ONSEMI LM 833 N - Operational amplifier, dual, DIP-8
10.97 EUR
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Low-noise dual operational amplifier
Enclosure: DIP-8
Delivery Cost: 9.95 EUR
Availability: in stock
Delivery Time: 4-5 business days
Condition: new
Low-noise dual operational amplifier
Enclosure: DIP-8
Delivery Cost: 9.95 EUR
Availability: in stock
Delivery Time: 4-5 business days
Condition: new
Comparison of Similar Products
Description:
The OPA134 series are ultra-low distortion, low-noise operational amplifiers fully specified for audio applications. A true FET input stage is incorporated to provide superior sound quality and speed for exceptional audio performance. This, in combination with high output drive capability and excellent DC performance, allows for use in a wide variety of demanding applications. In addition, the OPA134 has a wide output swing, to within 1 V of the rails, allowing increased headroom and making it ideal for use in any audio circuit. The OPA134 SoundPlus™ audio operational amplifiers are easy to use and free from phase-inversion and the overload problems often found in common FET-input operational amplifiers. They can be operated from ±2.5-V to ±18-V power supplies. Input cascode circuitry provides excellent common-mode rejection and maintains low input bias current over its wide input voltage range, minimizing distortion. OPA134 series operational amplifiers are unity-gain stable and provide excellent dynamic behavior over a wide range of load conditions, including high load capacitance. The dual and quad versions feature completely independent circuitry for lowest crosstalk and freedom from interaction, even when overdriven or overloaded. Single and dual versions are available in 8-pin DIP and SO-8 surface-mount packages in standard configurations. The quad is available in 14-pin DIP and SO-14 surface mount packages. All are specified for –40°C to 85°C operation. A SPICE macromodel is available for design analysis.
Features:
• Superior Sound Quality
• Ultra Low Distortion: 0.00008%
• Low Noise: 8 nV/vHz
• True FET-Input: IB = 5pA
• High Speed:
- Slew Rate: 20 V/µs
- Bandwidth: 8 MHz
• High Open-Loop Gain: 120 dB (600 O)
• Wide Supply Range: ±2.5 V to ±18 V
• Single, Dual, and Quad Versions
Description:
The OPA134 series are ultra-low distortion, low-noise operational amplifiers fully specified for audio applications. A true FET input stage is incorporated to provide superior sound quality and speed for exceptional audio performance. This, in combination with high output drive capability and excellent DC performance, allows for use in a wide variety of demanding applications. In addition, the OPA134 has a wide output swing, to within 1 V of the rails, allowing increased headroom and making it ideal for use in any audio circuit. The OPA134 SoundPlus™ audio operational amplifiers are easy to use and free from phase-inversion and the overload problems often found in common FET-input operational amplifiers. They can be operated from ±2.5-V to ±18-V power supplies. Input cascode circuitry provides excellent common-mode rejection and maintains low input bias current over its wide input voltage range, minimizing distortion. OPA134 series operational amplifiers are unity-gain stable and provide excellent dynamic behavior over a wide range of load conditions, including high load capacitance. The dual and quad versions feature completely independent circuitry for lowest crosstalk and freedom from interaction, even when overdriven or overloaded. Single and dual versions are available in 8-pin DIP and SO-8 surface-mount packages in standard configurations. The quad is available in 14-pin DIP and SO-14 surface mount packages. All are specified for –40°C to 85°C operation. A SPICE macromodel is available for design analysis.
