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  ta58l05, 06, 08, 09, 10, 12, 15s 2006-11-02 1 1 out mark 3 2 gnd in toshiba bipolar linear integrat ed cir cuit silicon monolithic ta58l05s, TA58L06S, ta58l08s, ta58l09s ta58l10s, ta58l12s, ta58l15s 250 ma low dropout voltage regulator the ta58l**s series consists of fixed-positive-output, low-dropout regulators with an output curre nt of 250 ma (max) that utilize pnp transistors for the output stage. low dropout voltage and standby current make the ta58l**s series suitable for applications requiring low power consumption. features ? maximum output current : 250 ma ? output voltage : 5/ 6/ 8/ 9/ 10/ 12/ 15 v ? output voltage accuracy : v out 3% (@t j = 25c) ? low-dropout voltage : 0.4 v (max) (@i out = 200ma) ? protection function : over curre nt protection/ thermal shutdown/ reverse connection of power supply / 60 v load dump ? package type : to-220nis pin assignment marking note 1: the ? ** ? in each product name is replaced with the output voltage of each product. hsip3-p-2.54a weight : 1.7 g (typ.) lot no. a line indicates lead (pb) - free package or lead (pb) ? free finish. 58l**s part no. (or abbreviation code)
ta58l05, 06, 08, 09, 10, 12, 15s 2006-11-02 2 pin description pin no. symbol description 1 in input terminal. connected by capacitor (c in ) to gnd. 3 gnd ground terminal 2 out output terminal. connected by capacitor (c out ) to gnd. how to order product no. package package type and capacity ta58l**s(q) (note2) to-220nis loose in bag: 50 (1 bag) note 2: the ? ** ? in each product number is replaced with the output voltage of each product. block diagram over current protection over voltage/ thermal shutdown 1 2 3 in out gnd
ta58l05, 06, 08, 09, 10, 12, 15s 2006-11-02 3 absolute maximum rating (ta = 25c) characteristic symbol rating unit dc v in (dc) 29 v input voltage pulse v in (pulse) 60(  =200ms) v output current i out 250 ma operating temperature t opr ?40~105 c junction temperature t j 150 c storage temperature t stg ?55~150 c ta = 25c 2 power dissipation tc = 25c p d 20 w note 3: do not apply current and voltage (including re verse polarity) to any pin that is not specified. note 4: using continuously under heavy loads (e.g. t he 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 temper ature/current/voltage, etc. ) are within the absolute maximum ratings and the operating ranges. 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). thermal characteristics characteristic symbol max unit thermal resistance, junction to ambient r th (j ? a) 62.5 ` / w thermal resistance, junction to case r th (j ? c) 6.25 ` / w protection function (reference) characteristic symbol test condition min typ. max unit thermal shutdown t sd v in = 14 v (05~06s)/ 16 v (08~10s)/ 18 v (12s)/ 20 v (15s) ? 170 ? c peak circuit current i peak v in = 14 v (05~06s)/ 16 v (08~10s)/ 18 v (12s)/ 20 v (15s), t j = 25c ? 600 ? ma short circuit current i sc v in = 14 v (05~06s)/ 16 v (08~10s)/ 18 v (12s)/ 20 v (15s), t j = 25c ? 330 ? ma overvoltage protection v in t j = 25c 29 33 ? v note4: ensure that the devices operate within th e limits of the maximum rating when in actual use. note5: when the input voltage exceeds 29 v, the overvoltage protection circuit is activated to turn off the output voltage.
