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www.rohm.com 2009.05 - Rev.A © 2009 ROHM Co., Ltd. All rights reserved. General-purpose High-reliability BA4560 family BA15218 family BA14741 family BA15532 family BA4510 family BA4558R family BA4560R family BA4580R family BA2115 family Dual Dual Dual Dual Dual Dual Dual Dual Quad BA4558 familyDual Dual ROHM’s Selection Operational Amplifier/Comparator Series Operational Amplifiers: Low Noise BA4558F,BA4558RF/FV/FVM,BA4560F,BA4560RF/FV/FVM,BA4580RF/FVM BA2115F/FVM,BA15218F,BA14741F,BA15532FBA4510F/FV

  • Description General-purpose BA4558 / BA4560 / BA15218 / BA14741 / BA15532 / BA4510 family and high-reliability BA4558R / BA4560R / BA4580R / BA2115 family integrate two or four independent Op-Amps on a single chip. Especially, this series is suitable for any audio applications due to low noise and low distortion characteristics and are usable for other many applications by wide operating supply voltage range. BA4558R/BA4560R/BA4580R/BA2115 are high-reliability products with extended operating temperature range and high ESD tolerance.
  • Features 1) High voltage gain, low noise, low distortion 2) Internal phase compensation 3) No latch up immunity 4) Wide operating supply voltage ±4.0[V]~±15.0[V](split supply) (BA4558/BA4560/BA4558R/BA4560R family) ±2.0[V]~±16.0[V](split supply) (BA4580R/BA15218 family) ±2.0[V]~±18.0[V](split supply) (BA14741 family) ±3.0[V]~±20.0[V](split supply) (BA15532 family) ±1.0[V]~±3.5[V](split supply) (BA4510 family) ±1.0[V]~±7.0[V](split supply) (BA2115 family) 5) Internal ESD protection Human body mode (HBM) ±5000V (BA4558R/BA4560R/BA4580R/BA2115 family) 6) Wide temperature range -40[ ℃]~+85[℃] (BA4558/BA4560/BA15218/BA14741/BA2115 family) -40[ ℃]~+105[℃] (BA4558R/BA4560R/BA4580R family)
  • Pin Assignments SOP8 SSOP-B8 MSOP8 SOP14 BA4558F BA4558R FV BA4558R FVM BA4560F BA4560R FV BA4560R FVM BA4580R F BA4580R FVMBA15218F BA15532F BA14741F VCC OUT2 OUT1 -IN1 +IN1 VEE -IN2 +IN2 CH1 - + CH2 + - 6 OUT1 -IN1 +IN1 -I N2 CH1 - + VC C +IN2 OUT2 OUT4 -IN4 +IN4 -IN3 VEE +IN3 OUT3 CH4 + - CH2 - + CH3 + - BA4510F BA2115F BA4510FV BA2115FVM BA4558R F BA4560R F No.09049EAT02 BA2115F BA4510F

BA4558F,BA4560F,BA4558RF/FV/FVM,BA4560RF/FV/FVM,BA4580RF/FVM, BA15218F,BA14741F,BA15532F,BA4510F/FV,BA2115F/FVM www.rohm.com 2009.05 - Rev.A © 2009 ROHM Co., Ltd. All rights reserved.

  • Absolute maximum rating (Ta=25[℃]) ○BA4558/BA4560 family,BA4558R/BA4560R/BA4580R family Parameter Symbol Rating Unit BA4558 family BA4560 family BA4558R family BA4560R family BA4580R family Supply Voltage VCC-VEE +36 V Differential Input Voltage(*1) Vid (VCC-VEE) 36 V Input Common-mode voltage range Vicm VEE~VCC (VEE-0.3) ~VEE+36 V Operating Supply Output Current Io - - ±50 mA Operating Temperature Topr -40~+85 -40 ~+105 ℃ Storage Temperature Tstg -55~+125 -55 ~+150 ℃ Maximum Junction Temperature Tjmax +125 +150 ℃ Note: Absolute maximum rating item indicates the condition which must not be exceeded. Application of voltage in excess of absolute maximum rating or use out absoluted maximum rated temperature environment may cause deterioration of characteristics. (*1) The voltage difference between inverting input and non-inverting input is the differential input voltage. Then input terminal voltage is set to more then VEE.
  • Electrical characteristics ○BA4558/BA4560 family (Unless otherwise specified VCC=+15[V], VEE=-15[V], Ta=25[℃]) Parameter Symbol Temperature Range Guaranteed limit Unit Condition BA4558 family BA4560 family Input Offset Voltage (*2) Vio 25℃ - 0.5 6 - 0.5 6 mV Rs ≦10[kΩ] Input Offset Current (*2) Iio 25℃ - 5 200 - 5 200 nA - Input Bias Current (*3) Ib 25℃ - 60 500 - 50 500 nA - Supply Current ICC 25℃ - 3 6 - 4 7.5 mA RL= ∞ All Op-Amps Maximum Output Voltage VOM 25℃ ±12 ±14 - ±12 ±14 - V RL≧10[kΩ] Large Single Voltage Gain AV 25℃ 86 100 - 86 100 - dB RL≧2[kΩ ],VOUT=±10[V] Input Common-mode Voltage Range Vicm 25℃ ±12 ±14 - ±12 ±14 - V - Common-mode Rejection Ratio CMRR 25℃ 70 90 - 70 90 - dB Rs ≦10[kΩ] Power Supply Rejection Ratio PSRR 25℃ 76.3 90 - 76.3 90 150 dB Rs ≦10[kΩ] Channel Separation CS 25℃ - 105 - - - - dB f=1[kHz] Input referred Slew Rate SR 25℃ - 1.0 - - 4 - V/ μs AV=0[dB],RL ≧2[kΩ] Gain Bandwidth Product GBW 25℃ - - - - 10 - MHz f=10[kHz] Input Referred Noise Voltage BW=10[Hz]~30[kHz],RIAA (*2) Absolute value (*3) Current direction: Since first input stage is composed with PNP transistor, input bias current flows out of IC.

BA4558F,BA4560F,BA4558RF/FV/FVM,BA4560RF/FV/FVM,BA4580RF/FVM, BA15218F,BA14741F,BA15532F,BA4510F/FV,BA2115F/FVM www.rohm.com 2009.05 - Rev.A © 2009 ROHM Co., Ltd. All rights reserved.

  • Electrical characteristics ○BA4558R/BA4560R family (Unless otherwise specified VCC=+15[V], VEE=-15[V], Full range -40[℃]~+105[℃]) (*4) Absolute value (*5) Current direction: Since first input stage is composed with PNP transistor, input bias current flows out of IC.
  • Electrical characteristics ○BA4580R family (Unless otherwise specified VCC=+15[V], VEE=-15[V], Ta=25[℃]) Parameter Symbol Temperature Range Guaranteed limit Unit Condition BA4580R family Min. Typ. Max. Input Offset Voltage (*6) Vio 25 ℃ - 0.3 3 mV Rs ≦10[kΩ] Input Offset Current (*6) Iio 25 ℃ - 5 200 nA - Input Bias Current (*7) Ib 25 ℃ - 100 500 nA - Large Single Voltage Gain AV 25 ℃ 90 110 - dB RL≧10[k Ω],VOUT=±10[V] Maximum Output Voltage VOM 25 ℃ ±12 ±13.5 - V RL ≧2[kΩ] Input Common-mode Voltage Range Vicm 25 ℃ ±12 ±13.5 - V - Common-mode Rejection Ratio CMRR 25 ℃ 80 110 - dB Rs ≦10[kΩ] Power Supply Rejection Ratio PSRR 25 ℃ 80 110 - dB Rs ≦10[kΩ] Supply Current ICC 25 ℃ - 6 9 mA RL= ∞ All Op-Amps,VIN+=0[V] Slew Rate SR 25℃ - 5 - V/ μsR L ≧2[kΩ] Unity Gain Frequency ft 25 ℃ - 5 - MHz RL=2[k Ω] Total Harmonic Distortion THD 25 ℃ - 0.0005 - % Av=20[dB],VOUT=5[Vrms],RL=2[kΩ] f=1[kHz],20[Hz]~20[kHz] BPF Input Referred Noise Voltage Vni 25 ℃ - 0.8 - μVrms RIAA,Rs=2.2 [k Ω],30[kHz] LPF (*6) Absolute value (*7) Current direction: Since first input stage is composed with PNP transistor, input bias current flows out of IC. Parameter Symbol Temperature Range Guaranteed limit Unit Condition BA4558R family BA4560R family Input Offset Voltage (*4) Vio 25℃ - 0.5 6 - 0.5 6 mV VOUT=0[V] Full range - - 7 - - 7 Input Offset Current (*4) Iio 25℃ - 5 200 - 5 200 nA VOUT=0[V] Full range - - 200 - - 200 Input Bias Current (*5) Ib 25℃ - 60 500 - 50 500 nA VOUT=0[V] Full range - - 800 - - 800 Supply Current ICC 25℃ - 3 6 - 3 7 mA RL=∞ All Op-Amps VIN+=0[V] Full range - - 6.5 - - 7.5 Maximum Output Voltage VOM V RL≧2[kΩ] Full range ±10 - - - - - Large Single Voltage Gain AV 25℃ 86 100 - 86 100 - dB RL≧2[kΩ],VO=±10[V], Vicm=0[V] Full range 83 - - 83 - - Input Common-mode Voltage Range Vicm 25℃ ±12 ±14 - ±12 ±14 - V VOUT=±12[V] Full range ±12 - - ±12 - - Common-mode Rejection Ratio CMRR 25 ℃ 70 90 - 70 90 - dB VOUT=±12[V] Power Supply Rejection Ratio PSRR 25 ℃ 76.5 90 - 76.5 90 - dB Ri ≦10[kΩ] Channel Separation CS 25 ℃ - 105 - - 105 - dB f=1[kHz] Slew Rate SR 25 ℃ - 1 - - 4 - V/ μs AV=0[dB],RL=10[kΩ] CL=100[pF] Unity Gain Frequency ft 25 ℃ - 2 - - 4 - MHz RL=2[k Ω] Total Harmonic Distortion THD 25 ℃ - 0.005 - - 0.003 - % AV=20[dB],RL=10[kΩ] VOUT=5[Vrms],f=1[kHz] Input Referred Noise Voltage Vn 25℃ - 12 - - 8 - Hz nV/ RS=100[Ω],Vi=0[V] ,f=1[kHz]

BA4558F,BA4560F,BA4558RF/FV/FVM,BA4560RF/FV/FVM,BA4580RF/FVM, BA15218F,BA14741F,BA15532F,BA4510F/FV,BA2115F/FVM www.rohm.com 2009.05 - Rev.A © 2009 ROHM Co., Ltd. All rights reserved.

  • Absolute maximum rating (Ta=25[℃]) ○BA15218/BA14741F/BA15532 family Parameter Symbol Rating Unit BA15218 family BA14741 family BA15532 family Supply Voltage VCC-VEE 36 36 42 V Differential Input Voltage Vid VCC-VEE(*8) ±0.5 (*9) V Input Common-mode voltage range Vicm VEE~VCC V Operating Supply Voltage Vopr 4~32 (±2 ~±16) 4 ~36 (±2~±18) 6 ~40 (±3~±20) V Input Current Ii - - ±10 mA Operating Temperature Topr -40~+85 -20~+75 ℃ Storage Temperature Tstg -55~+125 ℃ Maximum junction Temperature Tjmax 125 ℃ Output Short Current (*10) Iomax ±50 - - mA Output Short Time (*10) Ts - unlimited (only 1CH short) unlimited Sec Note: Absolute maximum rating item indicates the condition which must not be exceeded. Application of voltage in excess of absolute maximum rating or use out absoluted maximum rated temperature environment may cause deterioration of characteristics. (*8) The voltage difference between inverting input and non-inverting input is the differential input voltage. Then input terminal voltage is set to more then VEE. (*9) Don’t over input current ±10mA. Built-in resistor for protection because of over current with differential input voltage above 0.5V. (*10) Limit within Pd
  • Electrical characteristics ○BA15218 family (Unless otherwise specified VCC=+15[V], VEE=-15[V], Ta=25[℃]) Parameter Symbol Temperature Range Guaranteed limit Unit Condition Min. Typ. Max. Input Offset Voltage (*11) Vio 25 ℃ - 0.5 5.0 mV Rs≦10[k Ω] Input Offset Current (*11) Iio 25 ℃ - 5 200 nA - Input Bias Current (*12) Ib 25℃ - 50 500 nA - Large Single Voltage Gain Av 25 ℃ 86 110 - dB RL≧2[kΩ ],Vo=±10[V] Input Common-mode Voltage Range Vicm 25 ℃ ±12 ±14 - V - Common-mode Rejection Ratio CMRR 25 ℃ 70 90 - dB Rs ≦10[kΩ] Power Supply Rejection Ratio PSRR 25 ℃ 76 90 - dB Rs ≦10[kΩ] Supply Current ICC 25 ℃ - 5.0 8.0 mA Vin=0,RL= ∞ Maximum Output Voltage VOH 25 ℃ ±12 ±14 - V RL ≧10[kΩ] VOL 25 ℃ ±10 ±13 - V RL ≧2[kΩ] Slew Rate SR 25℃ - 3.0 - V/ μs GV=0[dB],RL=2[k Ω] Gain Bandwidth Product GBW 25℃ - 10 - MHz f=10[kHz] Input Referred Noise Voltage Vn 25 ℃ - 1.0 - μVrms RS=1[kΩ], BW=20[Hz]~30[kHz],RIAA Channel Separation CS 25 ℃ - 120 - dB f=1[kHz] input referred (*11) Absolute value (*12) Current direction: Since first input stage is composed with PNP transistor, input bias current flows out of IC.

BA4558F,BA4560F,BA4558RF/FV/FVM,BA4560RF/FV/FVM,BA4580RF/FVM, BA15218F,BA14741F,BA15532F,BA4510F/FV,BA2115F/FVM www.rohm.com 2009.05 - Rev.A © 2009 ROHM Co., Ltd. All rights reserved.

