TA75558P TOSHIBA | Alldatasheet
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TOSHIBA BIPOLAR LINEAR INTEGRATED CIRCUIT SILICON MONOLITHIC TA75558P, TA75558S, TA75558F DUAL OPERATIONAL AMPLIFIER The TA75558P, TA75558S and TA75558F are Low-Noise TA75558P Operational Amplifiers with High Speed and Wide Bandwidth.
FEATURES
@ Internal Frequency Compensation Type © Pin Compatible with TA75458P, TA75458S and TA75458F DIP8-P-300-2.54A © Possible to Exchange the Position of 9 Pin for 1 Pin TA755585 Because of Pin Connection Being Symmetric. SE (TA75558S Device Only) ee @ Wide Band Range : fy =3MHz (Typ) p— @ Suitable Application for Active Filter Equalizer Amplifier } || and Headphone Amplifier. i y ' SIP9-P-2.540, TA7S558F fj Ev US SOP8-P-225-1.27 Weight DIP8-P-300-2.54A : 0.5g (Typ.) SIP9-P-2.54A : 0.9g (Typ.) SOP8-P-225-1.27 : 0.1g (Typ.)
961001 EBA
@ TOSHIBA is continually working to improve the quality and the reliability of its products. Nevertheless, semiconductor devices in general can malfunction or fail due to their inherent electrical sensitivity and vulnerability to physical stress. It is the responsibility of the buyer, when utilizing TOSHIBA products, to observe standards of safety, and to avoid situations in which a malfunction or failure of a TOSHIBA product 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 products specifications. Also, please keep in mind the precautions and conditions set forth in the TOSHIBA Semiconductor Reliability Handbook. gr products described in this document are subject to foreign exchange and foreign trade control laws. The information contained herein is presented oniy as a guide for the applications of our products. No responsibility is assumed. by TOSHIBA CORPORATION for any infringements of intellectual property or other rights of the third parties which may result from its use. No license is granted by implication or otherwise under any intellectual property or other rights of TOSHIBA CORPORATION or others. @ The information contained herein is subject to change without notice. 1998-02-20 1/11
PIN CONNECTION (TOP VIEW) TA75558F TA75558P 8 32 2 8 3 2 2 ORORORO ef 5 5 $ << < 3 L Ry 5 2 5 B= ° z z - = TA75558S ORORONOROROROROMO y < < < 4“ o o o y SsrteF zr s Sz 2 z 2° EQUIVALENT CIRCUIT es a IN(+) AO rf a | { O IN(+)B oo OT
MAXIMUM RATINGS (Ta = 25°C) TA75558P CHARACTERISTIC SYMBOL TA75558F UNIT Supply Voltage [ve | - | - | ™ Differential Input Variage Input Voltage Vcec~VEE Vcc~VEE [Power Disipation | Pp | 500 [ 240 | mw] Storage Temperature = 55~125 —55~125 ELECTRICAL CHARACTERISTICS (Vcc =15V. Veg=-15V. Ta =25°C) TEST CHARACTERISTIC SYMBOL TEST CONDITION ran, | ve, | ma UNIT CUIT Taput Offset Voage | Vig] 1 [gS OR finput offset current —[ yg 2] 200 | input Bias Current | | 2] =| =| 60] 500 | na _| Common Mode Input + +. Maximum Output R= 70K wpe] — | Vv wore fR=2en sis] — | source current | “touree | @ | > |e] ma Sink Curent [ne [7 [ao a Voltage Gain (Open G Vv = +410V, Rp=2kQ Loop) iV ‘OUT L Common Mode Input < Signal Rejection Ratio CMRR 3 [Rg 10k 70 Supply Voltage < Rejection Ratio SVRR Rg= 10kQ 30 yNIV Siew Rate 5R[ 3 eye, Rp sak Soap ae Unity Gain Cross Supply Current a a a Equivalent Input Noise _ Voltage Vn Rg = 1kQ, f=30Hz~30kHz 2.5 +Vrms 7998-02-20 3/11
