NJM8202. Single Supply, Rail-to-Rail Output Dual Operational Amplifier
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- Millicent Russell
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1 NJM8 Single Supply, Rail-to-Rail Output Dual Operational Amplifier GENERAL DESCRIPTION The NJM8 is a Rail-to-Rail output single supply dual operational amplifier with a low noise of nv/ Hz (typ. at khz) and high RF noise immunity. The high RF noise immunity can reduce malfunctions caused by RF noises from mobile phones and others. It offers a single supply voltage operation from +.5V to +V, rail-to-rail output swing close to both rails and input voltage range from ground. It is suitable for various applications such as current sense amplifiers, sound processing, buffer amplifiers, filter circuits and others. The NJM8 is available in small surface mounting packages of SOP8 (DMP8), SSOP8, SOP8 JEDEC 5mil, MSOP8 (VSP8) and MSOP8 (TVSP8). FEATURES RF Immunity Rail-to-Rail Output Operating Temperature Operation Voltage Slew Rate GBW Low Noise Input Offset Voltage Supply Current Package APPLICATIONS Note PC, PDA Mobile phone Audio signal processing Current detect Buffer, Active filter TYPICAL APPLICATION Vin Vin R R R V BIAS Enhance the RF immunity from mobile phones.5v~.75v -ºC ~+85ºC +.5V~+V(±.5~±7V).5V/µs(typ.) MHz(typ.) nv/ 5mA(max.) DMP8, SSOP8, SOP8 JEDEC 5mil MSOP8 (VSP8) MEET JEDEC MO-87-DA MSOP8 (TVSP8) MEET JEDEC MO-87-DA / THIN TYPE R RF noise immunity Differential Amplifier Vout R=R, R=R Vout=R/Rx(Vin-Vin)+V BIAS PACKAGE OUTLINE PIN CONFIGURATION (Top View) V - NJM8M ( DMP8 ) NJM8V ( SSOP8) NJM8RB (MSOP8(TVSP8)) Output Offset Voltage Shift[mV] V R G R G //R F R F Test Circuit Pin Function. A OUTPUT. A INPUT. A +INPUT. V 5. B +INPUT. B INPUT 7. B OUTPUT 8. V + NJM8E ( SOP8 ) NJM8R (MSOP8(VSP8)) Output Offset Voltage Shift vs. Frequency of Input Pin V + /V - =±.5V, G V=dB, NJM8 Conventional Products - M G G G Frequency[MHz] Ver
2 NJM8 ABUSOLUTE MAXIMUM RATINGS (Ta=5 C) PARAMETER SYMBOL RATING UNIT Supply Voltage V + 5 V Common Mode Input Voltage Range V ICM ~5 (Note) V Differential Input Voltage Range V ID ±5 (Note) V Power Dissipation (Note) P D 8 [DMP8], 5 [DMP8](Note) [EMP8], 9 [EMP8] (Note) 5[SSOP8], [SSOP8] (Note) mw [MSOP8 (VSP8)], 595[MSOP8 (VSP8)] (Note) [MSOP8 (TVSP8)], 58[MSOP8 (TVSP8)] (Note) Operating Temperature Range Topr -~+85 ºC Storage Temperature Range Tstg -5~+5 ºC (Note) For supply voltage less than 5V, the absolute maximum input voltage is equal to supply voltage. (Note) On the PCB "EIA/JEDEC ( mm, layers, FR-)" (Note) See Figure "Power Dissipation Derating Curve" when ambient temperature is over 5ºC. 8 Figure Power Dissipation Derating Curve Power Dissipation Pd (mw) Ambient Temperature Ta (ºC) Pkg. Pd (mw/ ) Pd (5 ) Pd (85 ) DMP EMP SSOP MSOP8 (TVSP8) -.5 MSOP8 (VSP8) -.5 DMP8( Layer) EMP8( Layer) SSOP8( Layer) MSOP8 (TVSP8)( Layer) MSOP8 (VSP8)( Layer) RECOMMENDED OPERATING VOLTAGE (Ta=5 C) PARAMETER SYMBOL TEST CONDITION MIN. TYP. MAX. UNIT Supply Voltage V V - - Ver.--
