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MB3615

MB3615

  • 厂商:

    FUJITSU(富士通)

  • 封装:

  • 描述:

    MB3615 - QUAD OPERATIONAL AMPLIFIER - Fujitsu Component Limited.

  • 数据手册
  • 价格&库存
MB3615 数据手册
FUJITSU SEMICONDUCTOR DATA SHEET DS04-11108-3E ASSP QUAD OPERATIONAL AMPLIFIER MB3615 QUAD OPERATIONAL AMPLIFIER OPERATES FROM A SINGLE OR DUAL POWER SUPPLY The Fujitsu MB3615 is a Quad operational amplifier having a phase compensatory circuit and operates from a single power supply or dual power supplies. The device has equivalent electrical characteristics of current industrial standard operational amplifier and requires low power supply current. MB3615 can be mounted in high density because it integrates 4 circuits on a chip in 14pin package. It is taking the countermeasure for cross-over distortion, so can be used for amplifying AC. The MB3615 is pin compatible with Motorola MC3303. PLASTIC PACKAGE DIP-14P-M02 • No phase compensation required • Wide power supply voltage — Single power supply: +3 to +30 V — Dual power supplies: ±1.5 to ±15 V • Wide input common mode range: 0 to (VCC -1.5) V • Low power supply current: 2 mA typ. • Low Cross-over distortion ABSOLUTE MAXIMUM RATINGS (see NOTE) PLASTIC PACKAGE FPT-14P-M04 PIN ASSIGNMENT (TOP VIEW) OUT-A -IN-A 1 _A + D +_ 14 OUT-D -IN-D +IN-D GND +IN-C -IN-C OUT-C 2 13 Ta=25°C Rating Power Supply Voltage * Differential Input Voltage * Input Common Mode Voltage * Power Dissipation Operating Temperature Storage Temperature NOTE: * Single Power Supply. Permanent device damage may occur if the above Absolute Maximum Ratings are exceeded. Functional operation should be restricted to the conditions as detailed in the operational sections of this data sheet. Exposure to absolute maximum rating conditions for extended periods may affect device reliability. +IN-A VCC +IN-B - IN-B OUT-B 3 12 Symbol VCC VID VI PD TOP TSTG Value 36 36 -0.3 to +36 570 -20 to +75 -55 to +125 Unit V V V mW °C °C 4 11 5 10 6 _+ B +_ C 9 7 8 This device contains circuitry to protect the inputs against damage due to high static voltages or electric fields. However, it is advised that normal precautions be taken to avoid application of any voltage higher than maximum rated voltages to this high impedance circuit. 1 MB3615 Fig. 1 — MB3615 EQUIVALENT CIRCUIT VCC -IN OUT +IN 2 MB3615 s ELECTRICAL CHARACTERISTICS (VCC = +15V, VEE = -15V, Ta = 25°C) Parameter Input Offset Voltage Input Offset Current Input Bias Current Power Supply Current Input Common Mode Voltage Voltage Gain Output Voltage Range Output Current Common Mode Rejection Ratio Power Supply Voltage Rejection Ratio Channel Separation Symbol VIO IIO II* ICC VCM AV VOM ISOUECE ISINK CMRR SVRR CS Condition RL = ∞ Value Min VEE 20 ±10 ±12 10 10 70 65 Typ 2 5 45 2.0 100 ±12 ±13 40 20 85 100 120 Max 7 50 250 4.0 VCC-1.5 - Unit mV nA nA mA V V/mV V V mA mA dB dB dB RL ≥ 2kΩ RL ≥ 2kΩ RL = 2kΩ - NOTE: * A direction of the input bias current flows from IC because first input transistor consists of PNP. 3 MB3615 s TYPICAL CHARACTERISTICS CURVES Fig. 2 POWER SUPPLY CURRENT lcc (mA) 4.0 ICC (mA) _ + Power Supply Current vs. Power Supply Voltage INPUT BIAS CURRENT II (nA) VCC Fig. 3 100 Input Bias Current vs. Temperature VCM = 0VDC 3.0 75 VS = ±15V VCC = 15VDC Ta = 0 to 70 °C 2.0 Ta =-20°C 50 1.0 25 VCC = 5VDC 0 0 10 20 30 40 -50 0 50 100 150 Power Supply Voltage VCC (V) Fig. 4 - Voltage Gain vs. Power Supply Voltage 160 140 VOLTAGE GAIN Av (dB) RL = 10KΩ 120 100 VIN 80 60 40 20 0 0 10 20 30 40 1 10 100 1K 10K 100K 1M 10M Frequency f (Hz) Fig. 7 - Maximum Output Current vs. Temperature MAXIMUM OUPUT CURRENT Io (mA) 80 _ Temperature Ta (°C) Fig. 5 - Voltage Gain vs. Frequency 10M Ω 0.1 µF _ + VOLTAGE GAIN Av (dB) 120 VCC VO 80 RL = 2KΩ VCC /2 VCC = 30V VCC = 10 to 15 V 40 0 Power Supply Voltage VCC (V) Fig. 6 - Output Voltage vs. Frequency 40 OUTPUT VOLTAGE Vo (V P-P ) 1KΩ VIN 100K Ω _ + IO+ IO- 30 VO 2KΩ 60 + 20 40 IO+ IO- 10 20 0 0 -30 0 30 60 Temperature Ta (°C) 90 1K 2 3 5 10K 2 3 5 100K 2 3 5 1M Frequency f (Hz) 4 MB3615 s PACKAGE DIMENSIONS 14 pin, Plastic DIP (DIP-14P-M02) 19.55 –0.30 +0.20 +.008 .770 –.012 INDEX-1 INDEX-2 6.20±0.25 (.244±.010) 4.36(.172)MAX 0.51(.020)MIN 0.25±0.05 (.010±.002) 3.00(.118)MIN 0.46±0.08 (.018±.003) +0.30 +.012 1.52 –0 2.40(.094) MAX .060 –0 2.54(.100) TYP 7.62(.300) TYP 15°MAX C 1994 FUJITSU LIMITED D14010S-4C-3 Dimensions in mm(inches). 