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TLP360J
2014-09-221
TOSHIBA Photocoupler GaAs Ired & Photo-Triac
TLP360J
Triac Drivers
Programmable Controllers
AC-Output Modules
Solid State Relays
TOSHIBA TLP360J consists of a photo-triac optically coupled to a gallium
arsenide infrared-emitting diode in a four-lead plastic DIP package.
• Peak off-state voltage: 600 V (min)
• Trigger LED current: 10 mA (max)
• On-state current: 100 mA (max)
• Isolation voltage: 5000 Vrms (min)
• UL recognized: UL1577, file No. E67349
• Option (D4) type
TÜV approved: DIN EN60747-5-2
Certificate No. R50033433
Maximum operating insulation voltage : 890 Vpk
Maximum permissible overvoltage : 8000 Vpk
(Note) When an EN60747-5-2 approved type is needed,
please designate “Option (D4).”
• Construction mechanical rating
7.62 mm pitch
standard type
10.16 mm pitch
TLPXXXF type
Creepage distance
Clearance
Insulation thickness
7.0 mm (min)
7.0 mm (min)
0.4 mm (min)
8.0 mm (min)
8.0 mm (min)
0.4 mm (min)
•Trigger LED Current
*Example: “(IFT7)”; “TLP360J(IFT7)”
(Note) When specifying the application type name for certification
testing, be sure to use the standard product type name,
e.g. TLP360J(IFT7): TLP360J.
JEDEC
TOSHIBA 11-5B2
Weight: 0.26 g (typ.)
Classification*
Trigger LED current (mA)
Marking of
classification
VT = 6 V, Ta = 25°C
Min Max
(IFT7) ― 7 T7
Standard ― 10 T7, blank
Unit: mm
Pin Configuration (top view)
1: Anode
2: Cathode
3: Terminal1
4: Terminal2
1
2 3
4
Start of commercial production
2003/06
TLP360J
2014-09-222
Absolute Maximum Ratings (Ta = 25°C)
Characteristic Symbol Rating Unit
LED
Forward current IF 50 mA
Forward current derating (Ta ≥ 53°C) ∆IF /°C −0.7 mA /°C
Peak forward current (100 μs pulse, 100 pps) IFP 1 A
Reverse voltage VR 5 V
Junction temperature Tj 125 °C
Detector
Off-state output terminal voltage VDRM 600 V
On-state RMS current
Ta = 25°C
IT(RMS)
100
mA
Ta = 70°C 50
On-state current derating (Ta ≥ 25°C) ∆IT/°C -1.1 mA /°C
Peak on-state current (100 μs pulse, 120 pps) ITP 2 A
Peak non-repetitive surge current (Pw = 10 ms) ITSM 1.2 A
Junction temperature Tj 115 °C
Storage temperature range Tstg −55 to 125 °C
Operating temperature range Topr −40 to 100 °C
Lead soldering temperature (10 s) Tsol 260 °C
Isolation voltage (AC, 1 minute, R.H. ≤ 60%) (Note 1) BVS 5000 Vrms
Note: 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).
Note 1: Pins 1 and 2 are shorted together and pins 3 and 4 are shorted together.
Recommended Operating Conditions
Characteristic Symbol Min Typ. Max Unit
Supply voltage VAC — — 240 Vac
Forward current IF 15 20 25 mA
Peak on-state current ITP — — 1 A
Operating temperature Topr −25 — 85 °C
Note: Recommended operating conditions are given as a design guideline to obtain expected performance of the
device. Additionally, each item is an independent guideline respectively. In developing designs using this
product, please confirm specified characteristics shown in this document.
