Part Number Hot Search : 
74ACT521 2409A LTC1760 2SC36 P2022 C1001 LBN10005 EL4348CU
Product Description
Full Text Search
 

To Download TLP2345 Datasheet File

  If you can't view the Datasheet, Please click here to try to view without PDF Reader .  
 
 


  Datasheet File OCR Text:
  2013-12-04 rev.1.0 TLP2345 1 photocouplers gaa ? as infrared led & photo ic TLP2345 TLP2345 TLP2345 TLP2345 1. 1. 1. 1. applications applications applications applications ? intelligent power module signal isolation ? programmable logic controllers (plcs) ? high-speed digital interfacing for instrumentation and control devices 2. 2. 2. 2. general general general general the toshiba TLP2345 consists of high-output gaa ? as light-emitting diode coupled with a high-gain, high-speed photo detector. it is housed in the so6 package. this product can operate in power supply voltage 4.5 v to 30 v with the maximum operative temperature of 110 . since TLP2345 has guaranteed 3 ma low supply current (i ccl /i cch ), and 1.6 ma low threshold input current (i flh ), it contributes to energy saving of devices. it can drive directly from a microcomputer for a low input current. the detector has a totem-pole output stage with current sourcing and sinking capabilities. the TLP2345 has an internal faraday shield that provides a guaranteed common-mode transient immunity of 30 kv/ s. the TLP2345 has a buffer output. an inverter output version, the tlp2348, is also available. 3. 3. 3. 3. features features features features (1) buffer logic type (totem pole output) (2) package: so6 (3) operating temperature: -40 to 110 (4) supply voltage: 4.5 to 30 v (5) threshold input current: 1.6 ma (max) (6) supply current: 3 ma (max) (7) propagation delay time: t phl /t plh = 120 ns (max) (8) pulse width distortion: |t phl - t plh | = 40 ns (max) (9) common-mode transient immunity: 30 kv/ s (min) (10) isolation voltage: 3750 vrms (min) (11) safety standards ul-under application: ul1577 file no.e67349 cul-under application: csa component acceptance service no.5a, file no.e67349 vde-under application: option (v4) en60747-5-5 (note) (note) (note) (note) note: when an en60747-5-5 approved type is needed, please designate the option (v4) option (v4) option (v4) option (v4) . 4. 4. 4. 4. packaging and pin configuration packaging and pin configuration packaging and pin configuration packaging and pin configuration 1: anode 3: cathode 4: gnd 5: v o (output) 6: v cc 11-4l1s
2013-12-04 rev.1.0 TLP2345 2 5. 5. 5. 5. internal circuit (note) internal circuit (note) internal circuit (note) internal circuit (note) note: a 0.1- f bypass capacitor must be connected between pin 6 and pin 4. 6. 6. 6. 6. principle of operation principle of operation principle of operation principle of operation 6.1. 6.1. 6.1. 6.1. truth table truth table truth table truth table input h l led on off output h l 6.2. 6.2. 6.2. 6.2. mechanical parameters mechanical parameters mechanical parameters mechanical parameters characteristics creepage distances clearance distances internal isolation thickness min 5.0 5.0 0.4 unit mm 7. 7. 7. 7. absolute maximum ratings (note) absolute maximum ratings (note) absolute maximum ratings (note) absolute maximum ratings (note) (unless otherwise specified, t (unless otherwise specified, t (unless otherwise specified, t (unless otherwise specified, t a a a a = 25 = 25 = 25 = 25 ) ) ) ) led detector common characteristics input forward current peak transient input forward current input power dissipation input reverse voltage output current output voltage supply voltage output power dissipation output power dissipation derating operating temperature storage temperature lead soldering temperature isolation voltage (t a 75 ) (10 s) ac, 1 min., r.h. 60 % symbol i f i fpt p d v r i o v o v cc p o ? p o / ? t a t opr t stg t sol bv s note (note 1) (note 2) rating 15 1 40 5 50 / -50 -0.5 to 30 -0.5 to 30 100 -2 -40 to 110 -55 to 125 260 3750 unit ma a mw v ma v v mw mw/ 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: pulse width (pw) 1 s, 300 pps note 2: this device is considered as a two-terminal device: pins 1 and 3 are shorted together, and pins 4, 5 and 6 are shorted together.
