voltage Vcc -0.3 4 V VccT & VccR may not differ by more than 0.5V

Relative Humidity RH 95 %

Signal pin voltage range VPin -0.3 Vcc +0.3 V

Optical Receiver Input Average Power -- +3 dBm

TABLE 3 OPERATING CONDITIONS

Parameter Symbol Min Typ Max Units Notes

Operating Temperature Top -40 +85 °C +85C case temperature

-40C Ambient temperature

Forced-air convection cooling. Alternate heatsinking options available.

Supply Voltage Vcc 3.135 3.3 3.465 V

Supply Current Icc 360

@25C

950

@ -40C

mA Heating commences ~0C. Max. current consumed at -40C.

Power Supply Noise Vcc_ripple See note mVpp Per SFF-8431 Rev 4.1

Signal Rate per Channel 1 10.3125 14.025 GBd

I2C Two Wire Serial (TWS) Interface Clock Rate 100 KHz

Fiber Length: to 10GBASE-SR (OM3/OM4) 0.5 100/150 m OM3 fiber 2000 MHZ.KM

Fiber Length: to 40GBASE-SR4 (OM3/OM4) 0.5 100/150 m OM4 fiber 4700 MHZ.KM

Hermetic Hybrid Section Helium Leak Rate 10-8 He cc/s Opto-electronic hybrid section only

Page 5: 050-346 - Mission-Critical Interconnect Solutions · 050-346 Product Brief Ruggedized & Hermetic 4-Channel Transceiver, Parallel Optics, MMF environments. than commercial products

©2019 Glenair, Inc. REV: 20 US Cage Code 06324 Printed in USA

GLENAIR, INC. ∙ 1211 AIR WAY ∙ GLENDALE, CA 91201-2497 ∙ TEL: 818-247-6000 ∙ FAX: 818-500-9912

www.glenair.com PAGE 5 of 23 E-mail: [email protected]

050-346 Product Brief

Ruggedized & Hermetic

4-Channel Transceiver, Parallel Optics, MMF

TABLE 4 ELECTRO-OPTICAL CHARACTERISTICS – TRANSMITTER (10GBPS OR 14.025 GBPS OPTIONS)

Parameter Symbol Min Typ Max Units Notes

050-346

Optical Output Power, Avg POUT -3 +4 dBm 850nm VCSEL, 10.3125 Gbps

Extinction Ratio Er 3 5 dB @10.3125 Gbps

Eye Mask definition (X1, X2, X3, Y1, Y2, Y3) (0.25, 0.4, 0.45, 0.25, 0.28, 0.4) UI Per IEEE 802.3 10GBASE-SR

050-346-14

Optical Output Power, Avg POUT -3 +4 dBm 850nm VCSEL, 14.025 Gbps

Extinction Ratio Er 3 5 dB @14.025 Gbps

Eye Mask definition (X1, X2, X3, Y1, Y2, Y3) ( 0.25,0.40,0.45;0.32,0.35,0.4 ) UI 16FC mask per FC-PI-5 Table 12

Optical Output Power – OFF CONDITION POUT-OFF -30 dBm

Optical Return Loss Tolerance 12 dB IEEE 802.3ae Clause 52 Compliant

Optical Wavelength λOUT 840 850 860 nm

Spectral Width, rms Δλ 0.65 nm

Relative Intensity Noise RIN -128 dB/Hz

Transmitter Differential Input Impedance ZIN 100 Ohms AC coupled Internally

Differential Input Voltage Vin_d 200 1600 mVp-p CML, 100 ohm

TABLE 5 ELECTRO-OPTICAL CHARACTERISTICS – RECEIVER (10.3 GBPS OR 14.025 GBPS OPTIONS)

Parameter Symbol Min Typ Max Units Notes

050-346

Sensitivity, BER 10-12, PRBS31, Er 5 dB PIN -12 -9.9 dBm PIN PD @ 10.3 Gbps

LOS Assert Level LOSA -30 -16 dBm @ 10.3 Gbps

LOS Hysteresis LOSHYS 0.5 dB @10.3Gbps

050-346-14

Sensitivity, BER 10-12, PRBS31, Er 5 dB PIN -11.5 -9.4 dBm PIN PD @ 14.025 Gbps

LOS Assert Level LOSA -30 -16 dBm @ 14.025 Gbps

LOS Hysteresis LOSHYS 0.5 dB @14.025Gbps

Overload, BER 10-12, PRBS31 PIN +3 dBm

Optical Wavelength λIN 840 860 nm

Receiver Differential Output Impedance Rout 100 Ohms AC coupled internally

Differential Output Voltage Swing Vout_d 300 800 mV CML, I2C adjustable

Page 6: 050-346 - Mission-Critical Interconnect Solutions · 050-346 Product Brief Ruggedized & Hermetic 4-Channel Transceiver, Parallel Optics, MMF environments. than commercial products

©2019 Glenair, Inc. REV: 20 US Cage Code 06324 Printed in USA

GLENAIR, INC. ∙ 1211 AIR WAY ∙ GLENDALE, CA 91201-2497 ∙ TEL: 818-247-6000 ∙ FAX: 818-500-9912

www.glenair.com PAGE 6 of 23 E-mail: [email protected]

050-346 Product Brief

Ruggedized & Hermetic

4-Channel Transceiver, Parallel Optics, MMF

Ratings and Specifications (continued)

TABLE 6 COMPLIANCE SPECIFICATIONS

CHARACTERISTIC Standard Condition Notes

Mechanical Shock MIL-STD-810 Para. 516.6, proc. I, 650g 0.9 ms operating error-free, when using female

MTP® cable assembly.

