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Hello, Please ask a question about MS2100GU Datasheet
# Example questions:
➢ The datasheet includes a circuit diagram for a '2nd order multiple feedback low-pass filter'. what is the formula provided for calculating the cutoff frequency (fc) of this filter?
➢ Referring to the 'external dimensions' section, what is the maximum allowable dimension (in millimeters) for 'l' (the lead length) of the sop8 package?
➢ What is the typical quiescent current (iq) of the ms2100 when operating with a 7v supply?
1. General Description:
️· Type: Operational Amplifier (Op-Amp)
️· Technology: Not specified but likely CMOS or BiCMOS.
️· Supply Voltage: Single supply operation is highlighted. Can operate at 2.7V or 5V, as detailed in the electrical characteristics.
️· Key Features:
- Single-supply operation
- High Slew Rate (6 V/µs at 2.7V, 5 V/µs at 5V)
- Low Quiescent Current (2.1mA at 2.7V, 2.6 mA at 5V)
- Suitable for a variety of applications, including voltage followers, inverting/non-inverting amplifiers, and filters.
2. Electrical Characteristics (Key Values):
️· At 2.7V Supply:
- Quiescent Current (IQ): 2.1 mA (dual amplifiers)
- Input Offset Voltage (VOS): 1.5 mV
- Common Mode Rejection Ratio (CMRR): 57dB
- Power Supply Rejection Ratio (PSRR): 57dB
- Slew Rate (SR): 5 V/µs
- Gain-Bandwidth Product (GBWP): 11 MHz
- Output Voltage Swing: ~ 2.7V - 60mV to 2.7V-70mV
️· At 5V Supply:
- Quiescent Current (IQ): 2.6 mA (dual amplifiers)
- Input Offset Voltage (VOS): 1.5 mV
- Common Mode Rejection Ratio (CMRR): 65dB
- Power Supply Rejection Ratio (PSRR): 57dB
- Slew Rate (SR): 6 V/µs
- Gain-Bandwidth Product (GBWP): 12 MHz
- Output Voltage Swing: ~ 5V - 25mV to 5V-15mV
️· Common to both:
- Channel Separation (CS): 78dB
- Total Harmonic Distortion + Noise (THD+N): Relatively low, typically between -70dB to -75dB.
3. Application Circuits (Example Configurations):
️· Voltage Follower: Simple unity-gain configuration.
️· Inverting Amplifier: Basic amplifier circuit using feedback.
️· Simple Low-Pass Filter: Demonstrates a basic RC filter topology.
️· Difference Amplifier: Uses the op-amp to amplify the difference between two input voltages.
️· Simple High-Pass Filter: Uses the op-amp in a basic RC filter for high-pass functionality.
️· 2nd Order Multiple Feedback Low-Pass Filter
4. Typical Performance Characteristics (Graphical Data):
️· PSRR vs. Frequency: Shows the power supply rejection ratio's response to frequency changes.
️· Quiescent Current vs. Supply Voltage: Illustrates the relationship between supply voltage and quiescent current.
️· Channel Separation vs. Frequency: Demonstrates how separation between channels changes with frequency.
️· THD+N vs. Output Voltage: Displays how total harmonic distortion changes with the output voltage.
️· THD+N vs. Frequency: Shows how total harmonic distortion changes with frequency.
️· CMRR vs. Frequency: Illustrates the common-mode rejection ratio’s response to frequency.
5. Physical Characteristics:
️· Package Type: SOP-8 (Small Outline Package, 8-lead)
️· Dimensions (in mm and inches): Detailed dimensional specifications are provided in a table, including pin spacing and overall package size.
️· Tape and Reel Specifications: Details for automated assembly using tape and reel format.
Summary of Key Benefits:
️· Versatility: Suitable for a wide range of applications.
️· Efficiency: Low quiescent current and good PSRR contribute to power efficiency.
️· Performance: Adequate slew rate and gain-bandwidth product for many signal processing tasks.
