Description
Figure 1±4. THS3001 Rev. A EVM Schematic
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| VCC | C2 |
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| 6.8 μF |
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±VCC | 1 | ±VCC |
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2 |
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GND |
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| C3 |
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3 |
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VCC | VCC |
| R2 | R4 |
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| ±IN | 1 kΩ | 1 kΩ |
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| Inverting | R1 |
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| 49.9 Ω |
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| ± | R5 | J4 | ||
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Rev. A |
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| U1 | 6 49.9 Ω | |
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| Out | |||
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| THS3001 | |||
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| Noninverting |
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| 4 | 0.1 μF |
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| 49.9 Ω |
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| C1 |
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| 6.8 μF |
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| ±VCC |
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Even though the THS3001 is a
Inverting Gain + | *RF +*R1 +*R4 | (Rev. A) |
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RG |
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| R5 | R2 |
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Noninverting Gain +1 ) | RF | +1 ) | R1 |
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RG | R4 )R5 | R2 )R1 | ||||||||||
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In addition, some applications, such as those for video, may require the use of
Any of the resistors on the EVM board can be replaced with a resistor of a different value; however, care must be taken because the
Because of the current feedback architecture, extra care must be taken to ensure that a feedback resistor is always included in the design. In addition, there must never be a capacitor directly in the feedback path between the amplifier output and the noninverting input. Disregarding this guideline will likely result in a part that oscillates.
General Information |