CA2904 HARRIS | Alldatasheet
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HARRIS CA158, CA158A, CA258, CA258A, CA358, Senatoonsuvetor CA358A, CA2904, LM358, LM2904 Data Sheet April 1999 File Number 1019.5 Dual, 1MHz, Operational Amplifiers for Features Commercial Industrial, and Military + Internal Frequency Compensation for Unity Gain
Applications
+ High DG Voltage Gain .... : 100dB (Typ) The CA158, CA158A, CA258, CA258A, CA358, CA358A . . . : internally frequency compensated operational amplifiers + Wide Power Supply Range: power supply over a wide range of voltages. They may also recommended voltage range. + Low Input Bias Current These devices are particularly useful in interface circuits with + Low Input Offset Voltage and Current digital systems and can be operated from the single common 5VDC power supply. They are also intended for * Input Common-Mode Voltage Range Includes Ground transducer amplifiers, DC gain blocks and many other + Differential Input Voltage Range Equal to V+ Range conventional op amp circuits which can benefit from the The CA158, CA158A, CA258, CA258A, CA358, CA358A, Ordering Information and CA2904 types are an equivalent to or a replacement for PART TEMP. pKa. the Inausty types 168, 156A, 258, 252A, 368, 258A, and CA2904. leaner [seis arora] Technical Data on LM Branded types Is identical to the corresponding CA Branded types. Pinouts one rope JoactsaaT es toes [arncm [rec | TOP VIEW |CAO158AT 55 to 125 |8 Pin Can T8.C (—_") v@ ( (®]v- — az neme [0 vas lotsror fens A158, CA258, CA35A (PDIP, SOIC) TOP VIEW ° [ees | ourpur (a) 7} — fa] v+ INV. INPUT (A) ALS Ga OUTPUT (B) NON-INV. INPUT (A) aia INV. INPUT (B) v cj Ths NONGINV. INPUT (B) 1 CAUTION: These devices are sensitive to electrostatic discharge; follow proper IC Handling Procedures. 4-800-4: HARRIS or 407-727-9207 | Copyright © Harts Corporation 1999
CA158, CA158A, CA258, CA258A, CA358, CA358A, CA2904, LM358, LM2904 Absolute Maximum Ratings Thermal Information Supply Voltage ‘Thermal Resistance (Typical, Note 3) ja (PCW) jc CCW) CA2904, LM2904 26V of #13V PDIP Package 130 NA Other Types S2V or 416V SOIC Package... eee 170 NA Input Voltage 0.3V to V+ Maximum Junction Te jature (Can Package) 175°C Input Current (V| <-0.3V, Note 1) 0.6.6 e ee eee eee SOMA Maximum Junction Temperature (Plastic Package) 150°C Operating Conditions (SOIC - Lead Tips Only) ‘Temperature Range CA158, CA158A. 55°C fo 125°C CA258, CA25BA. -25°C to 85°C CAUTION: Stresses above those listed in “Absolute Maximum Ratings” may cause permanent damage to the device. This is a stress only rating arnd operation of the device at these or any other conditions above those indeated in the operational sections of this specilication is not implied. NOTES: 1. This input current will only exist when the voltage at any of the input leads is driven negative. This current is due to the collector base junction of the Input PNP transistors becoming forward biased and thereby acting as input diode clamps. In addition to this diode action, there Is also lateral NPN parasitic transistor action on the IC chip. This transistor action can cause the output voltages of the amplifiers to go to the V+ voltage level (or to ground for a large overdrive) for the time duration that an input is driven negative. This transistor action is not destructive and normal output states will re-establish when the input voltage, which was negative, again returns to a value greater than -0.3V. 2. The maximum output current is approximately 40mA independent of the magnitude of V+. Continuous short circuits at V+ > 15V can cause ‘@xcassive power dissipation and eventual destruction. Short circuits from the output to V+ can cause overheating and eventual destruction of the device. Destructive dissipation can result from simultaneous short circuits on both amplifiers. 3. @, is measured with the component mounted on an evaluation PC beard in free air. Electrical Specifications — Values Apply for Each Operational Amplifier. Supply Voltage V+ = 5V, V- = OV, Unless Otherwise Specified [__enasen [cnn test |rewe|__CA504 a a Average Input Offset | Rg = 00 Full 7 15 7 15 7 | 2 |pvec Voltage Drift Input Gommon Mode | V+ = 30V 25 ~ |Ve1.5 [Ves - [Vets] Vv Common Mode pc 70 70 Rejection Ratio fais eesion Po epee eye peed pe Ratio Cet anote 4) jive | eer P| - | 2 | | - | |e | - | 4 | 100] ma | [iver en | | ao | to | = | oo | too | = | oo | a0 | a | raider fier sft -~f2fol-fefsl-[=|=| «| Current Average Input Offset Full 10 parc Current Drift Large Signal Voltage | RL > 2k, V+=15V | 25 100 100 kv Gain (For Large Vo Swing) 2 | BARRIS