2013-12-04 rev.1.0 TLP2345 3 8. 8. 8. 8. recommended operating conditions (note) recommended operating conditions (note) recommended operating conditions (note) recommended operating conditions (note) characteristics input on-state current input off-state voltage supply voltage operating temperature symbol i f(on) v f(off) v cc t opr note (note 1) (note 2) (note 2) min 2 0 4.5 -40 typ. max 10 0.8 30 110 unit ma v note: the recommended operating conditions are given as a design guide necessary to obtain the intended performance of the device. each parameter is an independent value. when creating a system design using this device, the electrical characteristics specified in this datasheet should also be considered. note: a ceramic capacitor (0.1 f) should be connected between pin 6 and pin 4 to stabilize the operation of a high- gain linear amplifier. otherwise, this photocoupler may not switch properly. the bypass capacitor should be placed within 1 cm of each pin. note 1: the rise and fall times of the input on-current should be less than 0.5 s. note 2: denotes the operating range, not the recommended operating condition. 9. 9. 9. 9. electrical characteristics (note) electrical characteristics (note) electrical characteristics (note) electrical characteristics (note) (unless otherwise specified, t (unless otherwise specified, t (unless otherwise specified, t (unless otherwise specified, t a a a a = -40 to 110 = -40 to 110 = -40 to 110 = -40 to 110 , v , v , v , v cc cc cc cc = 4.5 to 30 v) = 4.5 to 30 v) = 4.5 to 30 v) = 4.5 to 30 v) characteristics input forward voltage input forward voltage temperature coefficient input reverse current input capacitance low-level output voltage high-level output voltage low-level supply current high-level supply current low-level short-circuit output current high-level short-circuit output current threshold input current (l/h) input current hysteresis threshold input voltage (h/l) symbol v f ? v f / ? t a i r c t v ol v oh i ccl i cch i osl i osh i flh i hys v fhl test circuit fig. 12.1.1 fig. 12.1.2 fig. 12.1.3 fig. 12.1.4 fig. 12.1.5 fig. 12.1.6 test condition i f = 3 ma, t a = 25 i f = 3 ma v r = 5 v, t a = 25 v = 0 v, f = 1 mhz, t a = 25 v f = 0.8 v, i o = 3.5 ma v f = 0.8 v, i o = 6.5 ma i f = 3 ma, i o = -3.5 ma i f = 3 ma, i o = -6.5 ma v cc = 5.5 v v cc = 30 v i f = 3 ma, v cc = 5.5 v i f = 3 ma, v cc = 30 v v cc = v o = 5.5 v v cc = v o = 20 v i f = 3 ma, v cc = 5.5 v, v o = gnd i f = 3 ma, v cc = 20 v, v o = gnd i o = -3.5 ma, v o > 4.8 v, v cc = 5 v i o = -3.5 ma i o = 6.5 ma, v o < 0.4 v min 1.35 v cc - 0.2 v cc - 0.4 150 160 0.8 typ. 1.55 -2.0 20 0.026 0.047 v cc - 0.03 v cc - 0.05 2.1 2.4 2.1 2.4 270 300 -330 -350 0.35 0.1 max 1.65 10 0.2 0.4 3 3 3 3 -150 -160 1.6 unit v mv/ a pf v ma v note: all typical values are at v cc = 5 v, t a = 25 , unless otherwise noted.