Mechanical Vibration MIL-STD-810 Para. 514.6, 46g rms Random, operating error-free, when using

female MTP® cable assembly.

ESD MIL-STD-883 500V HBM (TBV)

Flame Resistance MIL-STD-1344 Method 1012, Cond. B 30 seconds (TBV)

Damp Heat MIL-STD-1344 Method 1002.2, Cond. B 10 cycles , 24 hours (TBV)

Eye Safety CDRH and IEC-825 Class 1M Laser Product

TABLE 7 MATERIAL/FINISH

Item Material/Finish

PCB FR4

PCB flex FR4 & Polyimide

Housing 303 Stainless Steel AMS 2700 type II passivation

Railings Aluminum 6061-T6 per ASTM-B221/B211M or Equivalent

Screws CRES Type, 302, 303, 304, 305, or 316 AMS 2700 type II passivation

Solder type RoHS compliant Sn95/Sb5 (232°C melting temp) & RoHS compliant Sn96.5/Ag3.0/Cu0.5 (217° melting)

Page 7: 050-346 - Mission-Critical Interconnect Solutions · 050-346 Product Brief Ruggedized & Hermetic 4-Channel Transceiver, Parallel Optics, MMF environments. than commercial products

©2019 Glenair, Inc. REV: 20 US Cage Code 06324 Printed in USA

GLENAIR, INC. ∙ 1211 AIR WAY ∙ GLENDALE, CA 91201-2497 ∙ TEL: 818-247-6000 ∙ FAX: 818-500-9912

www.glenair.com PAGE 7 of 23 E-mail: [email protected]

050-346 Product Brief

Ruggedized & Hermetic

4-Channel Transceiver, Parallel Optics, MMF

Input/Output Definition

SEE DATASHEET FOR FURTHER DETAIL

Page 8: 050-346 - Mission-Critical Interconnect Solutions · 050-346 Product Brief Ruggedized & Hermetic 4-Channel Transceiver, Parallel Optics, MMF environments. than commercial products

©2019 Glenair, Inc. REV: 20 US Cage Code 06324 Printed in USA

GLENAIR, INC. ∙ 1211 AIR WAY ∙ GLENDALE, CA 91201-2497 ∙ TEL: 818-247-6000 ∙ FAX: 818-500-9912

www.glenair.com PAGE 8 of 23 E-mail: [email protected]

050-346 Product Brief

Ruggedized & Hermetic

4-Channel Transceiver, Parallel Optics, MMF

FIGURE 2

TXCR OPTICAL PORT ASSIGNMENT (MTP® CONNECTOR MALE, FRONT VIEW)

FIGURE 3

CABLE OPTICAL PORT ASSIGNMENT (MTP® CONNECTOR FEMALE, FRONT VIEW)

Page 9: 050-346 - Mission-Critical Interconnect Solutions · 050-346 Product Brief Ruggedized & Hermetic 4-Channel Transceiver, Parallel Optics, MMF environments. than commercial products

©2019 Glenair, Inc. REV: 20 US Cage Code 06324 Printed in USA

GLENAIR, INC. ∙ 1211 AIR WAY ∙ GLENDALE, CA 91201-2497 ∙ TEL: 818-247-6000 ∙ FAX: 818-500-9912

www.glenair.com PAGE 9 of 23 E-mail: [email protected]

050-346 Product Brief

Ruggedized & Hermetic

4-Channel Transceiver, Parallel Optics, MMF

FIGURE 4

Cable Connector

TXCR 050‐346

Fiber 1 (P1) RX1

Fiber 2 (P2) RX2

Fiber 3 (P3) RX3

Fiber 4 (P4) RX4

Fiber 5 (P5)

Fiber 6 (P6)

Fiber 7 (P7)

Fiber 8 (P8)

Fiber 9 (P9) TX4

Fiber 10 (P10) TX3

Fiber 11 (P11) TX2

Fiber 12 (P12) TX1 CABLE VS TXCR FIBER DESIGNATION

Page 10: 050-346 - Mission-Critical Interconnect Solutions · 050-346 Product Brief Ruggedized & Hermetic 4-Channel Transceiver, Parallel Optics, MMF environments. than commercial products