  • Electrical characteristics ○BA14741 family (Unless otherwise specified VCC=+15[V], VEE=-15[V], Ta=25[℃]) Parameter Symbol Temperature Range Guaranteed limit Unit Condition Min. Typ. Max. Input Offset Voltage (*13) Vio 25 ℃ - 1.0 5.0 mV Rs ≦10[kΩ] Input Offset Current (*13) Iio 25 ℃ - 10 50 nA - Input Bias Current (*14) Ib 25℃ - 60 300 nA - Large Single Voltage Gain Av 25 ℃ 20 100 - V/mV RL≧2[kΩ ],Vo=±10[V] Common-mode Rejection Ratio CMRR 25 ℃ 80 100 - dB - Input Common-mode Voltage Range Vicm 25 ℃ ±12 ±13.5 - V - Power Supply Rejection Ratio PSRR 25 ℃ 80 100 - dB - Supply Current ICC 25 ℃ - 3.0 7.0 mA RL= ∞,on all OpAmp Maximum Output Voltage High VOH 25 ℃ 10 12.5 - V Vin+=1[V],Vin-=0[V],RL=2[k Ω] Low VOL 25 ℃ -10 -12.5 - V Vin+=0[V],Vin-=1[V],RL=2[kΩ ] Maximum Output Current Source IOH 25℃ 10 20 - mA Vin+=1[V],Vin-=0[V],VO=0[V] Sink IOL 25℃ 5 10 - mA Vin+=0[V],Vin-=1[V],VO=0[V] Slew Rate SR 25℃ - 1.0 - V/ μsA v = 1 , R L = 2 [ kΩ] Input Referred Noise Voltage Vn 25 ℃ - 2.0 4.0 μVrms RIAA,Rs=2.2[kΩ],10[Hz]~30[kHz] Channel Separation CS 25 ℃ - 100 - dB f=1[kHz ] input referred (*13) Absolute value (*14) Current direction: Since first input stage is composed with PNP transistor, input bias current flows out of IC.
  • Electrical characteristics ○BA15532 family (Unless otherwise specified VCC=+15[V], VEE=-15[V], Ta=25[℃]) Parameter Symbol Temperature Range Guaranteed limit Unit Condition Min. Typ. Max. Input Offset Voltage (*15) Vio 25 ℃ - 0.5 4.0 mV Rs=50[ Ω],RL≧10[kΩ] Input Offset Current (*15) Iio 25 ℃ - 10 150 nA RL ≧10[kΩ] Input Bias Current (*16) Ib 25℃ - 200 800 nA RL ≧10[kΩ] Large Single Voltage Gain Av 25 ℃ 80 94 - dB RL ≧600[Ω],Vo=±10[V] Common-mode Rejection Ratio CMRR 25 ℃ 70 100 - dB RL ≧10[kΩ] Input Common-mode Voltage Range Vicm 25 ℃ ±12 ±13 - V RL ≧10[kΩ] Power Supply Rejection Ratio PSRR 25 ℃ 80 100 - dB Rs=50[ Ω],RL≧10[kΩ] Supply Current Icc 25 ℃ - 8.0 16.0 mA RL= ∞,on all OpAmp Maximum Output Voltage -1 VOH/ VOL Maximum Output Voltage -2 25℃ ±15 ±16 - V RL≧600[Ω] VCC=18[V],VEE=-18[V] Output Short Current lOS 25 ℃ - 38 - mA (*17) Slew Rate SR 25 ℃ - 8.0 - V/ μs Av=1,RL=600[ Ω],CL=100[pF] Gain Bandwidth Product GBW 25℃ - 20 - MHz f=10[kHz],RL=600[ Ω],CL=100[pF] Input Referred Noise Voltage Vn 25 ℃ - 0.7 1.5 μVrms RIAA,Rs=100[ Ω],20[Hz]~30[kHz] Channel Separation CS 25 ℃ - 110 - dB RIAA Input referred ( * 1 5 A b s o l u t e v a l u e (*16) Current direction: Since first input stage is composed with NPN transistor, input bias current flows out of IC. (*17) In the case of output pin shorting with VCC or VEE. But never over the maximum power dissipation

BA4558F,BA4560F,BA4558RF/FV/FVM,BA4560RF/FV/FVM,BA4580RF/FVM, BA15218F,BA14741F,BA15532F,BA4510F/FV,BA2115F/FVM www.rohm.com 2009.05 - Rev.A © 2009 ROHM Co., Ltd. All rights reserved.

  • Absolute maximum rating (Ta=25[℃]) ○BA4510/BA2115 family Parameter Symbol Rating Unit BA4510 family BA2115 family Supply Voltage VCC-VEE 10 14 V Differential Input Voltage(*18) Vid VCC-VEE 14 V Input Common-mode Voltage Range Vicm VEE~VCC (VEE-0.3)~VEE+14 V Operating Supply Voltage Vopr 2~7(±1~±3.5) 2~14(±1~±7) V Operating Temperature Topr -20~+75 -40~+85 ℃ Storage Temperature Tstg -55~125 -55~150 ℃ Maximum Junction Temperature Tjmax 125 150 ℃ Note: Absolute maximum rating item indicates the condition which must not be exceeded. Application of voltage in excess of absolute maximum rating or use out absoluted maximum rated temperature environment may cause deterioration of characteristics. (*18) The voltage difference between inverting input and non-inverting input is the differential input voltage. Then input terminal voltage is set to more then VEE.
  • Electrical characteristics ○BA4510 family (Unless otherwise specified VCC=+2.5[V], VEE=-2.5[V], Ta=25[℃]) Parameter Symbol Temperature Range Guaranteed limit Unit Condition Min. Typ. Max. Input Offset Voltage (*19) Vio 25 ℃ - 1 6 mV Rs=50[ Ω] Input Offset Current (*19) Iio 25 ℃ - 2 200 nA - Input Bias Current (*20) Ib 25℃ - 80 500 nA - Supply Current ICC 25 ℃ 2.5 5.0 7.5 mA RL= ∞ All Op-Amps Maximum Output Voltage Large Single Voltage Gain Av 25 ℃ 60 90 - dB RL ≧10[kΩ] Input Common-mode Voltage Range Vicm 25 ℃ -1.3 - +1.5 V - Common-mode Rejection Ratio CMRR 25 ℃ 60 80 - dB - Power Supply Rejection Ratio PSRR 25 ℃ 60 80 - dB Rs=50[ Ω] Slew Rate SR 25 ℃ - 5.0 - V/ μs Av=1 (*19) Absolute value (*20) Current direction: Since first input stage is composed with PNP transistor, input bias current flows out of IC.
  • Electrical characteristics ○BA2115 family (Unless otherwise specified VCC=+2.5[V], VEE=-2.5[V], Ta=25[℃]) Parameter Symbol Temperature Range Guaranteed limit Unit Condition Min. Typ. Max. Input Offset Voltage (*21) Vio 25 ℃ - 1 6 mV VOUT=0[V], Vicm=0[V] Input Offset Current (*21) Iio 25 ℃ - 2 200 nA VOUT=0[V], Vicm=0[V] Input Bias Current (*22) Ib 25℃ - 150 400 nA VOUT=0[V], Vicm=0[V] Supply Current ICC 25 ℃ - 3.5 5 mA RL= ∞ All Op-Amps, VIN+=0[V] Maximum Output Voltage VOM 25 ℃ ±2.0 ±2.2 - V RL ≧2.5[kΩ] Large Single Voltage Gain AV 25 ℃ 60 80 - dB RL≧10[kΩ], VOUT=±2[V], Vicm=0[V] Input Common-mode Voltage Range Vicm 25 ℃ ±1.5 - - V - Common-mode Rejection Ratio CMRR 25 ℃ 60 74 - dB Vicm=-1.5[V] ~+1.5[V] Power Supply Rejection Ratio PSRR 25 ℃ 60 80 - dB VCC=+2[V] ~+14[V] Slew Rate SR 25 ℃ - 4 - V/ μs AV=0[dB], VIN=±1[V] Gain Bandwidth Product GB 25 ℃ - 12 - MHz f=10[kHz] (*21) Absolute value (*22) Current direction: Since first input stage is composed wi th PNP transistor, input bias current flows out of IC.

BA4558F,BA4560F,BA4558RF/FV/FVM,BA4560RF/FV/FVM,BA4580RF/FVM, BA15218F,BA14741F,BA15532F,BA4510F/FV,BA2115F/FVM www.rohm.com 2009.05 - Rev.A © 2009 ROHM Co., Ltd. All rights reserved.

  • Example of electrical characteristics ○BA4558 family (*) The above data is ability value of sample, it is not guaranteed. 200 400 600 800 1000 0 25 50 75 100 125 AMBIENT TEMPERTURE [℃] . POWER DISSIPATION [mW] . 0.0 1.0 2.0 3.0 4.0 5.0 - 5 0 - 2 50 2 55 07 5 1 0 0 AMBIENT TEMPERATURE [℃] SUPPLY CURRENT [mA] SUPPLY VOLTAGE [V] INPUT OFFSET VOLTAGE [mV] 0.0 1.0 2.0 3.0 4.0 5.0 0 5 10 15 20 25 30 35 SUPPLY VOLTAGE [V] SUPPLY CURRENT [mA] . -20 -15 -10 SUPPLY VOLTAGE [V] OUTPUT VOLTAGE [V] -50 -25 0 25 50 75 100 AMBIENT TEMPERATURE [℃] INPUT BIAS CURRENT [nA] SUPPLY VOLTAGE [V] INPUT BIAS CURRENT [nA] . Input Offset Voltage – Supply Voltage (Vicm=0[V],Vout=0[V]) -20 -15 -10 -50 -25 0 25 50 75 100 AMBIENT TEMPERATURE [℃] OUTPUT VOLTAGE [V] -20 -15 -10 0.1 1 10 LOAD RESISTANCE [k OUTPUT VOLTAGE [V] Derating Curve -50 -25 0 25 50 75 100 AMBIENT TEMPERATURE [℃] INPUT OFFSET VOLTAGE [mV ] Input Offset Voltage – Ambient Temperature (Vicm=0[V],Vout=0[V]) -40℃ 85℃ 25℃ Input Bias Current – Ambient Temperature (Vicm=0[V],Vout=0[V]) -40℃ 25℃ 85℃ ±4V ±7.5V ±15V Input Bias Current – Supply Voltage (Vicm=0[V],Vout=0[V]) ±15V ±7.5V ±4V Maximum Output Voltage – Load Resistance (VCC/VEE=+15[V]/-15[V],Ta=25[℃]) 0.1 1 10 LOAD RESISTANCE [k MAXIMUM OUTPUT VOLTAGE SWING [Vp-p] Maximum Output Voltage Swing – Load Resistance (VCC/VEE=+15[V]/-15[V],Ta=25[℃]) VOH BA4558F BA4558 famil y 25℃ 85℃ BA4558 famil y Supply Current – Supply Voltage -40℃ Supply Current – Ambient Temperature BA4558 famil y ±4 V ±15V ±7.5 V Maximum Output Voltage – Supply Voltage (RL=2[kΩ],Ta=25[℃]) VOH Maximum Output Voltage – Ambient Temperature (VCC/VEE=+15[V]/-15[V],RL=2[kΩ]) VOH -20 -15 -10 0 5 10 15 20 25 OUTPUT CURRENT [mA] OUTPUT VOLTAGE [V] Maximum Output Voltage – Output Current (VCC/VEE=+15[V]/-15[V],Ta=25[℃]) VOL VOL VOL VOL VOH BA4558 famil y BA4558 famil y BA4558 famil y BA4558 famil y BA4558 family BA4558 family BA4558 famil y BA4558 family BA4558 famil y MAXIMUM OUTPUT VOLTAGE [V] MAXIMUM OUTPUT VOLTAGE [V] MAXIMUM OUTPUT VOLTAGE [V] MAXIMUM OUTPUT VOLTAGE [V] INPUT OFFSET VOLTAGE [mV] F i g . 1 F i g . 2 F i g . 3 F i g . 4 F i g . 5 F i g . 6 F i g . 7 F i g . 8 F i g . 9 F i g . 1 0 F i g . 1 1 F i g . 1 2

BA4558F,BA4560F,BA4558RF/FV/FVM,BA4560RF/FV/FVM,BA4580RF/FVM, BA15218F,BA14741F,BA15532F,BA4510F/FV,BA2115F/FVM www.rohm.com 2009.05 - Rev.A © 2009 ROHM Co., Ltd. All rights reserved. ○BA4558 family (*) The above data is ability value of sample, it is not guaranteed. FREQUENCY [Hz] VOLTAGE GAIN [dB] -180 -150 -120 -90 -60 -30 PHASE [deg] 100 125 150 -50 -25 0 25 50 75 100 AMBIENT TEMPERATURE [°C] COMMON MODE REJECTION RATIO [dB] -30 -20 -10 SUPPLY VOLTAGE [V] INPUT OFFSET CURRENT [nA] . 1 100 10000 FREQUENCY [Hz] EQUIVALENT INPUT NOISE VOLTAG E [nV/√Hz] . 0.0001 0.001 0.01 0.1 0.1 1 10 OUTPUT VOLTAGE [Vrms] TOTAL HARMONIC DISTORTION [%] 100 125 150 - 5 0 - 2 50 2 55 07 5 1 0 0 AMBIENT TEMPERATURE [℃] POWER SUPPLY REJECTION RATIO [dB] 0.0 0.5 1.0 1.5 2.0 SUPPLY VOLTAGE [V] SLEW RATE [V/μs] . Equivalent Input Noise Voltage – Frequency (VCC/VEE=+15[V]/-15[V],Rs=100[ Ω],Ta=25[℃]) Total Harmonic Distortion – Output Voltage (VCC/VEE=+15[V]/-15[V],Av=20[dB], RL=2[kΩ],80[kHz]-LPF,Ta=25[℃]) Slew Rate – Supply Voltage (CL=100[pF],RL=2[kΩ],Ta=25[℃]) Common Mode Rejection Ratio – Ambient Temperature (VCC/VEE=+15[V]/-15[V],Vicm=-12[V] to +12[V]) -30 -20 -10 -50 -25 0 25 50 75 100 AMBIENT TEMPERATURE [°C] INPUT OFFSET CURRENT [nA] Input Offset Current – Ambient Temperature (Vicm=0[V],Vout=0[V]) 85℃ -40℃ 25℃ Power Supply Rejection Ratio – Ambient Temperature (VCC/VEE=+4[V]/-4[V] to +15[V]/-15[V]) Input Offset Current – Supply Voltage (Vicm=0[V],Vout=0[V]) ±4V ±15V ±7.5V 1 10 100 1000 FREQUENCY [Hz] MAXIMUM OUTPUT VOLTAGE SWING [Vp-p] Maximum Output Voltage Swing – Frequency (VCC/VEE=+15[V]/-15[V],RL=2[kΩ],Ta=25[℃]) 02468 COMMON MODE INPUT VOLTAGE [V] INPUT OFFSET VOLTAGE [mV] Input Offset Voltage – Common Mode Input Voltage (VCC=8[V],Vout=4[V]) 85℃ 25℃ -40℃ GAIN PHASE Voltage Gain – Frequency (VCC/VEE=+15[V]/-15 [V],Av=40[dB],RL=2[kΩ],Ta=25[℃]) 20kHz 20Hz 1kHz BA4558 family BA4558 famil y BA4558 family BA4558 famil y BA4558 famil y BA4558 famil y BA4558 famil y BA4558 famil y BA4558 famil y BA4558 family F i g . 1 3 F i g . 1 4 F i g . 1 5 F i g . 1 6 F i g . 1 7 F i g . 1 8 F i g . 1 9 F i g . 2 0 F i g . 2 1 F i g . 2 2