3 NJM8 ELECTRICAL CARACTERISTICS ELECTRICAL CARACTERISTICS ( V + =5V, Ta=5 C ) PARAMETER SYMBOL TEST CONDITION MIN. TYP. MAX. UNIT Supply Current Icc R L =, V IN =.5V, No Signal - 5 ma Input Offset Voltage V IO - mv Input Bias Current I B - 5 na Input Offset Current I IO - 5 na Voltage Av R L kω to.5v, Vo=.5V~.5V db Common Mode Rejection Ratio CMR V V CM V 75 - db Supply Voltage Rejection Ratio SVR V + =.5V to V 8 - db Maximum Output Voltage Maximum Output Voltage V OH R L 5kΩ to.5v V V OL R L 5kΩ to.5v -..5 V V OH R L 5kΩ to GND V V OL R L 5kΩ to GND V Common Mode Input Voltage Range V ICM CMR db - V Bandwidth Product GB f=mhz - - MHz Margin Φ M R L =kω, C L =pf deg Equivalent Input Noise Voltage V NI f=khz, V CM =.5V - - nv/ Hz Total Harmonic Distortion THD f=khz, A V =+, R L =kω to.5v, Vo=.5Vrms -. - % Channel Separation CS f=khz, R L =kω to.5v, Vo=.5Vrms - - db Slew Rate SR (Note), A V =, V IN =Vpp R L =kω to.5v, C L =pf to.5v (Note) Number specified is the slower of the positive and negative slew rates V/µs Ver
4 NJM8 7 Supply Current vs. Supply Voltage G V =db 7 Supply Current vs. Temperature (Supply Voltage) G V =db V + /V - =±7.V Supply Current[mA] 5 Ta=-ºC Supply Current[mA] 5 V + /V - =±.5V V + /V - =±.5V ± ± ± ± ±5 ± ±7 ±8 Supply VoltageV + /V - [V] Input Offset Voltage vs. Temperature (Supply Voltage) V CM =V Input Offset Voltage vs. Supply Voltage V CM =V Input Offset Voltage[mV] - - V + /V - =±.5V V + /V - =±.5V V + /V - =±7.V Input Offset Voltage[mV] Ta=-ºC ± ± ± ± ±5 ± ±7 ±8 Supply Voltage V + /V - [V] Input Offset Voltage vs. Common Mode Input Voltage V + /V - =±.5V Input Offset Voltage vs. Common Mode Input Voltage V + /V - =±.5V.5.5 Input Offset Voltage[mV].5.5 Ta=-ºC Input Offset Voltage[mV].5.5 Ta=-ºC Common Mode Input Voltage[V] Common Mode Input Voltage[V] - - Ver.--
5 NJM8 Input Offset Voltage vs. Common Mode Input Voltage Input Offset Current vs. Temperature V + /V - =±7.V V + /V - =±.5V Input Offset Voltage[mV] Ta=-ºC Input Offset Current[nA] Common Mode Input Voltage[V] Input Bias Current vs. Temperature V + /V - =±.5V Voltage vs. Temperature V + /V - =±.5V, R L =kω -5 Input Bias Current[nA] Common Mode Rejection Ratio vs. Temperature Supply Voltage Rejection Ratio vs. Temperature V + /V - =±.5V V + /V - =±.5V Common Mode Rejection Ratio[dB] Supply Voltage Rejection Ratio[dB] Ver
6 NJM8.5 Maximum Output Voltage vs. Load Resistance V + /V - =±.5V, G V =open.5 Maximum Output Voltage vs. Output Current V + /V - =±.5V, Gv=open Maximum Output Voltage[V] Ta=-ºC Ta=-ºC +V OM -V OM Maximum Output Voltage [V] I SOURCE I SINK Ta=-ºC Ta=-ºC -.5 k k k Load Resistance[Ω] -.5. Output Current [ma] Maximum Output Voltage vs. Load Resistance V + /V - =±.5V, Gv=open Maximum Output Voltage vs. Output Current V + /V - =±.5V, G V =open Maximum Output Voltage[V] - - Ta=-ºC Ta=-ºC +V OM -V OM Maximum Output Voltage [V] - - I SOURCE I SINK Ta=-ºC Ta=-ºC - k k k Load Resistance[Ω] -. Output Current [ma] Maximum Output Voltage vs. Load Resistance V + /V - =±7.V, G V =open 8 8 Maximum Output Voltage vs. Output Current V + /V - =±7.V, Gv=open Maximum Output Voltage[V] Ta=-ºC Ta=-ºC +V OM -V OM Maximum Output Voltage [V] I SOURCE I SINK Ta=-ºC Ta=-ºC -8 k k k Load Resistance[Ω] -8. Output Current [ma] - - Ver.--
