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Standaed ICs Dual high slew rate, low noise operational amplifier BA15218 / BA15218F / BA15218N The BA15218, BA15218F, and BA15218N are monolithic ICs with two built-in low-noise, low-distortion operational amplifiers featuring internal phase compensation. Either a dual or single power supply can be driven, and these products can be driven by a digital system 5V single power supply. The following packages are available: 8-pin DIP (BA15218), 8-pin SOP (BA15218F), and 8-pin SIP (BA15218N). *Features operation and single power supply drive 1) Low-voltage enabled. (Single power supply: 4 to 32V, dual power supply: 3 to 16V) 2) Low noise level. (Vn = 1.0Vrms typ. : RIAA) 3) High slew rate. (SR = 3V / s, GBW = 10MHz typ.) 4) Low offset voltage. (VIO = 0.5mV typ.) 5) High gain and low distortion. (GVO = 110dB, THD = 0.0015%) 6) Pin connections are the same as with standard dual operational amplifiers, and outstanding characteristics make these products compatible with the 4558 and 4560 models. *Block diagram BA15218 / BA15218F BA15218N OUT1 1 8 VCC + 1ch - + 2ch - - IN1 2 - + IN1 3 1ch + 2ch + - 7 OUT2 6 - IN2 1 2 3 4 5 6 7 OUT2 OUT1 + IN1 + IN2 - IN1 - IN2 VCC VEE VEE 4 5 + IN2 8 1 Standaed ICs BA15218 / BA15218F / BA15218N *Internal circuit configuration VCC R1 Q5 Q8 Q11 - IN Q1 Q2 Q10 + IN C2 R5 R7 D1 Q3 C1 Q4 R8 Q14 Q15 R9 OTHER CH Q9 R6 Q13 Q18 Q19 Q16 Q17 Q6 Q7 R4 Q12 R2 VEE R3 OUT *Absolute maximum ratings (Ta = 25C) Parameter Power supply voltage Power dissipation Differential input voltage Common-mode input voltage Load current Operating temperature Storage temperature Symbol VCC Pd VID VI IOMAX Topr Tstg Limits BA15218 18 800 VCC - VCC ~ VCC 50 - 40 ~ + 85 - 55 ~ + 125 BA15218F 18 550 VCC - VCC ~ VCC 50 - 40 ~ + 85 - 55 ~ + 125 BA15218N 18 900 VCC - VCC ~ VCC 50 - 40 ~ + 85 - 55 ~ + 125 Unit V mW V V mA C C Refer to Pd characteristics diagram. The values for the BA15218F are those when it is mounted on a glass epoxy board (50mm x 50mm x 1.6mm). 2 Standaed ICs BA15218 / BA15218F / BA15218N *Electrical characteristics (unless otherwise noted, Ta = 25C, VCC = +15V, VEE = -15V) Parameter Input offset voltage Input offset current Input bias current High-amplitude voltage gain Common-mode input voltage Maximum output voltage Maximum output voltage Common-mode rejection ratio Power supply voltage rejection ratio Quiescent current Slew rate Channel separation Voltage gain band width Input conversion noise voltage Symbol VIO IIO IB AV VICM VOH VOL CMRR PSRR IQ S.R. CS GBW Vn Min. -- -- -- 86 12 12 10 70 76 -- -- -- -- -- Typ. 0.5 5 50 110 14 14 13 90 90 5 3 120 10 1.0 Max. 5 200 500 -- -- -- -- -- -- 8 -- -- -- -- Unit mV nA nA dB V V V dB dB mA V / s dB MHz Vrms RL RL RS RS 10k 2k 10k 10k RL RS 10k -- -- 2k, VO = 10V -- Conditions VIN = 0V, RL = AV = 1, RL = 2k f = 1kHz input conversion f = 10kHz RIAA, RS = 1k, 10Hz ~ 30kHz *Electrical characteristic curves 1200 QUIESCENT CURRENT: IQ (mA) POWER DISSIPATION: Pd (mW) 8 OPEN LOOP VOLTAGE GAIN: Av (dB) 0 10 POWER SUPPLY VOLTAGE: V (V) 140 120 100 80 60 40 20 0 1000 BA15218N 800 BA15218 600 400 BA15218F 6 4 2 200 0 0 25 50 75 85 100 125 150 AMBIENT TEMPERATURE: Ta (C) 0 20 1 10 100 1k 10k 100k 1M 10M FREQUENCY: f (Hz) Fig.1 Power dissipation vs. ambient temperature Fig.2 Quiescent current vs. power supply voltage Fig.3 Open loop voltage gain vs. frequency 3 Standaed ICs BA15218 / BA15218F / BA15218N 32 MAXIMUM OUTPUT VOLTAGE: VOM (V) INPUT BIAS CURRENT: IB (nA) 28 24 20 16 12 8 4 0 100 1k 10k 100k 1M 80 INPUT BIAS CURRENT: IB (nA) 0 20 40 60 80 100 75 60 50 40 25 20 - 20 0 10 20 30 40 FREQUENCY: f (Hz) AMBIENT TEMPERATURE: Ta (C) POWER SUPPLY VOLTAGE: V+ (V) Fig.4 Maximum output voltage vs. frequency Fig.5 Input bias current vs. ambient temperature Fig.6 Input bias current vs. power supply voltage OUTPUT VOLTAGE VOUT (V) 30 5 0 MAXIMUM OUTPUT VOLTAGE: VOM (V) RL = 2k 20 -5 10 INPUT VOLTAGE VIN (V) 5 0 0 -5 0 10 20 TIME (s) 30 40 - 10 - 20 0 10 POWER SUPPLY VOLTAGE: V (V) 20 Fig.7 Output response characteristics Fig.8 Maximum output voltage vs. power supply voltage notes *Operationcircuit connections (1) Unused If there are any circuits which are not being used, we recommend making connections as shown in Figure 9, with the non-inverted input pin connected to the potential within the in-phase input voltage range (VICM). VCC - To potential in VICM + VEE Fig.9 Unused circuit connections 4 Standaed ICs BA15218 / BA15218F / BA15218N *External dimensions (Units: mm) BA15218 9.3 0.3 8 5 6.5 0.3 BA15218F 5.0 0.2 8 6.2 0.3 4.4 0.2 5 1 0.51Min. 4 7.62 3.2 0.2 3.4 0.3 0.11 0.3 0.1 1.5 0.1 1 4 2.54 0.5 0.1 0~15 1.27 0.4 0.1 0.3Min. 0.15 DIP8 BA15218N SOP8 19.3 0.2 10.5 0.5 5.8 0.2 2.8 0.2 1.2 1 3.5 0.5 2.54 8 0.6 0.8 1.3 0.3 0.1 SIP8 0.15 0.1 5 |
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