2013-12-04 rev.1.0 TLP2345 4 10. 10. 10. 10. isolation characteristics isolation characteristics isolation characteristics isolation characteristics (unless otherwise specified, t (unless otherwise specified, t (unless otherwise specified, t (unless otherwise specified, t a a a a = 25 = 25 = 25 = 25 ) ) ) ) characteristics total capacitance (input to output) isolation resistance isolation voltage symbol c s r s bv s note (note 1) (note 1) (note 1) test condition v = 0 v, f = 1 mhz v = 500 v, r.h. 60% ac, 1 min. ac, 1 s in oil dc, 1 min. in oil min 1 10 12 3750 typ. 0.8 1 10 14 10000 10000 max unit pf ? vrms vdc note 1: this device is considered as a two-terminal device: pins 1 and 3 are shorted together, and pins 4, 5 and 6 are shorted together. 11. 11. 11. 11. switching characteristics (note) switching characteristics (note) switching characteristics (note) switching characteristics (note) (unless otherwise specified, t (unless otherwise specified, t (unless otherwise specified, t (unless otherwise specified, t a a a a = -40 to 110 = -40 to 110 = -40 to 110 = -40 to 110 , v , v , v , v cc cc cc cc = 4.5 to 30 v) = 4.5 to 30 v) = 4.5 to 30 v) = 4.5 to 30 v) characteristics propagation delay time (h/l) propagation delay time (l/h) pulse width distortion propagation delay skew (device to device) fall time rise time common-mode transient immunity at output high common-mode transient immunity at output low symbol t phl t plh |t phl -t plh | t psk t f t r cm h cm l note (note 1) (note 1), (note 2) (note 1) test circuit fig. 12.1.7, fig. 12.1.8 fig. 12.1.9 test condition i f = 3 0 ma i f = 0 3 ma i f = 3 ma i f = 3 ma i f = 3 0 ma i f = 0 3 ma i f = 3 ma, v cc = 30 v, v cm = 1500 v p-p , t a = 25 i f = 0 ma, v cc = 30 v, v cm = 1500 v p-p , t a = 25 min 35 35 -70 30 30 typ. 61 65 4 3 3 50 50 max 120 120 40 70 30 30 unit ns kv/ s note: all typical values are at v cc = 5 v, t a = 25 , unless otherwise noted. note 1: f = 50 khz, duty = 50 %, input current t r = t f = 5 ns, c l is approximately 15 pf which includes probe and stray wiring capacitance. note 2: the propagation delay skew, t psk , is equal to the magnitude of the worst-case difference in t phl and/or t plh that will be seen between units at the same given conditions (supply voltage, input current, temperature, etc).
2013-12-04 rev.1.0 TLP2345 5 12. 12. 12. 12. test circuits and characteristics curves test circuits and characteristics curves test circuits and characteristics curves test circuits and characteristics curves 12.1. 12.1. 12.1. 12.1. test circuits test circuits test circuits test circuits fig. fig. fig. fig. 12.1.1 12.1.1 12.1.1 12.1.1 v v v v ol ol ol ol test circuit test circuit test circuit test circuit fig. fig. fig. fig. 12.1.2 12.1.2 12.1.2 12.1.2 v v v v oh oh oh oh test circuit test circuit test circuit test circuit fig. fig. fig. fig. 12.1.3 12.1.3 12.1.3 12.1.3 i i i i ccl ccl ccl ccl test circuit test circuit test circuit test circuit fig. fig. fig. fig. 12.1.4 12.1.4 12.1.4 12.1.4 i i i i cch cch cch cch test circuit test circuit test circuit test circuit fig. fig. fig. fig. 12.1.5 12.1.5 12.1.5 12.1.5 i i i i osl osl osl osl test circuit test circuit test circuit test circuit fig. fig. fig. fig. 12.1.6 12.1.6 12.1.6 12.1.6 i i i i osh osh osh osh test circuit test circuit test circuit test circuit fig. fig. fig. fig. 12.1.7 12.1.7 12.1.7 12.1.7 switching time test circuit switching time test circuit switching time test circuit switching time test circuit
