UPC258_V01 RENESAS | Alldatasheet

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R03DS0145EJ0200 Rev.2.00 Page 1 of 8 Feb.27.25 Datasheet UPC258, UPC4558 Low Noise Dual Operational Amplifiers

DESCRIPTION

The UPC258 and 4558 are dual operational amplifier with a built-in phase compensation circuit, feature high speed, wide band and low noise. Therefore, applications such as active filters, audio amplifiers and VCOs can be realized with a simple circuit configuration. Depending on the operating ambient temperature, U PC258 is suitable for communication application while UPC4558 is suitable for general-purpose usage. In addition, special arrangement products with sorted DC items are available. Along with this series of lineup, the quad type op-amp UPC458 and 4741 with same circuit configuration are also available

FEATURES

  • Input Offset Voltage ± 0.5 mV (TYP.)
  • Input Offset Current ±5 nA (TYP.)
  • Input Bias Current 60nA (TYP.)
  • Slew Rate 1.0 V/µs (TYP.)
  • Built-In Phase Compensation Circuit
  • Built-In Output Short Circuit Protection
  • Standard Dual Op-Amp terminal connection (pin compatible)

ORDERING INFORMATION

Part Number (1) Selected Grade Package UPC258G2-AP Standard 8-pin plastic SOP ( 5.72 mm ( 225 )) UPC258G2(5)-AP DC item sorted product 8-pin plastic SOP ( 5.72 mm ( 225 )) UPC4558G2-AP Standard 8-pin plastic SOP ( 5.72 mm ( 225 )) UPC4558G2(5)-AP DC item sorted product 8-pin plastic SOP ( 5.72 mm ( 225 )) (1) Order names containing E1 or E2 indicate that the packaging format is embossed taping. Pin 1 of E1 is on draw-out side, and pin 1 of E2 is at take-up side.

UPC258, UPC4558 R03DS0145EJ0200 Rev.2.00 Page 2 of 8 Feb.27.25 EQUIVALENT CIRCUIT (1/2 Circuit) PIN CONFIGURATION (Top View) ABSOLUTE MAXIMUM RATINGS (TA = 25 °C) Parameter Symbol UPC258G2 UPC258G2(5) UPC4558G2 UPC4558G2(5) Unit Power Supply Voltage Note 1 V + - V - -0.3 ~ +36 V Differential Input Voltage VID ±30 V Input Voltage Note 2 VI V - -0.3 ~ V + +0.3 V Output Applied Voltage Note 3 VO V - -0.3 ~ V + +0.3 V Total Power Dissipation Note 4 PT 440 mW Output Short Circuit Duration Note 5 Indefinite s Operating Ambient Temperature TA -40 ~ +85 -20 ~ +80 °C Storage Temperature Tstg -55 ~ +125 °C 【Note】 1. Note that reverse connections of the power supply may damage the ICs. 2. The input terminal must be apply within the input voltage 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 input voltage must operates within the electrical characteristics range of input common-mode voltage. 3. The output terminal must be apply within the output voltage 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 TA ≤ +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 ± ±4 ±16 V IN Q1II C1 R3 Q10 Q11 Q12 Q14 Q13 OUT V - Q15 V + R8R7 D 1OUT1 V + II1 2 IN1 V - OUT27

3 II2

  • + + - µPC258G2, μPC4558G2UPC258G2, UPC4558G2

UPC258, UPC4558 R03DS0145EJ0200 Rev.2.00 Page 3 of 8 Feb.27.25

ELECTRICAL CHARACTERISTICS

UPC258, UPC4558 (TA = 25 °C, V ± = ±15 V) Parameter Symbol MIN. TYP. MAX. Unit Test Condition Input Offset Voltage VIO ±0.5 ±6.0 mV RS ≤ 10 kΩ Input Offset Current IIO ±5 ±200 nA Input Bias Current Note 6 IB 60 500 nA Large Signal Voltage Gain AV 20000 100000 RL ≥ 2 kΩ, VO = ±10 V Power Consumption Pd 90 170 mW IO = 0 A Common Mode Rejection Ratio CMR 70 90 dB RS ≤ 10 kΩ Supply Voltage Rejection Ratio SVR 30 150 μV/V RS ≤ 10 kΩ Output Voltage Swing Vom ±12 ±14 V RL ≥ 10 kΩ Output Voltage Swing Vom ±10 ±13 V RL ≥ 2 kΩ Common Mode Input Voltage Range VICM ±12 ±14 V Slew Rate SR 1.0 V/μs AV = 1 Input Equivalent Noise Voltage Vn 6 μVp-p RS = 1 kΩ, f = 1 Hz ~ 1 kHz (Fig 1 ) Channel Separation 105 dB f = 1 kHz (Fig 2 ) Parameter Symbol MIN. TYP. MAX. Unit Test Condition Input Offset Voltage VIO ±0.5 ±2.0 mV RS ≤ 10 kΩ Input Offset Current IIO ±5 ±50 nA Input Bias Current Note 6 IB 60 100 nA Large Signal Voltage Gain AV 50000 100000 RL ≥ 2 kΩ, VO = ±10 V Power Consumption Pd 90 135 mW IO = 0 A Common Mode Rejection Ratio CMR 85 90 dB RS ≤ 10 kΩ Supply Voltage Rejection Ratio SVR 30 75 μV/V RS ≤ 10 kΩ Output Voltage Swing Vom ±12.5 ±14 V RL ≥ 10 kΩ Output Voltage Swing Vom ±11 ±13 V RL ≥ 2 kΩ Common Mode Input Voltage Range VICM ±13 ±14 V Slew Rate SR 1.0 V/μs AV = 1 Input Equivalent Noise Voltage Vn 6 μVp-p RS = 1 kΩ, f = 1 Hz ~ 1 kHz (Fig 1 ) Channel Separation 105 dB f = 1 kHz (Fig 2 ) 【Note】 6. The direction of the input bias current is the same direction that flows out from the IC because the first stage is composed of PNP transistor. Fig 1 Noise Test Circuit Fig 2 Channel Separation Test Circuit VO2 50 Ω 50 kΩ VO1 チャネル・セパレーション = 20 ・ log 1 1000 ・ VO2 VO1 10 kΩ 10 kΩ VO 1 kΩ50 Ω 1 kΩ 100 kΩ -15 V +15 V オシロスコープ Vn = VO 2000 Oscilloscope Channel Separation