️· Ease of Use: Single-supply operation simplifies biasing and design.
1. General Description:
️· Type: Operational Amplifier (Op-Amp)
️· Technology: Not specified but likely CMOS or BiCMOS.
️· Supply Voltage: Single supply operation is highlighted. Can operate at 2.7V or 5V, as detailed in the electrical characteristics.
️· Key Features:
- Single-supply operation
- High Slew Rate (6 V/µs at 2.7V, 5 V/µs at 5V)
- Low Quiescent Current (2.1mA at 2.7V, 2.6 mA at 5V)
- Suitable for a variety of applications, including voltage followers, inverting/non-inverting amplifiers, and filters.
2. Electrical Characteristics (Key Values):
️· At 2.7V Supply:
- Quiescent Current (IQ): 2.1 mA (dual amplifiers)
- Input Offset Voltage (VOS): 1.5 mV
- Common Mode Rejection Ratio (CMRR): 57dB
- Power Supply Rejection Ratio (PSRR): 57dB
- Slew Rate (SR): 5 V/µs
- Gain-Bandwidth Product (GBWP): 11 MHz
- Output Voltage Swing: ~ 2.7V - 60mV to 2.7V-70mV
️· At 5V Supply:
- Quiescent Current (IQ): 2.6 mA (dual amplifiers)
- Input Offset Voltage (VOS): 1.5 mV
- Common Mode Rejection Ratio (CMRR): 65dB
- Power Supply Rejection Ratio (PSRR): 57dB
- Slew Rate (SR): 6 V/µs
- Gain-Bandwidth Product (GBWP): 12 MHz
- Output Voltage Swing: ~ 5V - 25mV to 5V-15mV
️· Common to both:
- Channel Separation (CS): 78dB
- Total Harmonic Distortion + Noise (THD+N): Relatively low, typically between -70dB to -75dB.
3. Application Circuits (Example Configurations):
️· Voltage Follower: Simple unity-gain configuration.
️· Inverting Amplifier: Basic amplifier circuit using feedback.
️· Simple Low-Pass Filter: Demonstrates a basic RC filter topology.
️· Difference Amplifier: Uses the op-amp to amplify the difference between two input voltages.
️· Simple High-Pass Filter: Uses the op-amp in a basic RC filter for high-pass functionality.
️· 2nd Order Multiple Feedback Low-Pass Filter
4. Typical Performance Characteristics (Graphical Data):
️· PSRR vs. Frequency: Shows the power supply rejection ratio's response to frequency changes.
️· Quiescent Current vs. Supply Voltage: Illustrates the relationship between supply voltage and quiescent current.
️· Channel Separation vs. Frequency: Demonstrates how separation between channels changes with frequency.
️· THD+N vs. Output Voltage: Displays how total harmonic distortion changes with the output voltage.
️· THD+N vs. Frequency: Shows how total harmonic distortion changes with frequency.
️· CMRR vs. Frequency: Illustrates the common-mode rejection ratio’s response to frequency.
5. Physical Characteristics:
️· Package Type: SOP-8 (Small Outline Package, 8-lead)
️· Dimensions (in mm and inches): Detailed dimensional specifications are provided in a table, including pin spacing and overall package size.
️· Tape and Reel Specifications: Details for automated assembly using tape and reel format.
Summary of Key Benefits:
️· Versatility: Suitable for a wide range of applications.
️· Efficiency: Low quiescent current and good PSRR contribute to power efficiency.
️· Performance: Adequate slew rate and gain-bandwidth product for many signal processing tasks.
️· Ease of Use: Single-supply operation simplifies biasing and design.
| Part No. | MS2100GU |
| Manufacturer | MOSA |
| Size | 190 Kbytes |
| Pages | 6 pages |
| Description | Rail-to-Rail Output, Low Voltage, High Slew Rate, Wide Bandwidth Dual Operational Amplifiers |
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