ta58l05, 06, 08, 09, 10, 12, 15s 2006-11-02 4 ta58l05s electrical characteristics (unl ess otherwise specified, t j = 25c) characteristic symbol test condition min typ. max unit v in = 14 v, i out = 10 ma 4.85 5.00 5.15 output voltage v out 5.35 v < = v in < = 26 v, i out = 10 ma, -40c < = ta < = 105c 4.8 5.0 5.2 v 9 v < = v in < = 16 v, i out = 10 ma ? 1 10 line regulation reg :/ line 5.35 v < = v in < = 26 v, i out = 10 ma ? 2 15 mv load regulation reg :/ load v in = 14 v, 10 ma < = i out < = 250 ma ? 10 30 mv 6 v < = v in < = 26 v, i out = 0 a ? 0.45 1.00 quiescent current i b 6 v < = v in < = 26 v, i out = 250 ma ? 25 50 ma i out = 50 ma ? 0.08 0.20 dropout voltage v d i out = 200 ma ? 0.22 0.40 v TA58L06S electrical characteristics (unl ess otherwise specified, t j = 25c) characteristic symbol test condition min typ. max unit v in = 14 v, i out = 10 ma 5.82 6.00 6.18 output voltage v out 6.35 v < = v in < = 26 v, i out = 10 ma, -40c < = ta < = 105c 5.76 6.00 6.24 v 10 v < = v in < = 17 v, i out = 10 ma ? 1 10 line regulation reg :/ line 6.35 v < = v in < = 26 v, i out = 10 ma ? 2 15 mv load regulation reg :/ load v in = 14 v, 10 ma < = i out < = 250 ma ? 10 30 mv 7 v < = v in < = 26 v, i out = 0 a ? 0.5 1.0 quiescent current i b 7 v < = v in < = 26 v, i out = 250 ma ? 25 50 ma i out = 50 ma ? 0.08 0.20 dropout voltage v d i out = 200 ma ? 0.22 0.40 v
ta58l05, 06, 08, 09, 10, 12, 15s 2006-11-02 5 ta58l08s electrical characteristics (unl ess otherwise specified, t j = 25c) characteristic symbol test condition min typ. max unit v in = 16 v, i out = 10ma 7.76 8.00 8.24 output voltage v out 8.35 v < = v in < = 26 v, i out = 10 ma, -40c < = ta < = 105c 7.68 8.00 8.32 v 12 v < = v in < = 19 v, i out = 10 ma ? 1 10 line regulation reg ? line 8.35 v < = v in < = 26 v, i out = 10 ma ? 2 15 mv load regulation reg ? load v in = 16 v, 10 ma < = i out < = 250 ma ? 10 40 mv 9 v < = v in < = 26 v, i out = 0 a ? 0.55 1.00 quiescent current i b 9 v < = v in < = 26 v, i out = 250 ma ? 25 50 ma i out = 50 ma ? 0.08 0.20 dropout voltage v d i out = 200 ma ? 0.22 0.40 v ta58l09s electrical characteristics (unl ess otherwise specified, t j = 25c) characteristic symbol test condition min typ. max unit v in = 16 v, i out = 10 ma 8.73 9.00 9.27 output voltage v out 9.35 v < = v in < = 26 v, i out = 10 ma, -40c < = ta < = 105c 8.64 9.00 9.36 v 13 v < = v in < = 20 v, i out = 10 ma ? 1 12 line regulation reg ? line 9.35 v < = v in < = 26 v, i out = 10 ma ? 2 20 mv load regulation reg ? load v in = 16 v, 10 ma < = i out < = 250 ma ? 12 40 mv 10 v < = v in < = 26 v, i out = 0 a ? 0.6 1.0 quiescent current i b 10 v < = v in < = 26 v, i out = 250 ma ? 25 50 ma i out = 50 ma ? 0.08 0.20 dropout voltage v d i out = 200 ma ? 0.22 0.40 v
ta58l05, 06, 08, 09, 10, 12, 15s 2006-11-02 6 ta58l10s electrical characteristics (unl ess otherwise specified, t j = 25c) characteristic symbol test condition min typ. max unit v in = 16 v, i out = 10 ma 9.7 10.0 10.3 output voltage v out 10.35 v < = v in < = 26 v, i out = 10 ma, -40c < = ta < = 105c 9.6 10.0 10.4 v 14 v < = v in < = 21 v, i out = 10 ma ? 1 12 line regulation reg :/ line 10.35 v < = v in < = 26 v, i out = 10 ma ? 2 20 mv load regulation reg :/ load v in = 16 v, 10 ma < = i out < = 250 ma ? 12 40 mv 11 v < = v in < = 26 v, i out = 0 a ? 0.6 1.2 quiescent current i b 11 v < = v in < = 26 v, i out = 250 ma ? 25 50 ma i out = 50 ma ? 0.08 0.20 dropout voltage v d i out = 200 ma ? 