7 NJM8 Maximum Output Voltage[V] Maximum Output Voltage vs. Supply Voltage Gv=open, R L =5kΩ Ta=-ºC Ta=-ºC ± ± ± ± ±5 ± ±7 ±8 Supply Voltage V + /V - [V] Maximum Output Voltage[V] Maximum Output Voltage vs. Supply Voltage Gv=open, R L =kω Ta=-ºC Ta=-ºC ± ± ± ± ±5 ± ±7 ±8 Supply VoltageV + [V] db/ vs. Frequency V + /V - =±.5V, V IN =-dbm, G V =db, R F =kω, C L =pf 8 db/ vs. Frequency (Load Capacitance) V + /V - =±.5V, V IN =-dbm, G V =db, R F =kω, 8 - Ta=-ºC Ta=-ºC - - C L =p C L =p C L =p E+ k.e+ k.e+5 k.e+ M.E+7 M.E+8 M C L =p - C L =p - C L =p - -8.E+ k.e+ k.e+5 k.e+ M.E+7 M.E+8 M db/ vs. Frequency V + /V - =±.5V, V IN =-dbm, G V =db, R F =kω, C L =pf 8 db/ vs. Frequency (Load Capacitance) V + /V - =±.5V, V IN =-dbm, G V =db, R F =kω, 8 - Ta=-ºC Ta=-ºC - - C L =p C L =p C L =p E+ k.e+ k.e+5 k.e+ M.E+7 M.E+8 M - - C L =p C L =p C L =p.e+ K.E+ K.E+5 K.E+ M.E+7 M.E+8 M - -8 Ver
8 NJM8 db/ vs. Frequency V + /V - =±7.V, V IN =-dbm, G V =db, R F =kω, C L =pf 8 db/ vs. Frequency (Load Capacitance) V + /V - =±7.V, V IN =-dbm, G V =db, R F =kω, 8 - Ta=-ºC Ta=-ºC - - C L =p C L =p C L =p E+ k.e+ k.e+5 k.e+ M.E+7 M.E+8 M - - C L =p C L =p C L =p - -8.E+ K.E+ K.E+5 K.E+ M.E+7 M.E+8 M V.F. Peak vs. Frequency (Load Capacitance) V + /V - =±.5V, G V =db, V.F. Peak vs. Frequency V + /V - =±.5V, G V =db, C L =pf Voltage [db] - C L =pf C L =7pF C L =pf C L =pf - Ta=-ºC - k M M M M M G Frequency [Hz] -.E+5 K.E+ M.E+7 M.E+8 M.E+9 G -8 Channel Separation vs. Frequency V + /V - =±.5V, V O =.5Vrms, G V =db, R F =kω, R L =kω, Equivalent Input Noise Voltage vs. Frequency V + /V - =±.5V, G V =db, R F =kω, R L =kω, Channel Separation[dB] B to A A to B Equivalent Input Noise Voltage [nv/ Hz] 5 - k k k k k k k k k Ver.--
9 NJM8 THD vs. Output Voltage (Supply Voltage) G V =db, R S =Ω, R F =5kΩ, R G =5kΩ f=khz, BW=Hz~8kHz, THD vs. Output Voltage (Frequency) V + /V - =±.5V, G V =db, R S =Ω, R F =5kΩ, R G =5kΩ, BW=Hz~8kHz,. V + =5V. V + =.5V THD+N[%]. THD+N [%]. f=khz.. f=khz f=hz V + =V... Output Voltage[Vrms]... Output Voltage [Vrms] Pulse Response Pulse Response 5. V + /V - =±.5V, f=khz, G V =db, R L =kω, C L =pf. 5. V + /V - =±.5V, f=khz, G V =db, R L =kω, C L =pf Volatage[V/div] Input Output Ta=-ºC Volatage[V/div] Input Output Ta=-ºC Time[µs/div] Time[µs/div] Pulse Response Pulse Response 5. V + /V - =±7.V, f=khz, G V =db, R L =kω, C L =pf. 5. V + /V - =±7.V, f=khz, G V =db, R L =kω, C L =pf Volatage[V/div] Input Output Ta=-ºC Volatage[V/div] Input Output Ta=-ºC Time[µs/div] Time[µs/div] Ver
10 NJM8 MEMO [CAUTION] The specifications on this data book are only given for information, without any guarantee as regards either mistakes or omissions. The application circuits in this data book are described only to show representative usages of the product and not intended for the guarantee or permission of any right including the industrial rights. - - Ver.--
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