Features:
• Superior Sound Quality
• Ultra Low Distortion: 0.00008%
• Low Noise: 8 nV/vHz
• True FET-Input: IB = 5pA
• High Speed:
- Slew Rate: 20 V/µs
- Bandwidth: 8 MHz
• High Open-Loop Gain: 120 dB (600 O)
• Wide Supply Range: ±2.5 V to ±18 V
• Single, Dual, and Quad Versions
Technical data:
• Design: single
• Input offset voltage: 0.02mV
• Bandwidth: 1 MHz
• Open loop gain: 10000 V/mV
• Slew rate: 0.8V/µs
• Operating temperature: -55 - +125°C
• Housing: DIL-8
• Dual supply voltages: ±2 - ±18 V
• Voltage noise: 8 nV/vHz
• Supply current: 0.79mA
• SVHC: Yes SVHC
Description:
The MC33078 is a bipolar dual operational amplifier with high-performance specifications for use in quality audio and data-signal applications. This device operates over a wide range of single- and dual-supply voltages and offers low noise, high-gain bandwidth, and high slew rate. Additional features include low total harmonic distortion, excellent phase and gain margins, large output voltage swing with no deadband crossover distortion, and symmetrical sink/source performance.
Features:
• High DC Current Gain
• Dual-Supply Operation . . . ±5 V to ±18 V
• Low Noise Voltage . . . 4.5 nV/ÖHz
• Low Input Offset Voltage . . . 0.15 mV
• Low Total Harmonic Distortion . . . 0.002%
• High Slew Rate . . . 7 V/ms
• High-Gain Bandwidth Product . . . 16 MHz
• High Open-Loop AC Gain . . . 800 at 20 kHz
• Large Output-Voltage Swing . . . 14.1 V to –14.6 V
• Excellent Gain and Phase Margins
Description:
This device is a low-cost, high-speed, JFET-input operational amplifier with very low input offset voltage and a maximum input offset voltage drift. It requires low supply current, yet maintains a large gain-bandwidth product and a fast slew rate. In addition, the matched high-voltage JFET input provides very low input bias and offset currents. The LF411 can be used in applications such as high-speed integrators, digital-to-analog converters, sample and-hold circuits, and many other circuits. The LF411C is characterized for operation from 0°C to 70°C. The LF411I is characterized for operation from -40°C to 85°C.
Features:
• Low Input Bias Current, 50 pA Typ
• Low Input Noise Current, 0.01 pA/ Hz\ Typ
• Low Supply Current, 2 mA Typ
• High Input impedance, 1012 Typ
• Low Total Harmonic Distortion
• Low 1/f Noise Corner, 50 Hz Typ
Enclosure: DIP-8
• 2x
• High-speed BIFET
• Housing: DIP-8
Housing: DIL-14
LinCMOS Precision Dual OP
Description:
The TLC272 and TLC277 precision dual operational amplifiers combine a wide range of input offset voltage grades with low offset voltage drift, high input impedance, low noise, and speeds approaching those of general-purpose BiFET devices. These devices use Texas Instruments silicongate LinCMOS technology, which provides offset voltage stability far exceeding the stability available with conventional metal-gate processes. The extremely high input impedance, low bias currents, and high slew rates make these costeffective devices ideal for applications previously reserved for BiFET and NFET products. Four offset voltage grades are available (C-suffix and I-suffix types), ranging from the low-cost TLC272 (10 mV) to the high-precision TLC277 (500 µV). These advantages, in combination with good common-mode rejection and supply voltage rejection, make these devices a good choice for new state-of-the-art designs as well as for upgrading existing designs.
Features:
• Trimmed Offset Voltage: TLC277 . . . 500 µV Max at 25°C, VDD = 5 V
• Input Offset Voltage Drift . . . Typically 0.1 µV/Month, Including the First 30 Days
• Single-Supply Operation
• Common-Mode Input Voltage Range Extends Below the Negative Rail (C-Suffix, I-Suffix types)
• Low Noise . . . Typically 25 nV/vHz at f = 1 kHz
• Output Voltage Range Includes Negative Rail
• High Input impedance . . . 10 TO Typ
• ESD-Protection Circuitry
• Small-Outline Package Option Also
• Available in Tape and Reel
• Designed-In Latch-Up Immunity
LinCMOS Precision Dual OP
Description:
The TLC272 and TLC277 precision dual operational amplifiers combine a wide range of input offset voltage grades with low offset voltage drift, high input impedance, low noise, and speeds approaching those of general-purpose BiFET devices. These devices use Texas Instruments silicongate LinCMOS technology, which provides offset voltage stability far exceeding the stability available with conventional metal-gate processes. The extremely high input impedance, low bias currents, and high slew rates make these costeffective devices ideal for applications previously reserved for BiFET and NFET products. Four offset voltage grades are available (C-suffix and I-suffix types), ranging from the low-cost TLC272 (10 mV) to the high-precision TLC277 (500 µV). These advantages, in combination with good common-mode rejection and supply voltage rejection, make these devices a good choice for new state-of-the-art designs as well as for upgrading existing designs.
