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Add-On Computer Peripherals (ACP) SFP+ 850nm LC
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1. J9150A AO HP 10GBASE SR SFP MMF 850NM 300M REACH LC J9150A AO 10Gbase SFP Transceiver Features e Compliant to SFP Electrical MSA SFF 8431 Compliant to SFP Mechanical MSA SFF 8432 Multi rate compliance for Ethernet and Fiber Channel Transmission distance up to 300m OMS fiber Sub watt power consumption 0 65W typ 0 C to 70 C case operating temperature range e Laser Class 1 IEC CDRH compliant e ROHS 6 6 compliant e Compliant with product safety standards Product Description The J9150A AO is a multipurpose multi rate optical transceiver module for transmission at 850nm over multimode fiber Supporting Ethernet and Fiber Channel standards make it ideally suited for 10GB data communication and storage area network applications Its sub watt power consumption and its excellent EMI performance allow system design with high port density The small form factor integrates an 850nm vertical cavity surface emitting laser VCSEL in an LC package and a PIN receiver Addon Computer Peripheral s module is lead free ROHS compliant and is designed and tested in accordance with industry safety standards Functional Description The Transceivers convert information from electrical to optical format and back again at different data rates depending upon the chosen standard The transmit path consists of an AC coupled 100 ohm differentially terminated driver coupled to a highly reliable 850nm VCSEL The laser output may be dis
2. is a leading supplier of Memory Upgrade Network Transceivers and Network connectivity products to Channel Partners Resellers and OEMs with more than seventeen years of direct industry experience Add On Computer ACP has been the exclusive supplier to Ingram Micro s Memory Upgrades program for the past nine years Add On Computer maximizes profitable opportunities for our partners Our ability to source product worldwide ensures that our pricing will always be competitive Offering turnkey solutions Add On Computer has forged a reputation as a solutions provider delivering high quality cost effective product in a timely and reliable manner Corporate offices Add On Computer 34A Mauchly Irvine CA 92618 Tel 877 292 1701 Fax 949 861 2812 Email sales addoncomputer com Email support addoncomputer com Web http www addoncomputer com AddOn Computer Phone 877 292 1701 Page 10 of 10
3. 56 C over a range of 40 to 100 C Accuracy is better than 3 Supply Voltage VCC Internally measured supply voltage Represented as a 16 bit unsigned integer with the voltage defined as the full 16 bit value 0 65535 with LSB equal to 100 uVolt which yields to a total range of 0 to 6 55 Volts Accuracy is better than 3 Laser Bias Current VCSEL bias current Represented as a 16 bit unsigned integer with the current defined as the full 16 bit value 0 65535 with LSB equal to 2 pA valid range is 0 to 20 mA Accuracy is better than 10 Optical Transmitter Power TX output power measurement is based on internal monitor diode feedback Represented as a 16 bit unsigned integer with the power defined as the full 16 bit value O 65535 with LSB equal to 0 1uW Accuracy is better than 3dB over a range of Pavmin to Pavmax Receiver Optical Power RX input power measurement is based on photodiode diode current 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 Accuracy is better than 3dB over a range of 12dBm to 1dBm Note The specified characteristics are met within the recommended range of operating conditions regarding temperature and voltage Regulatory Compliance Module Safety Addon Computer SFP modules are designed to meet international requirements and standards in terms of product safety Tests were performed according to I
4. EC 60950 1 2001 CB scheme The module is ROHS compliant according to the European Parliament requirements on the restriction of the use of hazardous substances in electrical and electronic equipment ROHS The modules optical output power meet Class 1 requirements for laser safety AddOn Computer Phone 877 292 1701 Page 8 of 10 J9150A AO HP 10GBASE SR SFP MMF Prema sQ000Nn NETWORK TRANSCEIVERS MEMORY UPGRADES Requirements Standard Status Module IEC 60950 1 2001 EN 60950 TUV Report Certificate available CB Safety 1 2001 Report Certificate available ROHS Directive 2002 95 EC RoHS 6 6 compliant Certificate of Amendment 4054 2005 747 EC compliance available CDRH 21 CFR 1040 10 and Laser Class 1 according to FDA Safety 1040 11 IEC 60825 1 Rev2 2007 Laser Class 1 according to IEC Rev2 ESD amp Electromagnetic compatibility Addon Computer SFP modules are designed to withstand high ESD voltages Its excellent performances in terms of EMI allow system designers to integrate the module in high density applications Requirements Standard Status oe epee EIAJESD22 A114 B MIL Exceeds requirements Class 1B g STD 883C Method 3015 7 gt 1000V Electrical Pins ESD a CS CS transceiver AddOn Computer Phone 877 292 1701 Page 9 of 10 J9150A AO HP 10GBASE SR SFP MMF 850NM 300M REACH LC E aoo orn NETWORK TRANSCEIVERS MEMORY UPGRADES Contact Information Add On Computer Inc