©2019 Glenair, Inc. REV: 20 US Cage Code 06324 Printed in USA

GLENAIR, INC. ∙ 1211 AIR WAY ∙ GLENDALE, CA 91201-2497 ∙ TEL: 818-247-6000 ∙ FAX: 818-500-9912

www.glenair.com PAGE 10 of 23 E-mail: [email protected]

050-346 Product Brief

Ruggedized & Hermetic

4-Channel Transceiver, Parallel Optics, MMF

FIGURE 5 - OUTLINE DRAWING

SEE DATASHEET FOR FURTHER DETAILS

Transceiver mates with MPO/MTP® IAW IEC 61754-7-1:2014

Page 11: 050-346 - Mission-Critical Interconnect Solutions · 050-346 Product Brief Ruggedized & Hermetic 4-Channel Transceiver, Parallel Optics, MMF environments. than commercial products

©2019 Glenair, Inc. REV: 20 US Cage Code 06324 Printed in USA

GLENAIR, INC. ∙ 1211 AIR WAY ∙ GLENDALE, CA 91201-2497 ∙ TEL: 818-247-6000 ∙ FAX: 818-500-9912

www.glenair.com PAGE 11 of 23 E-mail: [email protected]

050-346 Product Brief

Ruggedized & Hermetic

4-Channel Transceiver, Parallel Optics, MMF

FIGURE 6 - OUTLINE DRAWING CONTINUED (MARKING)

MODULE HEATSINKING: The standard heatsink as shown requires forced air convection for optimum performance. This heatsink is removable and replaceable with alternate versions to support conduction cooling to an external surface. Contact factory for alternate heatsinking options. LABELING:

Each unit will be shipped in an antistatic bag. The label on the antistatic bag shall be at a minimum Arial size 10 black font and contain at a minimum the following information:

ANTISTATIC BAG LABEL: Glenair Cage Code (06324) Part Number (PN 050-xxx as required) Date Code (DC xxxx) Serial Number (SN 123456)

Will also include a label with Class 1M laser warning:

Each unit will be marked, either with a label or laser engraving, as follows:

Marking font to be Arial, greater than .08 inches in height.

Minimum Marking on each part will include the following: FIRST LINE OF TEXT

Glenair and Serial Number (6 digits) SECOND LINE OF TEXT:

Part number

Example Minimum Marking: GLENAIR SN123456 050-346

GLENAIR SN123456

050-346

Page 12: 050-346 - Mission-Critical Interconnect Solutions · 050-346 Product Brief Ruggedized & Hermetic 4-Channel Transceiver, Parallel Optics, MMF environments. than commercial products

©2019 Glenair, Inc. REV: 20 US Cage Code 06324 Printed in USA

GLENAIR, INC. ∙ 1211 AIR WAY ∙ GLENDALE, CA 91201-2497 ∙ TEL: 818-247-6000 ∙ FAX: 818-500-9912

www.glenair.com PAGE 12 of 23 E-mail: [email protected]

050-346 Product Brief

Ruggedized & Hermetic

4-Channel Transceiver, Parallel Optics, MMF

Figure 7 PCB Mount Parallel Transceiver Block Diagram

FUNCTIONAL DESCRIPTION

Transmitter Disable Function

Each of the 4 transmitters individually can be disabled through I2C interface.

Setting device address A0h, byte address 56h, bits [3:0] controls this function.

Interrupt flags

Lower memory A0 Byte 3 through 21 are flag fields. Status of RX LOS, TX LOS, TX Faults, and Alarms and Warnings are

reported.

For normal operation the bits in these fields have a value of 0b. For the defined conditions of LOS, Tx Fault, module and channel alarms and warnings, the appropriate bit or bits are set, value = 1b. Once asserted, the bits remained set (latched) until cleared by a read operation that includes the affected bit or reset by the ResetL pin. Fault bits that are cleared while the underlying fault persists MAY be immediately set again by the module. This may or may not cause the IntL to de-assert and then re-assert quickly. Hosts should be tolerant of both behaviors. The Channel Status Interrupt Flags are defined in Table xx. These flags may be masked.

Page 13: 050-346 - Mission-Critical Interconnect Solutions · 050-346 Product Brief Ruggedized & Hermetic 4-Channel Transceiver, Parallel Optics, MMF environments. than commercial products

©2019 Glenair, Inc. REV: 20 US Cage Code 06324 Printed in USA

GLENAIR, INC. ∙ 1211 AIR WAY ∙ GLENDALE, CA 91201-2497 ∙ TEL: 818-247-6000 ∙ FAX: 818-500-9912

www.glenair.com PAGE 13 of 23 E-mail: [email protected]

050-346 Product Brief

Ruggedized & Hermetic

4-Channel Transceiver, Parallel Optics, MMF

IntL

INTL is an output pin. When “Low”, it indicates a possible module operational fault or a status critical to the host system.

Through I2C interface, the host can identify the source of the problem. INTL pin is an open collector output and must be

pulled up externally with a 4.7kΩ-10KΩ resistor to host VCC power supply. The INTL is de-asserted “High” after

completion of a reset, when device address A0h Byte 2 bit 0 (Data Not Ready) is read with a value of “0” and flag field is

read.