5 MB3615 s PACKAGE DIMENSIONS (Continued) 14 pin, Plastic SOP (FPT-14P-M04) 2.25(.089)MAX 10.15 –0.20 .400 –.008 +0.25 +.010 0.05(.002)MIN (STAND OFF) INDEX 5.30±0.30 (.209±.012) "B" 7.80±0.40 (.307±.016) 6.80 –0.20 +.016 .268 –.008 +0.40 1.27(.050) TYP 0.45±0.10 (.018±.004) Ø0.13(.005) M 0.15 –0.02 +.002 .006 –.001 Details of "A" part 0.40(.016) +0.05 0.50±0.20 (.020±.008) Details of "B" part 0.15(.006) 0.20(.008) "A" 0.10(.004) 7.62(.300)REF 0.20(.008) 0.18(.007)MAX 0.68(.027)MAX 0.18(.007)MAX 0.68(.027)MAX C 1994 FUJITSU LIMITED F14010S-2C-4 Dimensions in mm(inches). 6 FUJITSU LIMITED For further information please contact: Japan FUJITSU LIMITED Corporate Global Business Support Division Electronic Devices KAWASAKI PLANT, 4-1-1, Kamikodanaka Nakahara-ku, Kawasaki-shi Kanagawa 211-88, Japan Tel: (044) 754-3763 Fax: (044) 754-3329 North and South America FUJITSU MICROELECTRONICS, INC. Semiconductor Division 3545 North First Street San Jose, CA 95134-1804, U.S.A. Tel: (408) 922-9000 Fax: (408) 432-9044/9045 Europe FUJITSU MIKROELEKTRONIK GmbH Am Siebenstein 6-10 63303 Dreieich-Buchschlag Germany Tel: (06103) 690-0 Fax: (06103) 690-122 Asia Pacific FUJITSU MICROELECTRONICS ASIA PTE. LIMITED #05-08, 151 Lorong Chuan New Tech Park Singapore 556741 Tel: (65) 281-0770 Fax: (65) 281-0220 All Rights Reserved. The contents of this document are subject to change without notice. Customers are advised to consult with FUJITSU sales representatives before ordering. The information and circuit diagrams in this document presented as examples of semiconductor device applications, and are not intended to be incorporated in devices for actual use. Also, FUJITSU is unable to assume responsibility for infringement of any patent rights or other rights of third parties arising from the use of this information or circuit diagrams. FUJITSU semiconductor devices are intended for use in standard applications (computers, office automation and other office equipment, industrial, communications, and measurement equipment, personal or household devices, etc.). CAUTION: Customers considering the use of our products in special applications where failure or abnormal operation may directly affect human lives or cause physical injury or property damage, or where extremely high levels of reliability are demanded (such as aerospace systems, atomic energy controls, sea floor repeaters, vehicle operating controls, medical devices for life support, etc.) are requested to consult with FUJITSU sales representatives before such use. The company will not be responsible for damages arising from such use without prior approval. Any semiconductor devices have inherently a certain rate of failure. You must protect against injury, damage or loss from such failures by incorporating safety design measures into your facility and equipment such as redundancy, fire protection, and prevention of over-current levels and other abnormal operating conditions. If any products described in this document represent goods or technologies subject to certain restrictions on export under the Foreign Exchange and Foreign Trade Control Law of Japan, the prior authorization by Japanese government should be required for export of those products from Japan. F9703 © FUJITSU LIMITED Printed in Japan 24
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