Features:
• Trimmed Offset Voltage: TLC277 . . . 500 µV Max at 25°C, VDD = 5 V
• Input Offset Voltage Drift . . . Typically 0.1 µV/Month, Including the First 30 Days
• Single-Supply Operation
• Common-Mode Input Voltage Range Extends Below the Negative Rail (C-Suffix, I-Suffix types)
• Low Noise . . . Typically 25 nV/vHz at f = 1 kHz
• Output Voltage Range Includes Negative Rail
• High Input impedance . . . 10 TO Typ
• ESD-Protection Circuitry
• Small-Outline Package Option Also
• Available in Tape and Reel
• Designed-In Latch-Up Immunity
LinCMOS Precision Dual OP
Description:
The TLC272 and TLC277 precision dual operational amplifiers combine a wide range of input offset voltage grades with low offset voltage drift, high input impedance, low noise, and speeds approaching those of general-purpose BiFET devices. These devices use Texas Instruments silicongate LinCMOS technology, which provides offset voltage stability far exceeding the stability available with conventional metal-gate processes. The extremely high input impedance, low bias currents, and high slew rates make these costeffective devices ideal for applications previously reserved for BiFET and NFET products. Four offset voltage grades are available (C-suffix and I-suffix types), ranging from the low-cost TLC272 (10 mV) to the high-precision TLC277 (500 µV). These advantages, in combination with good common-mode rejection and supply voltage rejection, make these devices a good choice for new state-of-the-art designs as well as for upgrading existing designs.
Features:
• Trimmed Offset Voltage: TLC277 . . . 500 µV Max at 25°C, VDD = 5 V
• Input Offset Voltage Drift . . . Typically 0.1 µV/Month, Including the First 30 Days
• Single-Supply Operation
• Common-Mode Input Voltage Range Extends Below the Negative Rail (C-Suffix, I-Suffix types)
• Low Noise . . . Typically 25 nV/vHz at f = 1 kHz
• Output Voltage Range Includes Negative Rail
• High Input impedance . . . 10 TO Typ
• ESD-Protection Circuitry
• Small-Outline Package Option Also
• Available in Tape and Reel
• Designed-In Latch-Up Immunity
Housing: DIP-8
Description:
These devices offer low offset and long-term stability by means of a low-noise, chopperless, bipolar-input-transistor amplifier circuit. For most applications, external components are not required for offset nulling and frequency compensation. The true differential input, with a wide input-voltage range and outstanding common-mode rejection, provides maximum flexibility and performance in high-noise environments and in noninverting applications. Low bias currents and extremely high input impedances are maintained over the entire temperature range.
Features:
• Low Noise
• No External Components Required
• Replace Chopper Amplifiers at a Lower Cost
• Wide Input-Voltage Range: 0 to ±14 V (Typ)
• Wide Supply-Voltage Range: ±3 V to ±18 V
Description:
The LM2574 series of regulators are monolithic integrated circuits ideally suited for easy and convenient design of a step-down switching regulator (buck converter). All circuits of this series are capable of driving a 0.5 A load with excellent line and load regulation. These devices are available in fixed output voltages of 3.3 V, 5.0 V, 12 V, 15 V, and an adjustable output version. These regulators were designed to minimize the number of external components to simplify the power supply design. Standard series of inductors optimized for use with the LM2574 are offered by several different inductor manufacturers. Since the LM2574 converter is a switch-mode power supply, its efficiency is significantly higher in comparison with popular three-terminal linear regulators, especially with higher input voltages. In most cases, the power dissipated by the LM2574 regulator is so low, that the copper traces on the printed circuit board are normally the only heatsink needed and no additional heatsinking is required. The LM2574 features include a guaranteed ±4% tolerance on output voltage within specified input voltages and output load conditions, and ±10% on the oscillator frequency (±2% over 0°C to +125°C). External shutdown is included, featuring 60 A (typical) standby current. The output switch includes cycle-by-cycle current limiting, as well as thermal shutdown for full protection under fault conditions.
