HA17558B Series Dual Operational Amplifier REA03D0003-0100 Rev.1.00 Dec 25, 2006 Description HA17558B is dual bipolar op-amp with improved characteristics compared to HA17558A. It has wide bandwidth, low noise, high slew rate; wide operating voltage range and high gain characteristics. This product has a wide range of applications that is appropriate for audio application, as well as AC/DC converter. Features • • • • • • Wide bandwidth: 7 MHz High speed: 3 V/µs Low input noise voltage: 1 µVrms Large DC voltage gain: 110 dB Operating voltage: ±2 V to ±18 V Package outline available in Pb free lead frame: DP-8 SOP-8 (JEITA) SOP-8 (JEDEC) Applications • Audio AC-3 decoder system • Audio amplifier • AC/DC converter Ordering Information Type No. HA17558B HA17558BF Application Commercial use HA17558BRP Note: This product is designed for consumer use and not for automotive. Rev.1.00 Dec 25, 2006 page 1 of 7 Package Code (Package Name) PRDP0008AF-B (DP-8FV) PRSP0008DE-B (FP-8DGV) PRSP0008DD-C (FP-8DCV) HA17558B Series Pin Arrangement Vout1 1 Vin(–)1 2 Vin(+)1 3 VEE 4 1 – + 2 + – 8 VCC 7 Vout2 6 Vin(–)2 5 Vin(+)2 (Top view) Circuit Schematic (1/2) VCC – Input Output + Input VEE Rev.1.00 Dec 25, 2006 page 2 of 7 HA17558B Series Absolute Maximum Ratings (Ta = 25°C) HA17558B Ratings HA17558BF HA17558BRP Unit Supply Voltage VCC VEE 18 –18 18 –18 18 –18 V V Differential input voltage Common mode input voltage VIN (diff) 3 VCM * ±30 ±15 ±30 ±15 ±30 ±15 V V Power dissipation Operating temperature PT Topr Item Symbol 1 2 670 * –40 to +85 2 385 * –40 to +85 385 * –40 to +85 mW °C Storage temperature Tstg –55 to +125 –55 to +125 –55 to +125 °C Notes: 1. This is the allowable value up to Ta = 45°C. Derate by 8.3 mW/°C above that temperature. 2. These are the allowable values up to Ta = 60°C mounting on 40mm × 40mm × 1.6mm (t) 10% wiring density glass epoxy board. Derate by 5.9 mW/°C above that temperature. 3. If the supply voltage is less than ±15 V, input voltage should be less than supply voltage. Electrical Characteristics (Ta = 25°C, VCC = +15 V, VEE = –15 V, unless otherwise specified) Min Typ Max Unit Input offset voltage Input offset current Item VIO IIO — — 0.5 5 3 50 mV nA Input bias current Supply current IIB ICC — — 65 2.5 250 4 nA mA Power supply rejection ratio Voltage gain PSRR AV 80 85 100 110 — — dB dB RS ≤ 10 kΩ RL ≥ 2 kΩ, VO = ±10 V Common mode rejection ratio Output swing voltage CMR VOS 80 ±10 100 ±13 — — dB V RS ≤ 10 kΩ RL ≥ 2 kΩ Output sink current IOSINK ±12 — ±14 70 — — V mA RL ≥ 10 kΩ VIN(–) = 1 V, VIN(+) = 0 V, VO = 2 V Output source current IOSOURCE — 45 — mA VIN(–) = 0 V, VIN(+) = 1 V, VO = 2 V Slew rate SR — 3 — V/µs Equivalent input noise voltage Gain bandwidth product VNI fu — — 1 7 — — µVrms Total harmonic distortion THD — 0.0045 — % Rev.1.00 Dec 25, 2006 page 3 of 7 Symbol MHz Test Conditions RS ≤ 10 kΩ RIAA, RS = 1 kΩ, 30 kHz LPF f = 10 kHz f = 1 kHz, VO = 1 Vrms HA17558B Series Table of Graphs Electrical Characteristics Figure Open loop voltage gain Output swing voltage vs. Frequency f vs. Frequency f 1 2 Output swing voltage Equivalent input noise voltage vs. Load resistance RL vs. Frequency f 3 4 Input offset voltage Total harmonic distortion vs. Temperature Ta vs. Output Voltage Vo 5 6 Rev.1.00 Dec 25, 2006 page 4 of 7 HA17558B Series 60 40 