UPC812 RENESAS | Alldatasheet

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  • Manufacturer or author: Renesas Electronics Corporation
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Technical content

R03DS0147EJ0100 Rev.1.00 Page 1 of 7 2019.06.13 Datasheet µPC812, 4092 High Stability, Low Offset Voltage J-FET Input Dual Operational Amplifier

DESCRIPTION

µPC812, 4092 are unique J-FET input dual operational amplifiers that uses a high-speed PNP transistor (fT = 300 MHz) for the output stage to achieve fast response and high stability. The resistor-trimming method proven in other Renesas High-Precision Op-Amp and High-Precision reference voltage is incorporate in this Op-Amp input stage, thus producing an excellent low offset voltage characteristics that has surpasses conventional general purpose op-amp in spite o f b e i n g J F E T i n p u t . Depending on the operating ambient temperature, µPC812 is suita ble to communication application while µPC4092 is for general-purpose usage. In addition to this serie s of line-up, single channel type operational amplifier, µPC811, 4091 with the same circuit configuration are also available.

FEATURES

 I n p u t O f f s e t V o l t a g e ± 1 m V ( T Y P . ) ( ± 3 m V M A X . )  VIO Temperature Drift ±7 µV/ C (TYP.)  Input Bias Current 50 pA (TYP.)  S l e w R a t e 1 5 V / µ s ( T Y P . )  Unity Gain Frequency 4 MHz (TYP.)  Input Equivalent Noise Voltage Density 19 nV/ Hz (TYP.) (f = 1 kHz)  Stable operation against capacitive load (Capacitive Load at 1 0000 pF, AV = +1 )  Built-In Phase Compensation Circuit  Built-In Output Short Circuit Protection  Standard Dual Op-Amp terminal connection (pin compatible)

ORDERING INFORMATION

μPC812G2-A 8-pin plastic SOP ( 5.72 mm ( 225 )) μPC4092G2-A 8-pin plastic SOP ( 5.72 mm ( 225 )) R03DS0147EJ0100 Rev.1.00 2019.06.13

µPC812, 4092 R03DS0147EJ0100 Rev.1.00 Page 2 of 7 2019.06.13 EQUIVALENT CIRCUIT P I N C O N F I GURATION (Top View) ABSOLUTE MAXIMUM RATINGS (TA = 25 C) PARAMETER SYMBOL μPC812G2 μPC4092G2 UNIT Supply Voltage Note1 V + - V - -0.3 ~ +36 V Differential Input Voltage V ID ± 3 0 V Input Voltage Note2 V I V - -0.3 ~ V + +0.3 V Output Applied Voltage Note 3 V O V - -0.3 ~ V + +0.3 V Total Power Dissipation Note 4 P T 440 mW Output Short Circuit DurationNote 5 Indefinite s Operating Ambient Temperature T A -40 ~ +85 -20 ~ +80 C Storage Temperature T stg -55 ~ +125 C 【Note】 1. Note that reverse connections of the power supply may damag e the ICs. 2. The input terminal must be apply within the input voltag e range to avoid deteriorating or damaging the device characteristic. Do not exceed the ratings including during tran sition state such as ON/OFF, etc. The Op-Amp input voltage must operates within the electrical characteristics range of input common-mode voltage. 3. The output terminal must be apply within the output voltag e range to avoid deteriorating or damaging the device characteristic. Do not exceed the ratings including during transition state such as ON/OFF, etc. The Op- Amp output voltage must operates within the electrical characteristics range of maximum output voltage. 4. This is the value at T A ≦ +25 C. De-rate value at -4.4 mW/C when TA > 25 C 5. Please use the total loss and the de-rating value from Note 4. RECOMMENDED OPERATING CONDITIONS PARAMETER SYMBOL MIN. TYP. MAX. UNIT Power Supply Voltage V ± ± 5 ± 1 6 V Load Current I O ± 1 0 m A Load Capacitance ( When A V = +1) CL 10000 Note 6 p F 【Note】 6. This is the value when the feedback resistor (R f) = 0 Ω. The higher the Rf value, the more likely it is to oscillate due to the influence of the input capacitance. So connect a capacitor of about 100 pF in parallel with Rf TRIMMED HIGH SPEED PNP Q3 Q4 Q1 Q2 Q10 IN II V + V - OUT µPC812G2, μPC4092G2 1OUT1 V + II1 2 IN1 V - OUT27 3I I2 IN2 + -