UPC258, UPC4558 R03DS0145EJ0200 Rev.2.00 Page 4 of 8 Feb.27.25 ELECTRICAL CHARACTERISTICS CURVE (TA = 25 °C, TYP.) (REFERENCE VALUE) UPC258G2, UPC4558G2 227 °C/W 100 200 300 400 500 600 0 20 40 60 80 100 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 100 1k 10k 100k 1M Maximum Output Voltage Vom [V] Frequency f [Hz] Vom vs. f V ± = ±15 V RL = 10 kΩ 100 1K 10K Output Voltage VO [Vp-p] Load Resistance RL [Ω] VO vs. RL V ± = ±15 V 100 120 -20 0 20 40 60 80 Input Bias Current IB [nA] Operating Ambient Temperature TA [°C] IB vs. TA V ± = ±15 V -20 0 20 40 60 80 Input Offset Voltage VIO [mV] Operating Ambient Temperature TA [°C] VIO vs. TA V ± = ±15 V Any sample data

UPC258, UPC4558 R03DS0145EJ0200 Rev.2.00 Page 5 of 8 Feb.27.25 0 ±10 ±20 Circuit Current ICC [mA] Supply Voltage V ± [V] ICC vs. V ± -20 -10 0 ±10 ±20 Common Mode Input Voltage VICM [V] Supply Voltage V ± [V] VICM vs. V ± -10 0 5 10 15 20 25 30 35 40 Output Voltage VO [V] Time t [μs] Output Response Characteristics V ± = ±15 V AV = 1 RL = 2 kΩ 100 1000 10000 1 10 100 1k Frequency f [Hz] en vs. f Input Equivalent Noise Density en [nV/ Hz] V ± = ±15 V RS = 100 Ω

UPC258, UPC4558 R03DS0145EJ0200 Rev.2.00 Page 6 of 8 Feb.27.25 APPLICATION CIRCUIT RIAA Pre-amplifier AV = 32.5 dB Standard Characteristics (Reference Value) Peak Level Meter This circuit converts the peak voltage (about ± 10 mV ~ ± 10 V) of the input signal to a DC voltage (about 0.2V ~ 1.3 V) and drives the meter. This output voltage is proportional to the logarithmic value of input peak voltage, thus providing a wider dynamic range indication compared to conventional linear indication methods. 0.0022 μF 0.01 μF 出力 33 μF 47 μF 2.2 kΩ 36 kΩ 390 kΩ +33 μF 1 kΩ56 kΩ 10 kΩ 100 μF 100 μF -15 V +15 V μPC4588 ひずみ率 0.03 % (VO = 1 Vr.m.s , f = 1 kHz) 雑 音 1.0 μVr.m.s. 入力換算、入力ショート ピーク検波平均値指示 20 Hz 0.001 0.01 0.1 0.01 0.1 1 10 全高調波ひずみ率 T.H.D. [%] 出力電圧 VO [Vr.m.s.] ひずみ率特性 -40 dB ~ +5 dB (0 dB 時1 Vp-p) μPC4588 1S953 100 kΩ 1S953 対数圧縮 全波整流 ピーク・ホールド メータ・アンプ μPC4588 51 kΩ 30 kΩ 30 kΩ μPC324 30 kΩ 1S953 +15 V -15 V -15 V +15 V 1S953 1S953 30 kΩ 30 kΩ 15 kΩ 30 kΩ +15 V -15 V μPC324 20 kΩ 20 kΩ10 kΩ 0.22 μF 2 kΩ200 kΩ 3.3 μF 2SK163 100 kΩ Output Distortion Rate Noise Output Voltage Total Harmonics Distortion THD [%] Distortion Rate U U (1VP-P When 0 dB) Logarithm Compression Full Wave Rectification Peak Hold Meter Amplifier UPC4558 UPC4558 UPC4558

UPC258, UPC4558 R03DS0145EJ0200 Rev.2.00 Page 7 of 8 Feb.27.25 USE WITH PRECAUTIONS

  • Managing unused circuits If there is an unused circuit, the following connection is recommended.
  • 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 near 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 maximum 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 electrical characteristics, the range of common- mode input voltage is as follows. V ICM (TYP.): V − +1 ~ V + -1 [V] (TA = 25 °C). During designing, do include some margin by considering characteristics 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 [V] (TA = 25 °C) During designing, do include some tolerance by considering characteristics variation, temperature characteristics and so on. In addition, also note that the output voltage range (V om+ − Vom−) 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 Example of handling unused circuit To potentials within the range of common-mode input voltage (VICM) Remark: In this example, an intermediate potential between V + and V - is applied.

UPC258, UPC4558 R03DS0145EJ0200 Rev.2.00 Page 8 of 8 Feb.27.25 PACKAGE DRAWINGS 8-PIN PLASTIC SOP P-LSOP8-4.4×5.2-1.27 PLSP0008DE-A 0.09[g]

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