BA4558F,BA4560F,BA4558RF/FV/FVM,BA4560RF/FV/FVM,BA4580RF/FVM, BA15218F,BA14741F,BA15532F,BA4510F/FV,BA2115F/FVM www.rohm.com 2009.05 - Rev.A © 2009 ROHM Co., Ltd. All rights reserved. 200 400 600 800 1000 0 25 50 75 100 125 AMBIENT TEMPERTURE [℃] . POWER DISSIPATION [mW] ○BA4560 family (*) The above data is ability value of sample, it is not guaranteed. 0.0 2.0 4.0 6.0 8.0 -50 -25 0 25 50 75 100 AMBIENT TEMPERATURE [℃] SUPPLY CURRENT [mA] 0.0 2.0 4.0 6.0 8.0 0 5 10 15 20 25 30 35 SUPPLY VOLTAGE [V] SUPPLY CURRENT [mA] . SUPPLY VOLTAGE [V] INPUT OFFSET VOLTAGE [mV] SUPPLY VOLTAGE [V] INPUT BIAS CURRENT [nA] . -20 -15 -10 - 5 0 - 2 50 2 55 07 5 1 0 0 AMBIENT TEMPERATURE [℃] OUTPUT VOLTAGE [V] -20 -15 -10 0.1 1 10 LOAD RESISTANCE [kΩ] OUTPUT VOLTAGE [V] -50 -25 0 25 50 75 100 AMBIENT TEMPERATURE [ INPUT OFFSET VOLTAGE [mV] -40℃ 85℃ 25℃ -50 -25 0 25 50 75 100 AMBIENT TEMPERATURE [℃] INPUT BIAS CURRENT [nA] -40℃ 25℃ 85℃ ±4V ±7.5V ±15V ±15V ±7.5V ±4V 0.1 1 10 LOAD RESISTANCE [k MAXIMUM OUTPUT VOLTAGE SWING [Vp-p] VOH BA4560F BA4560 family 25℃ 85℃ BA4560 famil y -40℃ BA4560 family ±15V ±7.5 V -20 -15 -10 SUPPLY VOLTAGE [V] OUTPUT VOLTAGE [V] VOH VOH -20 -15 -10 0 5 10 15 20 25 OUTPUT CURRENT [mA] OUTPUT VOLTAGE [V] VOL VOL VOL VOL VOH BA4560 famil y BA4560 famil y BA4560 family BA4560 famil y BA4560 famil y BA4560 famil y BA4560 famil y BA4560 famil y BA4560 famil y ±4 V AMBIENT TEMPERATURE[℃] Input Offset Voltage – Supply Voltage (Vicm=0[V],Vout=0[V]) Derating Curve Input Offset Voltage – Ambient Temperature (Vicm=0[V],Vout=0[V]) Input Bias Current – Ambient Temperature (Vicm=0[V],Vout=0[V]) Input Bias Current – Supply Voltage (Vicm=0[V],Vout=0[V]) Maximum Output Voltage – Load Resistance (VCC/VEE=+15[V]/-15[V],Ta=25[℃]) Maximum Output Voltage Swing – Load Resistance (VCC/VEE=+15[V]/-15[V],Ta=25[℃]) Supply Current – Supply Voltage Supply Current – Ambient Temperature Maximum Output Voltage – Supply Voltage (RL=2[kΩ],Ta=25[℃]) Maximum Output Voltage – Ambient Temperature (VCC/VEE=+15[V]/-15[V],RL=2[kΩ]) Maximum Output Voltage – Output Current (VCC/VEE=+15[V]/-15[V],Ta=25[℃]) MAXIMUM OUTPUT VOLTAGE [V] MAXIMUM OUTPUT VOLTAGE [V] MAXIMUM OUTPUT VOLTAGE [V] MAXIMUM OUTPUT VOLTAGE [V] F i g . 2 3 F i g . 2 4 F i g . 2 5 F i g . 2 6 F i g . 2 7 F i g . 2 8 F i g . 2 9 F i g . 3 0 F i g . 3 1 F i g . 3 2 F i g . 3 3 F i g . 3 4

BA4558F,BA4560F,BA4558RF/FV/FVM,BA4560RF/FV/FVM,BA4580RF/FVM, BA15218F,BA14741F,BA15532F,BA4510F/FV,BA2115F/FVM www.rohm.com 2009.05 - Rev.A © 2009 ROHM Co., Ltd. All rights reserved. 1 10 100 1000 FREQUENCY [KHz] MAXIMUM OUTPUT VOLTAGE SWING [Vp-p] ○BA4560 family (*) The above data is ability value of sample, it is not guaranteed. SUPPLY VOLTAGE [V] VOLTAGE GAIN[dB] . .. 100 120 140 160 180 200 PHASE [deg] -30 -20 -10 SUPPLY VOLTAGE [V] INPUT OFFSET CURRENT [nA] . 02468 COMMON MODE INPUT VOLTAGE [V] INPUT OFFSET VOLTAGE [mV ] 1 100 10000 FREQUENCY [Hz] EQUIVALENT INPUT NOISE VOLTAGE [nV/√Hz] 0.0001 0.001 0.01 0.1 0.1 1 10 OUTPUT VOLTAGE [Vrms] TOTAL HARMONIC DISTORTION [%] 100 125 150 -50 -25 0 25 50 75 100 AMBIENT TEMPERATURE [℃] POWER SUPPLY REJECTION RATIO [dB] SUPPLY VOLTAGE [V] SLEW RATE [V/μs] . 100 125 150 -50 -25 0 25 50 75 100 AMBIENT TEMPERATURE [°C] COMMON MODE REJECTION RATIO [dB] Equivalent Input Noise Voltage – Frequency (VCC/VEE=+15[V]/-15[V],Rs=100[ Ω],Ta=25[℃]) Total Harmonic Distortion – Output Voltage (VCC/VEE=+15[V]/-15[V],Av=20[dB], RL=2[kΩ],80[kHz]-LPF,Ta=25[℃]) Slew Rate – Supply Voltage (CL=100[pF],RL=2[kΩ],Ta=25[℃]) Common Mode Rejection Ratio – Ambient Temperature (VCC/VEE=+15[V]/-15[V],Vicm=-12[V] to +12[V]) -30 -20 -10 -50 -25 0 25 50 75 100 AMBIENT TEMPERATURE [°C] INPUT OFFSET CURRENT [nA] Input Offset Current – Ambient Temperature (Vicm=0[V],Vout=0[V]) 85℃ -40℃ 25℃ Power Supply Rejection Ratio – Ambient Temperature (VCC/VEE=+4[V]/-4[V] to +15[V]/-15[V]) Input Offset Current – Supply Voltage (Vicm=0[V],Vout=0[V]) ±4V ±15V ±7.5V Maximum Output Voltage Swing – Frequency (VCC/VEE=+15[V]/-15[V],RL=2[kΩ],Ta=25[℃]) Input Offset Voltage – Common Mode Input Voltage (VCC=8[V],Vout=4[V]) 85℃ 25℃ -40℃ 20Hz 20kHz 1kHz BA4560 famil y BA4560 famil y BA4560 famil y BA4560 famil y BA4560 famil y BA4560 famil y BA4560 family BA4560 famil y BA4560 famil y PHASE GAIN BA4560 famil y FREQUENCY [kHz] FREQUENCY [Hz] Voltage Gain – Frequency (VCC/VEE=+15[V]/-15 [V],Av=40[dB],RL=2[kΩ],Ta=25[℃]) F i g . 3 5 F i g . 3 6 F i g . 3 7 F i g . 3 8 F i g . 3 9 F i g . 4 0 F i g . 4 1 F i g . 4 2 F i g . 4 3 F i g . 4 4

BA4558F,BA4560F,BA4558RF/FV/FVM,BA4560RF/FV/FVM,BA4580RF/FVM, BA15218F,BA14741F,BA15532F,BA4510F/FV,BA2115F/FVM www.rohm.com 2009.05 - Rev.A © 2009 ROHM Co., Ltd. All rights reserved. 200 400 600 800 1000 0 25 50 75 100 125 AMBIENT TEMPERTURE [℃] . POWER DISSIPATION [mW] . ○BA4558R family (*) The above data is ability value of sample, it is not guaranteed. SUPPLY VOLTAGE [V] INPUT OFFSET VOLTAGE [mV] 0.0 1.0 2.0 3.0 4.0 5.0 6.0 -50 -25 0 25 50 75 100 125 AMBIENT TEMPERATURE [℃] SUPPLY CURRENT [mA] 0.0 1.0 2.0 3.0 4.0 5.0 6.0 0 5 10 15 20 25 30 35 SUPPLY VOLTAGE [V] SUPPLY CURRENT [mA] . 0.1 1 10 LOAD RESISTANCE [kΩ] MAXIMUM OUTPUT VOLTAGE SWING [Vp-p] SUPPLY VOLTAGE [V] INPUT BIAS CURRENT [nA] . -20 -15 -10 -50 -25 0 25 50 75 100 125 AMBIENT TEMPERATURE [ OUTPUT VOLTAGE [V] -20 -15 -10 0.1 1 10 LOAD RESISTANCE [kΩ] OUTPUT VOLTAGE [V] -50 -25 0 25 50 75 100 125 AMBIENT TEMPERATURE [℃] INPUT OFFSET VOLTAGE [mV] -40℃ 105℃ 25℃ -50 -25 0 25 50 75 100 125 AMBIENT TEMPERATURE [℃] INPUT BIAS CURRENT [nA] -40℃ 25℃ 105℃ ±4V ±7.5V ±15V ±15V ±7.5V ±4V VOH BA4558RF BA4558R family 25℃ 105℃ BA4558R family -40℃ BA4558R famil y ±4 V ±15V ±7.5 V -20 -15 -10 SUPPLY VOLTAGE [V] OUTPUT VOLTAGE [V] VOH VOH -20 -15 -10 0 5 10 15 20 25 OUTPUT CURRENT [mA] OUTPUT VOLTAGE [V] VOL VOL VOL VOL VOH BA4558RFVM BA4558RFV BA4558R famil y BA4558R famil y BA4558R famil y BA4558R famil y BA4558R famil y BA4558R family BA4558R family BA4558R famil y BA4558R famil y Input Offset Voltage – Supply Voltage (Vicm=0[V],Vout=0[V]) Derating Curve Input Offset Voltage – Ambient Temperature (Vicm=0[V],Vout=0[V]) Input Bias Current – Ambient Temperature (Vicm=0[V],Vout=0[V]) Input Bias Current – Supply Voltage (Vicm=0[V],Vout=0[V]) Maximum Output Voltage – Load Resistance (VCC/VEE=+15[V]/-15[V],Ta=25[℃]) Maximum Output Voltage Swing – Load Resistance (VCC/VEE=+15[V]/-15[V],Ta=25[℃]) Supply Current – Supply Voltage Supply Current – Ambient Temperature Maximum Output Voltage – Supply Voltage (RL=2[kΩ],Ta=25[℃]) Maximum Output Voltage – Ambient Temperature (VCC/VEE=+15[V]/-15[V],RL=2[kΩ]) Maximum Output Voltage – Output Current (VCC/VEE=+15[V]/-15[V],Ta=25[℃]) MAXIMUM OUTPUT VOLTAGE [V] MAXIMUM OUTPUT VOLTAGE [V] MAXIMUM OUTPUT VOLTAGE [V] MAXIMUM OUTPUT VOLTAGE [V] F i g . 4 5 F i g . 4 6 F i g . 4 7 F i g . 4 8 F i g . 4 9 F i g . 5 0 F i g . 5 1 F i g . 5 2 F i g . 5 3 F i g . 5 4 F i g . 5 5 F i g . 5 6

BA4558F,BA4560F,BA4558RF/FV/FVM,BA4560RF/FV/FVM,BA4580RF/FVM, BA15218F,BA14741F,BA15532F,BA4510F/FV,BA2115F/FVM www.rohm.com 2009.05 - Rev.A © 2009 ROHM Co., Ltd. All rights reserved. -60 -40 -20 SUPPLY VOLTAGE [V] INPUT OFFSET CURRENT [nA] ○BA4558R family (*) The above data is ability value of sample, it is not guaranteed. FREQUENCY [Hz] VOLTAGE GAIN [dB] -180 -150 -120 -90 -60 -30 PHASE [deg] 1 100 10000 FREQUENCY [Hz] EQUIVALENT INPUT NOISE VOLTAGE [nV/√Hz] . 0.0001 0.001 0.01 0.1 0.1 1 10 OUTPUT VOLTAGE [Vrms] TOTAL HARMONIC DISTORTION [%] 100 125 150 -50 -25 0 25 50 75 100 125 AMBIENT TEMPERATURE [℃] POWER SUPPLY REJECTION RATIO [dB] . 0.0 0.5 1.0 1.5 2.0 SUPPLY VOLTAGE [V] SLEW RATE [V/μs] . 100 125 150 -50 -25 0 25 50 75 100 125 AMBIENT TEMPERATURE [°C] COMMON MODE REJECTION RATIO [dB] Equivalent Input Noise Voltage – Frequency (VCC/VEE=+15[V]/-15[V],Rs=100[ Ω],Ta=25[℃]) Total Harmonic Distortion – Output Voltage (VCC/VEE=+15[V]/-15[V],Av=20[dB], RL=2[kΩ],80[kHz]-LPF,Ta=25[℃]) Slew Rate – Supply Voltage (CL=100[pF],RL=2[kΩ],Ta=25[℃]) Common Mode Rejection Ratio – Ambient Temperature (VCC/VEE=+15[V]/-15[V],Vicm=-12[V] to +12[V]) -60 -40 -20 -50 -25 0 25 50 75 100 125 AMBIENT TEMPERATURE [°C] INPUT OFFSET CURRENT [nA] Input Offset Current – Ambient Temperature (Vicm=0[V],Vout=0[V]) 105℃ -40℃ 25℃ Power Supply Rejection Ratio – Ambient Temperature (VCC/VEE=+4[V]/-4[V] to +15[V]/-15[V]) Input Offset Current – Supply Voltage (Vicm=0[V],Vout=0[V]) ±4V ±15V ±7.5V 10 100 1000 10000 100000 100000 FREQUENCY [Hz] MAXIMUM OUTPUT VOLTAGE SWING [Vp-p] Maximum Output Voltage Swing – Frequency (VCC/VEE=+15[V]/-15[V],RL=2[kΩ],Ta=25[℃]) 02468 COMMON MODE INPUT VOLTAGE [V] INPUT OFFSET VOLTAGE [mV] Input Offset Voltage – Common Mode Input Voltage (VCC=8[V],Vout=4[V]) 105℃ 25℃ -40℃ GAIN PHASE Voltage Gain – Frequency (VCC/VEE=+15[V]/-15 [V],Av=40[dB],RL=2[kΩ],Ta=25[℃]) 20kHz 20Hz 1kHz BA4558R famil y BA4558R family BA4558R family BA4558R famil y BA4558R family BA4558R family BA4558R famil y BA4558R famil y BA4558 famil y BA4558R family F i g . 5 7 F i g . 5 8 F i g . 5 9 F i g . 6 0 F i g . 6 1 F i g . 6 2 F i g . 6 3 F i g . 6 4 F i g . 6 5 F i g . 6 6