2013-12-04 rev.1.0 TLP2345 6 fig. fig. fig. fig. 12.1.8 12.1.8 12.1.8 12.1.8 switching time test circuit switching time test circuit switching time test circuit switching time test circuit fig. fig. fig. fig. 12.1.9 12.1.9 12.1.9 12.1.9 common-mode transient immunity and waveform common-mode transient immunity and waveform common-mode transient immunity and waveform common-mode transient immunity and waveform
2013-12-04 rev.1.0 TLP2345 7 12.2. 12.2. 12.2. 12.2. characteristics curves (note) characteristics curves (note) characteristics curves (note) characteristics curves (note) fig. fig. fig. fig. 12.2.1 12.2.1 12.2.1 12.2.1 i i i i f f f f - v - v - v - v f f f f fig. fig. fig. fig. 12.2.2 12.2.2 12.2.2 12.2.2 i i i i flh flh flh flh - t - t - t - t a a a a fig. fig. fig. fig. 12.2.3 12.2.3 12.2.3 12.2.3 v v v v o o o o - i - i - i - i f f f f (i (i (i (i hys hys hys hys ) ) ) ) fig. fig. fig. fig. 12.2.4 12.2.4 12.2.4 12.2.4 v v v v o o o o - i - i - i - i f f f f (i (i (i (i hys hys hys hys ) ) ) ) fig. fig. fig. fig. 12.2.5 12.2.5 12.2.5 12.2.5 v v v v ol ol ol ol - t - t - t - t a a a a fig. fig. fig. fig. 12.2.6 12.2.6 12.2.6 12.2.6 (v (v (v (v cc cc cc cc -v -v -v -v oh oh oh oh ) - t ) - t ) - t ) - t a a a a
2013-12-04 rev.1.0 TLP2345 8 fig. fig. fig. fig. 12.2.7 12.2.7 12.2.7 12.2.7 i i i i ccl ccl ccl ccl - t - t - t - t a a a a fig. fig. fig. fig. 12.2.8 12.2.8 12.2.8 12.2.8 i i i i cch cch cch cch - t - t - t - t a a a a fig. fig. fig. fig. 12.2.9 12.2.9 12.2.9 12.2.9 i i i i osl osl osl osl - t - t - t - t a a a a fig. fig. fig. fig. 12.2.10 12.2.10 12.2.10 12.2.10 i i i i osh osh osh osh - t - t - t - t a a a a fig. fig. fig. fig. 12.2.11 12.2.11 12.2.11 12.2.11 t t t t plh plh plh plh , t , t , t , t phl phl phl phl , |t , |t , |t , |t phl phl phl phl -t -t -t -t plh plh plh plh | - t | - t | - t | - t a a a a (test circuit fig. 12.1.7) (test circuit fig. 12.1.7) (test circuit fig. 12.1.7) (test circuit fig. 12.1.7) fig. fig. fig. fig. 12.2.12 12.2.12 12.2.12 12.2.12 t t t t plh plh plh plh , t , t , t , t phl phl phl phl , |t , |t , |t , |t phl phl phl phl -t -t -t -t plh plh plh plh | - t | - t | - t | - t a a a a (test circuit fig. 12.1.7) (test circuit fig. 12.1.7) (test circuit fig. 12.1.7) (test circuit fig. 12.1.7)
2013-12-04 rev.1.0 TLP2345 9 fig. fig. fig. fig. 12.2.13 12.2.13 12.2.13 12.2.13 t t t t plh plh plh plh , t , t , t , t phl phl phl phl , |t , |t , |t , |t phl phl phl phl -t -t -t -t plh plh plh plh | - t | - t | - t | - t a a a a (test circuit fig. 12.1.8) (test circuit fig. 12.1.8) (test circuit fig. 12.1.8) (test circuit fig. 12.1.8) fig. fig. fig. fig. 12.2.14 12.2.14 12.2.14 12.2.14 t t t t plh plh plh plh , t , t , t , t phl phl phl phl , |t , |t , |t , |t phl phl phl phl -t -t -t -t plh plh plh plh | - t | - t | - t | - t a a a a (test circuit fig. 12.1.8) (test circuit fig. 12.1.8) (test circuit fig. 12.1.8) (test circuit fig. 12.1.8) note: the above characteristics curves are presented for reference only and not guaranteed by production test, unless otherwise noted.