TLP360J
2014-09-223
Electrical Characteristics (Ta = 25°C)
Characteristic Symbol Test Condition Min Typ. Max Unit
LED
Forward voltage VF IF = 10 mA 1.0 1.15 1.3 V
Reverse current IR VR = 5 V — — 10 μA
Capacitance CT V = 0, f = 1 MHz — 30 — pF
Detector
Peak off-state current IDRM VDRM = 600 V — 10 1000 nA
Peak on-state voltage VTM ITM = 100 mA — 1.7 3.0 V
Holding current IH — — 0.6 — mA
Critical rate of rise of
off-state voltage
dv/dt Vin = 240 Vrms, Ta = 85°C (Note 2) — 500 — V/μs
Critical rate of rise of
commutating voltage
dv/dt(c) Vin = 60 Vrms, IT = 15 mA (Note 2) — 0.2 — V/μs
Coupled Electrical Characteristics (Ta = 25°C)
Characteristic Symbol Test Condition Min Typ. Max Unit
Trigger LED current IFT VT = 6 V — — 10 mA
Turn-on time tON
VD = 6 → 4 V , RL = 100 Ω
IF = Rated IFTΧ1.5
— 30 100 μs
Isolation Characteristics (Ta = 25°C)
Characteristic Symbol Test Condition Min Typ. Max Unit
Capacitance (input to output) CS VS = 0 , f = 1 MHz — 0.8 — pF
Isolation resistance RS VS = 500 V, R.H. ≤ 60% 1×10
12
10
14
— Ω
Isolation voltage BVS
AC, 1 minute 5000 — —
Vrms
AC, 1 second, in oil — 10000 —
DC, 1 minute, in oil — 10000 — Vdc
(Note 2): dv/dt test circuit
dv/dt (c) dv/dt
0 V
+5 V, Vcc
1
2
4
Vcc
+
—
Rin
120 Ω
Vin
3
RL
4 kΩ
TLP360J
2014-09-224
*: The above graphs show typical characteristics.
∆VF / ∆Ta – IF
Forward current IF (mA)
Forwardvoltagetemperature
coefficient∆VF/∆Ta(mV/°C)
−3.2
−0.4
0.1 0.3 0.5 1 3 5 10 30 50
−0.8
−1.2
−1.6
−2.0
−2.4
−2.8
Ambient temperature Ta (A)
Allowableforwardcurrent
IF(mA)
60
0
−20
50
40
30
20
0 20 40 60 80 120100
10
IT(RMS) – Ta
Ambient temperature Ta (°C)
R.m.son-stagecurrent
IT(RMS)(mA)
120
0
-20
100
80
40
20
0 20 40 60 80 120100
60
IFP – VFP
Pulse forward voltage VPF (V)
PulseforwardcurrentIFP(mA)
0.6
1000
1
500
300
30
10
3
1.0 1.4 1.8 2.2 2.6
5
50
100
3.0
Pulse width ≤ 100μs
Repetitive frequency = 100 Hz
Ta = 25°C
IFP – DR
Duty cycle ratio DR
Allowablepulseforward
currentIFP(mA)
3000
10
−3
1000
500
300
100
50
10
10
−2
10
−1
100
3 3 3 3
30
Pulse width ≤ 100μs
Ta = 25°C
IF – VF
Forward voltage VF (V)
ForwardcurrentIF(mA)
100
0.1
0.6
50
30
3
1
0.3
0.8 1.0 1.2 1.4 1.6 1.8
0.5
5
10
Ta = 25°C
IF – Ta
TLP360J
2014-09-225
*: The above graphs show typical characteristics.
Normalized IFT – Ta
Ambient temperature Ta (°C)
TriggerLEDcurrentIFT
(Arbitraryunit)
3
0.1
−40
1.2
1
0.5
0.3
-20 0 20 40 60 10080
2
VT = 6 V
Normalized IH – Ta
Ambient temperature Ta (°C)
HoldingcurrentIH
(Arbitraryunit)
3
0.1
-40
1.2
1
0.5
0.3
-20 0 20 40 60 10080
2
Normalized IDRM – Ta
Ambient temperature Ta (°C)
Peakoff-statecurrentIDRM
(Arbitraryunit)
10
3
102
10
1
100
40 1000 20 60 80
VDRM = Rated
Normalized VDRM – Ta
Ambient temperature Ta (°C)
Off-stageoutputterminalvoltageVDRM
(arbitraryunit)
1.4
0.2
-40
1.0
0.8
0.4
-20 0 20 40 60 10080
1.2
0.4
0.6
Normalized IF / IFT – Pw
NormalizedLEDcurrentIF/IFT
10
1
1.6
2
3
5
1.2
10 30 100 300 500 100050
1.4
1.8
LED current pulse width Pw (μs)
TLP360J
2014-09-226
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. Customers are
responsible for complying with safety standards and for providing adequate designs and safeguards for their hardware, software and
systems which minimize risk and avoid situations in which a malfunction or failure of Product could cause loss of human life, bodily
injury or damage to property, including data loss or corruption. Before customers use the Product, create designs including the Product,
or incorporate the Product into their own applications, customers must also refer to and comply with (a) the latest versions of all
relevant TOSHIBA information, including without limitation, this document, the specifications, the data sheets and application notes for
Product and the precautions and conditions set forth in the "TOSHIBA Semiconductor Reliability Handbook" and (b) the instructions for
the application with which the Product will be used with or for. Customers are solely responsible for all aspects of their own product
design or applications, including but not limited to (a) determining the appropriateness of the use of this Product in such design or
applications; (b) evaluating and determining the applicability of any information contained in this document, or in charts, diagrams,
programs, algorithms, sample application circuits, or any other referenced documents; and (c) validating all operating parameters for
such designs and applications. TOSHIBA ASSUMES NO LIABILITY FOR CUSTOMERS' PRODUCT DESIGN OR APPLICATIONS.