BA4558F,BA4560F,BA4558RF/FV/FVM,BA4560RF/FV/FVM,BA4580RF/FVM, BA15218F,BA14741F,BA15532F,BA4510F/FV,BA2115F/FVM www.rohm.com 2009.05 - Rev.A © 2009 ROHM Co., Ltd. All rights reserved. 200 400 600 800 1000 0 25 50 75 100 125 AMBIENT TEMPERATURE [ ℃] . POWER DISSIPATION [mW] . ○BA4560R family (*) The above data is ability value of sample, it is not guaranteed. SUPPLY VOLTAGE [V] INPUT OFFSET VOLTAGE [mV] 0.0 1.0 2.0 3.0 4.0 5.0 6.0 0 5 10 15 20 25 30 35 SUPPLY VOLTAGE [V] SUPPLY CURRENT [mA] . 0.0 1.0 2.0 3.0 4.0 5.0 6.0 -50 -25 0 25 50 75 100 125 AMBIENT TEMPERATURE [ SUPPLY CURRENT [mA] -50 -25 0 25 50 75 100 125 AMBIENT TEMPERATURE [ INPUT OFFSET VOLTAGE [mV] 100 120 140 160 180 200 SUPPLY VOLTAGE [V] INPUT BIAS CURRENT [nA] . -20 -15 -10 -50 -25 0 25 50 75 100 125 AMBIENT TEMPERATURE [℃] OUTPUT VOLTAGE [V] -20 -15 -10 0.1 1 10 LOAD RESISTANCE [kΩ] OUTPUT VOLTAGE [V] -40℃ 105℃ 25℃ 100 120 140 160 180 200 -50 -25 0 25 50 75 100 125 AMBIENT TEMPERATURE [℃] INPUT BIAS CURRENT [nA] -40℃ 25℃ 105℃ ±4V ±7.5V ±15V ±15V ±7.5V ±4V 0.1 1 10 LOAD RESISTANCE [kΩ] MAXIMUM OUTPUT VOLTAGE SWING [Vp-p] VOH BA4560RF 25℃ 105℃ -40℃ ±4 V ±15V ±7.5 V -20 -15 -10 SUPPLY VOLTAGE [V] OUTPUT VOLTAGE [V] VOH VOH -20 -15 -10 0 5 10 15 20 25 OUTPUT CURRENT [mA] OUTPUT VOLTAGE [V] VOL VOL VOL VOL VOH BA4560RFVM BA4560RFV BA4560R famil y BA4560R famil y BA4560R famil y BA4560R famil y BA4560R family BA4560R famil y BA4560R famil y BA4560R family BA4560R famil y BA4560R famil y BA4560R famil y BA4560R famil y Input Offset Voltage – Supply Voltage (Vicm=0[V],Vout=0[V]) Derating Curve Input Offset Voltage – Ambient Temperature (Vicm=0[V],Vout=0[V]) Input Bias Current – Ambient Temperature (Vicm=0[V],Vout=0[V]) Input Bias Current – Supply Voltage (Vicm=0[V],Vout=0[V]) Maximum Output Voltage – Load Resistance (VCC/VEE=+15[V]/-15[V],Ta=25[℃]) Maximum Output Voltage Swing – Load Resistance (VCC/VEE=+15[V]/-15[V],Ta=25[℃]) Supply Current – Supply Voltage Supply Current – Ambient Temperature Maximum Output Voltage – Supply Voltage (RL=2[kΩ],Ta=25[℃]) Maximum Output Voltage – Ambient Temperature (VCC/VEE=+15[V]/-15[V],RL=2[kΩ]) Maximum Output Voltage – Output Current (VCC/VEE=+15[V]/-15[V],Ta=25[℃]) MAXIMUM OUTPUT VOLTAGE [V] MAXIMUM OUTPUT VOLTAGE [V] MAXIMUM OUTPUT VOLTAGE [V] MAXIMUM OUTPUT VOLTAGE [V] F i g . 6 7 F i g . 6 8 F i g . 6 9 F i g . 7 0 F i g . 7 1 F i g . 7 2 F i g . 7 3 F i g . 7 4 F i g . 7 5 F i g . 7 6 F i g . 7 7 F i g . 7 8

BA4558F,BA4560F,BA4558RF/FV/FVM,BA4560RF/FV/FVM,BA4580RF/FVM, BA15218F,BA14741F,BA15532F,BA4510F/FV,BA2115F/FVM www.rohm.com 2009.05 - Rev.A © 2009 ROHM Co., Ltd. All rights reserved. ○BA4560R family (*) The above data is ability value of sample, it is not guaranteed. FREQUENCY [Hz] VOLTAGE GAIN [dB] -180 -150 -120 -90 -60 -30 PHASE [deg] 02468 COMMON MODE INPUT VOLTAGE [V] INPUT OFFSET VOLTAGE [mV] 1 100 10000 FREQUENCY [Hz] EQUIVALENT INPUT NOISE VOLTAGE [nV/√Hz] . 0.0001 0.001 0.01 0.1 0.1 1 10 OUTPUT VOLTAGE [Vrms] TOTAL HARMONIC DISTORTION [%] 100 125 150 - 5 0 - 2 50 2 55 07 5 1 0 0 1 2 5 AMBIENT TEMPERATURE [ POWER SUPPLY REJECTION RATIO [dB] -60 -40 -20 SUPPLY VOLTAGE [V] INPUT OFFSET CURRENT [nA] . 0.0 1.0 2.0 3.0 4.0 5.0 SUPPLY VOLTAGE [V] SLEW RATE [V/μs] . 100 125 150 -50 -25 0 25 50 75 100 125 AMBIENT TEMPERATURE [°C] COMMON MODE REJECTION RATIO [dB] Equivalent Input Noise Voltage – Frequency (VCC/VEE=+15[V]/-15[V],Rs=100[ Ω],Ta=25[℃]) Total Harmonic Distortion – Output Voltage (VCC/VEE=+15[V]/-15[V],Av=20[dB], RL=2[kΩ],80[kHz]-LPF,Ta=25[℃]) Slew Rate – Supply Voltage (CL=100[pF],RL=2[kΩ],Ta=25[℃]) Common Mode Rejection Ratio – Ambient Temperature (VCC/VEE=+15[V]/-15[V],Vicm=-12[V] to +12[V]) -60 -40 -20 -50 -25 0 25 50 75 100 125 AMBIENT TEMPERATURE [°C] INPUT OFFSET CURRENT [nA] Input Offset Current – Ambient Temperature (Vicm=0[V],Vout=0[V]) 105℃ -40℃ 25℃ Power Supply Rejection Ratio – Ambient Temperature (VCC/VEE=+4[V]/-4[V] to +15[V]/-15[V]) Input Offset Current – Supply Voltage (Vicm=0[V],Vout=0[V]) ±4V ±15V ±7.5V 10 100 1000 10000 100000 100000 FREQUENCY [Hz] MAXIMUM OUTPUT VOLTAGE SWING [Vp-p] Maximum Output Voltage Swing – Frequency (VCC/VEE=+1 5[V]/-15[V],RL=2[kΩ],Ta=25[℃]) Input Offset Voltage – Common Mode Input Voltage (VCC=8[V],Vout=4[V]) 105℃ 25℃ -40℃ GAIN PHASE Voltage Gain – Frequency (VCC/VEE=+15[V]/-15[V],Av=40[dB],RL=2[kΩ],Ta=25[℃]) 20kHz 20Hz 1kHz BA4560R famil y BA4560R famil y BA4560R family BA4560R family BA4560R famil y BA4560R famil y BA4560R family BA4560R famil y BA4560R family BA4560R family F i g . 7 9 F i g . 8 0 F i g . 8 1 F i g . 8 2 F i g . 8 3 F i g . 8 4 F i g . 8 5 F i g . 8 6 F i g . 8 7 F i g . 8 8

BA4558F,BA4560F,BA4558RF/FV/FVM,BA4560RF/FV/FVM,BA4580RF/FVM, BA15218F,BA14741F,BA15532F,BA4510F/FV,BA2115F/FVM www.rohm.com 2009.05 - Rev.A © 2009 ROHM Co., Ltd. All rights reserved. 200 400 600 800 1000 0 25 50 75 100 125 AMBIENT TEMPERATURE [℃] . POWER DISSIPATION [mW] . ○BA4580R family (*) The above data is ability value of sample, it is not guaranteed. 0.0 2.0 4.0 6.0 8.0 10.0 0 5 10 15 20 25 30 35 SUPPLY VOLTAGE [V] SUPPLY CURRENT [mA] . 0.0 2.0 4.0 6.0 8.0 10.0 -50 -25 0 25 50 75 100 AMBIENT TEMPERATURE [℃] SUPPLY CURRENT [mA] -20 -15 -10 SUPPLY VOLTAGE [V] OUTPUT VOLTAGE [V] SUPPLY VOLTAGE [V] INPUT OFFSET VOLTAGE [mV] 100 120 140 160 180 200 SUPPLY VOLTAGE [V] INPUT BIAS CURRENT [nA] . -20 -15 -10 -50 -25 0 25 50 75 100 125 AMBIENT TEMPERATURE [℃] OUTPUT VOLTAGE [V] -20 -15 -10 0.1 1 10 LOAD RESISTANCE [kΩ] OUTPUT VOLTAGE [V] -50 -25 0 25 50 75 100 125 AMBIENT TEMPERATURE [℃] INPUT OFFSET VOLTAGE [mV] -40℃ 105℃ 25℃ 100 120 140 160 180 200 -50 -25 0 25 50 75 100 125 AMBIENT TEMPERATURE [ INPUT BIAS CURRENT [nA] -40℃ 25℃ 105℃ ±2V ±7.5V ±15V ±15V ±7.5V ±2V 0.1 1 10 LOAD RESISTANCE [kΩ] MAXIMUM OUTPUT VOLTAGE SWING [Vp-p] VOH BA4580RF BA4580R family 25℃ 105℃ BA4580R famil y -40℃ BA4580R family ±2 V ±15V ±7.5 V VOH VOH -20 -15 -10 0 5 10 15 20 25 OUTPUT CURRENT [mA] OUTPUT VOLTAGE [V] VOL VOL VOL VOL VOH BA4580RFVM BA4580R famil y BA4580R famil y BA4580R family BA4580R famil y BA4580R family BA4580R famil y BA4580R family BA4580R famil y BA4580R famil y Input Offset Voltage – Supply Voltage (Vicm=0[V],Vout=0[V]) Derating Curve Input Offset Voltage – Ambient Temperature (Vicm=0[V],Vout=0[V]) Input Bias Current – Ambient Temperature (Vicm=0[V],Vout=0[V]) Input Bias Current – Supply Voltage (Vicm=0[V],Vout=0[V]) Maximum Output Voltage – Load Resistance (VCC/VEE=+15[V]/-15[V],Ta=25[℃]) Maximum Output Voltage Swing – Load Resistance (VCC/VEE=+15[V]/-15[V],Ta=25[℃]) Supply Current – Supply Voltage Supply Current – Ambient Temperature Maximum Output Voltage – Supply Voltage (RL=2[kΩ],Ta=25[℃]) Maximum Output Voltage – Ambient Temperature (VCC/VEE=+15[V]/-15[V],RL=2[kΩ]) Maximum Output Voltage – Output Current (VCC/VEE=+15[V]/-15[V],Ta=25[℃]) MAXIMUM OUTPUT VOLTAGE [V] MAXIMUM OUTPUT VOLTAGE [V] MAXIMUM OUTPUT VOLTAGE [V] MAXIMUM OUTPUT VOLTAGE [V] INPUT OFFSET VOLTAGE [mV] INPUT OFFSET VOLTAGE [mV] F i g . 8 9 F i g . 9 0 F i g . 9 1 F i g . 9 2 F i g . 9 3 F i g . 9 4 F i g . 9 5 F i g . 9 6 F i g . 9 7 Fig. 98 Fig. 99 Fig. 100

BA4558F,BA4560F,BA4558RF/FV/FVM,BA4560RF/FV/FVM,BA4580RF/FVM, BA15218F,BA14741F,BA15532F,BA4510F/FV,BA2115F/FVM www.rohm.com 2009.05 - Rev.A © 2009 ROHM Co., Ltd. All rights reserved. ○BA4580R family (*) The above data is ability value of sample, it is not guaranteed. FREQUENCY [kHz] VOLTAGE GAIN [dB] -180 -150 -120 -90 -60 -30 PHASE [deg] -30 -20 -10 SUPPLY VOLTAGE [V] INPUT OFFSET CURRENT [nA] . 02468 COMMON MODE INPUT VOLTAGE [V] INPUT OFFSET VOLTAGE [mV] 1 100 10000 FREQUENCY [Hz] EQUIVALENT INPUT NOISE VOLTAGE [nV/√Hz] . 0.0001 0.001 0.01 0.1 0.1 1 10 OUTPUT VOLTAGE [Vrms] TOTAL HARMONIC DISTORTION [%] 100 125 150 - 5 0 - 2 50 2 55 07 5 1 0 0 1 2 5 AMBIENT TEMPERATURE [ POWER SUPPLY REJECTION RATIO [dB] -10 SUPPLY VOLTAGE [V] SLEW RATE [V/μs] . 100 125 150 -50 -25 0 25 50 75 100 125 AMBIENT TEMPERATURE [°C] COMMON MODE REJECTION RATIO [dB] Equivalent Input Noise Voltage – Frequency (VCC/VEE=+15[V]/-15[V],Rs=100[ Ω],Ta=25[℃]) Total Harmonic Distortion – Output Voltage (VCC/VEE=+15[V]/-15[V],Av=20[dB], RL=2[kΩ],80[kHz]-LPF,Ta=25[℃]) Slew Rate – Supply Voltage (CL=100[pF],RL=2[kΩ],Ta=25[℃]) Common Mode Rejection Ratio – Ambient Temperature (VCC/VEE=+15[V]/-15[V],Vicm=-12[V] to +12[V]) -30 -20 -10 -50 -25 0 25 50 75 100 125 AMBIENT TEMPERATURE [°C] INPUT OFFSET CURRENT [nA] Input Offset Current – Ambient Temperature (Vicm=0[V],Vout=0[V]) 105℃ -40℃ 25℃ Power Supply Rejection Ratio – Ambient Temperature (VCC/VEE=+2[V]/-2[V] to +15[V]/-15[V]) Input Offset Current – Supply Voltage (Vicm=0[V],Vout=0[V]) ±2V ±15V ±7.5V 1 10 100 1000 FREQUENCY [kHz] MAXIMUM OUTPUT VOLTAGE SWING [Vp-p] Maximum Output Voltage Swing – Frequency (VCC/VEE=+15[V]/-15[V],RL=2[kΩ],Ta=25[℃]) Input Offset Voltage – Common Mode Input Voltage (VCC=8[V],Vout=4[V]) 105℃ 25℃ -40℃ GAIN PHASE Voltage Gain – Frequency (VCC/VEE=+15[V]/-15[V],Av=40[dB],RL=2[kΩ],Ta=25[℃]) 20kHz 20Hz 1kHz BA4580R famil y BA4580R famil y BA4580R family BA4580R famil y BA4580R family BA4580R family BA4580R family BA4580R famil y BA4580R famil y BA4580R famil y INPUT OFFSET VOLTAGE [mV] Fig. 101 Fig. 102 Fig. 103 Fig. 104 Fig. 105 Fig. 106 Fig. 107 Fig. 108 Fig. 109 F i g . 1 1 0

