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TS324 Quad Operating Amplifier DIP-14 SOP-14 Pin assignment: 1. Output A 14. Output D 2. Input A (-) 13. Input D (-) 3. Input A (+) 12. Input D (+) 4. Vcc 11. Gnd 5. Input B (+) 10. Input C (+) 6. Input B (-) 9. Input C (-) 7. Output B 8. Output C Supply Voltage Range 3 V to 32V Quad Channel Amplifier General Description The TS324 contains four independent high gain operational amplifiers with internal frequency compensation. The four op-amps use a split power supply. The device has low power supply current drain, regardless or the power supply voltage. The low power drain also makes the TS324 a good choice for battery operation. When your project calls for a traditional op-amp function, now you can streamline your design with a simple single power supply. Use ordinary +5V common to practically any digital system or personal computer application, without requiring an extra 15V power supply just to have the interface electronics you need. The TS324 is a versatile, rugged workhorse with a thousand-and-one uses, from amplifying signals from a variety of transducers to dc gain blocks, or any op-amp function. The attached pages offer some recipes that will have your project cooking in no time. The TS358 is offered in 14 pin SOP-14 and DIP-14 package. Features Single supply operation: 3V to 32V Low input bias currents Internally compensated Common mode range extends to negative supply Single and split supply operation Block Diagram Ordering Information Part No. TS324CD TS324CS Operating Temp. 0 ~ +70 oC Package DIP-14 SOP-14 Absolute Maximum Rating Supply Voltage Differential Input Voltage (note 1) Input Common Mode Voltage Range (note 2) Input Forward Current (note 3) Output Short Circuit Duration Operating Junction Temperature Range Storage Temperature Range Vcc, Vcc/Vee VIDR VICR Iif Isc TJ TSTG +32 or 16 32 -0.3 to 32 50 Continuous 0 ~ +125 -65 ~ +150 Vdc Vdc Vdc mA mA o o C C NOTE : 1. Split Power Supplies. 2. For supply. Voltages less than 32V for the PJ324 the absolute maximum input voltage is equal to the supply voltage. 3. This input current will only exist when the voltage is negative at any of the input leads. Normal output states will reestablish when the input voltage returns to a voltage greater than -0.3V. TS324 1-6 2003/12 rev. A Electrical Characteristics (VCC = 5V, Ta=25 C; unless otherwise specified.) Characteristics Input Offset Voltage VCC= 5.0V to 30V, VIC= 0V to Vcc -1.7 V, Vo= 1.4V, RS= 0 TLOW Ta THIGH Average Temperature Coefficient of Input Offset Voltage Input Offset Current TLOW Ta THIGH Average Temperature Coefficient of input Offset Current Input Bias Current TLOW Ta THIGH Input Common-Mode Voltage Range (Note1) VCC = 30 V VCC = 30 V, TLOW Ta THIGH Differential Input Voltage Range Large Signal Open-Loop Voltage Gain RL = 2.0K, VCC =15V, For Large VO Swing, TLOW Ta THIGH Channel Separation 1.0 KHz to 20KHz Common Mode Rejection Ratio RS 10 k Power Supply Rejection Ratio Output Voltage -- High Limit VCC = 30 V, RL = 2 k VCC = 30 V, RL = 10 k Output Voltage -- Low Limit VCC = 5.0 V, RL = 10 k Output Source Current VID=+1.0V,VCC=15V Output Sink Current VID = -1.0 V, VCC = 15 V VID = -1.0 V, VO = 200 mV Output Short Circuit to Ground (Note 2) Power Supply Current , VCC = 30 VVO = 0 V, RL = IOS ICC -1.5 3.0 mA IO+ IO10 12 -20 50 40 --60 mA uA mA 20 40 -mA VOL PSRR VOH 26 27 --28 5.0 --20 mV 65 100 -dB V CMRR 65 70 -dB -VIDR AVOL 25 15 -100 --120 ---dB V/mV VICR 0 0 ----28.3 28 VCC V V Iio/T IIB Iio/T Iio Vio -------2.0 -7.0 5.0 -10 45 50 7.0 9.0 -50 150 --250 -500 pA/ C uA o o Symbol Min Typ Max Unit mV uV/ C nA o VCC = 5.0 V, VO = 0 V, RL = -0.7 1.2 Notes : 1. The input common mode voltage or either input signal voltage should not be allowed to go negative by more than 0.3 V. The upper end of the common mode voltage range is Vcc 17V, but either or both inputs can go to +32V. 2. Short circuits from the output to Vcc can cause excessive heating and eventual destruction. Destructive dissipation can recruit from simultaneous shorts on all amplifiers. TS324 2-6 2003/12 rev. A Circuit Description The TS324 made using four internally compensated, two-stage operational amplifiers. The first stage performs not only the first stage gain function but also performs the level shifting and transconductance reduction functions. By reducing the transconductance, a smaller compensation capacitor (only 5.0pF) can be employed, thus saving chip area. Another feature of this input stage is that the input common mode range can include the negative supply or ground, in single supply operation, without saturating either the input devices or the differential to single-ended converter. The second stage consists of a standard current source load amplifier stage. Each amplifier is biased from an internal-voltage regulator, and which has a low temperature coefficient thus giving each amplifier good temperature characteristics as well as excellent power supply rejection. Electrical Characteristics Curve TS324 3-6 2003/12 rev. A Circuit Description TS324 4-6 2003/12 rev. A Circuit Description (continued) TS324 5-6 2003/12 rev. A SOP-14 Mechanical Drawing A SOP-14 DIMENSION DIM MILLIMETERS MIN 8.55 3.80 1.35 0.35 0.40 MAX 8.75 4.00 1.75 0.49 1.25 INCHES MIN 0.337 0.150 0.054 0.014 0.016 MAX 0.344 0.157 0.068 0.019 0.049 14 8 B P A B C D F R M F 1 7 C G D K G K M P R 1.27 (typ) 0.10 0.25 0o 5.80 0.25 7o 6.20 0.50 0.05 (typ) 0.004 0.009 0o 0.229 0.010 7o 0.244 0.019 DIP-14 Mechanical Drawing A DIM 14 1 8 B DIP-14 DIMENSION MILLIMETERS INCHES MIN 18.55 6.22 3.18 MAX 19.56 6.48 4.45 MIN 0.730 0.245 0.125 MAX 0.770 0.255 0.135 7 A B C D G J J K L C 0.35 0.55 2.54 (typ) 0.29 3.25 7.75 0.31 3.35 8.00 10o 0.019 0.020 0.10 (typ) 0.011 0.128 0.305 0.012 0.132 0.315 10o K L M G D M TS324 6-6 2003/12 rev. A |
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