A fault condition or a LOS can be monitored and read for each of the 4 transmitters individually through I2C interface.

A receiver Loss of optical signal can also cause IntL to be asserted.

The transmitter fault status is stored in A0 page byte address 04h bits [3:0].

ResetL

The ResetL pin must be pulled to Vcc in the parallel optics module. A low level on the ResetL pin for longer than the minimum pulse length (t_Reset_init) initiates a complete module reset, returning all user module settings to their default state. Module Reset Assert Time (t_init) starts on the rising edge after the low level on the ResetL pin is released. During the execution of a reset (t_init) the host shall disregard all status bits until the module indicates a completion of the reset interrupt. The module indicates this by asserting “low” an IntL signal with the Data_Not_Ready bit negated. Note that on power up the module should post this completion of reset interrupt without requiring a reset.

ModselL

The ModSelL is an input pin. When held low by the host, the module responds to 2-wire serial communication commands. The ModSelL allows the use of multiple parallel optics modules on a single 2-wire interface bus. When the ModSelL is “High”, the module shall not respond to or acknowledge any 2-wire interface communication from the host. ModSelL signal input node must be biased to the “High” state in the module. In order to avoid conflicts, the host system shall not attempt 2-wire interface communications within the ModSelL de-assert time after any parallel optics modules are deselected. Similarly, the host must wait at least for the period of the ModSelL assert time before communicating with the newly selected module. The assertion and de-asserting periods of different modules may overlap as long as the above timing requirements are met. Eye Safety Circuit

The Transmitter section provides Class 1M eye safety by design and is compliant with US FDA CDRH AEL Class 1M and

EN(IEC) 60825-1,2, EN60950 Class 1. The eye safety circuit continuously monitors VCSEL bias current and will disable

the transmitter and assert a TX FAULT signal upon detecting an unsafe condition. Such unsafe conditions can be created

by inputs from the host board (Vcc fluctuation, unbalanced code) or faults within the module.

Page 14: 050-346 - Mission-Critical Interconnect Solutions · 050-346 Product Brief Ruggedized & Hermetic 4-Channel Transceiver, Parallel Optics, MMF environments. than commercial products

©2019 Glenair, Inc. REV: 20 US Cage Code 06324 Printed in USA

GLENAIR, INC. ∙ 1211 AIR WAY ∙ GLENDALE, CA 91201-2497 ∙ TEL: 818-247-6000 ∙ FAX: 818-500-9912

www.glenair.com PAGE 14 of 23 E-mail: [email protected]

050-346 Product Brief

Ruggedized & Hermetic

4-Channel Transceiver, Parallel Optics, MMF

Receiver Loss of Signal (LOS)

Loss of signal at each of the four receivers can be monitored through I2C interface. Device address A0h, byte address

03h, bits[3:0] contains LOS status for each channel.

Transmitter Fault

Transmitter Fault condition at each of the four transmitters can be monitored through I2C interface. Device address A0h,

byte address 04h, bits [3:0] contains TX Fault status for each channel.

Channel Monitoring

Real time channel monitoring for each of transmit and receive channels includes Module Temperature, Power supply

voltage, Receiver Optical Input Power, Transmitter Laser Bias Current.

Measured TX bias current is in mA and are represented as a 16-bit unsigned integer with the current defined as the full 16 bit value (0 – 65535) with LSB equal to 2 uA, yielding a total measurement range of 0 to 131 mA.

Measured RX received optical power is in mW and can represent either average received power or OMA depending upon how bit 3 of byte 220 (upper memory page 00h) is set. Represented as a 16 bit unsigned integer with the power defined as the full 16 bit value (0 – 65535) with LSB equal to 0.1 uW, yielding a total measurement range of 0 to 6.5535 mW (~-40 to +8.2 dBm).

FUNCTIONAL I/O

The PCB Mount Parallel optics transceiver high speed transmitter data inputs and receiver data outputs are CML level

compatible. To simplify board requirements, transmitter bias resistors and AC coupling capacitors are incorporated, per

SFF-8436, and hence are not required on the host board. The module is AC-coupled and internally terminated.

Figure 3 illustrates a recommended interface circuit to link the PCB Mount transceiver to the supporting Physical Layer

integrated circuits.

The PCB Mount transceiver interfaces with the host circuit board through forty I/O pins identified by function in Table 7.

The transceiver high speed transmit and receive interfaces require QSFP+ MSA compliant signal lines on the host board.

Digital Diagnostic Interface and Serial Identification (EEPROM)

The PCB Mount transceiver is compatible with QSFP+ 10GBPS SFF-8436 specification for Digital Diagnostic Monitoring

Interface. The specification can be found at http://www.sffcommittee.org.