• PRODUCT IS NEITHER INTENDED NOR WARRANTED FOR USE IN EQUIPMENTS OR SYSTEMS THAT REQUIRE
EXTRAORDINARILY HIGH LEVELS OF QUALITY AND/OR RELIABILITY, AND/OR A MALFUNCTION OR FAILURE OF WHICH
MAY CAUSE LOSS OF HUMAN LIFE, BODILY INJURY, SERIOUS PROPERTY DAMAGE AND/OR SERIOUS PUBLIC IMPACT
("UNINTENDED USE"). Except for specific applications as expressly stated in this document, Unintended Use includes, without
limitation, equipment used in nuclear facilities, equipment used in the aerospace industry, medical equipment, equipment used for
automobiles, trains, ships and other transportation, traffic signaling equipment, equipment used to control combustions or explosions,
safety devices, elevators and escalators, devices related to electric power, and equipment used in finance-related fields. IF YOU USE
PRODUCT FOR UNINTENDED USE, TOSHIBA ASSUMES NO LIABILITY FOR PRODUCT. For details, please contact your
TOSHIBA sales representative.
• Do not disassemble, analyze, reverse-engineer, alter, modify, translate or copy Product, whether in whole or in part.
• Product shall not be used for or incorporated into any products or systems whose manufacture, use, or sale is prohibited under any
applicable laws or regulations.
• The information contained herein is presented only as guidance for Product use. No responsibility is assumed by TOSHIBA for any
infringement of patents or any other intellectual property rights of third parties that may result from the use of Product. No license to
any intellectual property right is granted by this document, whether express or implied, by estoppel or otherwise.
• ABSENT A WRITTEN SIGNED AGREEMENT, EXCEPT AS PROVIDED IN THE RELEVANT TERMS AND CONDITIONS OF SALE
FOR PRODUCT, AND TO THE MAXIMUM EXTENT ALLOWABLE BY LAW, TOSHIBA (1) ASSUMES NO LIABILITY
WHATSOEVER, INCLUDING WITHOUT LIMITATION, INDIRECT, CONSEQUENTIAL, SPECIAL, OR INCIDENTAL DAMAGES OR
LOSS, INCLUDING WITHOUT LIMITATION, LOSS OF PROFITS, LOSS OF OPPORTUNITIES, BUSINESS INTERRUPTION AND
LOSS OF DATA, AND (2) DISCLAIMS ANY AND ALL EXPRESS OR IMPLIED WARRANTIES AND CONDITIONS RELATED TO
SALE, USE OF PRODUCT, OR INFORMATION, INCLUDING WARRANTIES OR CONDITIONS OF MERCHANTABILITY, FITNESS
FOR A PARTICULAR PURPOSE, ACCURACY OF INFORMATION, OR NONINFRINGEMENT.
• GaAs (Gallium Arsenide) is used in Product. GaAs is harmful to humans if consumed or absorbed, whether in the form of dust or vapor.
Handle with care and do not break, cut, crush, grind, dissolve chemically or otherwise expose GaAs in Product.
• Do not use or otherwise make available Product or related software or technology for any military purposes, including without limitation,
for the design, development, use, stockpiling or manufacturing of nuclear, chemical, or biological weapons or missile technology
products (mass destruction weapons). Product and related software and technology may be controlled under the applicable export
laws and regulations including, without limitation, the Japanese Foreign Exchange and Foreign Trade Law and the U.S. Export
Administration Regulations. Export and re-export of Product or related software or technology are strictly prohibited except in
compliance with all applicable export laws and regulations.
• Please contact your TOSHIBA sales representative for details as to environmental matters such as the RoHS compatibility of Product.