(1) Vio. SVRR * Vio=VouT/ 100 « SVRR=20fog E (dB) Vee ° E=| Vout1- Vout2 Ix 1 wa “(Veer -Vee1) - (Vec2 -Vee2) © 100 toner [| Vout1 : Vout (Vcc, Vee = +8V) [ao [> Vout2 : Vout (Vcc, VeE= +18V) Vec1 =: Vec=-8V g O Vvour Veer: VEE=-8V i Vec2 : Vec= +18V ° v : Veg = -18V Vee EE2 EE (2) |, lo Vee Yee z iM ho=lh(-)-h(+)l Ver Vee (3) CMVin, CMRR vee. 1MQ, * CMRR=20€0g Gp/Gc (dB) 10K ne Gp : DIFFERENTIAL VOLTAGE GAIN Fiano [> Gc : COMMON MODE VOLTAGE GAIN 5 + CMVin : Vin=—12V, 12V SUPPLIES Vin 3 O vour I 7! Vee 1998-02-20 4/11
(4) Ie Vee * lec: Voc, VeeE= + 15V VEE (5) Gy, fr Vee * Gy=20f0g e9/ ej (dB) R>1/We4 fey R C1: COUPLING CONDENSER fi C2: HIGH FREQUENCY BYPASS CONDENSER a 20 * ff : INPUT FREQUENCY AT ej =€9 VEE (6) Vom. VomR vec * Vom: (+): SW1 IS SIDE A, Sw2 IS SIDE A (-): SW1 IS SIDE B, SW2 IS SIDE A * Vomre : (+): SW1IS SIDE A, SW2 IS SIDE B Ps (-): SW1 IS SIDE B, SW2 IS SIDE B A é B sw2 I, ad oa se gw gS if KE op 2 Vee wv | 1998-02-20 5/11
(7) Isink Vcc +1V. : Isink VEE (8) Isource Voc I” ? lsource VEE (9) SR Voc (O) or a? oureut WAVEFORM IL * S . 10% oF INPUT WAVEFORM © Vee 1998-02-20 6/11
Gy -f » Vop-p — RL 1204 OE crv very TIT TT TTT seg NET TY sees ose 2 ye I TTT & HENGE EH es Lee TIC g Coe pS ce en DY: ae
2 COCO PN Ee a LH
gy gt tTTN TTT TT e. (Li Tih & “CEPT TPN ry 2é J JT IY 2 og HHP ENT ee 2 HEH ESA? WZ eo a = ee ee CCC 3 otET PTT Tt tr N | wL_I/T TEE TET 1 10 100, tk 10k 100k 1M. 10M 04 03 OS 1 3 5 10 FREQUENCY f (Hz) LOAD RESISTANCE Ri (kQ) vi - f Vom ~ Vcc. VEE SE Vec= 15 ~ ELE IKW so vers Sv TTT KW
3 NEI rT #32500 BTA QWV
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01 305 «10 30 50 100 300500 1k 6 +8 £10 £12 214 216 £18 FREQUENCY f (Hz) SUPPLY VOLTAGE Vcc, Veg (V) Vop-p - f | - Ta 28) 80 a [TTL LLLL Ive ee ae a | Coe ec wiv = ee 2 TTP fl wesc g atte ttt te S QS 2 ee = eo SCTE ss ttt tree yy 5 Ss — fee | 2 op |] Pett ttt eee a | ee as “OT Pr g rPreeeeeeet Lon g yt ttt - “CCOCCCeee eee 2 veewtsw | {fff KL 2 off) ttt treo 5 al vee=-tv || | Tt yt INT 2 30 = 3 a FP COC eee geese FE LEE 1 10 100 tk 10k 100k 1M 40 -20 0 20 40 60 80 FREQUENCY f (Hz) AMBIENT TEMPERATURE Ta (°C) 1998-02-20 7/11
600; [TT TT TT 7 eect air
2 CINCO
2 300] ~
5 ERENCE
& Pees HEL EE 4 2 tt TTP oS eT Pi yt tty yy ey yy o LLP i ttt iy ti ti AMBIENT TEMPERATURE Ta (°C) 1998-02-20 8/11
DIP8-P-300-2.54A Unit : mm A fh Ch ° | ag 5) g 2 3 =8 | S - $9 p= y LT CIty UO i 4 ° 10.1MAX = | iH N38 Ws oY sf g EAL Cask 8 Zz 2 Z i 3 d —s oO 0.99TYP 0.520. 1TH EG 1.240.1 Weight : 0.5g (Typ.) 7998-02-20 9/11
SIP9-P-2.54A Unit : mm Pl 3 >) wl 2 ee | n N g 0.98TYP 0.2578-55 : {$100.25 @) : 1,240.1 22.78MAX 22.28+0.2 en 1 9 Weight : 0.9g (Typ.) 1998-02-20 10/11
SOP8-P-225-1.27 Unit : mm 8 5 HAAS J a} © = u , wall = ~l|| Sd) x ia H S 1 4 5.5MAX 5.0+0.2 N x 19 <x ne ‘oat | ¥ = 3 eo] 3 a 0.525+0.2 Weight : 0.1g (Typ.) 1998-02-20 11/11