Page 15: 050-346 - Mission-Critical Interconnect Solutions · 050-346 Product Brief Ruggedized & Hermetic 4-Channel Transceiver, Parallel Optics, MMF environments. than commercial products

©2019 Glenair, Inc. REV: 20 US Cage Code 06324 Printed in USA

GLENAIR, INC. ∙ 1211 AIR WAY ∙ GLENDALE, CA 91201-2497 ∙ TEL: 818-247-6000 ∙ FAX: 818-500-9912

www.glenair.com PAGE 15 of 23 E-mail: [email protected]

050-346 Product Brief

Ruggedized & Hermetic

4-Channel Transceiver, Parallel Optics, MMF

FIGURE 8 RECOMMENDED PCB MOUNT TRANSCEIVER HOST BOARD SCHEMATIC

The PCB Mount Transceiver is compliant to SFF-8436 (QSFP+ 10Gbps 4x Pluggable Transceiver). This new digital

diagnostic information is stored in bytes 0-255 at memory address A0. Using the 2-wire serial interface defined in the

MSA, the PCB Mount Transceiver provides real time temperature, supply voltage, laser bias current, and received input

power. These parameters are internally calibrated, per the SFF-8436 MSA. The digital diagnostic interface also adds the

capability to monitor for Transmitter Faults (TX_FAULT), and monitor for Receiver Loss of Signal (RX_LOS). The

diagnostic information provides the opportunity for Predictive Failure Identification, Compliance Prediction, Fault Isolation

and Component Monitoring.

Page 16: 050-346 - Mission-Critical Interconnect Solutions · 050-346 Product Brief Ruggedized & Hermetic 4-Channel Transceiver, Parallel Optics, MMF environments. than commercial products

©2019 Glenair, Inc. REV: 20 US Cage Code 06324 Printed in USA

GLENAIR, INC. ∙ 1211 AIR WAY ∙ GLENDALE, CA 91201-2497 ∙ TEL: 818-247-6000 ∙ FAX: 818-500-9912

www.glenair.com PAGE 16 of 23 E-mail: [email protected]

050-346 Product Brief

Ruggedized & Hermetic

4-Channel Transceiver, Parallel Optics, MMF

Compliance Prediction

Compliance prediction is the ability to determine if an optical transceiver is operating within its operating and

environmental requirements. The PCB Mount Transceiver provides real-time access to transceiver internal supply voltage

and temperature, allowing a host to identify potential component compliance issues. Received optical power is also

available to assess compliance of fiber cable plant and remote transmitter. When operating out of requirements, the link

cannot guarantee error free transmission.

Fault Isolation

The fault isolation feature allows a host to quickly pinpoint the location of a link failure, minimizing downtime. For optical

links, the ability to identify a fault at a local device, remote device or cable plant is crucial to speeding service of an

installation. PCB Mount Transceiver real-time monitors of Tx_Bias, Vcc, Temperature and Rx_Power can be used to

assess local transceiver current operating conditions. In addition, status flag Rx Loss of Signal (LOS) is mirrored in

memory and available via the two-wire serial interface.

Component Monitoring

Component evaluation is another use of the PCB Mount Transceiver real-time monitors of Tx_Bias, Vcc, Temperature and

Rx_Power. Potential uses are as debugging aids for system installation and design, and transceiver parametric evaluation

for factory or field qualification. For example, temperature per module can be observed in high density applications to

facilitate thermal evaluation of systems that incorporate this PCB Mount transceiver.

Fiber Compatibility

The transceiver is capable of transmission up to 100 meters with 50/125 μm high bandwidth OM3 MM fiber with 10.3125

Gbps (10G Ethernet signals) or 14.025 Gbps (16GFC Fibre Channel signals) and up to 150 meters with high bandwidth

OM4 MMF at 10.3125 Gbps (10G Ethernet signals) or 14.025 Gbps (16GFC Fibre Channel signals).

Electrostatic Discharge (ESD)

The Transceiver is compatible with ESD levels found in typical manufacturing and operating environments as described

JEDEC EIA JESD22-A114-A, Class 1 (< 2000V) HBM. Glenair recommends that devices are handled with ESD

precautions to limit exposure to below 500V HBM.

There are two design cases in which immunity to ESD damage is important. The first case is during handling of the

transceiver prior to insertion to the host board. To protect the transceiver, it’s important to use standard industry ESD

handling precautions. These precautions include using grounded wrist straps, work benches, and floor mats in ESD

controlled areas. The ESD sensitivity of the Glenair PCB Mount transceiver is compatible with typical industry production

environments.

The second case to consider is static discharges to the exterior of the host equipment after installation, in which case the

transceiver may be subject to system-level ESD requirements.

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Application Support

To assist in the transceiver design and evaluation process, Glenair offers the following aids:

Evaluation board & Product Manual, part number 050-346-1-EVALBOARD, which facilitates in the testing of the

PCB Mount transceiver.

