MC3301 MOTOROLA | Alldatasheet

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. QUAD Quad Single Supply OPERATIONAL AMPLIFIERS Operational Amplifiers SILICON MONOLITHIC These internally compensated Norton operational amplifiers are designed INTEGRATED CIRCUIT specifically for single positive power supply applications found in industrial contro! systems and automotive electronics. Each device contains four independent amplifiers — making it ideal for applications such as active filters, multi-channel amplifiers, tachometers, oscillators and other similar usage. N.PSUFFIX © Single Supply Operation PLASTIC PACKAGE © Internally Compensated u CASE 646 ‘© Wide Unity Gain Bandwidth: 4.0 MHz Typical : © Low Input Bias Current: 50 nA Typical © High Open-Loop Gain: 1000 V/V Minimum psurrx | © Large Output Voltage Swing: (Voc — 1) Vp-p PLASTIC PACKAGE, Ff | CASE 751A (SO-14) PIN CONNECTIONS, Input 1» (71 14] Voc inpat2| [2+ 1] inp Iv 1 | Noninv | iw | 4 TT ee iG A |i | a | Mt pts CB! pal) s | oa [7 8) outa (Top View) | MAXIMUM RATINGS | eal 9 b LM3900 Supply Votage Inpacureniinserin-) | te [soma | Joumecuren | ig | so ma Power Dissipation (Tq = +25°C)| Pp 625 mw ORDERING INFORMATION Derate above Ta = +25°C VRAJA 5.0 mwrc Device Package ‘Ambient Temperature Range Ta °c TM3900D M2900 4010 | 4010 MC3401D 10 470°C So-14 85 | +85 TMa900N Orow ‘LM3900 Oto +70 010 +70 MC3401P- Plastic eSSSSSSSSSSssSSsssSSsSSsSSSSSSSSSSS MOTOROLA LINEAR/INTERFACE ICs DEVICE DATA 2-144

MC3301, MC3401, LM2900, LM3900 ELECTRICAL CHARACTERISTICS (Voc = +15 Voc, Ry = 5.0 Kk. Ta = +25°C [each amples, unless otherwise noted.) Pole ele 4 Symon | win [rye [er [win [yp Tumor | win [yp [ite Jn [tym [mex | pen-Loop Voltage Gain VOL Vin {100 He A = 50k TA Thow to Thigh Notes 1, 2) ra Reet : [=e I Pa for ho [= ae] jowearessnne Te | = foo [== Foo J foo | J oo ‘Input Bias Current (inverting Input) 300 | nA Ta= Tow 0 Thigh (Neto 1) 500 ‘Siew Rate = 100 pF, R= 20K) Vs | Postve Guiput Swing - Negative Output Swing = Sevomey | aw [ae | = Peo [= [ao P= oo | = ie Output Vottage Swing (Note 7) v Vog= +15 WR =20k Vout High (is — = 0. lg += 0) Vou “2 135 | 142 135 | 142 ta2| — | Vout ow lin —= 10 ns 0) | Vo 003 = | eos = | 003 003 | o2 Vog * Maximum Rating, Ry =" | Vout High (in = 0. lin == 0) You 205 — jas — | ess 155 | — Output Current ma | Source 'source 10 60 | 10 10 so | 10 | — | Sink (Note 3) iSink 087 05 | 087 087 05 jos | — | Low Level Output Current io 50 — | 80 50 = | s0) = | lin = 50 HA, Von = 10 | ‘Supply Curren (Al Four Ampitiers) ma | Noninverting Inputs Open bo 69 | 10 | — | 69 69 | 10 69 | 10 Noninverting inputs Grounded og 7a | 14 | = | 78 78 | 14 78 | 14 Aoseortomaentnoo | re [—[s|—-]|-[[-]-[s|-[-[e]—te] Miror Gain (Tp = Tw 10 Thigh Notes 1.4) | A [ua | naa 00a 290 th [oo | 1 aso | 10 | 11 Jos | 10 | 10 | ‘AMicror Gain (Ta =Tiow t0 Thigh Notes 1.4) | AA, 20 % 20UA Sl +S 200 uA wrocwenToweTagibowsisl |_| — Pw |e |— we fap- fw [so}— pw pe to Note Gren 8 es ee ee NOTES: 1. Tlow = 40°C for LM2900, MC3301 Thigh = +85°C for LM290, MC3301 = 0°C for LM3900, MC3401 = +70°C for LM3900, MC3401 2. Open-Loop voltage gain is defined as voltage gain from the inverting input io the output 3. Sink currents specified for inear operation. When the device is used as a comparator (non-linear operation) where the inverting input is overdriven, the sink current (low lovel output current) capability is typically §.0 ma 4. This specification indicates the current gain ofthe current mirror which is used as the noninverting input 5. Input Vag match between the noninverting and inverting inputs occurs for a miror current (noninverting input current) of approximately 10nA 5. Clamp transistors are included to prevent the input voltages from swinging below ground more than approximately -0.2 V. The negative input currents that may result trom large signal overérve with capactive input coupling must be limited externally o values of approximately 1.0mA. if more than one of the input terminals are simultaneously criven negative, maximum currents ara reduced. Common mode biasing can be used to prevent negative input voltages. 7. When used as a noninverting amplifer, the minimum output voltage Is the VE of the inverting input transistor. re MOTOROLA LINEAR/INTERFACE ICs DEVICE DATA 2-145

Figure 1. Open-Loop Voltage Gain Figure 2. Open-Loop Voltage Gain

8 ACI 8 aT

2 A rt {| | | TT Ty yy

Figure 3. Output Resistance Figure 4. Supply Current versus

2 FN 8 a0 Pp jat

3 HEH HH 3 20 oe

Figure 5. Linear Source Current Figure 6. Linear Sink Current

Figure 11. The purpose of this circuity is to provide biasing age drops across CR2, CR3 and CR4, minus the VE drops PNP current sources (QS, ect.) are set to the magnitude respect to ground. Figure 10. A Basic Operational Amplifier Figure 11. Biasing Circuitry

2 Vee 2 Vcc

  1. Output Q-Point Biasing Choosing the feedback resistor (Rj) to be equal to 1/2 Rr

However, in terms of loop gain considerations it is of the output voltage. (Rr) allowing the input current, (lin*) to be within the A; is the current mirror gain.

Figure 19. Logic “NAND” Gate (Large Fan-In) Figure 20. Logic “NOR” Gate Figure 21. R-S Flip-Flop Figure 22. Astable Multivibrator Figure 23. Positive-Edge Ditferentiator Figure 24. Negative-Edge Differentiator

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