0.22 0.40 v ta58l12s electrical characteristics (unl ess otherwise specified, t j = 25c) characteristic symbol test condition min typ. max unit v in = 18 v, i out = 10 ma 11.64 12.00 12.36 output voltage v out 12.35 v < = v in < = 26 v, i out = 10 ma, -40c < = ta < = 105c 11.52 12.00 12.48 v 16 v < = v in < = 23 v, i out = 10 ma ? 1 12 line regulation reg :/ line 12.35 v < = v in < = 26 v, i out = 10 ma ? 2 20 mv load regulation reg :/ load v in = 18 v, 10 ma < = i out < = 250 ma ? 20 50 mv 13 v < = v in < = 26 v, i out = 0 a ? 0.65 1.20 quiescent current i b 13 v < = v in < = 26 v, i out = 250 ma ? 25 50 ma i out = 50 ma ? 0.08 0.20 dropout voltage v d i out = 200 ma ? 0.22 0.40 v
ta58l05, 06, 08, 09, 10, 12, 15s 2006-11-02 7 ta58l15s electrical characteristics (unl ess otherwise specified, t j = 25c) characteristic symbol test condition min typ. max unit v in = 20 v, i out = 10 ma 14.55 15.00 15.45 output voltage v out 15.35 v < = v in < = 26 v, i out = 10 ma, -40c < = ta < = 105c 14.4 15.0 15.6 v 19 v < = v in < = 26 v, i out = 10 ma ? 1 12 line regulation reg :/ line 15.35 v < = v in < = 26 v, i out = 10 ma ? 2 20 mv load regulation reg :/ load v in = 20 v, 10 ma < = i out < = 250 ma ? 20 60 mv 16 v < = v in < = 26 v, i out = 0 a ? 0.75 1.40 quiescent current i b 16 v < = v in < = 26 v, i out = 250 ma ? 25 50 ma i out = 50 ma ? 0.08 0.20 dropout voltage v d i out = 200 ma ? 0.22 0.40 v
ta58l05, 06, 08, 09, 10, 12, 15s 2006-11-02 8 electrical characteristics common to all products ? t j = 25c in the measurement conditions of each item is the standard condition when a pulse test is carried out, and any drift in the el ectrical characteristic due to a rise in the junction temperature of the chip may be disregarded. standard application circuit ? place c in as close as possible to the input terminal and gnd. place c out as close as possible to the output terminal and gnd. although capacitor c out acts to smooth the dc output voltage during suspension of output oscillati on or load change, it might cause output oscillation in a cold environmen t due to increased capactor esr. it is therefore recommended to use a capacitor with small variations temperature sensitivity. also, ensure that the regulator performance is satisfactory over the operating temperature range of the target system.. c in 0.1 f in out gnd load c out more than 33 f ta58l**s
ta58l05, 06, 08, 09, 10, 12, 15s 2006-11-02 9 ta58l05s v in = 14 v i out = 5 ma output current i out (a) v out ? i out input voltage v in (v) i b ? v in quiescent current i b (ma) output voltage v out (v) v out ? t j output voltage v out (v) junction temperature t j (c) 4.5 5.5 4.7 5.1 4.9 5.3 0 -50 150 50 100 5.4 5.2 5.0 4.8 4.6 input voltage v in (v) v out ? v in output voltage v out (v) 0 5 6 0 6 10 3 2 2 4 1 4 8 ta58l05s tj = 25 c input voltage v in (v) v out ? v in output voltage v out (v) 0 5 6 0 20 35 3 2 5 4 1 15 30 ta58l05s tj = 25 c 10 25 i out = 0.1 a 5 ma 5 ma i out = 0.1 a 0 5 6 3 2 4 1 0 0.4 0.7 0.1 0.3 0.6 0.2 0.5 ta58l05s v in = 14 v tj = 25 c ta58l05s tj = 25 c i out = 0.1 a 5 ma 0 6 10 2 4 8 0 25 30 5 20 10 15 ambient temperature ta (c ) allowable power dissipation p d max. (w) p d max. ? ta 0 4 8 12 20 24 0 20 40 80 100 120 thermal resistance (c/w) r th(j-c) : 6.25 r th(j-a) : 62.5 16 60 140 160 single ta = tc