Features
• 3.3 V, 5.0 V, 12 V, 15 V, and Adjustable Output Versions
• Adjustable Version Output Voltage Range, 1.23 to 37 V ±4% max over Line and Load Conditions
• Guaranteed 0.5 A Output Current
• Wide Input Voltage Range: 4.75 to 40 V
• Requires Only 4 External Components
• 52 kHz Fixed Frequency Internal Oscillator
• TTL Shutdown Capability, Low Power Standby Mode
• High Efficiency
• Uses Readily Available Standard Inductors
• Thermal Shutdown and Current Limit Protection
• Pb-Free Packages are Available*
Applications
• Simple and High-Efficiency Step-Down (Buck) Regulators
• Efficient Pre-regulator for Linear Regulators
• On-Card Switching Regulators
• Positive to Negative Converters (Buck-Boost)
• Negative Step-Up Converters
• Power Supply for Battery Chargers
Description:
The LM2574 series of regulators are monolithic integrated circuits ideally suited for easy and convenient design of a step-down switching regulator (buck converter). All circuits of this series are capable of driving a 0.5 A load with excellent line and load regulation. These devices are available in fixed output voltages of 3.3 V, 5.0 V, 12 V, 15 V, and an adjustable output version. These regulators were designed to minimize the number of external components to simplify the power supply design. Standard series of inductors optimized for use with the LM2574 are offered by several different inductor manufacturers. Since the LM2574 converter is a switch-mode power supply, its efficiency is significantly higher in comparison with popular three-terminal linear regulators, especially with higher input voltages. In most cases, the power dissipated by the LM2574 regulator is so low, that the copper traces on the printed circuit board are normally the only heatsink needed and no additional heatsinking is required. The LM2574 features include a guaranteed ±4% tolerance on output voltage within specified input voltages and output load conditions, and ±10% on the oscillator frequency (±2% over 0°C to +125°C). External shutdown is included, featuring 60 A (typical) standby current. The output switch includes cycle-by-cycle current limiting, as well as thermal shutdown for full protection under fault conditions.
Features
• 3.3 V, 5.0 V, 12 V, 15 V, and Adjustable Output Versions
• Adjustable Version Output Voltage Range, 1.23 to 37 V ±4% max over Line and Load Conditions
• Guaranteed 0.5 A Output Current
• Wide Input Voltage Range: 4.75 to 40 V
• Requires Only 4 External Components
• 52 kHz Fixed Frequency Internal Oscillator
• TTL Shutdown Capability, Low Power Standby Mode
• High Efficiency
• Uses Readily Available Standard Inductors
• Thermal Shutdown and Current Limit Protection
• Pb-Free Packages are Available*
Applications
• Simple and High-Efficiency Step-Down (Buck) Regulators
• Efficient Pre-regulator for Linear Regulators
• On-Card Switching Regulators
• Positive to Negative Converters (Buck-Boost)
• Negative Step-Up Converters
• Power Supply for Battery Chargers
Description:
The LM2574 series of regulators are monolithic integrated circuits ideally suited for easy and convenient design of a step-down switching regulator (buck converter). All circuits of this series are capable of driving a 0.5 A load with excellent line and load regulation. These devices are available in fixed output voltages of 3.3 V, 5.0 V, 12 V, 15 V, and an adjustable output version. These regulators were designed to minimize the number of external components to simplify the power supply design. Standard series of inductors optimized for use with the LM2574 are offered by several different inductor manufacturers. Since the LM2574 converter is a switch-mode power supply, its efficiency is significantly higher in comparison with popular three-terminal linear regulators, especially with higher input voltages. In most cases, the power dissipated by the LM2574 regulator is so low, that the copper traces on the printed circuit board are normally the only heatsink needed and no additional heatsinking is required. The LM2574 features include a guaranteed ±4% tolerance on output voltage within specified input voltages and output load conditions, and ±10% on the oscillator frequency (±2% over 0°C to +125°C). External shutdown is included, featuring 60 A (typical) standby current. The output switch includes cycle-by-cycle current limiting, as well as thermal shutdown for full protection under fault conditions.