Please use Product in compliance with all applicable laws and regulations that regulate the inclusion or use of controlled substances,
including without limitation, the EU RoHS Directive. TOSHIBA ASSUMES NO LIABILITY FOR DAMAGES OR LOSSES
OCCURRING AS A RESULT OF NONCOMPLIANCE WITH APPLICABLE LAWS AND REGULATIONS.

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Original Opto TLP360J TLP360 P360J P360 360 DIP-4 New

  • 1. TLP360J 2014-09-221 TOSHIBA Photocoupler GaAs Ired & Photo-Triac TLP360J Triac Drivers Programmable Controllers AC-Output Modules Solid State Relays TOSHIBA TLP360J consists of a photo-triac optically coupled to a gallium arsenide infrared-emitting diode in a four-lead plastic DIP package. • Peak off-state voltage: 600 V (min) • Trigger LED current: 10 mA (max) • On-state current: 100 mA (max) • Isolation voltage: 5000 Vrms (min) • UL recognized: UL1577, file No. E67349 • Option (D4) type TÜV approved: DIN EN60747-5-2 Certificate No. R50033433 Maximum operating insulation voltage : 890 Vpk Maximum permissible overvoltage : 8000 Vpk (Note) When an EN60747-5-2 approved type is needed, please designate “Option (D4).” • Construction mechanical rating 7.62 mm pitch standard type 10.16 mm pitch TLPXXXF type Creepage distance Clearance Insulation thickness 7.0 mm (min) 7.0 mm (min) 0.4 mm (min) 8.0 mm (min) 8.0 mm (min) 0.4 mm (min) •Trigger LED Current *Example: “(IFT7)”; “TLP360J(IFT7)” (Note) When specifying the application type name for certification testing, be sure to use the standard product type name, e.g. TLP360J(IFT7): TLP360J. JEDEC TOSHIBA 11-5B2 Weight: 0.26 g (typ.) Classification* Trigger LED current (mA) Marking of classification VT = 6 V, Ta = 25°C Min Max (IFT7) ― 7 T7 Standard ― 10 T7, blank Unit: mm Pin Configuration (top view) 1: Anode 2: Cathode 3: Terminal1 4: Terminal2 1 2 3 4 Start of commercial production 2003/06
  • 2. TLP360J 2014-09-222 Absolute Maximum Ratings (Ta = 25°C) Characteristic Symbol Rating Unit LED Forward current IF 50 mA Forward current derating (Ta ≥ 53°C) ∆IF /°C −0.7 mA /°C Peak forward current (100 μs pulse, 100 pps) IFP 1 A Reverse voltage VR 5 V Junction temperature Tj 125 °C Detector Off-state output terminal voltage VDRM 600 V On-state RMS current Ta = 25°C IT(RMS) 100 mA Ta = 70°C 50 On-state current derating (Ta ≥ 25°C) ∆IT/°C -1.1 mA /°C Peak on-state current (100 μs pulse, 120 pps) ITP 2 A Peak non-repetitive surge current (Pw = 10 ms) ITSM 1.2 A Junction temperature Tj 115 °C Storage temperature range Tstg −55 to 125 °C Operating temperature range Topr −40 to 100 °C Lead soldering temperature (10 s) Tsol 260 °C Isolation voltage (AC, 1 minute, R.H. ≤ 60%) (Note 1) BVS 5000 Vrms Note: 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). Note 1: Pins 1 and 2 are shorted together and pins 3 and 4 are shorted together. Recommended Operating Conditions Characteristic Symbol Min Typ. Max Unit Supply voltage VAC — — 240 Vac Forward current IF 15 20 25 mA Peak on-state current ITP — — 1 A Operating temperature Topr −25 — 85 °C Note: Recommended operating conditions are given as a design guideline to obtain expected performance of the device. Additionally, each item is an independent guideline respectively. In developing designs using this product, please confirm specified characteristics shown in this document.