ta58l05, 06, 08, 09, 10, 12, 15s 2006-11-02 10 ta58l05s v in = 14 v i out = 0 a 0 5 10 15 25 30 0 0.05 0.15 0.20 output current i out (a ) quiescent current i b (ma) i b ? i out junction temperature tj (c) i peak ? tj dropout voltage v d (v) i peak ? v d peak output current i peak (a) peak output current i peak (a) 20 0.10 0.25 i b ? t j quiescent current i b (ma) junction temperature t j (c) 0 1.0 0.2 0.6 0.4 0.8 0 -50 150 50 100 output current i out (a) v d ? i out dropout voltage v d (v) 0 0.5 0.6 0 0.15 0.25 0.3 0.2 0.05 0.4 0.1 0.10 0.20 junction temperature tj (c) v d ? tj dropout voltage v d (v) 0 0.5 0.6 -50 50 150 0.3 0.2 0.4 0.1 0 100 tj = 25c 85c 0.05 a i out = 0.2 a ta58l05s v in = 14 v ta58l05s tj = 25c 0 20 30 10 0 0.6 0.8 0.4 0.2 ta58l05s v in = 14 v tj = 25c -40c 125c 0 1.0 0.2 0.6 0.4 0.8 -50 50 150 0 100
ta58l05, 06, 08, 09, 10, 12, 15s 2006-11-02 11 package dimensions hsip3-p-2.54a unit : mm weight: 1.7 g (typ.)
ta58l05, 06, 08, 09, 10, 12, 15s 2006-11-02 12 restrictions on product use 20070701-en ? the information contained herein is subject to change without notice. ? toshiba is continually working to improve the quality and reliability of its products. nevertheless, semiconductor devices in general can malfunction or fail due to their inherent electrical sensitivity a nd vulnerability to physical stress. it is the responsibility of the buyer, when utilizing toshiba produc ts, to comply with the standards of safety in making a safe design for the entire system, and to avoid situations in which a malfunction or failure of such toshiba products could cause loss of human life, bodily injury or damage to property. in developing your designs, please ensure that toshiba products are used within specified operating ranges as set forth in the most recent toshib a products specifications. also, please keep in mind the precautions and conditions set forth in the ?handling guide for semiconduct or devices,? or ?toshiba semiconductor reliability handbook? etc. ? the toshiba products listed in this document are in tended for usage in general electronics applications (computer, personal equipment, office equipment, measuri ng equipment, industrial robotics, domestic appliances, etc.).these toshiba products are neither intended nor warranted for usage in equipment that requires extraordinarily high quality and/or reliability or a malfuncti on or failure of which may cause loss of human life or bodily injury (?unintended usage?). unintended usage incl ude atomic energy control instruments, airplane or spaceship instruments, transportation instruments, traffic signal instruments, combustion control instruments, medical instruments, all types of safety devices, et c.. unintended usage of toshiba products listed in his document shall be made at the customer?s own risk. ? the products described in this document shall not be used or embedded to any downstream products of which manufacture, use and/or sale are prohibited under any applicable laws and regulations. ? the information contained herein is presented only as a guide for the applications of our products. no responsibility is assumed by toshiba for any infringement s of patents or other rights of the third parties which may result from its use. no license is granted by implic ation or otherwise under any patents or other rights of toshiba or the third parties. ? please contact your sales representative for product- by-product details in this document regarding rohs compatibility. please use these products in this document in compliance with all applicable laws and regulations that regulate the inclusion or use of controlled substances. toshiba assumes no liability for damage or losses occurring as a result of noncompliance with applicable laws and regulations.


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