Features
• 3.3 V, 5.0 V, 12 V, 15 V, and Adjustable Output Versions
• Adjustable Version Output Voltage Range, 1.23 to 37 V ±4% max over Line and Load Conditions
• Guaranteed 0.5 A Output Current
• Wide Input Voltage Range: 4.75 to 40 V
• Requires Only 4 External Components
• 52 kHz Fixed Frequency Internal Oscillator
• TTL Shutdown Capability, Low Power Standby Mode
• High Efficiency
• Uses Readily Available Standard Inductors
• Thermal Shutdown and Current Limit Protection
• Pb-Free Packages are Available*
Applications
• Simple and High-Efficiency Step-Down (Buck) Regulators
• Efficient Pre-regulator for Linear Regulators
• On-Card Switching Regulators
• Positive to Negative Converters (Buck-Boost)
• Negative Step-Up Converters
• Power Supply for Battery Chargers
Description
The NE5532, NE5532A, SA5532, and SA5532A devices are high-performance operational amplifiers combining excellent DC and AC characteristics. They feature very low noise, high output-drive capability, high unity-gain and maximum-output-swing bandwidths, low distortion, high slew rate, input-protection diodes, and output short-circuit protection. These operational amplifiers are compensated internally for unity-gain operation. These devices have specified maximum limits for equivalent input noise voltage.
Features
• Equivalent Input Noise Voltage: 5 nV/vHz Typ at 1 kHz
• Unity-Gain Bandwidth: 10 MHz Typ
• Common-Mode Rejection Ratio: 100 dB Typ
• High DC Voltage Gain: 100 V/mV Typ
• Peak-to-Peak Output Voltage Swing 26 V Typ With VCC± = ±15 V and RL = 600 ?
• High Slew Rate: 9 V/µs Typ
Applications
• AV Receivers
• Embedded PCs
• Netbooks
• Multichannel Video Transcoders
• Pro Audio Mixers
Enclosure: SO-8
Operational Amplifiers OP295/OP495
Description
Rail-to-rail output swing combined with dc accuracy are the key features of the OP495 quad and OP295 dual CBCMOS operational amplifiers. By using a bipolar front end, lower noise and higher accuracy than those of CMOS designs have been achieved. Both input and output ranges include the negative supply, providing the user with zero-in/zero-out capability. For users of 3.3 V systems such as lithium batteries, the OP295/OP495 are specified for 3 V operation. Maximum offset voltage is specified at 300 µV for 5 V operation, and the open-loop gain is a minimum of 1000 V/mV. This yields performance that can be used to implement high accuracy systems, even in single-supply designs. The ability to swing rail-to-rail and supply 15 mA to the load makes the OP295/OP495 ideal drivers for power transistors and H bridges. This allows designs to achieve higher efficiencies and to transfer more power to the load than previously possible without the use of discrete components. For applications such as transformers that require driving inductive loads, increases in efficiency are also possible. Stability while driving capacitive loads is another benefit of this design over CMOS rail-to-rail amplifiers. This is useful for driving coax cable or large FET transistors. The OP295/OP495 are stable with loads in excess of 300 pF. The OP295 and OP495 are specified over the extended indus-trial (-40°C to +125°C) temperature range. The OP295 is available in 8-lead PDIP and 8-lead SOIC_N surface-mount packages. The OP495 is available in 14-lead PDIP and 16-lead SOIC_W surface-mount packages.