  • 3. TLP360J 2014-09-223 Electrical Characteristics (Ta = 25°C) Characteristic Symbol Test Condition Min Typ. Max Unit LED Forward voltage VF IF = 10 mA 1.0 1.15 1.3 V Reverse current IR VR = 5 V — — 10 μA Capacitance CT V = 0, f = 1 MHz — 30 — pF Detector Peak off-state current IDRM VDRM = 600 V — 10 1000 nA Peak on-state voltage VTM ITM = 100 mA — 1.7 3.0 V Holding current IH — — 0.6 — mA Critical rate of rise of off-state voltage dv/dt Vin = 240 Vrms, Ta = 85°C (Note 2) — 500 — V/μs Critical rate of rise of commutating voltage dv/dt(c) Vin = 60 Vrms, IT = 15 mA (Note 2) — 0.2 — V/μs Coupled Electrical Characteristics (Ta = 25°C) Characteristic Symbol Test Condition Min Typ. Max Unit Trigger LED current IFT VT = 6 V — — 10 mA Turn-on time tON VD = 6 → 4 V , RL = 100 Ω IF = Rated IFTΧ1.5 — 30 100 μs Isolation Characteristics (Ta = 25°C) Characteristic Symbol Test Condition Min Typ. Max Unit Capacitance (input to output) CS VS = 0 , f = 1 MHz — 0.8 — pF Isolation resistance RS VS = 500 V, R.H. ≤ 60% 1×10 12 10 14 — Ω Isolation voltage BVS AC, 1 minute 5000 — — Vrms AC, 1 second, in oil — 10000 — DC, 1 minute, in oil — 10000 — Vdc (Note 2): dv/dt test circuit dv/dt (c) dv/dt 0 V +5 V, Vcc 1 2 4 Vcc + — Rin 120 Ω Vin 3 RL 4 kΩ
  • 4. TLP360J 2014-09-224 *: The above graphs show typical characteristics. ∆VF / ∆Ta – IF Forward current IF (mA) Forwardvoltagetemperature coefficient∆VF/∆Ta(mV/°C) −3.2 −0.4 0.1 0.3 0.5 1 3 5 10 30 50 −0.8 −1.2 −1.6 −2.0 −2.4 −2.8 Ambient temperature Ta (A) Allowableforwardcurrent IF(mA) 60 0 −20 50 40 30 20 0 20 40 60 80 120100 10 IT(RMS) – Ta Ambient temperature Ta (°C) R.m.son-stagecurrent IT(RMS)(mA) 120 0 -20 100 80 40 20 0 20 40 60 80 120100 60 IFP – VFP Pulse forward voltage VPF (V) PulseforwardcurrentIFP(mA) 0.6 1000 1 500 300 30 10 3 1.0 1.4 1.8 2.2 2.6 5 50 100 3.0 Pulse width ≤ 100μs Repetitive frequency = 100 Hz Ta = 25°C IFP – DR Duty cycle ratio DR Allowablepulseforward currentIFP(mA) 3000 10 −3 1000 500 300 100 50 10 10 −2 10 −1 100 3 3 3 3 30 Pulse width ≤ 100μs Ta = 25°C IF – VF Forward voltage VF (V) ForwardcurrentIF(mA) 100 0.1 0.6 50 30 3 1 0.3 0.8 1.0 1.2 1.4 1.6 1.8 0.5 5 10 Ta = 25°C IF – Ta
  • 5. TLP360J 2014-09-225 *: The above graphs show typical characteristics. Normalized IFT – Ta Ambient temperature Ta (°C) TriggerLEDcurrentIFT (Arbitraryunit) 3 0.1 −40 1.2 1 0.5 0.3 -20 0 20 40 60 10080 2 VT = 6 V Normalized IH – Ta Ambient temperature Ta (°C) HoldingcurrentIH (Arbitraryunit) 3 0.1 -40 1.2 1 0.5 0.3 -20 0 20 40 60 10080 2 Normalized IDRM – Ta Ambient temperature Ta (°C) Peakoff-statecurrentIDRM (Arbitraryunit) 10 3 102 10 1 100 40 1000 20 60 80 VDRM = Rated Normalized VDRM – Ta Ambient temperature Ta (°C) Off-stageoutputterminalvoltageVDRM (arbitraryunit) 1.4 0.2 -40 1.0 0.8 0.4 -20 0 20 40 60 10080 1.2 0.4 0.6 Normalized IF / IFT – Pw NormalizedLEDcurrentIF/IFT 10 1 1.6 2 3 5 1.2 10 30 100 300 500 100050 1.4 1.8 LED current pulse width Pw (μs)
  • 6. TLP360J 2014-09-226 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. Customers are responsible for complying with safety standards and for providing adequate designs and safeguards for their hardware, software and systems which minimize risk and avoid situations in which a malfunction or failure of Product could cause loss of human life, bodily injury or damage to property, including data loss or corruption. Before customers use the Product, create designs including the Product, or incorporate the Product into their own applications, customers must also refer to and comply with (a) the latest versions of all relevant TOSHIBA information, including without limitation, this document, the specifications, the data sheets and application notes for Product and the precautions and conditions set forth in the "TOSHIBA Semiconductor Reliability Handbook" and (b) the instructions for the application with which the Product will be used with or for. Customers are solely responsible for all aspects of their own product design or applications, including but not limited to (a) determining the appropriateness of the use