5. Rating Conditions Symbol Min Max Units Powered Case Temperature Range O e HBM human body 1 kV model per JEDEC Static Discharge Voltage excluding HBM human body 2 kV High Speed Pins model JESD22 A114 B EN61000 4 2 Static Discharge Voltage Module on Criterion B Air SFP Discharge Direct Contact discharge Any stress beyond the maximum ratings may result in permanent damage to the device Specifications are guaranteed only under recommended operating conditions Static Discharge Voltage Speed Pins on High Recommended Operating Conditions Parameter Conditions Symbol Min Typical ENG Unit Operating Case Temperature altitude of lt 3km JCase o 70 AddOn Computer Phone 877 292 1701 Page 3 of 10 J9150A AO HP 10GBASE SR SFP MMF 850NM 300M REACH LC te aoo Orn NETWORK TRANSCEIVERS MEMORY UPGRADES Low Speed Characteristics Parameter Conditions pAn Supply Current Receiver VCCRX Ware RX Hissi Ves ance wt ae TX_Fault RX_LOS V 347V ia K Bia Fost TX_Dis RSO RS1 Low Voltage TTL VIL 03 of T SCL SDA Host Vcc Range pvt 03 VeoT 0 3 0 3 3 14V 3 47V VecT 07 opr VecT 0 5 0 5 AddOn Computer Phone 877 292 1701 Page 4 of 10 J9150A AO HP 10GBASE SR SFP MMF rent sQ0d0don NETWORK TRANSCEIVERS MEMORY UPGRADES Parameter Conditions Supported Data Rate a D 10 3125 3125 11 11 3 Reference Differential Input 100 Impedance Input AC Common Mo
6. abled by pulling the TX_DISABLE line high The laser is also disabled if this line is left floating as it is pulled high inside the transceiver The SFP MSA Multiple Source Agreement defines two RATE_SELECT lines one for the transmitter pin 9 and one for the receiver pin 7 Depending upon the transceiver application the transmitter RATE SELECT line can switch between1 GBd and 10 GBd The receiver path consists of a ROSA receiver optical sub assembly for optical electrical conversion followed by a limiting amplifier to boost the electrical signal A LOSS_OF_SIGNAL LOS status line is provided to facilitate easy link detection Depending upon the transceiver application optimum receiver bandwidth may be configured using the receiver RATE SELECT pin for Ethernet applications to switch AddOn Computer Phone 877 292 1701 Page 1 of 10 2sQO000N NETWORK TRANSCEIVERS MEMORY UPGRADES J9150A AO HP 10GBASE SR SFP MMF 850NM 300M REACH LC E ago on NETWORK TRANSCEIVERS MEMORY UPGRADES between 1 GBd and 10 GBd data rates and for Fiber Channel applications switch lt gt 4 GBd data rates Not all transceiver versions require RATE SELECT 2 V ire Interface UC Tx_Fautt LOS m Limiting E Amplifier SFI Out AddOn Computer Phone 877 292 1701 Page 2 of 10 J9150A AO HP 10GBASE SR SFP MMF E sadoon NETWORK TRANSCEIVERS MEMORY UPGRADES Electrical Characteristics Absolute Maximum Ratings
7. de mV Input Voltage RMS Differential Input Voltage Swing ue Differential Input S 9GHz SDD11 aor eS Sere pp oe Mode Conversion 2 Total Jitter OO o 028 upp ams a l ele morem o o __ 002s es mee pe y as SFI Module Receiver Output Characteristics Reference Differential 100 Output Impedance Termination Mismatch Mismatch cae AC Common Mode 15 E Output Voltage RMS Differential Output Amplitude RLoad 1000hm VOSPP 650 Differential TIL Rise and Fall time 20 to 80 tRH tFH E EN Return Loss2 es a E AddOn Computer Phone 877 292 1701 Page 5 of 10 J9150A AO HP 10GBASE SR SFP MMF eae sQ000N NETWORK TRANSCEIVERS MEMORY UPGRADES 1 Return Loss given by equation Sxx22 dB 8 13 33 Log10 f 5 5 with f in GHz 2 Common mode reference impedance is 250 Common mode return loss helps absorb reflection and noise improving EMI Optical Characteristics General Parameters Bandwidth Typical Typical Parameter Conditions Min Modal Symbol i 1GBd 10GBd Units MHz km 62 5 um MMF 50 um MMF Operating 62 5 um MMF Range 50 um MMF 50 um MMF Optical Transmitter Parameter Optical Conditions Transmitter Fiber Channel version Spectral Width Ethernet version Average Launch Power Fiber Channel version Extinction Ratio Ld E es paras Relative Intensity ee Noise AddOn Computer Phone 877 292 1701 Page 6 of 10 J9150A AO HP 10GBASE SR SFP MMF E sad
8. o on NETWORK TRANSCEIVERS MEMORY UPGRADES Optical Receiver Parameter Conditions Symbol Power Center Wavelength Center Wavelength 0 se e e Pavg PRBS 2 1 ae eee lt 1 10 12 1 25GBd OMA PRBS 2 1 aa lt 1 10 11 1 12 10 3125GBd Sensitivity Fiber lt 1 10 12 2GBd lt 1 10 12 4GBd Sensitivity Ethernet ee PRBS 2 1 BER lt 1 10 eee OMA PRBS 2 1 BER pop lt 1 10 12 10GBd l OMA PRBS 2 1 BER Stressed Receiver S COL Sensitivity Ethernet Pavg PRBS 231 1 EH ae BER lt 1 10 12 10 3125GBd Stressed Receiver OMA PRBS 2 1 BER H Sensitivity Fiber lt 1 10 12 2GBd Channel OM3 OMA PRBS 2 1 BER fibers lt 1 10 12 4GBd Eoo PRBS 2 1 BER lt 1 10 Eoo OMA PRBS 2 1 BER lt 1 10 Ez 5 12 10 3125GBd sien _ Eromena Paves 7 AddOn Computer Phone 877 292 1701 Page 7 of 10 J9150A AO HP 10GBASE SR SFP MMF 850NM 300M REACH LC E aoo Orn NETWORK TRANSCEIVERS MEMORY UPGRADES Digital Optical Monitoring Transceivers offer the ability to monitor important module parameter during operation The five parameters listed below are continuously monitored for getting information about the current module status All data is calibrated internally there is no need for external post processing Temperature Internally measured temperature data is represented as two s complement of a signed 16 bit value in increments of 1 2
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