BA4558F,BA4560F,BA4558RF/FV/FVM,BA4560RF/FV/FVM,BA4580RF/FVM, BA15218F,BA14741F,BA15532F,BA4510F/FV,BA2115F/FVM www.rohm.com 2009.05 - Rev.A © 2009 ROHM Co., Ltd. All rights reserved. ○BA15218 family (*) The above data is ability value of sample, it is not guaranteed. SUPPLY VOLTAGE [V] INPUT BIAS CURRENT [nA] . -40℃ 0.0 2.0 4.0 6.0 8.0 10.0 0 5 10 15 20 25 30 35 SUPPLY VOLTAGE [V] SUPPLY CURRENT [mA] . 200 400 600 800 1000 0 25 50 75 100 125 AMBIENT TEMPERATURE [℃] . POWER DISSIPATION [mW] . 0.0 2.0 4.0 6.0 8.0 10.0 -50 -25 0 25 50 75 100 AMBIENT TEMPERATURE [℃] SUPPLY CURRENT [mA] SUPPLY VOLTAGE [V] INPUT OFFSET VOLTAGE [mV] -20 -15 -10 -50 -25 0 25 50 75 100 AMBIENT TEMPERATURE [ OUTPUT VOLTAGE [V] -20 -15 -10 0.1 1 10 LOAD RESISTANCE [kΩ] OUTPUT VOLTAGE [V] -50 -25 0 25 50 75 100 AMBIENT TEMPERATURE [ INPUT OFFSET VOLTAGE [mV] BA15218 famil y -40℃ 85℃ 25℃ -50 -25 0 25 50 75 100 AMBIENT TEMPERATURE [℃] INPUT BIAS CURRENT [nA] BA15218 famil y 25℃ 85℃ BA15218 famil y ±2V ±7.5V ±15V BA15218 family ±15V ±7.5V ±2V BA15218 family 0.1 1 10 LOAD RESISTANCE [kΩ] MAXIMUM OUTPUT VOLTAGE SWING[Vp-p] VOH BA15218F BA15218 famil y 25℃ BA15218 famil y -40℃ BA15218 family ±2 V ±15V ±7.5 V -20 -15 -10 SUPPLY VOLTAGE [V] OUTPUT VOLTAGE [V] BA15218 famil y VOH BA15218 family VOH -20 -15 -10 0 5 10 15 20 25 OUTPUT CURRENT [mA] OUTPUT VOLTAGE [V] BA15218 famil y VOL VOL VOL VOL VOH 85℃ Input Offset Voltage – Supply Voltage (Vicm=0[V],Vout=0[V]) Derating Curve Input Offset Voltage – Ambient Temperature (Vicm=0[V],Vout=0[V]) Input Bias Current – Ambient Temperature (Vicm=0[V],Vout=0[V]) Input Bias Current – Supply Voltage (Vicm=0[V],Vout=0[V]) Maximum Output Voltage – Load Resistance (VCC/VEE=+15[V]/-15[V],Ta=25[℃]) Maximum Output Voltage Swing – Load Resistance (VCC/VEE=+15[V]/-15[V],Ta=25[℃]) Supply Current – Supply Voltage Supply Current – Ambient Temperature Maximum Output Voltage – Supply Voltage (RL=2[kΩ],Ta=25[℃]) Maximum Output Voltage – Ambient Temperature (VCC/VEE=+15[V]/-15[V],RL=2[kΩ]) Maximum Output Voltage – Output Current (VCC/VEE=+15[V]/-15[V],Ta=25[℃]) BA15218 famil y MAXIMUM OUTPUT VOLTAGE [V] MAXIMUM OUTPUT VOLTAGE [V] MAXIMUM OUTPUT VOLTAGE [V] MAXIMUM OUTPUT VOLTAGE [V]INPUT OFFSET VOLTAGE [mV] F i g . 1 1 1 F i g . 1 1 2 F i g . 1 1 3 F i g . 1 1 4 F i g . 1 1 5 F i g . 1 1 6 F i g . 1 1 7 F i g . 1 1 8 F i g . 1 1 9 Fig. 120 Fig. 121 Fig. 122

BA4558F,BA4560F,BA4558RF/FV/FVM,BA4560RF/FV/FVM,BA4580RF/FVM, BA15218F,BA14741F,BA15532F,BA4510F/FV,BA2115F/FVM www.rohm.com 2009.05 - Rev.A © 2009 ROHM Co., Ltd. All rights reserved. ○BA15218 family (*) The above data is ability value of sample, it is not guaranteed. FREQUENCY [Hz] VOLTAGE GAIN [dB] . .. -180 -150 -120 -90 -60 -30 PHASE [degree] -30 -20 -10 SUPPLY VOLTAGE [V] INPUT OFFSET CURRENT [nA] . 1 100 10000 FREQUENCY [Hz] EQUIVALENT INPUT NOISE VOLTAGE [nV/√Hz] . 0.0001 0.001 0.01 0.1 0.1 1 10 OUTPUT VOLTAGE [Vrms] TOTAL HARMONIC DISTORTION [%] 100 125 150 -50 -25 0 25 50 75 100 AMBIENT TEMPERATURE [ POWER SUPPLY REJECTION RATIO [dB] SUPPLY VOLTAGE [V] SLEW RATE [V/μs] 100 125 150 -50 -25 0 25 50 75 100 AMBIENT TEMPERATURE [°C] COMMON MODE REJECTION RATIO [dB] Equivalent Input Noise Voltage – Frequency (VCC/VEE=+15[V]/-15[V],Rs=100[ Ω],Ta=25[℃]) Total Harmonic Distortion – Output Voltage (VCC/VEE=+15[V]/-15[V],Av=20[dB], RL=2[kΩ],80[kHz]-LPF,Ta=25[℃]) Slew Rate – Supply Voltage (CL=100[pF],RL=2[kΩ],Ta=25[℃]) Common Mode Rejection Ratio – Ambient Temperature (VCC/VEE=+15[V]/-15[V],Vicm=-12[V] to +12[V]) -30 -20 -10 -50 -25 0 25 50 75 100 AMBIENT TEMPERATURE [°C] INPUT OFFSET CURRENT [nA] Input Offset Current – Ambient Temperature (Vicm=0[V],Vout=0[V]) 85℃ -40℃ 25℃ Power Supply Rejection Ratio – Ambient Temperature (VCC/VEE=+2[V]/-2[V] to +15[V]/-15[V]) Input Offset Current – Supply Voltage (Vicm=0[V],Vout=0[V]) ±2V ±15V ±7.5V 1 10 100 1000 FREQUENCY [Hz] MAXIMUM OUTPUT VOLTAGE SWING [Vp-p] Maximum Output Voltage Swing – Frequency (VCC/VEE=+15[V]/-15[V],RL=2[kΩ],Ta=25[℃]) 02468 COMMON MODE INPUT VOLTAGE [V] INPUT OFFSET VOLTAGE [mV] Input Offset Voltage – Common Mode Input Voltage (VCC=8[V],Vout=4[V]) 85℃ 25℃ -40℃ GAIN PHASE Voltage Gain – Frequency (VCC/VEE=+15[V]/-15 [V],Av=40[dB],RL=2[kΩ],Ta=25[℃]) 20kHz 20Hz 1kHz BA15218 famil y BA15218 family BA15218 familyBA15218 famil y BA15218 famil y BA15218 family BA15218 famil y BA15218 famil y BA15218 family BA15218 family PHASE [deg] FREQUENCY [kHz] Fig. 123 Fig. 124 Fig. 125 Fig. 126 Fig. 127 Fig. 128 Fig. 129 Fig. 130 Fig. 131 Fig. 132

BA4558F,BA4560F,BA4558RF/FV/FVM,BA4560RF/FV/FVM,BA4580RF/FVM, BA15218F,BA14741F,BA15532F,BA4510F/FV,BA2115F/FVM www.rohm.com 2009.05 - Rev.A © 2009 ROHM Co., Ltd. All rights reserved. ○BA14741 family (*) The above data is ability value of sample, it is not guaranteed. 0.0 2.0 4.0 6.0 8.0 0 5 10 15 20 25 30 35 40 SUPPLY VOLTAGE [V] SUPPLY CURRENT [mA] . 200 400 600 800 1000 02 5 5 0 7 5 1 0 0 1 2 5 AMBIENT TEMPERATURE [℃] . POWER DISSIPATION [mW] . 100 120 140 160 180 200 SUPPLY VOLTAGE [V] INPUT BIAS CURRENT [nA] . SUPPLY VOLTAGE [V] INPUT OFFSET VOLTAGE [mV] -20 -15 -10 -50 -25 0 25 50 75 100 AMBIENT TEMPERATURE [℃] OUTPUT VOLTAGE [V] -20 -15 -10 0.1 1 10 LOAD RESISTANCE [kΩ] OUTPUT VOLTAGE [V] -50 -25 0 25 50 75 100 AMBIENT TEMPERATURE [℃] INPUT OFFSET VOLTAGE [mV] -40℃ 85℃ 25℃ 100 120 140 160 180 200 -50 -25 0 25 50 75 100 AMBIENT TEMPERATURE [ INPUT BIAS CURRENT [nA] -40℃ 25℃ 85℃ ±2V ±15V ±18V ±2V ±15V ±18V 0.1 1 10 LOAD RESISTANCE [kΩ] MAXIMUM OUTPUT VOLTAGE SWING [Vp-p] VOH BA14741F 25℃ 85℃ BA14741 family -40℃ 0.0 2.0 4.0 6.0 8.0 -50 -25 0 25 50 75 100 AMBIENT TEMPERATURE [℃] SUPPLY CURRENT [mA] BA14741 famil y ±2 V ±18V ±15 V -20 -15 -10 SUPPLY VOLTAGE [V] OUTPUT VOLTAGE [V] VOH VOH -20 -15 -10 0 5 10 15 20 OUTPUT CURRENT [mA] OUTPUT VOLTAGE [V] VOL VOL VOL VOL VOH BA14741 famil y BA14741 famil y BA14741 familyBA14741 famil y BA14741 famil y BA14741 famil yBA14741 famil y BA14741 family BA14741 famil yBA14741 famil y Input Offset Voltage – Supply Voltage (Vicm=0[V],Vout=0[V]) Derating Curve Input Offset Voltage – Ambient Temperature (Vicm=0[V],Vout=0[V]) Input Bias Current – Ambient Temperature (Vicm=0[V],Vout=0[V]) Input Bias Current – Supply Voltage (Vicm=0[V],Vout=0[V]) Maximum Output Voltage – Load Resistance (VCC/VEE=+15[V]/-15[V],Ta=25[℃]) Maximum Output Voltage Swing – Load Resistance (VCC/VEE=+15[V]/-15[V],Ta=25[℃]) Supply Current – Supply Voltage Supply Current – Ambient Temperature Maximum Output Voltage – Supply Voltage (RL=2[kΩ],Ta=25[℃]) Maximum Output Voltage – Ambient Temperature (VCC/VEE=+15[V]/-15[V],RL=2[kΩ]) Maximum Output Voltage – Output Current (VCC/VEE=+15[V]/-15[V],Ta=25[℃]) MAXIMUM OUTPUT VOLTAGE [V] MAXIMUM OUTPUT VOLTAGE [V] MAXIMUM OUTPUT VOLTAGE [V] MAXIMUM OUTPUT VOLTAGE [V] Fig. 133 Fig. 134 Fig. 135 Fig. 136 Fig. 137 Fig. 138 Fig. 139 Fig. 140 Fig. 141 Fig. 142 Fig. 143 Fig. 144

BA4558F,BA4560F,BA4558RF/FV/FVM,BA4560RF/FV/FVM,BA4580RF/FVM, BA15218F,BA14741F,BA15532F,BA4510F/FV,BA2115F/FVM www.rohm.com 2009.05 - Rev.A © 2009 ROHM Co., Ltd. All rights reserved. ○BA14741 family (*) The above data is ability value of sample, it is not guaranteed. FREQUENCY [Hz] VOLTAGE GAIN [dB] -180 -150 -120 -90 -60 -30 PHASE [deg] -30 -20 -10 SUPPLY VOLTAGE [V] INPUT OFFSET CURRENT [nA] . 1 10 100 1000 10000 FREQUENCY [Hz] EQUIVALENT INPUT NOISE VOLTAGE [nV/√Hz] . 0.0001 0.001 0.01 0.1 0.1 1 10 OUTPUT VOLTAGE [Vrms] TOTAL HARMONIC DISTORTION [%] 100 125 150 -50 -25 0 25 50 75 100 AMBIENT TEMPERATURE [℃] POWER SUPPLY REJECTION RATIO [dB] 0.0 0.5 1.0 1.5 2.0 2.5 3.0 SUPPLY VOLTAGE [V] SLEW RATE [V/μs] . 100 125 150 -50 -25 0 25 50 75 100 AMBIENT TEMPERATURE [°C] COMMON MODE REJECTION RATIO [dB] Equivalent Input Noise Voltage – Frequency (VCC/VEE=+15[V]/-15[V],Rs=100[ Ω],Ta=25[℃]) Total Harmonic Distortion – Output Voltage (VCC/VEE=+15[V]/-15[V],Av=20[dB], RL=2[kΩ],80[kHz]-LPF,Ta=25[℃]) Slew Rate – Supply Voltage (CL=100[pF],RL=2[kΩ],Ta=25[℃]) Common Mode Rejection Ratio – Ambient Temperature (VCC/VEE=+15[V]/-15[V],Vicm=-12[V] to +12[V]) -30 -20 -10 -50 -25 0 25 50 75 100 AMBIENT TEMPERATURE [°C] INPUT OFFSET CURRENT [nA] Input Offset Current – Ambient Temperature (Vicm=0[V],Vout=0[V]) 85℃ -40℃ 25℃ Power Supply Rejection Ratio – Ambient Temperature (VCC/VEE=+2[V]/-2[V] to +15[V]/-15[V]) Input Offset Current – Supply Voltage (Vicm=0[V],Vout=0[V]) ±18V ±2V ±15V 1 10 100 1000 FREQUENCY [kHz] MAXIMUM OUTPUT VOLTAGE SWING [Vp-p] Maximum Output Voltage Swing – Frequency (VCC/VEE=+15[V]/-15[V],RL=2[kΩ],Ta=25[℃]) 02468 COMMON MODE INPUT VOLTAGE [V] INPUT OFFSET VOLTAGE [mV] Input Offset Voltage – Common Mode Input Voltage (VCC=8[V],Vout=4[V]) 85℃ 25℃ -40℃ GAIN PHASE Voltage Gain – Frequency (VCC/VEE=+15[V]/-15 [V],Av=40[dB],RL=2[kΩ],Ta=25[℃]) 20kHz 20Hz 1kHz BA14741 famil y BA14741 familyBA14741 famil y BA14741 famil y BA14741 famil y BA14741 famil yBA14741 famil y BA14741 famil y BA14741 familyBA14741 famil y Fig. 145 Fig. 146 Fig. 147 Fig. 148 Fig. 149 Fig. 150 Fig. 151 Fig. 152 Fig. 153 Fig. 154