of this Product in such design or applications; (b) evaluating and determining the applicability of any information contained in this document, or in charts, diagrams, programs, algorithms, sample application circuits, or any other referenced documents; and (c) validating all operating parameters for such designs and applications. TOSHIBA ASSUMES NO LIABILITY FOR CUSTOMERS' PRODUCT DESIGN OR APPLICATIONS. • PRODUCT IS NEITHER INTENDED NOR WARRANTED FOR USE IN EQUIPMENTS OR SYSTEMS THAT REQUIRE EXTRAORDINARILY HIGH LEVELS OF QUALITY AND/OR RELIABILITY, AND/OR A MALFUNCTION OR FAILURE OF WHICH MAY CAUSE LOSS OF HUMAN LIFE, BODILY INJURY, SERIOUS PROPERTY DAMAGE AND/OR SERIOUS PUBLIC IMPACT ("UNINTENDED USE"). Except for specific applications as expressly stated in this document, Unintended Use includes, without limitation, equipment used in nuclear facilities, equipment used in the aerospace industry, medical equipment, equipment used for automobiles, trains, ships and other transportation, traffic signaling equipment, equipment used to control combustions or explosions, safety devices, elevators and escalators, devices related to electric power, and equipment used in finance-related fields. IF YOU USE PRODUCT FOR UNINTENDED USE, TOSHIBA ASSUMES NO LIABILITY FOR PRODUCT. For details, please contact your TOSHIBA sales representative. • Do not disassemble, analyze, reverse-engineer, alter, modify, translate or copy Product, whether in whole or in part. • Product shall not be used for or incorporated into any products or systems whose manufacture, use, or sale is prohibited under any applicable laws or regulations. • The information contained herein is presented only as guidance for Product use. No responsibility is assumed by TOSHIBA for any infringement of patents or any other intellectual property rights of third parties that may result from the use of Product. No license to any intellectual property right is granted by this document, whether express or implied, by estoppel or otherwise. • ABSENT A WRITTEN SIGNED AGREEMENT, EXCEPT AS PROVIDED IN THE RELEVANT TERMS AND CONDITIONS OF SALE FOR PRODUCT, AND TO THE MAXIMUM EXTENT ALLOWABLE BY LAW, TOSHIBA (1) ASSUMES NO LIABILITY WHATSOEVER, INCLUDING WITHOUT LIMITATION, INDIRECT, CONSEQUENTIAL, SPECIAL, OR INCIDENTAL DAMAGES OR LOSS, INCLUDING WITHOUT LIMITATION, LOSS OF PROFITS, LOSS OF OPPORTUNITIES, BUSINESS INTERRUPTION AND LOSS OF DATA, AND (2) DISCLAIMS ANY AND ALL EXPRESS OR IMPLIED WARRANTIES AND CONDITIONS RELATED TO SALE, USE OF PRODUCT, OR INFORMATION, INCLUDING WARRANTIES OR CONDITIONS OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE, ACCURACY OF INFORMATION, OR NONINFRINGEMENT. • GaAs (Gallium Arsenide) is used in Product. GaAs is harmful to humans if consumed or absorbed, whether in the form of dust or vapor. Handle with care and do not break, cut, crush, grind, dissolve chemically or otherwise expose GaAs in Product. • Do not use or otherwise make available Product or related software or technology for any military purposes, including without limitation, for the design, development, use, stockpiling or manufacturing of nuclear, chemical, or biological weapons or missile technology products (mass destruction weapons). Product and related software and technology may be controlled under the applicable export laws and regulations including, without limitation, the Japanese Foreign Exchange and Foreign Trade Law and the U.S. Export Administration Regulations. Export and re-export of Product or related software or technology are strictly prohibited except in compliance with all applicable export laws and regulations. • Please contact your TOSHIBA sales representative for details as to environmental matters such as the RoHS compatibility of Product. Please use Product in compliance with all applicable laws and regulations that regulate the inclusion or use of controlled substances, including without limitation, the EU RoHS Directive. TOSHIBA ASSUMES NO LIABILITY FOR DAMAGES OR LOSSES OCCURRING AS A RESULT OF NONCOMPLIANCE WITH APPLICABLE LAWS AND REGULATIONS.