20 5 10 Frequency f (Hz) 32 28 24 20 16 VCC = +15 V, VEE = –15 V, Ta = 25°C, RL = 2 kΩ 12 8 20 15 10 100 1k Load resistance (Ω) 1k 10 k 100 k Frequency f (Hz) 1M Figure 4. Equivalent Input Noise Voltage vs. Frequency 100 VCC = +15 V, VEE = –15 V, Ta = 25°C, RS = 100 Ω 10 k Figure 5. Input Offset Voltage vs. Temperature 6 5 VCC = +15 V, 4 VEE = –15 V 3 2 1 0 –1 –2 –3 –4 –5 –6 –40 0 100 15 Equivalent Input noise voltage (nV√(Hz)0.5) 0 Figure 3. Output Swing Voltage vs. Load Resistance 30 VCC = +15 V, VEE = –15 V, 25 Ta = 25°C Output swing voltage (V) 36 4 0 Input offset voltage (mV) Figure 2. Output Swing Voltage vs. Frequency 40 Output swing voltage (V) Figure 1. Open Loop Voltage Gain vs. Frequency 120 VCC = +15 V, VEE = –15 V, 100 Ta = 25°C, RL = 2 kΩ 80 Total harmonic distortion (%) Open loop voltage gain (dB) Typical Characteristics Curves 10 1 1 10 100 1k Frequency f (Hz) 10 k Figure 6. Total Harmonic Distortion vs. Output Voltage 10 VCC = +15 V, VEE = –15 V, 1 Ta = 25°C 0.1 0.01 20 kHz 10 kHz 0.001 –15 10 35 60 Temperature Ta (°C) Rev.1.00 Dec 25, 2006 page 5 of 7 85 0.0001 0.01 1 kHz 0.1 1 Output voltage VO (Vrms) 10 HA17558B Series Package Dimensions JEITA Package Code P-DIP8-6.3x9.6-2.54 RENESAS Code PRDP0008AF-B Previous Code DP-8FV MASS[Typ.] 0.54g D 5 E 8 1 4 b3 0.89 A1 A Z Reference Symbol L e1 D E A A1 bp b3 c θ e Z L θ bp e c e1 ( Ni/Pd/Au plating ) JEITA Package Code P-SOP8-4.4x4.85-1.27 RENESAS Code PRSP0008DE-B *1 Previous Code FP-8DGV Min Nom Max 7.62 9.60 10.6 6.30 7.4 5.06 0.5 0.40 0.48 0.56 1.30 0.19 0.25 0.31 15° 0° 2.29 2.54 2.79 1.27 2.54 MASS[Typ.] 0.1g F D 8 Dimension in Millimeters NOTE) 1. DIMENSIONS"*1 (Nom)"AND"*2" DO NOT INCLUDE MOLD FLASH. 2. DIMENSION"*3"DOES NOT INCLUDE TRIM OFFSET. 5 c *2 E HE bp Index mark Terminal cross section ( Ni/Pd/Au plating ) 1 Z Reference Symbol 4 e *3 bp x M A L1 A1 θ L y Detail F Rev.1.00 Dec 25, 2006 page 6 of 7 D E A2 A1 A bp b1 c c1 θ HE e x y Z L L1 Dimension in Millimeters Min Nom Max 4.85 5.25 4.4 0.00 0.1 0.35 0.4 0.20 2.03 0.45 0.15 0.20 0.25 0° 6.35 8° 6.5 6.75 1.27 0.12 0.15 0.75 0.42 0.60 0.85 1.05 HA17558B Series JEITA Package Code P-SOP8-3.95x4.9-1.27 RENESAS Code PRSP0008DD-C *1 Previous Code FP-8DCV MASS[Typ.] 0.085g F D 8 NOTE) 1. DIMENSIONS"*1 (Nom)"AND"*2" DO NOT INCLUDE MOLD FLASH. 2. DIMENSION"*3"DOES NOT INCLUDE TRIM OFFSET. 5 c *2 E HE bp Index mark Terminal cross section ( Ni/Pd/Au plating ) 1 Z Reference Symbol 4 e *3 bp x M A L1 A1 θ L y Detail F Rev.1.00 Dec 25, 2006 page 7 of 7 D E A2 A1 A bp b1 c c1 θ HE e x y Z L L1 Dimension in Millimeters Min Nom Max 4.90 5.30 3.95 0.10 0.14 0.25 1.75 0.34 0.40 0.46 0.15 0.20 0.25 0° 8° 5.80 6.10 6.20 1.27 0.25 0.10 0.75 0.40 0.60 1.27 1.08 Sales Strategic Planning Div. Nippon Bldg., 2-6-2, Ohte-machi, Chiyoda-ku, Tokyo 100-0004, Japan Notes: 1. This document is provided for reference purposes only so that Renesas customers may select the appropriate Renesas products for their use. Renesas neither makes warranties or representations with respect to the accuracy or completeness of the information contained in this document nor grants any license to any intellectual property rights or any other rights of Renesas or any third party with respect to the information in this document. 2. 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