Features
• Rail-to-rail output swing
• Single-supply operation: 3 V to 36 V
• Low offset voltage: 300 µV
• Gain bandwidth product: 75 kHz
• High open-loop gain: 1000 V/mV
• Unity-gain stable
• Low supply current/per amplifier: 150 µA maximum
Housing: DIP-8
Description:
The OP177 features one of the highest precision performance of any operational amplifier currently available. Offset voltage of the OP177 is only 25 µV maximum at room temperature. The ultralow VOS of the OP177 combines with the exceptional offset voltage drift (TCVOS) of 0.3 µV/°C maximum to eliminate the need for external VOS adjustment and increases system accuracy over temperature. The OP177 open loop gain of 12 V/µV is maintained over the full ±10 V output range. CMRR of 130 dB minimum, PSRR of 120 dB minimum, and maximum supply current of 2 mA are just a few examples of the excellent performance of this operational amplifier. The combination of outstanding specifications of the OP177 ensures accurate performance in high closed-loop gain applications. This low noise, bipolar input operational amplifier is also a cost effective alternative to chopper-stabilized amplifiers. The OP177 provides chopper-type performance without the usual problems of high noise, low frequency chopper spikes, large physical size, limited common-mode input voltage range, and bulky external storage capacitors. The OP177 is offered in the -40°C to +85°C extended industrial temperature ranges. This product is available in 8-lead PDIP, as well as the space saving 8-lead SOIC.
Features:
• Ultralow offset voltage TA = 25°C, 25 µV maximum
• Outstanding offset voltage drift 0.3 µV/°C maximum
• Excellent open-loop gain and gain linearity 12 V/µV typical
• CMRR: 130 dB minimum
• PSRR: 115 dB minimum
• Low supply current 2.0 mA maximum
• Fits industry-standard precision operational amplifier sockets
Housing: DIP-8
Low noise J-FET operational amplifier
• 2x
• Housing: DIP-8
= RC 4558P
Description:
The OP27 precision operational amplifier combines the low offset and drift of the OP07 with both high speed and low noise. Offsets down to 25 µV and maximum drift of 0.6 µV/°C make the OP27 ideal for precision instrumentation applications. Low noise, en = 3.5 nV/#Hz, at 10 Hz, a low 1/f noise corner frequency of 2.7 Hz, and high gain (1.8 million), allow accurate high-gain amplification of low-level signals. A gain bandwidth product of 8 MHz and a 2.8 V/µs slew rate provide excellent dynamic accuracy in high speed, data-acquisition systems. A low input bias current of ±10 nA is achieved by use of a bias current cancellation circuit. Over the military temperature range, this circuit typically holds IB and IOS to ±20 nA and 15 nA, respectively. The output stage has good load driving capability. A guaranteed swing of ±10 V into 600 % and low output distortion make the OP27 an excellent choice for professional audio applications. PSRR and CMRR exceed 120 dB. These characteristics, coupled with long term drift of 0.2 µV/month, allow the circuit designer to achieve performance levels previously attained only by discrete designs. Low cost, high volume production of OP27 is achieved by using an on-chip Zener zap-trimming network. This reliable and stable offset trimming scheme has proven its effectiveness over many years of production history. The OP27 provides excellent performance in low noise, high accuracy amplification of low level signals. Applications include stable integrators, precision summing amplifiers, precision voltage threshold detectors, comparators, and professional audio circuits such as tape heads and microphone preamplifiers.
Features:
• Low noise: 80 nV p-p (0.1 Hz to 10 Hz), 3 nV/''Hz
• Low drift: 0.2 µV/°C
• High speed: 2.8 V/µs slew rate, 8 MHz gain bandwidth
• Low VOS: 10 µV
• CMRR: 126 dB at VCM of ±11 V
• High open-loop gain: 1.8 million
• Available in die form
The LM324 series is a low-cost quad operational amplifier with
True differential inputs. They have several distinct advantages over
Standard operational amplifier types in single power applications.