BA4558F,BA4560F,BA4558RF/FV/FVM,BA4560RF/FV/FVM,BA4580RF/FVM, BA15218F,BA14741F,BA15532F,BA4510F/FV,BA2115F/FVM www.rohm.com 2009.05 - Rev.A © 2009 ROHM Co., Ltd. All rights reserved. 0.1 1 10 LOAD RESISTANCE [kΩ] MAXIMUM OUTPUT VOLTAGE SWING [Vp-p] ○BA15532 family (*) The above data is ability value of sample, it is not guaranteed. 200 400 600 800 1000 0 25 50 75 100 125 AMBIENT TEMPERATURE [℃] . POWER DISSIPATION [mW] . Maximum Output Voltage Swing – Load Resistance (VCC/VEE=+15[V]/-15[V],Ta=25[℃]) 100 200 300 400 500 600 700 800 SUPPLY VOLTAGE [V] INPUT BIAS CURRENT [nA] . SUPPLY VOLTAGE [V] INPUT OFFSET VOLTAGE [mV] 0.0 4.0 8.0 12.0 16.0 20.0 0 5 10 15 20 25 30 35 40 SUPPLY VOLTAGE [V] SUPPLY CURRENT [mA] . -20 -15 -10 -50 -25 0 25 50 75 100 AMBIENT TEMPERATURE [ OUTPUT VOLTAGE [V] -20 -15 -10 0.1 1 10 LOAD RESISTANCE [kΩ] OUTPUT VOLTAGE [V] -50 -25 0 25 50 75 100 AMBIENT TEMPERATURE [ INPUT OFFSET VOLTAGE [mV] BA15532 famil y -20℃ 75℃ 25℃ 100 200 300 400 500 600 700 800 -50 -25 0 25 50 75 100 AMBIENT TEMPERATURE [ INPUT BIAS CURRENT [nA] BA15532 family 25℃ 75℃ BA15532 family ±3V ±15V ±20V BA15532 famil y ±20V ±15V ±3V BA15532 family VOH BA15532F BA15532 famil y 25℃ 75℃ BA15532 famil y -20℃ 0.0 4.0 8.0 12.0 16.0 20.0 -50 -25 0 25 50 75 100 AMBIENT TEMPERATURE [ SUPPLY CURRENT [mA] ±2 V ±20V ±15 V -20 -15 -10 SUPPLY VOLTAGE [V] OUTPUT VOLTAGE [V] VOH BA15532 famil y VOH -20 -15 -10 0 5 10 15 20 25 OUTPUT CURRENT [mA] OUTPUT VOLTAGE [V] BA15532 famil y VOL VOL VOL VOL VOH -20℃ BA15532 famil y BA15532 famil y BA15532 famil y Input Offset Voltage – Supply Voltage (Vicm=0[V],Vout=0[V]) Derating Curve Input Offset Voltage – Ambient Temperature (Vicm=0[V],Vout=0[V]) Input Bias Current – Ambient Temperature (Vicm=0[V],Vout=0[V]) Input Bias Current – Supply Voltage (Vicm=0[V],Vout=0[V]) Maximum Output Voltage– Load Resistance(VCC/VEE=+15[V]/-15[V],Ta=25[℃ Supply Current – Supply Voltage Supply Current – Ambient Temperature Maximum Output Voltage– Supply Voltage(RL=2[kΩ],Ta=25[℃]) Maximum Output Voltage– Ambient Temperature(VCC/VEE=+15[V]/-15[V],RL=2[kΩ]) Maximum Output Voltage– Output Current(VCC/VEE=+15[V]/-15[V],Ta=25[℃]) MAXIMUM OUTPUT VOLTAGE [V] MAXIMUM OUTPUT VOLTAGE [V] MAXIMUM OUTPUT VOLTAGE [V] MAXIMUM OUTPUT VOLTAGE [V] INPUT OFFSET VOLTAGE [mV] INPUT OFFSET VOLTAGE [mV] Fig. 155 Fig. 156 Fig. 157 Fig. 158 Fig. 159 Fig. 160 Fig. 161 Fig. 162 Fig. 163 Fig. 164 Fig. 165 Fig. 166

BA4558F,BA4560F,BA4558RF/FV/FVM,BA4560RF/FV/FVM,BA4580RF/FVM, BA15218F,BA14741F,BA15532F,BA4510F/FV,BA2115F/FVM www.rohm.com 2009.05 - Rev.A © 2009 ROHM Co., Ltd. All rights reserved. ○BA15532 family (*) The above data is ability value of sample, it is not guaranteed. FREQUENCY [Hz] VOLTAGE GAIN [dB] . .. -1 80 -1 50 -1 20 -9 0 -6 0 -3 0 PHASE [deg] -30 -20 -10 SUPPLY VOLTAGE [V] INPUT OFFSET CURRENT [nA] . 10 100 1000 10000 FREQUENCY [Hz] EQUIVALENT INPUT NOISE VOLTAGE [nV/√Hz] . 0.0001 0.001 0.01 0.1 0.1 1 10 OUTPUT VOLTAGE [Vrms] TOTAL HARMONIC DISTORTION [%] 100 125 150 -50 -25 0 25 50 75 100 AMBIENT TEMPERATURE [℃] POWER SUPPLY REJECTION RATIO [dB] SUPPLY VOLTAGE [V] SLEW RATE [V/μs] . 100 125 150 175 -50 -25 0 25 50 75 100 AMBIENT TEMPERATURE [°C] COMMON MODE REJECTION RATIO [dB] Equivalent Input Noise Voltage – Frequency (VCC/VEE=+15[V]/-15[V],Rs=100[ Ω],Ta=25[℃]) Total Harmonic Distortion – Output Voltage (VCC/VEE=+15[V]/- 15[V],Av=20[dB], RL=600[Ω],80[kHz]-LPF,Ta=25[℃]) Slew Rate – Supply Voltage (CL=100[pF],RL=2[kΩ],Ta=25[℃]) Common Mode Rejection Ratio – Ambient Temperature (VCC/VEE=+15[V]/-15[V],Vicm=-12[V] to +12[V]) -30 -20 -10 -50 -25 0 25 50 75 100 AMBIENT TEMPERATURE [°C] INPUT OFFSET CURRENT [nA] Input Offset Current – Ambient Temperature (Vicm=0[V],Vout=0[V]) BA15532 famil y 75℃ -20℃ 25℃ BA15532 family Power Supply Rejection Ratio – Ambient Temperature (VCC/VEE=+3[V]/-3[V] to +15[V]/-15[V]) BA15532 famil y Input Offset Current – Supply Voltage (Vicm=0[V],Vout=0[V]) ±3V ±20V ±15V 1 10 100 1000 FREQUENCY [Hz] MAXIMUM OUTPUT VOLTAGE SWING [Vp-p] Maximum Output Voltage Swing – Frequency (VCC/VEE=+15[V]/-15[V],RL=600[Ω],Ta=25[℃]) BA15532 family 02468 COMMON MODE INPUT VOLTAGE [V] INPUT OFFSET VOLTAGE [mV] Input Offset Voltage– Common Mode Input Voltage (VCC=8[V],Vout=4[V]) BA15532 family 75℃ 25℃ -20℃ GAIN PHASE Voltage Gain – Frequency (VCC/VEE=+15[V]/-15[V],Av=40[dB],RL=2[kΩ],Ta=25[℃]) BA15532 famil y BA15532 famil y BA15532 famil y BA15532 famil y 20kHz 1kHz 20Hz BA15532 famil y INPUT OFFSET VOLTAGE [mV] FREQUENCY [kHz] Fig. 167 Fig. 168 Fig. 169 Fig. 170 Fig. 171 Fig. 172 Fig. 173 Fig. 174 Fig. 175 Fig. 176

BA4558F,BA4560F,BA4558RF/FV/FVM,BA4560RF/FV/FVM,BA4580RF/FVM, BA15218F,BA14741F,BA15532F,BA4510F/FV,BA2115F/FVM www.rohm.com 2009.05 - Rev.A © 2009 ROHM Co., Ltd. All rights reserved. SUPPLY VOLTAGE [V] OUTPUT VOLTAGE [V] 0.1 1 10 100 1000 10000 LOAD RESISTANCE [k OUTPUT VOLTAGE [V] 0.0 0.5 1.0 1.5 2.0 2.5 3.0 0 0.4 0.8 1.2 1.6 2 OUTPUT SOURCE CURRENT [mA] OUTPUT VOLTAGE [V] - 5 0 - 2 50 2 55 07 5 1 0 0 AMBIENT TEMPERATURE [℃] OUTPUT VOLTAGE [V] -3.0 -2.5 -2.0 -1.5 -1.0 -0.5 0.0 02468 1 0 OUTPUT SINK CURRENT [mA] OUTPUT VOLTAGE [V] -50 -25 0 25 50 75 100 AMBIENT TEMPERATURE [ SUPPLY CURRENT [mA] -20°C VOL VOH VOL VOH VOL VOH VOH VOL ○BA4510 family (*) The above data is ability value of sample, it is not guaranteed. 200 400 600 800 0 25 50 75 100 125 AMBIENT TEMPERATURE [℃] POWER DISSIPATION [mW] . Maximum Output Voltage– Output Source Current (VCC/VEE=2.5[V]/-2.5[V],Ta=25[℃]) -6.0 -4.0 -2.0 0.0 2.0 4.0 6.0 SUPPLY VOLTAGE [V] INPUT OFFSET VOLTAGE [mV] 0.0 0.5 1.0 1.5 2.0 -50 -25 0 25 50 75 100 AMBIENT TEMPERATURE [°C] INPUT OFFSET VOLTAGE [mV] ±1.5V ±2.5V ±3.5V BA4510 family 02468 SUPPLY VOLTAGE [V] SUPPLY CURRENT [mA] 75℃ 25℃ -20℃ BA4510 family Output Voltage – Load Resistance (VCC/VEE=2.5[V]/-2.5[V],Ta=25[℃]) BA4510F BA4510 family Maximum Output Voltage – Supply Voltage (RL=10[k Ω],Ta=25[℃]) Maximum Output Voltage– Output Sink Current (VCC/VEE=2.5[V]/-2.5[V],Ta=25[℃]) Input Offset Voltage – Supply Voltage (Vicm=0[V],Vout=0[V]) BA4510 family 75°C -20°C 25°C BA4510 familyBA4510 family BA4510 family Input Offset Voltage – Ambient Temperature (Vicm=0[V],Vout=0[V]) 100 150 200 250 300 SUPPLY VOLTAGE [V] INPUT BIAS CURRENT [nA] 75°C 25°C BA4510 family Input Bias Current – Supply Voltage (Vicm=0[V],Vout=0[V]) 100 150 200 250 300 -50 -25 0 25 50 75 100 AMBIENT TEMPERATURE [°C] INPUT BIAS CURRENT [nA] ±3.5V ±2.5V ±1.5V BA4510 family Input Bias Current – Ambient Temperature (Vicm=0[V],Vout=0[V]) BA4510 family BA4510 family Maximum Output Voltage – Ambient Temperature (VCC/VEE=2.5[V]/-2.5[V],RL=10[k Ω]) BA4510 family BA4510FV Derating Curve Supply Current – Supply Voltage Supply Current – Ambient Temperature MAXIMUM OUTPUT VOLTAGE [V] MAXIMUM OUTPUT VOLTAGE [V] MAXIMUM OUTPUT VOLTAGE [V] MAXIMUM OUTPUT VOLTAGE [V] Fig. 177 Fig. 178 Fig. 179 Fig. 180 Fig. 181 Fig. 182 Fig. 183 Fig. 184 Fig. 185 Fig. 186 Fig. 187 Fig. 188

BA4558F,BA4560F,BA4558RF/FV/FVM,BA4560RF/FV/FVM,BA4580RF/FVM, BA15218F,BA14741F,BA15532F,BA4510F/FV,BA2115F/FVM www.rohm.com 2009.05 - Rev.A © 2009 ROHM Co., Ltd. All rights reserved. 120 150 -50 -25 0 25 50 75 100 AMBIENT TEMPERATURE [℃] LARGE SIGNAL VOLTAGE GAIN [dB] ○BA4510 family (*) The above data is ability value of sample, it is not guaranteed. -20 -15 -10 SUPPLY VOLTAGE [V] INPUT OFFSET CURRENT [nA] 1 10 100 1000 10000 FREQUENCY [Hz] EQUIVALENT INPUT NOISE VOLTAGE [nV/√Hz] 100 120 -50 -25 0 25 50 75 100 AMBIENT TEMPERATURE [°C] COMMON MODE REJECTION RATIO [dB] 0.001 0.01 0.1 0.01 0.1 1 10 OUTPUT VOLTAGE [Vrms] TOTAL HARMONIC DISTORTION [%] -50 -25 0 25 50 75 100 AMBIENT TEMPERATURE [℃] SLEW RATE H-L [V/us] -50 -25 0 25 50 75 100 AMBIENT TEMPERATURE [℃] SLEW RATE L-H [V/us] -20 -15 -10 -50 -25 0 25 50 75 100 AMBIENT TEMPERATURE [°C] INPUT OFFSET CURRENT [nA] 100 120 -50 -25 0 25 50 75 100 AMBIENT TEMPERATURE [℃] POWER SUPPLY REJECTION RATIO [dB] BA4510 family Input Offset Current – Ambient Temperature (Vicm=0[V],Vout=0[V]) -20 -15 -10 -3 -2 -1 0 1 2 3 COMMON MODE INPUT VOLTAGE [V] INPUT OFFSET VOLTAGE [mV ] -20℃ 25℃ 75℃ BA4510 family Total Harmonic Distortion – Output Voltage (VCC/VEE=2.5[V]/-2.5[V],RL=3[k Ω] 80[kHz]-LPF,Ta=25[℃]) Slew Rate L-H – Ambient Temperature BA4510 family Large Signal Voltage Gain – Ambient Temperature Input Offset Voltage– Common Mode Input Voltage (VCC/VEE=2.5[V]/-2.5[V]) Common Mode Rejection Ratio – Ambient Temperature Power Supply Rejection Ratio – Ambient Temperature ±3.5V ±2.5V ±1.5V BA4510 family 2.5V BA4510 family Slew Rate H-L – Ambient Temperature FREQUENCY [Hz] GAIN [dB] -180 -150 -120 -90 -60 -30 PHASE [deg] Phase Gain BA4510 family BA4510 family BA4510 family 75°C -20°C 25°C BA4510 family 2.5V Equivalent Input Noise Voltage – Frequency (VCC/VEE=2.5[V]/-2.5[V]) BA4510 family ±1.5V ±2.5V ±3.5V BA4510 family ±1.5V ±2.5V ±3.5V 1kHz 20Hz 20kHz Voltage Gain – Frequency (VCC/VEE=2.5[V]/-2.5[V],Av=40[dB],RL=10[kΩ]) VOLTAGE GAIN [dB] Input Offset Current – Supply Voltage (Vicm=0[V],Vout=0[V]) Fig. 189 Fig. 190 Fig. 191 Fig. 192 Fig. 193 Fig. 194 Fig. 195 Fig. 196 Fig. 197 Fig. 198 Fig. 199