µPC812, 4092 R03DS0147EJ0100 Rev.1.00 Page 3 of 7 2019.06.13 ELECTRICAL CHARACTERISTICS (TA = 25 C, V ± = ±15 V) PARAMETER SYMBOL MIN. TYP. MAX. UNIT TEST CONDITION Input Offset Voltage V IO ± 1 ± 3 m V RS ≦ 50 Ω Input Offset Current Note 7 I IO ±25 ±100 pA Input Bias Current Note 7 I B 50 200 pA Large Signal Voltage Gain A V 25000 200000 RL ≧ 2 kΩ, V O = ±10 V Circuit Current Note 8 I CC 5 6.8 mA I O = 0 A Common Mode Rejection Ratio CMR 70 100 dB Supply Voltage Rejection Ratio SVR 70 100 dB Output Voltage Swing V om ± 1 2 +14.0 -13.3 V RL ≧ 10 kΩ Output Voltage Swing V om ± 1 0 +13.5 -12.8 V RL ≧ 2 k Ω Common Mode Input Voltage Range VICM ± 1 1 +14 -12 V Slew Rate SR 15 V/μs A V = 1 Unity Gain Frequency f unity 4 M H z Input Equivalent Noise Voltage Density en 1 9 nV/ Hz RS = 100 Ω, f = 1 kHz Channel Separation 120 dB Input Offset Voltage V IO ± 5 m V RS ≦ 50 Ω, T A = -20 ~ +70 C Average VIO Temperature Drift ΔV IO/ΔT ±7 μV/C T A = -20 ~ +70 C Input Offset Current Note 7 I IO ± 2 n A TA = -20 ~ +70 C Input Bias Current Note 7 I B 7 n A TA = -20 ~ +70 C 【Note】7. The direction of the input bias current is the same direction that flows into the IC because the first stage is composed of Pch J-FET. When T J = 25 C or higher, it increases expone ntially with increase in temper ature (please see IB - TA characteristics). During measurement, please kindly take care of TJ ≒ TA 8. It is the current that flows in to the internal circuit. This current flows irrespective of the channel usage. Caution Since µPC812, 4092 have high input impedance characteristics, please be careful of insulation between the terminals on the board

µPC812, 4092 R03DS0147EJ0100 Rev.1.00 Page 4 of 7 2019.06.13 ELECTRICAL CHARACTERISTICS CURVE (TA = 25 C, TYP.) μPC812G2, 4092G2 100 200 300 400 500 600 0 2 04 06 08 0 1 0 0 Total Power Dissipation, PT [mW] Operating Ambient Temperature, TA [C] PT vs. TA (Absolute maximum rating) 100 120 1 10 100 1k 10k 100k 1M 10M Open Loop Voltage Gain AV [dB] Frequency f [Hz] AV vs. f V ± = ±15 V RL = 2 kΩ - 4 0 - 2 00 2 04 06 08 0 Input Offset Voltage VIO [mV] Operating Ambient Temperature TA [C] VIO vs. TA V ± = ±15 V Any sample data 0.01 0.1 100 -20 0 20 40 60 80 Input Bias Current IB [nA] Operating Ambient Temperature TA [C] IB vs. TA V ± = ±15 V 100 1k 10k 100k 1M 10M Maximum Output Voltage Vom [Vp-p] Frequency f [Hz] Vom vs. f RL = 10 kΩ V ± = ±15 V V ± = ±10 V V ± = ±5 V 0± 1 0 ± 2 0 Maximum Output Voltage Vom [Vp-p] Power Supply Voltage V ± [V] Vom vs. V ± RL = 10 kΩ