The quad amplifier can be used at supply voltages of 3.0 V or up to
32 V operate, with the quiescent currents approximately one fifth of those
Of the MC1741 (per amplifier). The common mode
Common mode input range includes the negative supply, causing the
The need for external prestressing components in many applications. The
The output voltage range also includes the negative supply voltage
.
High slew rate,
Low input offset voltage
Operational Amplifiers
The MC33272/74 series monolithic operational amplifiers are
Manufactured using innovative bipolar design concepts. This dual
And quad operational amplifier series have bipolar inputs
Featuring a patented Zip-R trim element to reduce input offset voltage
Reduction. The MC33272/74 series operational amplifiers are distinguished
Low input offset voltage and a high gain bandwidth product.
Dual-double frequency compensation is used to increase the rate of rise
While maintaining low input noise characteristics. The pure NPN output stage
Output stage has no dead band distortion, a large output voltage
Output voltage stroke and excellent phase and gain span. It also offers a low
A low open-loop, high-frequency output impedance with a balanced source
And lower AC frequencies.
Description:
The NE5534, NE5534A, SA5534, and SA5534A devices are high-performance operational amplifiers combining excellent dc and ac characteristics. Some of the features include very low noise, high output-drive capability, high unity-gain and maximum-output-swing bandwidths, low distortion, and high slew rate. These operational amplifiers are compensated internally for a gain equal to or greater than three. Optimization of the frequency response for various applications can be obtained by use of an external compensation capacitor between COMP and COMP/BAL. The devices feature input-protection diodes, output short-circuit protection, and offset-voltage nulling capability with use of the BALANCE and COMP/BAL pins (see Figure 10). For the NE5534A and SA5534A devices, a maximum limit is specified for the equivalent input noise voltage.
Features:
• Equivalent Input Noise Voltage: 3.5 nV/vHz Typ
• Unity-Gain Bandwidth 10 MHz Typ
• Common-Mode Rejection Ratio 100 dB Typ
• High DC Voltage Gain 100 V/mV Typ
• Peak-to-Peak Output Voltage Swing 32 V Typ With VCC± = ±18 V and RL = 600 O
• High Slew Rate 13 V/µs Typ
• Wide Supply-Voltage Range ±3 V to ±20 V
• Low Harmonic Distortion
• Offset Nulling Capability
• External Compensation Capability
Applications
• Audio Preamplifiers
• Servo Error Amplifiers
• Medical Equipment
• Telephone Channel Amplifiers
• 1x
• High-speed BIFET
• Housing: DIP-8
Enclosure: DIL-16
Description:
The MCP606/7/8/9 family of operational amplifiers (op amps) from Microchip Technology Inc. are unity-gain stable with low offset voltage (250 µV, maximum). Performance characteristics include rail-to-rail output swing capability and low input bias current (80 pA at +85°C, maximum). These features make this family of op amps well suited for single-supply, precision, high-impedance, battery-powered applications. The single is available in standard 8-lead PDIP, SOIC and TSSOP packages, as well as in a SOT-23-5 package. The single MCP608 with Chip Select (CS) is offered in the standard 8-lead PDIP, SOIC and TSSOP packages. The dual MCP607 is offered in the standard 8-lead PDIP, SOIC and TSSOP packages. Finally, the quad MCP609 is offered in the standard 14-lead PDIP, SOIC and TSSOP packages. All devices are fully specified from -40°C to +85°C, with power supplies from 2.5V to 6.0V.
Features:
• Low Input Offset Voltage: 250 µV (maximum)
• Rail-to-Rail Output
• Low Input Bias Current: 80 pA (maximum at +85°C)
• Low Quiescent Current: 25 µA (maximum)
• Power Supply Voltage: 2.5V to 6.0V
• Unity-Gain Stable
• Chip Select (CS) Capability: MCP608
• Industrial Temperature Range: -40°C to +85°C
• No Phase Reversal
• Available in Single, Dual and Quad Packages
Typical Applications
• Battery Power Instruments
• High-Impedance Applications
• Strain Gauges
• Medical Instruments
• Test Equipment