3D Step file to support modeling of mechanical fit and routing

PADS schematic and PCB layout library files that can be exported into customer’s PCB software design program

Applications Aid Example of PCB layout including details of high speed transmission designs

Customer Manufacturing Processes

This module is mounted with captive screws and interfaces with a high-speed low cost surface mount electrical connector

residing on the host PC board. The PCB Mount transceiver is not designed for aqueous wash, IR reflow, or wave

soldering processes and should be mounted on the host board after host PC board has been through its assembly

process.

Memory map

Lower Memory Map A0h The lower 128 bytes of the 2-wire serial bus address space is used to access a variety of measurements and diagnostic functions, a set of control functions, and a means to select which of the various upper memory map pages are accessed on subsequent reads. This portion of the address space is always directly addressable and thus is chosen for monitoring and control functions that may need to be repeatedly accessed. The definition of Identifier field is the same as page 00h Address Byte 128. See Table 8.

Upper Memory Map page 00h

Page 00h consists of the Serial ID and is used for read only identification information. The Serial ID is divided into the Base_ID Fields, Extended ID Fields and Vendor Specific ID Fields. See Table 9.

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Table 9 Two-Wire interface ID: Lower Memory Map – Address A0h

Byte # Decimal

Data Notes

Byte # Decimal

Data Notes

Byte # Decimal

Data Notes

0 Identifier Byte 26 Supply Voltage MSB 66-81 Reserved

1 Status 27 Supply Voltage LSB 86 TX Disable(1,2,3,4)

2 IntL, Data Not Ready 28 Reserved 87-99 Reserved 3 RX LOS Indicator 29 Reserved 100 Masking Bits for TX LOS & RX LOS 4 TX Fault Indicator 30 Reserved 101 Masking Bits for TX Fault 5 Reserved 31 Reserved 102 Reserved

6 Temperature Alarms & Warnings 32 Reserved 103 Masking Bits for Temperature A&W

7 Vcc Alarms & Warnings 33 Reserved 104 Masking Bit for Vcc A&W

8 Reserved 34 RX1 Power MSB 105-106 Reserved

9 Receive power Alarms & Warnings(1,2) 35 RX1 Power LSB 107 Reserved

10 Receive power Alarms & Warnings(3,4) 36 RX2 Power MSB 108-118 Reserved

11 Transmitter Bias Alarm & Warnings(1,2) 37 RX2 Power LSB 119-122 Password Change Entry Area

12 Transmitter Bias Alarm & Warnings(3,4) 38 RX3 Power MSB 123-126 Password

13 Reserved 39 RX3 Power LSB 127 Page Select Byte

14 Reserved 40 RX4 Power MSB 15 Reserved 41 RX4 Power LSB 16 Reserved 42 TX1 Bias MSB

17 Reserved 43 TX1 Bias LSB

18 Reserved 44 TX2 Bias MSB

19 Reserved 45 TX2 Bias LSB

20 Reserved 46 TX3 Bias MSB

21 Reserved 47 TX3 Bias LSB

22 Temperature MSB 48 TX4 Bias MSB

23 Temperature LSB 49 TX4 Bias LSB

24 Reserved 50-57 Reserved

25 Reserved 58-65 Reserved

Notes:

1. Temperature (Temp) is decoded as a 16 bit signed twos compliment integer in increments of 1/256 °C.

2. Supply voltage (VCC) is decoded as a 16 bit unsigned integer in increments of 100 μV.

3. Laser bias current (Tx Bias) is decoded as a 16 bit unsigned integer in increments of 2 μA.

4. Received average optical power (Rx Pwr) is decoded as a 16 bit unsigned integer in increments of 0.1 μW.

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TABLE 10A TWO-WIRE INTERFACE ID: UPPER MEMORY MAP PAGE 00h for 10.3125 Gbps

Byte Decimal

# Hex

Data Notes

Byte Decimal

# Hex

Data Notes

128 80 Vendor Specific Transceiver 165 00 Vendor OUI (NOT USED)

129 00 Extended Identifier Values 166 00 Vendor OUI (NOT USED)

130 0C Fiber Optic Connector Type, MPO 167 00 Vendor OUI (NOT USED)

131 10 10G BASE-SR 168 30 “0” Vendor Part Number ASCII character

132 00 Specification Compliance 169 35 “5” Vendor Part Number ASCII character

133 00 Specification Compliance 170 30 “0” Vendor Part Number ASCII character

134 00 Specification Compliance 171 2D “-“ Vendor Part Number ASCII character

135 40 Short Distance 172 33 “3” Vendor Part Number ASCII character

136 20 Shortwave Laser W OFC 173 34 “4” Vendor Part Number ASCII character

137 02 Multi-mode fiber, 50uM (OM3) 174 36 “6” Vendor Part Number ASCII character

138 02 Fibrechannel Speed 175 20 (Note 2)

139 00 Encoding 176 20 “-“ Vendor Part Number ASCII Character

140 67 Bit Rate, 10.3125 Gbps (Note 1) 177 20 “ “ Vendor Part Number ASCII Character