CA158, CA158A, CA258, CA258A, CA358, CA358A, CA2904, LM358, LM2904 Electrical Specifications — Values Apply for Each Operational Amplitier. Supply Voltage V+ = SV, V- = OV, Unless Otherwise Specified (Continued) [__enasen [cnn] test |remp| __oAt54 Output = Source. | V+ = +1, V|-= OV, 20 Current V4 = 15V Sink Vie = OV, Vir = 1V, 25 mA V4 = 15V Vit = OV, Vi = 1, 12 HA Vo = 200mV Short Circuit RL =02 Output Current (Note 2) Crosstalk f= 1 to 20kHz (Input Rete: eu) rsevessov [ru | - [as | oo | = fos fo | [as] 2 [me | NOTES: 4. Due to the PNP input stage the direction of the input current is out of the IC. No loading change exists on the input lines because the current is essentially constant, independent of the state of the output. 5. The input signal voltage and the input common mods voltage should not be allowed to go negative by more than 0.3V. The positive limit of the ‘common mode voltage range is V+ - 1.5V, but either or both inputs can go to +32V without damage. Electrical Specifications Values Apply for Each Operational Amplifier. Supply Voltage V+ = 5V, V- = OV, Unless Otherwise Specified test temp |__0A158, A258 A358, LM358 CAzg04, LM2904 parameter | conorrions _|"eo) | wm | rwr [ wax | win [ rye [ wax | we | 1¥° | wax | i Ne seen A Average Input Offset Full 7 7 7 uVvec Voltage Drift Input Common Mode | V+ = 30V Ve- Ve- vee] ov Voltage Range (Note 8) 15 15 15 wea [eee fwepe | [wale] wal v | Common Mode bc 70 70 70 Rejection Ratio Power Supply Rejection | DC 100 100 100 Ratio rou Bi re creme? fiver rn || ao | coo | = | ao | soo | | ao | 0 | on | iow o pe} - |e feof - fs fo]. fs | | jer fe | | =f too fT fas as | a0 | na Average Input Offset Cur- Full pA rent Drift Large Signal Voltage | Ry 2 2k. V+ = 15V 100 100 kv Gain (For Large Vo Swing) Output Voltage Swing | Ry = 2k Ve- Ve ve- | ov 15 15 15 3 | BARRIS
CA158, CA158A, CA258, CA258A, CA358, CA358A, CA2904, LM358, LM2904 Electrical Specifications — Values Apply for Each Operational Amplifier. Supply Voltage V+ = 5V, V- = OV. Unless Otherwise Specified (Continued) ee TEST TEMP ia 29) ae Output Source [Vj =+1V, Vp = OV, Current V+ =15V Sink Vie = OV, Vi-= 1V, mA V+ = 15V Vit = OV, Vi-= 1V, HA Vo = 200mV Short Circuit RL =0Q mA Output Current (Note 2) Crosstalk {= 1 to 20kHz “120 (Inpul Referred) NOTES: 7. Due fo the PNP input stage the direction of the input current is out of the IC. No loading change exists on the input lines because the current is. essentially constant, independent of the state of the output. 8. The input signal voltage and the input commen mode voltage should not be allowed to go negative by more than 0.3V. The positive limit of the ‘common mode voltage range is V+ - 1.5V. but either or both inputs can go to +32V without damage. 9. Vo = 1.4V, Rg = 02 with V+ from 5V to 30V, and over the full input common mode voltage range (OV to V+ - 1.5V) Schematic Diagram ONE OF TWO OPERATIONAL AMPLIFIERS To2 Q Q Q | 100 O) O) OD} 14 owe Ccome ot -® Qs INPUTS | a | Ow O13 S| 5 7 8 ” To2 4 | HARRIS
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FIGURE 1. INPUT VOLTAGE RANGE vs SUPPLY VOLTAGE FIGURE 2. INPUT CURRENT vs AMBIENT TEMPERATURE
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FIGURE 3. SUPPLY CURRENT DRAIN vs SUPPLY VOLTAGE FIGURE 4. COMMON MODE REJECTION RATIO vs INPUT FIGURE 5. VOLTAGE GAIN vs SUPPLY VOLTAGE FIGURE 6. OPEN-LOOP FREQUENCY RESPONSE
CA158, CA158A, CA258, CA258A, CA358, CA358A, CA2904, LM358, LM2904 Typical Performance Curves (continued) e=—ToTT TT PEE pe PAA TTT pot | | PALIT 2 2COCCEES MEE TEMPERATURE (°C) FIGURE 13, OUTPUT CURRENT vs AMBIENT TEMPERATURE Metallization Mask Layout 0 10 20 30 40 50 60 66 nl 70 — 2h A ae «Pies ess 30 — isles! aise ie ora avo 63-71 (1.600 - 1.803) Dimensions in parentheses are in millimeters and derived from the basic inch dimensions as indicated. Grid gradua- tions are in mils (10° inch). ‘The photographs and dimensions represent a chip when it is part of the wafer. When the wafer is cut into chips, the cleavage angles are 57° instead of 90° with respect to the face of the chip. Therefore, the isolated chip is actually 7mils (0.17mm) larger in both dimensions. 7 | HARRIS