µPC812, 4092 R03DS0147EJ0100 Rev.1.00 Page 5 of 7 2019.06.13 +10 +15 0 1 02 03 0 Positive Output Voltage VO + [V] Output Source Current IO SOURCE [mA] VO + vs. IO SOURCE V ± = ±15 V TA = 70 C TA = 25 C TA = -20 C -15 -10 01 0 2 0 3 0 Negative Output Voltage VO - [V] Output Sink Current IO SINK [mA] VO - vs. IO SINK V ± = ±15 V TA = 70 C TA = 25 C TA = -20 C 1.0 2.0 3.0 4.0 5.0 6.0 7.0 0 ±5 ±10 ±15 ±20 Circuit Current ICC [mA] Supply Voltage V ± [V] ICC vs. V ± 10 100 1k 10k 100k Frequency f [Hz] e n vs. f V ± = ±15 V RS = 100Ω Input Equivalent Noise Density en [nV/ Hz] -10 [V] 0246 [ µ s ] Pulse Response Characteristics 1 (RL = 2 kΩ, CL = 100 pF) -10 [V] 02 0 4 0 6 0 [ µ s ] Pulse Response Characteristics 2 (RL = 2 kΩ, CL = 10000 pF)

µPC812, 4092 R03DS0147EJ0100 Rev.1.00 Page 6 of 7 2019.06.13 USE WITH PRECAUTIONS  Managing unused circuits If there is an unused circuit, the following connection is recommended. Example of handling unused circuit Note in this example, an intermediate voltage of V + and V – is applied.  Power Supply (Dual Power Supply / Single Power Supply) The op amp operates when a predetermine voltage is applied between V + - V – . Therefore, while it operates from a single power supply (V - = GND), it is not possible to operate the input and output nea r GND. So please be careful of the common-mode input voltage range and maximum output voltage.  Ratings of input/output pin voltage When the voltage of input/output pin exceeds the absolute maxim um rating, the parasitic diode within the IC may conduct, causing characteristics degradation or damage. In addition, if the input pin is lower than V−, or the output pin exceeds the power supply voltage, it is recommended to make a clamping circuit using a diode with low forward voltage (e.g.: Schottky diode) as protection.  Range of common-mode input voltage When the supply voltage does not meet the condition of electric al characteristics, the range of common- mode input voltage is as follows. VICM (TYP.) : V - +3 ~ V + -1 [V] (TA = 25 C) During designing, do include some margin by considering charact eristics variation, temperature characteristics etc.  Maximum Output Voltage The TYP. value range of the maximum output voltage when the supply voltage does not meet the condition of electrical characteristics is as follows: Vom + (TYP.) : V + -1 [V] (TA = 25 C), Vom - (TYP.) : V - +1.7 [V] (TA = 25 C) During designing, do include some margin by considering charact eristics variation, temperature characteristics and so on. In addition, also note that the outp ut voltage range (V om+ − V om−) will become narrow when the output current increases.  Handling of ICs When stress is added to the ICs due to warpage or bending of a board, the characteristic may fluctuates due to piezoelectric (piezo) effect. Therefore, pay attention to warpage or bending of a board. V - V - V +V + R R 同相入力電圧範囲 (VICM) 内の電位へ To potentials within the range of common-mode input voltage (V ICM)

µPC812, 4092 R03DS0147EJ0100 Rev.1.00 Page 7 of 7 2019.06.13 PACKAGE DRAWINGS 8-PIN PLASTIC SOP P-SOP8-0225-1.27 PRSP0008DL-A S8GM-50-225B 0.08 ITEM A5 . 2 +0.17 -0.20 B C D0 . 4 2 +0.08 -0.07 E F G1 . 4 9 H I J K0 . 1 7 +0.08 -0.07 L M N P3 ° +7° -3° 1.1 ±0.2 0.6 ±0.2 0.12 0.10 MILLIMETERS 6.5 ±0.3 4.4 ±0.15

0.78 MAX

1.27 (T.P) 0.1 ±0.1 1.59 ±0.21 Unit : mm NOTE Each lead centerline is located within 0.12 mm of its true position (T.P.) at maximum material condition. detail of lead end

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