BA4558F,BA4560F,BA4558RF/FV/FVM,BA4560RF/FV/FVM,BA4580RF/FVM, BA15218F,BA14741F,BA15532F,BA4510F/FV,BA2115F/FVM www.rohm.com 2009.05 - Rev.A © 2009 ROHM Co., Ltd. All rights reserved. 200 400 600 800 1000 0 25 50 75 100 125 AMBIENT TEMPERATURE [℃] POWER DISSIPATION [mW] . 0.0 0.5 1.0 1.5 2.0 2.5 3.0 OUTPUT SOURCE CURRENT [mA] OUTPUT VOLTAGE [V] ○BA2115 family (*) The above data is ability value of sample, it is not guaranteed. -12 -50 -25 0 25 50 75 100 AMBIENT TEMPERATURE [℃] OUTPUT VOLTAGE [V] Maximum Output Voltage – Output Source Current (VCC/VEE=+2.5[V]/-2.5[V]) Maximum Output Voltage – Ambient Temperature (VCC/VEE=+7.5[V]/-7.5[V],RL=10[kΩ]) -50 -25 0 25 50 75 100 AMBIENT TEMPERATURE [°C] INPUT OFFSET VOLTAGE [mV] -2.5 -1.5 -0.5 02468 1 0 OUTPUT SINK CURRENT [mA] OUTPUT VOLTAGE [V] SUPPLY VOLTAGE [V] INPUT OFFSET VOLTAGE [mV] Input Offset Voltage – Supply Voltage (Vicm=0[V], Vout=0[V]) BA2115 family -10 SUPPLY VOLTAGE [V] OUTPUT VOLTAGE [V] 0.1 1 10 100 1000 10000 LOAD RESISTANCE [kΩ] OUTPUT VOLTAGE [V] BA2115FVM BA2115 family Derating Curve 0 5 10 15 SUPPLY VOLTAGE [V] SUPPLY CURRENT [mA] . BA2115 family Supply Current – Supply Voltage -40℃ 25℃ 85℃ -50 -25 0 25 50 75 100 AMBIENT TEMPERATURE [℃] SUPPLY CURRENT [mA] Supply Current – Ambient Temperature BA2115 family 3.0V 14.0V 5.0V BA2115 family VOH Output Voltage – Load Resistance (VCC/VEE=+2.5[V]/-2.5[V]) BA2115 family Maximum Output Voltage – Supply Voltage (RL=10[k Ω]) VOL BA2115 family VOH VOL BA2115 family Input Offset Voltage – Ambient Temperature (Vicm=0[V], Vout=0[V]) ±1.5V ±2.5V ±7.0V 100 150 200 250 -50 -25 0 25 50 75 100 AMBIENT TEMPERATURE [°C] INPUT BIAS CURRENT [nA] . BA2115 family Input Bias Current – Ambient Temperature (Vicm=0[V], Vout=0[V]) ±1.5V ±2.5V ±7.0V Maximum Output Voltage – Output Sink Current (VCC/VEE=+2.5[V]/-2.5[V]) BA2115 family VOL VOH BA2115 family VOH VOL 100 150 200 250 SUPPLY VOLTAGE [V] INPUT BIAS CURRENT [nA] . . BA2115 family Input Bias Current – Supply Voltage (Vicm=0[V], Vout=0[V]) -40℃ 25℃ 85℃ BA2115F MAXIMUM OUTPUT VOLTAGE [V] MAXIMUM OUTPUT VOLTAGE [V] MAXIMUM OUTPUT VOLTAGE [V] MAXIMUM OUTPUT VOLTAGE [V] Fig. 200 Fig. 201 Fig. 202 Fig. 203 Fig. 204 Fig. 205 Fig. 206 Fig. 207 Fig. 208 Fig. 209 Fig. 210 Fig. 211

BA4558F,BA4560F,BA4558RF/FV/FVM,BA4560RF/FV/FVM,BA4580RF/FVM, BA15218F,BA14741F,BA15532F,BA4510F/FV,BA2115F/FVM www.rohm.com 2009.05 - Rev.A © 2009 ROHM Co., Ltd. All rights reserved. SUPPLY VOLTAGE[V] SLEW RATE L-H [V/us] -20 -15 -10 COMMON MODE INPUT VOLTAGE [V] INPUT OFFSET VOLTAGE [mV] ○BA2115 family (*) The above data is ability value of sample, it is not guaranteed. 100 125 150 -50 -25 0 25 50 75 100 AMBIENT TEMPERATURE [°C] POWER SUPPLY REJECTION RATIO [dB] . 1 100 10000 FREQUENCY [Hz] EQUIVALENT INPUT NOISE VOLTAGE [nV/√Hz] -40 -30 -20 -10 SUPPLY VOLTAGE [V] INPUT OFFSET CURRENT [nA] . 0.0 1.0 2.0 3.0 4.0 5.0 6.0 7.0 SUPPLY VOLTAGE [V] SLEW RATE H-L [V/us] 100 125 150 -50 -25 0 25 50 75 100 AMBIENT TEMPERATURE [°C] LARGE SIGNAL VOLTAGE GAIN [dB] . Input Offset Voltage – Common Mode Input Voltage (VCC/VEE=+2.5[V]/-2.5[V],Vout=0[V]) 0.001 0.01 0.1 0.01 0.1 1 10 OUTPUT VOLTAGE [Vrms] TOTAL HARMONIC DISTORTION [%] -40℃ 25℃ 85℃ BA2115 family 100 125 150 -50 -25 0 25 50 75 100 AMBIENT TEMPERATURE [°C] COMMON MODE REJECTION RATIO [dB] . Large Signal Voltage Gain – Ambient Temperature (VCC/VEE=+2.5[V]/-2.5[V]) BA2115 family BA2115 family -40℃ 25℃ 85℃ -40 -30 -20 -10 -50 -25 0 25 50 75 100 AMBIENT TEMPERATURE [℃] INPUT OFFSET CURRENT [nA] BA2115 family ±1.5V ±2.5V ±7.0V BA2115 family BA2115 family Common Mode Rejection Ratio – Ambient Temperature (VCC/VEE=+2.5[V]/-2.5[V]) BA2115 family Slew Rate H-L – Supply Voltage FREQUENCY [Hz] GAIN [dB] . -180 -150 -120 -90 -60 -30 PHASE [deg] . Gain Phase Power Supply Rejection Ratio – Ambient Temperature (VCC/VEE=+2.5[V]/-2.5[V]) -40℃ 25℃ 85℃ Slew Rate L-H – Supply Voltage BA2115 family -40℃ 25℃ 85℃ 20kHz 1kHz 20Hz BA2115 family BA2115 family BA2115 family Input Offset Current – Ambient Temperature (Vicm=0[V],Vout=0[V]) Total Harmonic Distortion – Output Voltage (VCC/VEE=2.5[V]/-2.5[V],RL=3[k Ω] 80[kHz]-LPF,Ta=25[℃]) Input Offset Current – Supply Voltage (Vicm=0[V],Vout=0[V]) Equivalent Input Noise Voltage – Frequency (VCC/VEE=2.5[V]/-2.5[V]) Voltage Gain – Frequency (VCC/VEE=2.5[V]/-2.5[V],Av=40[dB],RL=10[kΩ]) VOLTAGE GAIN [dB] Fig. 212 Fig. 213 Fig. 214 Fig. 215 Fig. 216 Fig. 217 Fig. 218 Fig. 219 Fig. 220 Fig. 221 Fig. 222 Fig. 223

BA4558F,BA4560F,BA4558RF/FV/FVM,BA4560RF/FV/FVM,BA4580RF/FVM, BA15218F,BA14741F,BA15532F,BA4510F/FV,BA2115F/FVM www.rohm.com 2009.05 - Rev.A © 2009 ROHM Co., Ltd. All rights reserved.

  • Schematic diagram
  • Test circuit1 NULL method VCC,VEE,EK,Vicm Unit : [V], Vicm=0[V] For all parameter Parameter VF S1 S2 S3 (*23) BA4558/BA4558R BA4560/BA4560R BA4580R BA15218/BA14741 BA15532 BA4510 BA2115 Calculation Vcc VEE EK Vcc VEE EK Vcc VEE EK Vcc VEE EK Vcc VEE EK Input Offset Voltage VF1 ON ON OFF 15 -15 0 15 -15 0 15 -15 0 2.5 2.5 0 2.5 2.5 0 1 Input Offset Current VF2 OFF OFF OFF 15 -15 0 15 -15 0 15 -15 0 2.5 2.5 0 2.5 2.5 0 2 Input Bias Current VF3 OFF ON OFF 15 -15 0 15 -15 0 15 -15 0 2.5 2.5 0 2.5 2.5 0 3 VF4 ON OFF 15 -15 0 15 -15 0 15 -15 0 2.5 2.5 0 2.5 2.5 0 Large Signal Voltage Gain VF5 ON ON ON Common-mode Rejection Ratio (Input Common-mode Voltage Range) VF7 ON ON OFF Power Supply Rejection Ratio VF9 ON ON OFF 4 -4 0 2 -2 0 3 -3 0 1.25 -1.25 0 0.75 -1.25 0 6 VF10 15 -15 0 16 -16 0 20 -20 0 3.0 -3.0 0 7.0 7.0 0 (*23) S3 is always ON for BA15532. -Calculation- 1. Input Offset Voltage (Vio) 2. Input Offset Current (Iio) 3. Input Bias Current (Ib) 4. Large Signal Voltage Gain (Av) 5. Common-mode Rejection Ratio (CMRR) 6. Power Supply Rejection Ratio (PSRR) Fig. 224 Simplified schematic (BA4558/BA4558R/BA15218/ Fig. 228 Test circuit 1 (one channel only) VCC 0.1[μF] Rf 50[kΩ] Ri Rs 10[kΩ]50[Ω] 10[kΩ]50[Ω] RiRs RL 1000[pF] 500[kΩ] 500[kΩ] 0.1[μF] RK EK RK C1 +15[V] -15[V] NULL V VF DUT VE EVicm Fig. 225 Simplified schematic (BA14741) Fig. 226 Simplified schematic (BA15532) ΔEK×(1+Rf /Rs)Av = 20×Log |VF5-VF6| [dB] ΔVicm×(1+Rf/Rs)CMRR = 20×Log |VF8-VF7| [dB] ΔVcc×(1+Rf/Rs)PSRR = 20×Log |VF10-VF9| [dB] | VF1 | Vio = 1 + Rf / Rs [V] | VF2 -VF1 | Iio = Ri ×(1 + Rf / Rs) [A] | VF4 -VF3 | Ib = 2×Ri× (1 + Rf / Rs) [A] -IN +IN VOUT VCC VEE -IN +IN VOUT VCC VEE -IN +IN VCC VEE VOUT Fig. 227 Simplified schematic (BA4510/BA2115) -IN +IN VOUT VCC VEE BA4560/BA4560R/BA4580R)

BA4558F,BA4560F,BA4558RF/FV/FVM,BA4560RF/FV/FVM,BA4580RF/FVM, BA15218F,BA14741F,BA15532F,BA4510F/FV,BA2115F/FVM www.rohm.com 2009.05 - Rev.A © 2009 ROHM Co., Ltd. All rights reserved.

  • Test circuit2 switch condition SW No. SW SW SW SW SW SW SW SW SW SW SW SW SW SW Supply Current OFF OFF OFF ON OFF ON OFF OFF OFF OFF OFF OFF OFF OFF Maximum Output Voltage Load Resistance OFF OFF ON OFF OFF OFF ON OFF ON OFF OFF OFF ON ON Output Current OFF OFF ON OFF OFF OFF ON OFF OFF OFF OFF ON ON OFF Slew Rate OFF OFF OFF ON OFF OFF OFF ON ON ON OFF OFF OFF OFF Gain Bandwidth Product OFF ON OFF OFF ON ON OFF OFF ON ON ON OFF OFF OFF Total Harmonic Distortion ON OFF OFF O FF ON OFF ON OFF ON ON ON OFF OFF OFF Input Noise Voltage (*24) ON OFF OFF OFF ON ON OFF OFF OFF OFF ON OFF OFF OFF (*24) this condition refers only to BA4558Rfamily, BA4560Rfamily
  • Test circuit3 Channel separation Fig. 229. Test circuit2 (one channel only) Fig. 230 Slew rate input output wave Fig. 231Test circuit3 (VCC=+15[V],VEE=-15[V],R1=1[k Ω],R2=100[kΩ]) VCC VEE V R1//R2 VOUT1 =0.5[Vrms]VIN VCC VEE V R1//R2 VOUT2 OTHER CH CS=20×log 100×VOUT1 VOUT2 SW1 SW2 SW3 SW10 SW11 SW12 A VIN- VIN+ RL VCC VEE SW9 ~ ~ SW6 SW7 SW8 ~CL SW13 SW14 A V VOUT RS SW5 SW4 V VH VL 入力電圧波形 時間 電圧 VH VL Δt ΔV 出力電圧波形 SR=ΔV/Δt 時間 電圧 Input Voltage Waveform Output Voltage Waveform voltage voltage time time

BA4558F,BA4560F,BA4558RF/FV/FVM,BA4560RF/FV/FVM,BA4580RF/FVM, BA15218F,BA14741F,BA15532F,BA4510F/FV,BA2115F/FVM www.rohm.com 2009.05 - Rev.A © 2009 ROHM Co., Ltd. All rights reserved.

  • Description of electrical characteristics Described here are the terms of electric characteristics used in this technical note. Items and symbols used are also shown. Note that item name and symbol and their meaning may differ from those on another manufacture’s document or general document. 1. Absolute maximum ratings Absolute maximum rating item indicates the condition which must not be exceeded. Application of voltage in excess of absolute maximum rating or use out of absolute maximum rated temperature environment may cause deterioration of characteristics.

1.1 Power supply voltage(VCC-VEE)

Indicates the maximum voltage that can be applied between the positive power supply terminal and negative power supply terminal without deterioration or destruction of characteristics of internal circuit.

1.2 Differential input voltage(Vid)

Indicates the maximum voltage that can be applied between non-inverting terminal and inverting terminal without deterioration and destruction of characteristics of IC.

1.3 Input common-mode voltage range(Vicm)

Indicates the maximum voltage that can be applied to non-inverting terminal and inverting terminal without deterioration or destruction ofcharacteristics. Input common-mode voltage range of the maximum ratings not assure normal operation of IC. When normal operation of IC is desired, the input common-mode voltage of characteristics item must be followed.

1.4 Power dissipation(Pd)

Indicates the power that can be consumed by specified mounted board at the ambient temperature 25℃(normal temperature). As forpackage product, Pd is determined by the temperature that can be permitted by IC chip in the package(maximum junction temperature)and thermal resistance of the package. 2. Electrical characteristics item

2.1 Input offset voltage(Vio)

Indicates the voltage difference between non-inverting terminal and inverting terminal. It can be translated into the input voltagedifference required for setting the output voltage at 0 [V] .

2.3 Input offset current(Iio)

Indicates the difference of input bias current between non-inverting terminal and inverting terminal.

2.5 Input bias current(Ib)

Indicates the current that flows into or out of the input terminal. It is defined by the average of input bias current at non-inverting terminaland input bias current at inverting terminal.

2.6 Circuit current(ICC)

Indicates the IC current that flows under specified conditions and no-load steady status.

