TOTX1353(V,F) FIBER OPTIC TRANSMITTING MODULE TOTX1353(V,F) GENERAL PURPOSE OPTICAL TRANSMITTING MODULE JIS F05 type fiber optic connector 650nm LED Low current LED drive Vertical mounting type 1. Absolute Maximum Ratings (Ta = 25C) Characteristics Symbol Rating Unit Storage Temperature Tstg -40 to 95 C Operating Temperature Topr -40 to 85 C Forward Current (DC) IFDC 30 mA Soldering Temperature Tsol 260 (Note 1) C Note 1: Soldering time 10 s (More than 1 mm apart from the package). Using continuously under heavy loads (e.g. the application of high temperature/current/voltage and the significant change in temperature , etc.) may cause this product to decrease in the reliability significantly even if the operating conditions (i.e.operating temperature/ current/ voltage, etc.) are within the absolute maximum ratings. Please design the appropriate reliability upon reviewing the Toshiba Semiconductor Reliability Handbook ("Handling Precautions"/ "Derating Concept and Methods") and individual reliability data (i.e. reliability test report and estimated failure rate, etc.). 2. Operating Ranges Characteristics Forward Current (DC) Data Rate Symbol Min Typ. Max Unit IF 1.5 10 mA DC - 500 kb/s Start of commercial production 2013-02 1 2014-04-03 TOTX1353(V,F) 3. Electrical and Optical Characteristics (Ta = 25C, VCC = 5 V) Characteristics Symbol Data Rate Transmission Distance (Note 2) Pulse Width Distortion (Note4) Min Typ. Max Unit NRZ Code DC - 500 kb / s Using APF(Note 3) and TORX1353(V,F) 0.2 10 m -30 30 -17 - -12 dBm - 650 - nm 1.75 2.2 V tw Fiber Output Power (Note 5) Pf Center Emission Wavelength c Forward VF Voltage Test Condition IF =1.5mA, Using APF (Note3), IF =1.5mA Note 2: Data rate and transmission distance differ from driver curcuit. Note 3: All Plastic Fiber (980m core / 1000 m cladding, NA=0.5) with polished surface. Note 4: Between input of driver curcuit of TOTX1353(V,F) and output of TORX1353(V,F). A value changes with LED drive circuits. Note 5: Measure with a standard optical fiber with fiber optic connectors. Valeud by peak. 4. Application Circuit (Top View) 5. Applicable Optical Fiber with Fiber Optic Connectors All Plastic Fiber (980m core / 1000 m cladding , NA=0.5). F05 type optical connector with Polished surface. 2 2014-04-03 TOTX1353(V,F) 6. Precautions during use (1) Absolute maximum rating The absolute maximum ratings are the limit values which must not be exceeded during operation of device. None of these rating value must not be exceeded. If the absolute maximum rating value is exceeded, the characteristics of devices may never be restored properly. In extreme cases, the device may be permanently damages. (2) Operating Range The operating range is the range of conditions necessary for the device to operate as specified in individual technical datasheets and data books. Care must be exercised in the design of the equipment. If a device is used under conditions that do not exceed absolute maximum ratings but exceed the operating range, the specifications related to device operation and electrical characteristics may not be met, resulting in a decrease in reliability. If greater reliability is required, derate the device's operating ranges for voltage, current, power and temperature before use. (3) Lifetime of light emitters If an optical module is used for a long period of time, degeneration in the characteristics will mostly be due to a lowering of the fiber output power (Pf). This is caused by the degradation of the optical output of the LEDs used as the light source. The cause of degradation of the optical output of the LEDs may be defects in wafer crystallization or mold resin stress. The detailed causes are, however, not clear. The lifetime of light emitters is greatly influenced by the operating conditions and the environment in which it is used as well as by the lifetime characteristics unique to the device type. Thus, when a light emitting device and its operating conditions determined, Toshiba recommend that lifetime characteristics be checked. Depending on the environment conditions, Toshiba recommend that maintenance such as regular checks of the amount of optical output in accordance with the condition of operating environment. (4) Soldering Optical modules are comprised of internal semiconductor devices. However, in principle, optical modules are optical components. During soldering, ensure that flux does not contact with the emitting surface or the detecting surface. Also ensure that proper flux removal is conducted after soldering. Some optical modules come with a protective cap. The protective cap is used to avoid malfunction when the optical module is not in use. Note that it is not dust or waterproof. As mentioned before, optical modules are optical components. Thus, in principle, soldering where there may be flux residue and flux removal after soldering is not recommended. Toshiba recommend that soldering be performed without the optical module mounted on the board. Then, after the board has been cleaned, the optical module should be soldered on to the board manually. If the optical module cannot be soldered manually, use non-halogen (chlorine-free) flux and make sure, without cleaning, there is no residue such as chlorine. This is one of the ways to eliminate the effects of flux. In such a cases, be sure to check the devices' reliability. (5) Vibration and shock This module is plastic sealed and has its wire fixed by resin. This structure is relatively resistant to vibration and shock. In actual equipment, there are sometime cases in which vibration, shock, or stress is applied to soldered parts or connected parts, resulting in lines cut. A care must be taken in the design of equipment which will be subject to high levels of vibration. 3 2014-04-03 TOTX1353(V,F) (6) Fixing fiber optical transmitting module Solder the fixed pin (pins 4 and 5) of fiber optic transmitting module TOTX1353(V,F) to the printed circuit board to fix the module to the board. (7) Solvent When using solvent for flux removal, do not use a high acid or high alkali solvent. Be careful not to pour solvent in to the optical connector ports. If solvent is inadvertently poured in to them, clean it off using cotton tips. (8) Protective cap When the TOTX1353(V,F) is not in use, attach the protective cap.. (9) An influence of flash or strong light Do not emit a flash or a strong light to the optical module directly they may cause an error in data transmission. (10) Soldering condition Solder at 260C or less for no more than ten seconds. (11) Precautions when disposing of devices and packing materials. When disposing devices and packing materials, follow the procedures stipulated by local regulations in order to protect the environment against contamination. (12) Others This product is an optical transmitting module for plastic optical fiber. Use only for an optical transmitting module purpose. 4 2014-04-03 TOTX1353(V,F) 7. Package Outline drawing Unit: mm Tolerance: 0.5 mm, unless otherwise specified. Pin connection 1. 2. 3. 4. 5. 5 NC Cathode Anode NC NC 2014-04-03 TOTX1353(V,F) RESTRICTIONS ON PRODUCT USE * Toshiba Corporation, and its subsidiaries and affiliates (collectively "TOSHIBA"), reserve the right to make changes to the information in this document, and related hardware, software and systems (collectively "Product") without notice. * This document and any information herein may not be reproduced without prior written permission from TOSHIBA. Even with TOSHIBA's written permission, reproduction is permissible only if reproduction is without alteration/omission. * Though TOSHIBA works continually to improve Product's quality and reliability, Product can malfunction or fail. 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