2013-12-04 rev.1.0 TLP2345 10 13. 13. 13. 13. soldering and storage soldering and storage soldering and storage soldering and storage 13.1. 13.1. 13.1. 13.1. precautions for soldering precautions for soldering precautions for soldering precautions for soldering the soldering temperature should be controlled as closely as possible to the conditions shown below, irrespective of whether a soldering iron or a reflow soldering method is used. ? when using soldering reflow (see fig. 13.1.1 and 13.1.2) reflow soldering must be performed once or twice. the mounting should be completed with the interval from the first to the last mountings being 2 weeks. fig. fig. fig. fig. 13.1.1 13.1.1 13.1.1 13.1.1 an example of a temperature an example of a temperature an example of a temperature an example of a temperature profile when sn-pb eutectic solder is used profile when sn-pb eutectic solder is used profile when sn-pb eutectic solder is used profile when sn-pb eutectic solder is used fig. fig. fig. fig. 13.1.2 13.1.2 13.1.2 13.1.2 an example of a temperature an example of a temperature an example of a temperature an example of a temperature profile when lead(pb)-free solder is used profile when lead(pb)-free solder is used profile when lead(pb)-free solder is used profile when lead(pb)-free solder is used ? when using soldering flow (applicable to both eutectic solder and lead(pb)-free solder) apply preheating of 150 for 60 to 120 seconds. mounting condition of 260 within 10 seconds is recommended. flow soldering must be performed once. ? when using soldering iron (applicable to both eutectic solder and lead(pb)-free solder) complete soldering within 10 seconds for lead temperature not exceeding 260 or within 3 seconds not exceeding 350 heating by soldering iron must be done only once per lead. 13.2. 13.2. 13.2. 13.2. precautions for general storage precautions for general storage precautions for general storage precautions for general storage ? avoid storage locations where devices may be exposed to moisture or direct sunlight. ? follow the precautions printed on the packing label of the device for transportation and storage. ? keep the storage location temperature and humidity within a range of 5 to 35 and 45 % to 75 %, respectively. ? do not store the products in locations with poisonous gases (especially corrosive gases) or in dusty conditions. ? store the products in locations with minimal temperature fluctuations. rapid temperature changes during storage can cause condensation, resulting in lead oxidation or corrosion, which will deteriorate the solderability of the leads. ? when restoring devices after removal from their packing, use anti-static containers. ? do not allow loads to be applied directly to devices while they are in storage. ? if devices have been stored for more than two years under normal storage conditions, it is recommended that you check the leads for ease of soldering prior to use.
2013-12-04 rev.1.0 TLP2345 11 14. 14. 14. 14. land pattern dimensions (for reference only) land pattern dimensions (for reference only) land pattern dimensions (for reference only) land pattern dimensions (for reference only) (unit: mm) (unit: mm) (unit: mm) (unit: mm) 15. 15. 15. 15. marking marking marking marking
2013-12-04 rev.1.0 TLP2345 12 16. 16. 16. 16. specifications for embossed-tape packing (tpl) (tpr) for so6 coupler specifications for embossed-tape packing (tpl) (tpr) for so6 coupler specifications for embossed-tape packing (tpl) (tpr) for so6 coupler specifications for embossed-tape packing (tpl) (tpr) for so6 coupler 16.1. 16.1. 16.1. 16.1. applicable package applicable package applicable package applicable package package name so6 product type photocoupler 16.2. 16.2. 16.2. 16.2. product naming conventions product naming conventions product naming conventions product naming conventions type of package used for shipment is denoted by a symbol suffix after a part number. the method of classification is as below. example) TLP2345 (tpl,e(o part number: TLP2345 tape type: tpl [[g]]/rohs compatible: e (note) (note) (note) (note) domestic id (country / region of origin: japan): (o note: please contact your toshiba sales representative for details on environmental information such as the product's rohs compatibility. rohs is the directive 2011/65/eu of the european parliament and of the council of 8 june 2011 on the restriction of the use of certain hazardous substances in electrical and electronics equipment. 