141 00 Rate Select Compliance 178 20 “ “ Vendor Part Number ASCII Character

142 00 Singlemode fiber Compliance 179 20 “ “ Vendor Part Number ASCII Character

143 32 Link Length of OM3 fiber, 100 meters, Note 3 180 20 “ “ Vendor Part Number ASCII Character

144 52 Link Length of OM2 fiber, 82 meters. Note 3 181 20 “ “ Vendor Part Number ASCII Character

145 21 Link Length of OM1 fiber, 33 meters. 182 20 “ “ Vendor Part Number ASCII Character

146 00 183 20 “ “ Vendor Part Number ASCII Character

147 00 Device Technology 184 20 “ “ Vendor REV Level ASCII Character

148 47 “G” Vendor NAME ASCII Character 185 20 “ “ Vendor REV Level ASCII Character 149 4C “L” Vendor NAME ASCII Character 186 42 Hex Byte of Laser Wavelength (Note 4)

150 45 “E” Vendor NAME ASCII Character 187 68 Hex Byte of Laser Wavelength (Note 4)

151 4E “N” Vendor NAME ASCII Character 188-189 07D0 Wavelength Tolerance

152 41 “A” Vendor NAME ASCII Character 190 55 Maximum Case Temperature (85C)

153 49 “I” Vendor NAME ASCII Character 191 Check sum code for ID fields 0-62 (Note 5)

154 52 “R” Vendor NAME ASCII Character 192 00

155 20 “ “ Vendor NAME ASCII Character 193 01 Receiver Output Amplitude Programming

156 20 “ “ Vendor NAME ASCII Character 194 04 Receiver output Disable

157 20 “ “ Vendor NAME ASCII Character 195 D8 TX Disable, TX Fault, Memory Page 1 & 2

158 20 “ “ Vendor NAME ASCII Character 196-211 00 Serial Number, ASCII (Note 6)

159 20 “ “ Vendor NAME ASCII Character 212-219 Date Code (Note 7)

160 20 “ “ Vendor NAME ASCII Character 220 08 Diagnostic Monitoring, Rx Pwr Avg.

161 20 “ “ Vendor NAME ASCII Character 221 00 Enhanced Options

162 20 “ “ Vendor NAME ASCII Character 222 00

163 20 “ “ Vendor NAME ASCII Character 223 Check sum code for ID fields 192-222 (Note 5)

164 00 224-255 00

Notes:

1. Hex value of 10.3Gbps is in units of 100Mb/s.

2. Table 1, Part number options/extensions.

3. Link Length over OM3 fiber units of 2 meter. Link length over OM2 fiber units of 1 meter.

4. Laser wavelength is represented in 16 unsigned bits (units of 0.05nm). The hex representation of 850nm is 4268.

5. Addresses 191 and 223 are checksums calculated per SFF-8436 and stored prior to product shipment.

6. Addresses 196-211 specify the module’s ASCII serial number and will vary by unit.

7. Addresses 212-219 specify the module’s ASCII date code and will vary according to manufactured date-code.

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TABLE 10B TWO-WIRE INTERFACE ID: UPPER MEMORY MAP PAGE 00h for 16GFC (14.025 Gbps) Fibre Channel

Byte Decimal

# Hex

Data Notes

Byte Decimal

# Hex

Data Notes

128 80 Vendor Specific Transceiver 165 00 Vendor OUI (NOT USED)

129 00 Extended Identifier Values 166 00 Vendor OUI (NOT USED)

130 0C Fiber Optic Connector Type, MPO 167 00 Vendor OUI (NOT USED)

131 10 10G BASE-SR 168 30 “0” Vendor Part Number ASCII character

132 00 Specification Compliance 169 35 “5” Vendor Part Number ASCII character

133 00 Specification Compliance 170 30 “0” Vendor Part Number ASCII character

134 00 Specification Compliance 171 2D “-“ Vendor Part Number ASCII character

135 40 Short Distance 172 33 “3” Vendor Part Number ASCII character

136 20 Shortwave Laser W OFC 173 34 “4” Vendor Part Number ASCII character

137 02 Multi-mode fiber, 50uM (OM3) 174 36 “6” Vendor Part Number ASCII character

138 02 Fibrechannel Speed 175 2D “-“ Vendor Part Number ASCII Character

139 00 Encoding 176 31 “1“ Vendor Part Number ASCII Character

140 8C Bit Rate, 14.025 Gbps (Note 1) 177 34 “4“ Vendor Part Number ASCII Character

141 00 Rate Select Compliance 178 20 “ “ Vendor Part Number ASCII Character

142 00 Singlemode fiber Compliance 179 20 “ “ Vendor Part Number ASCII Character

143 32 Link Length of OM3 fiber, 100 meters, Note 3 180 20 “ “ Vendor Part Number ASCII Character

144 52 Link Length of OM2 fiber, 82 meters. Note 3 181 20 “ “ Vendor Part Number ASCII Character

145 21 Link Length of OM1 fiber, 33 meters. 182 20 “ “ Vendor Part Number ASCII Character