2.7 High level output voltage / Low level output voltage(VOH/VOL)

Indicates the voltage range that can be output by the IC under specified load condition. It is typically divided into high-level output voltageand low-level output voltage. High-level output voltage indicates the upper limit of output voltage. Low-level output voltage indicates thelower limit.

2.8 Large signal voltage gain(AV)

Indicates the amplifying rate (gain) of output voltage against the voltage difference between non-inverting terminal and inverting terminal.It is normally the amplifying rate (gain) with reference to DC voltage. Av = (Output voltage fluctuation) / (Input offset fluctuation)

2.9 Input common-mode voltage range(Vicm)

Indicates the input voltage range where IC operates normally.

2.10 Common-mode rejection ratio(CMRR)

Indicates the ratio of fluctuation of input offset voltage when in-phase input voltage is changed. It is normally the fluctuation of DC. CMRR = (Change of Input common-mode voltage) / (Input offset fluctuation)

2.11 Power supply rejection ratio(PSRR)

Indicates the ratio of fluctuation of input offset voltage when supply voltage is changed. It is normally the fluctuation of DC. PSRR = (Change of power supply voltage) / (Input offset fluctuation)

2.13 Channel separation(CS)

Indicates the fluctuation of input offset voltage or that of output voltage with reference to the change of output voltage of driven channel.

2.14 Slew rate(SR)

Indicates the time fluctuation ratio of voltage output when step input signal is applied. 2.12 Unity gain frequency(ft) Indicates a frequency where the voltage gain of Op-Amp is 1.

2.13 Total harmonic distortion + Noise(THD+N)

Indicates the fluctuation of input offset voltage or that of output voltage with reference to the change of output voltage of driven channel.

2.14 Input referred noise voltage(Vn)

Indicates a noise voltage generated inside the operational amplifier equivalent by ideal voltage source connected in series with input terminal.

BA4558F,BA4560F,BA4558RF/FV/FVM,BA4560RF/FV/FVM,BA4580RF/FVM, BA15218F,BA14741F,BA15532F,BA4510F/FV,BA2115F/FVM www.rohm.com 2009.05 - Rev.A © 2009 ROHM Co., Ltd. All rights reserved. Fig. 233 Derating curve 0 50 75 100 125 15025 Pd(max) LSIの消費電力[W] θja2 θja1 Tj(max) θja2 < θja1 周囲温度Ta[℃] θja2 θja1 Tj(max) Power dissipation of LSI [W] Ambient temperature Ta [℃] (b) Derating curve

  • Derating curve Power dissipation (total loss) indicates the power that can be consumed by IC at Ta=25℃(normal temperature).IC is heated when it consumed power, and the temperature of IC ship becomes higher than ambient temperature. The temperature that can be accepted by IC chip depends on circuit configuration, manufacturing process, and consumable power is limited. Power dissipation is determined by the temperature allowed in IC chip (maximum junction temperature) and thermal resistance of package (heat dissipation capability). The maximum junction temperature is typically equal to the maximum value in the storage temperature range. Heat generated by consumed power of IC radiates from the mold resin or lead frame of the package. The parameter which indicates this heat dissipation capability (hardness of heat release) is called thermal resistance, represented by the symbol θj-a[℃ /W]. The temperature of IC inside the package can be estimated by this thermal resistance. Fig.232 (a) shows the model of thermal resistance of the package. Thermal resistance θja, ambient temperature Ta, junction temperature Tj, and power dissipation Pd can be calculated by the equation below : θ ja = (Tj -T a ) / P d [℃/W] ・・・・・ ( Ⅰ) Derating curve in Fig.232 (b) indicates power that can be consumed by IC with reference to ambient temperature. Power that can be consumed by IC with reference to ambient temperature. Power that can be consumed by IC begins to attenuate at certain ambient temperature. This gradient, is determined by thermal resistance θja. Thermal resistance θja depends on chip size, power consumption, package, ambient temperature, package condition, wind velocity, etc even when the same of package is used. Thermal reduction curve indicates a reference value measured at a specified condition. Fig.233(a), (b) ,(c) ,(d) show a derating curve for an example of BA4558, BA4560, BA4558R, BA4560R, BA4580R, BA15218, BA14741, BA15532, BA4510, BA2115. When using the unit above Ta=25[℃], subtract the value above per degree[℃]. Permissible dissipation is the value when FR4 glass epoxy board 70[mm]×70[mm]×1.6[mm] (cooper foil area below 3[%]) is mounted. 200 400 600 800 1000 0 2 55 07 5 1 0 0 1 2 5 1 5 0 周囲温度 Ta [℃] 許容損失 Pd [mW] BA4558RF BA4560RF BA4580RF BA4558RFV BA4560RFV BA4580RFV BA4558RFVM BA4560RFVM BA4580RFVM 780mW( *1) 690mW( *2) 590mW (*3) 200 400 600 800 1000 0 25 50 75 100 125 周囲温度 Ta [℃] 許容損失 Pd [mW] BA4558F BA4560F BA15218F BA15532F BA14741F 620mW (*4) 490mW (*5) 200 400 600 800 1000 0 25 50 75 100 125 周囲温度 Ta [℃] 許容損失 Pd [mW] BA4510F BA4510FV 620mW( *1) 550mW (*2) (a) BA4510ファミリ 200 400 600 800 1000 0 25 50 75 100 125 150 周囲温度 Ta [℃] 許容損失 Pd [mW] BA2115F BA2115FVM 780mW (*3) 590mW (*4) (b) BA2115ファミリ (a)BA4558R/BA4560R/BA4580R family (b)BA4558/BA4560/BA15218/BA14741/BA15532 family (c)BA4510 family (d)BA2115 family Ambient temperature [℃] Ambient temperature [℃] Ambient temperature [℃] Ambient temperature [℃] Power Dissipation [mW] Power Dissipation [mW] Power Dissipation [mW] Power Dissipation [mW] (a) Thermal resistance Fig. 232 Thermal resistance and derating curve 周囲温度 Ta [℃] チップ表面温度 Tj [℃] 消費電力 P [W] θja = ( Tj ーTa ) / Pd [℃/W] Ambient temperature Ta [℃] Chip surface temperature Tj [℃] Power dissipation P [W]

BA4558F,BA4560F,BA4558RF/FV/FVM,BA4560RF/FV/FVM,BA4580RF/FVM, BA15218F,BA14741F,BA15532F,BA4510F/FV,BA2115F/FVM www.rohm.com 2009.05 - Rev.A © 2009 ROHM Co., Ltd. All rights reserved. 保護抵抗 VEE VCC VCC VEE 同相入力電圧 範囲内の電位

  • Cautions on use 1) Processing of unused circuit It is recommended to apply connection (see the Fig.234) and set the noninverting input terminal at the potential within input common-mode voltage range (Vicm), for any unused circuit. 2) Input voltage Applying VEE+36[V](BA4550R,BA4560R,BA4580R family), VEE+14[V] (BA2115 family) to the input terminal is possible without causing deterioration of the electrical characteristics or destruction, irrespective of the supply voltage. However, this does not ensure normal circuit operation. Please note that the circuit operates normally only when the input voltage is within the common mode input voltage range of the electric characteristics. 3) Maximum output voltage Because the output voltage range becomes narrow as the output current Increases, design the application with margin by considering changes in electrical characteristics and temperature characteristics. 4) Short-circuit of output terminal When output terminal and VCC or VEE terminal are shorted, excessive Output current may flow under some conditions, and heating may destroy IC. It is necessary to connect a resistor as shown in Fig.2, thereby Protecting against load shorting. 5) Power supply (split supply / single supply) in used Op-amp operates when specified voltage is applied between VCC and VEE. Therefore, the single supply Op-Amp can be used for double supply Op-Amp as well. 6) Power dissipation (Pd) Use a thermal design that allows for a sufficient margin in light of the power dissipation (Pd) in actual operating conditions. 7) Short-circuit between pins and wrong mounting Pay attention to the assembly direction of the ICs. Wrong mounting direction or shorts between terminals, GND, or other components on the circuits, can damage the IC. 8) Use in strong electromagnetic field Using the ICs in strong electromagnetic field can cause operation malfunction. 9) Radiation This IC is not designed to be radiation-resistant. 10) Handing of IC When stress is applied to IC because of deflection or bend of board, the characteristics may fluctuate due to piezoelectric (piezo) effect. 11) Inspection on set board During testing, turn on or off the power before mounting or dismounting the board from the test Jig. Do not power up the board without waiting for the output capacitors to discharge. The capacitors in the low output impedanceterminal can stress the device. Pay attention to the electro static voltages during IC handling, transportation, and storage. 12) Output capacitor When VCC terminal is shorted to VEE (GND) potential and an electric charge has accumulated on the external capacitor, connected to output terminal, accumulated charge may be discharged VCC terminal via the parasitic element within the circuit or terminal protection element. The element in the circuit may be damaged (thermal destruction). When using this IC for an application circuit where there is oscillation, output capacitor load does not occur, as when using this IC as a voltage comparator. Set the capacitor connected to output terminal below 0.1[μF] in order to prevent damage to IC. connect to Vicm protection resistor Fig. 234The example of application circuit for unused op-amp Fig. 235The example of output short protection

BA4558F,BA4560F,BA4558RF/FV/FVM,BA4560RF/FV/FVM,BA4580RF/FVM, BA15218F,BA14741F,BA15532F,BA4510F/FV,BA2115F/FVM www.rohm.com 2009.05 - Rev.A © 2009 ROHM Co., Ltd. All rights reserved.

  • Ordering part number B A 4 5 6 0 F V - E 2 Part No. Part No. 4558 4558R 4560 4560R 4510 4580R 14741 15218 15532 2115 Package F: SOP8 SOP14 FV: SSOP-B8 FVM: MSOP8 Packaging and forming specification E2: Embossed tape and reel (SOP8/SOP14/SSOP-B8) TR: Embossed tape and reel ( M S O P 8 ) (Unit : mm) SOP8 0.9±0.15 0.3MIN 4°+6° −4° 0.17 +0.1 -0.05 0.595 4 3 5.0±0.2 6.2±0.3 4.4±0.2 (MAX 5.35 include BURR) 1.27 0.11 0.42±0.1 1.5±0.1 S ∗ Order quantity needs to be multiple of the minimum quantity. <Tape and Reel information> Embossed carrier tapeTape Quantity Direction of feed The direction is the 1pin of product is at the upper left when you hold reel on the left hand and you pull out the tape on the right hand 2500pcs Direction of feed Reel 1pin (Unit : mm) SOP14 1.27 0.11 0.3MIN 8.7±0.2 0.4±0.1 0.15±0.1 1.5±0.1 6.2±0.3 4.4±0.2 (MAX 9.05 include BURR) 0.1 ∗ Order quantity needs to be multiple of the minimum quantity. <Tape and Reel information> Embossed carrier tapeTape Quantity Direction of feed The direction is the 1pin of product is at the upper left when you hold reel on the left hand and you pull out the tape on the right hand 2500pcs Direction of feed Reel 1pin

BA4558F,BA4560F,BA4558RF/FV/FVM,BA4560RF/FV/FVM,BA4580RF/FVM, BA15218F,BA14741F,BA15532F,BA4510F/FV,BA2115F/FVM www.rohm.com 2009.05 - Rev.A © 2009 ROHM Co., Ltd. All rights reserved. (Unit : mm) SSOP-B8 0.08 M 1234 5 6 7 8 0.1 +0.06 -0.040.22 0.3MIN 0.65(0.52) 3.0±0.2 0.15±0.1 6.4±0.3 1.15±0.1 4.4±0.2 (MAX 3.35 include BURR) S 0.1 ∗ Order quantity needs to be multiple of the minimum quantity. <Tape and Reel information> Embossed carrier tapeTape Quantity Direction of feed The direction is the 1pin of product is at the upper left when you hold reel on the left hand and you pull out the tape on the right hand 2500pcs Direction of feed Reel 1pin (Unit : mm) MSOP8 0.08 S S 4.0±0.2 2.8±0.1 2.9±0.1 0.475 5 7 (MAX 3.25 include BURR) 1PIN MARK 0.9MAX 0.75±0.05 0.65 0.08±0.05 0.22 +0.05 –0.04 0.6±0.2 0.29±0.15 0.145 +0.05 –0.03 4°+6° −4° Direction of feed Reel ∗ Order quantity needs to be multiple of the minimum quantity. <Tape and Reel information> Embossed carrier tapeTape Quantity Direction of feed The direction is the 1pin of product is at the upper right when you hold reel on the left hand and you pull out the tape on the right hand 3000pcs TR 1pin

R0039Awww.rohm.com © 2009 ROHM Co., Ltd. All rights reserved. Notice ROHM Customer Support System http://www.rohm.com/contact/ Thank you for your accessing to ROHM product informations. More detail product informations and catalogs are available, please contact us. Notes N o c o p y i n g o r r e p r o d u c t i o n o f t h i s d o c u m e n t , i n p a rt o r i n w h o l e , i s p e r m i t t e d w i t h o u t t h e consent of ROHM Co.,Ltd. The content specified herein is subject to change for improvement without notice. The content specified herein is for the purpose of introducing ROHM's products (hereinafter "Products"). If you wish to use any such Product, please be sure to refer to the specifications, which can be obtained from ROHM upon request. Examples of application circuits, circuit constants and any other information contained herein illustrate the standard usage and operations of the Products. The peripheral conditions must be taken into account when designing circuits for mass production. Great care was taken in ensuring the accuracy of the information specified in this document. However, should you incur any damage arising from any inaccuracy or misprint of such information, ROHM shall bear no responsibility for such damage. The technical information specified herein is intended only to show the typical functions of and examples of application circuits for the Products. ROHM does not grant you, explicitly or implicitly, any license to use or exercise intellectual property or other rights held by ROHM and other parties. ROHM shall bear no responsibility whatsoever for any dispute arising from the use of such technical information. The Products specified in this document are intended to be used with general-use electronic equipment or devices (such as audio visual equipment, office-automation equipment, commu- nication devices, electronic appliances and amusement devices). The Products specified in this document are not designed to be radiation tolerant. While ROHM always makes efforts to enhance the quality and reliability of its Products, a Product may fail or malfunction for a variety of reasons. Please be sure to implement in your equipment using the Products safety measures to guard against the possibility of physical injury, fire or any other damage caused in the event of the failure of any Product, such as derating, redundancy, fire control and fail-safe designs. ROHM shall bear no responsibility whatsoever for your use of any Product outside of the prescribed scope or not in accordance with the instruction manual. T h e P r o d u c t s a r e n o t d e s i g n e d o r m a n u f a c t u r e d t o b e u s e d w i t h a n y e q u i p m e n t , d e v i c e o r system which requires an extremely high level of reliability the failure or malfunction of which may result in a direct threat to human life or create a risk of human injury (such as a medical instrument, transportation equipment, aerospace machinery, nuclear-reactor controller, fuel-controller or other safety device). ROHM shall bear no responsibility in any way for use of any of the Products for the above special purposes. If a Product is intended to be used for any such special purpose, please contact a ROHM sales representative before purchasing. If you intend to export or ship overseas any Product or technology specified herein that may be controlled under the Foreign Exchange and the Foreign Trade Law, you will be required to obtain a license or permit under the Law.