16.3. 16.3. 16.3. 16.3. tape dimensions specification tape dimensions specification tape dimensions specification tape dimensions specification table table table table 16.3.1 16.3.1 16.3.1 16.3.1 tape specifications tape specifications tape specifications tape specifications specification tpl tpr division l direction r direction packing amount (a unit per reel) 3000 3000 16.3.1. 16.3.1. 16.3.1. 16.3.1. orientation of device in relation to direction of feed orientation of device in relation to direction of feed orientation of device in relation to direction of feed orientation of device in relation to direction of feed device orientation in the carrier cavities as shown in fig. 16.3.1.1 fig. fig. fig. fig. 16.3.1.1 16.3.1.1 16.3.1.1 16.3.1.1 orientation of device in relation to direction of tape movement orientation of device in relation to direction of tape movement orientation of device in relation to direction of tape movement orientation of device in relation to direction of tape movement 16.3.2. 16.3.2. 16.3.2. 16.3.2. packing quantity packing quantity packing quantity packing quantity reel: 3000 pcs per reel
2013-12-04 rev.1.0 TLP2345 13 16.3.3. 16.3.3. 16.3.3. 16.3.3. empty device recesses empty device recesses empty device recesses empty device recesses table table table table 16.3.3.1 16.3.3.1 16.3.3.1 16.3.3.1 empty device recesses empty device recesses empty device recesses empty device recesses characteristics occurrences of 2 or more successive empty cavities single empty cavity standard 0 6 devices (max) per reel remarks within any given 40-mm section of tape, not including leader and trailer not including leader and trailer 16.3.4. 16.3.4. 16.3.4. 16.3.4. tape leader and trailer tape leader and trailer tape leader and trailer tape leader and trailer the start end of the tape has 50 or more empty cavities. the hub end of the tape has 50 or more empty cavities and two empty turns only for a cover tape. 16.3.5. 16.3.5. 16.3.5. 16.3.5. tape dimensions tape dimensions tape dimensions tape dimensions (1) tape material: plastic (for protection against static electricity) (2) dimensions: the tape dimensions area as shown in table 16.3.5.1 fig. fig. fig. fig. 16.3.5.1 16.3.5.1 16.3.5.1 16.3.5.1 tape forms tape forms tape forms tape forms table table table table 16.3.5.1 16.3.5.1 16.3.5.1 16.3.5.1 tape dimensions (unit: mm, tolerance: tape dimensions (unit: mm, tolerance: tape dimensions (unit: mm, tolerance: tape dimensions (unit: mm, tolerance: 0.1) 0.1) 0.1) 0.1) symbol a b d e f g k 0 dimension 4.0 7.6 5.5 1.75 8.0 4.0 2.6 remark center line of embossed cavity and sprocket hole distance between tape edge and sprocket hole center cumulative error +0.1/-0.3 (max) per 10 empty cavities holes cumulative error +0.1/-0.3 (max) per 10 empty cavities holes internal space
2013-12-04 rev.1.0 TLP2345 14 16.3.6. 16.3.6. 16.3.6. 16.3.6. reel specification reel specification reel specification reel specification (1) material: plastic (2) dimensions: the reel dimensions are as shown in table 16.3.6.1 fig. fig. fig. fig. 16.3.6.1 16.3.6.1 16.3.6.1 16.3.6.1 reel forms reel forms reel forms reel forms table table table table 16.3.6.1 16.3.6.1 16.3.6.1 16.3.6.1 reel dimensions (unit: mm) reel dimensions (unit: mm) reel dimensions (unit: mm) reel dimensions (unit: mm) symbol a b c e u w1 w2 dimension 330 2 80 1 13 0.5 2.0 0.5 4.0 0.5 13.5 0.5 17.5 1.0 16.4. 16.4. 16.4. 16.4. packing (note) packing (note) packing (note) packing (note) either one reel or ten reels of photocouplers are packed in a shipping carton. fig. fig. fig. fig. 16.4.1 16.4.1 16.4.1 16.4.1 1 reel/carton (unit: mm) 1 reel/carton (unit: mm) 1 reel/carton (unit: mm) 1 reel/carton (unit: mm) fig. fig. fig. fig. 16.4.2 16.4.2 16.4.2 16.4.2 10 reel/carton (unit: mm) 10 reel/carton (unit: mm) 10 reel/carton (unit: mm) 10 reel/carton (unit: mm) note: taping reel diameter: 330 mm 16.5. 16.5. 16.5. 16.5. label format label format label format label format (1) carton: the label provides the part number, quantity, lot number, the toshiba logo, etc. (2) reel: the label provides the part number, the taping name (tpl), quantity, lot number, etc.