146 00 183 20 “ “ Vendor Part Number ASCII Character

147 00 Device Technology 184 20 “ “ Vendor REV Level ASCII Character

148 47 “G” Vendor NAME ASCII Character 185 20 “ “ Vendor REV Level ASCII Character 149 4C “L” Vendor NAME ASCII Character 186 42 Hex Byte of Laser Wavelength (Note 4)

150 45 “E” Vendor NAME ASCII Character 187 68 Hex Byte of Laser Wavelength (Note 4)

151 4E “N” Vendor NAME ASCII Character 188-189 07D0 Wavelength Tolerance

152 41 “A” Vendor NAME ASCII Character 190 55 Maximum Case Temperature (85C)

153 49 “I” Vendor NAME ASCII Character 191 Check sum code for ID fields 0-62 (Note 5)

154 52 “R” Vendor NAME ASCII Character 192 00

155 20 “ “ Vendor NAME ASCII Character 193 01 Receiver Output Amplitude Programming

156 20 “ “ Vendor NAME ASCII Character 194 04 Receiver output Disable

157 20 “ “ Vendor NAME ASCII Character 195 D8 TX Disable, TX Fault, Memory Page 1 & 2

158 20 “ “ Vendor NAME ASCII Character 196-211 00 Serial Number, ASCII (Note 6)

159 20 “ “ Vendor NAME ASCII Character 212-219 Date Code (Note 7)

160 20 “ “ Vendor NAME ASCII Character 220 08 Diagnostic Monitoring, Rx Pwr Avg.

161 20 “ “ Vendor NAME ASCII Character 221 00 Enhanced Options

162 20 “ “ Vendor NAME ASCII Character 222 00

163 20 “ “ Vendor NAME ASCII Character 223 Check sum code for ID fields 192-222 (Note 5)

164 00 224-255 00

Notes:

1. Hex value of 14.025Gbps is in units of 100Mb/s.

2. Table 1, Part number options/extensions.

3. Link Length over OM3 fiber units of 2 meter. Link length over OM2 fiber units of 1 meter.

4. Laser wavelength is represented in 16 unsigned bits (units of 0.05nm). The hex representation of 850nm is 4268.

5. Addresses 191 and 223 are checksums calculated per SFF-8436 and stored prior to product shipment.

6. Addresses 196-211 specify the module’s ASCII serial number and will vary by unit.

7. Addresses 212-219 specify the module’s ASCII date code and will vary according to manufactured date-code.

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TABLE 11 TWO-WIRE INTERFACE ID: UPPER MEMORY MAP PAGE 01h

Byte Decimal # Hex

Data Notes

128 Check code for Byte 129 to 255

129 Reserved/ AST Table Length

130-131 Application Code Entry 0

TABLE 12 TWO-WIRE INTERFACE ID: UPPER MEMORY MAP PAGE 02h

Byte Decimal # Hex

Data Notes

128-255 User writable EEPROM

Note: If bit 4 of page 00 byte 129 is set, the first 10 bytes of table 02h will be used to store the CLEI code for the module

TABLE 13 TRANSCEIVER DIGITAL DIAGNOSTIC MONITOR CHARACTERISTICS (WHEN APPLICABLE) PARAMETER Symbol Min. Units Notes

Transceiver Internal Temperature Accuracy

TINT ±3.0 °C Temperature is measured internal to the transceiver and is valid from

-40°C to +110 °C case temperature

Transceiver internal Supply Voltage accuracy

VINT ±3 % Supply voltage is measured internal to the transceiver and can, with less accuracy, be correlated to the voltage at the Vcc pin. Valid over 3.3V ±5%

Transmitter Laser DC Bias Current Accuracy

IINT ±10 %

Received Average Optical Input Power Accuracy

PR ±3.0 dB Coupled from 50/125 mm MM fiber Valid from -20 dBm to +3 dBm

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FIGURE 9

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ACCESSORIES Fiber Optic Jumper Cables to support connection to Mil/Aerospace Connectors

KEY FEATURES:

Jumper cable between Glenair 050-346 Transceiver (MTP®) and Mil/Aero Connector termini (29504, ARINC801, Glenair Rugged MT D38999, Glenair GHD, etc.) for insertion into rugged military/aerospace connectors.

Also offered terminated with standard telecom connectors for test purposes (MTP®, LC, SC, FC, etc).

Contact Factory or Sales Engineer for fiber jumper details and to obtain ordering information. PCB Threaded Inserts, (PN 990-05017-1) sold as a kit of 100 pcs under kit part number 059-0007-1

KEY FEATURES:

Simplifies installation of PCB Mount transceivers eliminating the need for washers and nuts.

Soldered to PCB to eliminate need for handling nuts during assembly.

EVALUATION Boards, PN 050-346-1-EVALBOARD, Includes:

Datasheet with test block diagram, schematic;

Evaluation board (transceiver unit sold separately)

1 fiber optic cable (~1 m ruggedized OM4 MMF 12-fiber cable from commercial MTP® to 12 LC

connectors)