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Hello, Please ask a question about TSV631 Datasheet
# Example questions:
➢ What is the typical output current at vcc = 5v, and what is the maximum specified output current?
➢ How does the positive and negative slew rate change with varying supply voltages?
➢ How does the distortion + noise (thd+n) generally change with increasing output voltage (vpp) for a 2kω load, based on figure 11?
1. General Characteristics & Supply Voltage
️· Supply Voltage (Vcc): The amplifier operates over a range of supply voltages, explicitly shown in figures ranging from 1.5V to 5.5V. Performance characteristics are often shown as a function of supply voltage (see figures related to slew rate, distortion, etc.).
️· Temperature: Many tests are performed at Tamb = 25°C.
2. Input Characteristics (Data is limited in the provided extract; this is more typical datasheet info)
️· Not explicitly mentioned in the provided sections.
3. Output Characteristics
️· Output Current: Figures 3 and 4 demonstrate the output current versus output voltage at different supply voltages.
️· Slew Rate: Positive and negative slew rates are illustrated in Figures 7 and 8, and are dependent on supply voltage (see Figures 9).
️· Output Leakage Current (IOLeak): Specified in shutdown mode; <50pA, up to 1nA at higher temperatures.
4. AC Characteristics
️· Bandwidth: The figures show voltage gain and phase versus frequency (Figures 4 & 5). The bandwidth is not directly specified as a single number, but can be extracted from these graphs.
️· Total Harmonic Distortion + Noise (THD+N): Shown in Figures 11 & 12 as a function of output voltage and supply voltage at different loads (2kΩ and 100kΩ). The THD+N values vary significantly based on the parameters.
️· Noise: Figure 15 provides data on noise versus frequency.
5. Shutdown Mode Characteristics (Relevant when the amplifier is powered down)
️· Output Leakage Current (IOLeak): <50pA, increasing to 1nA at higher temperatures.
️· Input/Output Leakage Currents: Values provided for SHDN = VDD.
6. Key Performance Parameters (with representative values from the data)
️· Supply Current: Performance characteristics are shown with Vcm = Vcc/2 (Ic = 2.5 V).
️· Gain: Gain and Phase plots are provided across frequency.
️· THD+N: This is highly variable. The datasheet shows it depends on Vcc and Rl.
️· Noise: Data is presented in Figure 15.
7. Inconsistencies and Ambiguities
️· Data Presentation: The format makes it difficult to extract precise values. Much of the data is presented graphically, requiring careful reading of charts.
️· Lack of Min/Max Specifications: The provided extract lacks many typical min/max specifications that are crucial for design work.
️· Units: While generally consistent, it's important to verify the units in all figures and tables.
️· Figure Titles and Labels: Some of the figure titles and axis labels are somewhat vague.
1. General Characteristics & Supply Voltage
️· Supply Voltage (Vcc): The amplifier operates over a range of supply voltages, explicitly shown in figures ranging from 1.5V to 5.5V. Performance characteristics are often shown as a function of supply voltage (see figures related to slew rate, distortion, etc.).
️· Temperature: Many tests are performed at Tamb = 25°C.
2. Input Characteristics (Data is limited in the provided extract; this is more typical datasheet info)
️· Not explicitly mentioned in the provided sections.
3. Output Characteristics
️· Output Current: Figures 3 and 4 demonstrate the output current versus output voltage at different supply voltages.
️· Slew Rate: Positive and negative slew rates are illustrated in Figures 7 and 8, and are dependent on supply voltage (see Figures 9).
️· Output Leakage Current (IOLeak): Specified in shutdown mode; <50pA, up to 1nA at higher temperatures.
4. AC Characteristics
️· Bandwidth: The figures show voltage gain and phase versus frequency (Figures 4 & 5). The bandwidth is not directly specified as a single number, but can be extracted from these graphs.
️· Total Harmonic Distortion + Noise (THD+N): Shown in Figures 11 & 12 as a function of output voltage and supply voltage at different loads (2kΩ and 100kΩ). The THD+N values vary significantly based on the parameters.
️· Noise: Figure 15 provides data on noise versus frequency.
5. Shutdown Mode Characteristics (Relevant when the amplifier is powered down)
️· Output Leakage Current (IOLeak): <50pA, increasing to 1nA at higher temperatures.
️· Input/Output Leakage Currents: Values provided for SHDN = VDD.
6. Key Performance Parameters (with representative values from the data)
️· Supply Current: Performance characteristics are shown with Vcm = Vcc/2 (Ic = 2.5 V).
️· Gain: Gain and Phase plots are provided across frequency.
️· THD+N: This is highly variable. The datasheet shows it depends on Vcc and Rl.
️· Noise: Data is presented in Figure 15.
7. Inconsistencies and Ambiguities
️· Data Presentation: The format makes it difficult to extract precise values. Much of the data is presented graphically, requiring careful reading of charts.
️· Lack of Min/Max Specifications: The provided extract lacks many typical min/max specifications that are crucial for design work.
️· Units: While generally consistent, it's important to verify the units in all figures and tables.
️· Figure Titles and Labels: Some of the figure titles and axis labels are somewhat vague.
| Part No. | TSV631 |
| Manufacturer | STMICROELECTRONICS |
| Size | 818 Kbytes |
| Pages | 23 pages |
| Description | Rail-to-rail input/output 60 μA 880 kHz CMOS operational amplifier |
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