2013-12-04 rev.1.0 TLP2345 15 16.6. 16.6. 16.6. 16.6. ordering information ordering information ordering information ordering information when placing an order, please specify the part number, tape type and quantity as shown in the following example. example) TLP2345 (tpl,e(o 3000 pcs part number: TLP2345 tape type: tpl [[g]]/rohs compatible: e (note) (note) (note) (note) domestic id (country / region of origin: japan): (o quantity (must be a multiple of 3000): 3000 pcs note: please contact your toshiba sales representative for details on environmental information such as the product's rohs compatibility. rohs is the directive 2011/65/eu of the european parliament and of the council of 8 june 2011 on the restriction of the use of certain hazardous substances in electrical and electronics equipment.
2013-12-04 rev.1.0 TLP2345 16 package dimensions package dimensions package dimensions package dimensions unit: mm weight: 0.08 g (typ.) package name(s) toshiba: 11-4l1s
2013-12-04 rev.1.0 TLP2345 17 restrictions on product use restrictions on product use restrictions on product use 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. toshiba assumes no liability for customers' product design or applications. toshiba assumes no liability for customers' product design or 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 product is neither intended nor warranted for use in equipments or systems that require product is neither intended nor warranted for use in equipments or systems that require 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 extraordinarily high levels of quality and/or reliability, and/or a malfunction or failure of which may extraordinarily high levels of quality and/or reliability, and/or a malfunction or failure of which may 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 cause loss of human life, bodily injury, serious property damage and/or serious public impact cause loss of human life, bodily injury, serious property damage and/or serious public impact cause loss of human life, bodily injury, serious property damage and/or serious public impact ("unintended use"). ("unintended use"). ("unintended use"). ("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 if you use product for if you use product for if you use product for unintended use, toshiba assumes no liability for product. unintended use, toshiba assumes no liability for product. unintended use, toshiba assumes no liability for product. 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 absent a written signed agreement, except as provided in the relevant terms and conditions of sale absent a written signed agreement, except as provided in the relevant terms and conditions of sale 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, for product, and to the maximum extent allowable by law, toshiba (1) assumes no liability whatsoever, for product, and to the maximum extent allowable by law, toshiba (1) assumes no liability whatsoever, 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 including without limitation, indirect, consequential, special, or incidental damages or loss, including including without limitation, indirect, consequential, special, or incidental damages or loss, including 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 without limitation, loss of profits, loss of opportunities, business interruption and loss of data, and without limitation, loss of profits, loss of opportunities, business interruption and loss of data, and 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, (2) disclaims any and all express or implied warranties and conditions related to sale, use of product, (2) disclaims any and all express or implied warranties and conditions related to sale, use of product, (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 or information, including warranties or conditions of merchantability, fitness for a particular or information, including warranties or conditions of merchantability, fitness for a particular or information, including warranties or conditions of merchantability, fitness for a particular purpose, accuracy of information, or noninfringement. purpose, accuracy of information, or noninfringement. purpose, accuracy of information, or noninfringement. 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 toshiba assumes no liability for damages or losses occurring toshiba assumes no liability for damages or losses occurring toshiba assumes no liability for damages or losses occurring as a result of noncompliance with applicable laws and regulations. as a result of noncompliance with applicable laws and regulations. as a result of noncompliance with applicable laws and regulations. as a result of noncompliance with applicable laws and regulations.


▲Up To Search▲   

 
Price & Availability of TLP2345

All Rights Reserved © IC-ON-LINE 2003 - 2022  

[Add Bookmark] [Contact Us] [Link exchange] [Privacy policy]
Mirror Sites :  [www.datasheet.hk]   [www.maxim4u.com]  [www.ic-on-line.cn] [www.ic-on-line.com] [www.ic-on-line.net] [www.alldatasheet.com.cn] [www.gdcy.com]  [www.gdcy.net]


 . . . . .
  We use cookies to deliver the best possible web experience and assist with our advertising efforts. By continuing to use this site, you consent to the use of cookies. For more information on cookies, please take a look at our Privacy Policy. X