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ADHV4702-1BCPZ-R7 Datenblatt(PDF) 16 Page - Analog Devices |
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ADHV4702-1BCPZ-R7 Datenblatt(HTML) 16 Page - Analog Devices |
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16 / 21 page ![]() ADHV4702-1 Data Sheet Rev. A | Page 16 of 21 –150 –100 –50 0 50 100 150 TIME (2µs/DIV) TA = –40°C TA = 0°C TA = +25°C TA = +85°C Figure 45. Large Signal Pulse Response at Various TA with Two-Diode Forward Voltages, Rising Edge, AV = 20, VS = ±110 V, VOUT = 200 V p-p, RF = 100 kΩ, RLOAD = 10 kΩ, RADJ = 0 Ω –150 –100 –50 0 50 100 150 TIME (2µs/DIV) TA = –40°C TA = 0°C TA = +25°C TA = +85°C Figure 46. Large Signal Pulse Response at Various TA with Two-Diode Forward Voltages, Falling Edge, AV = 20, VS = ±110 V, VOUT = 200 V p-p, RF = 100 kΩ, RLOAD = 10 kΩ, RADJ = 0 Ω –150 –100 –50 0 50 100 150 TIME (2µs/DIV) TA = –40°C TA = 0°C TA = +25°C TA = +85°C Figure 47. Large Signal Pulse Response at Various TA with Two-Diode Forward Voltages, Rising Edge, AV = 40, VS = ±110 V, VOUT = 200 V p-p, RF = 100 kΩ, RLOAD = 10 kΩ, RADJ= 0 Ω –150 –100 –50 0 50 100 150 TIME (2µs/DIV) TA = –40°C TA = 0°C TA = +25°C TA = +85°C Figure 48. Large Signal Pulse Response at Various TA with Two-Diode Forward Voltages, Falling Edge, AV = 40, VS = ±110 V, VOUT = 200 V p-p, RF = 100 kΩ, RLOAD = 10 kΩ, RADJ = 0 Ω DIGITAL GROUND (DGND) DGND is the reference for all low voltage pins of the amplifier (RADJ, TMP, and SD) and serves as a signal ground for communication to a microprocessor or other low voltage logic circuit. Connect DGND to a 0 V digital ground or analog ground. Do not float DGND. RESISTOR ADJUSTABLE QUIESCENT CURRENT (RADJ) To reduce further power consumption, the quiescent current of the ADHV4702-1 can be adjusted by placing a resistor (RADJ) between the RADJ pin and DGND. To fully bias the amplifier, short the RADJ pin directly to DGND to allow maximum dynamic performance. To bias the amplifier with minimum quiescent power consumption, place a 100 kΩ resistor from RADJ to DGND. This resistor reduces quiescent supply current to approximately 0.6 mA. Operating the amplifier at a lower quiescent current has minimal effect on dc performance but can result in an associated reduction in dynamic performance, such as bandwidth and noise. Figure 49 and Figure 50 show the small signal frequency response and noise performance at various RADJ values. –8 –7 –6 –5 –4 –3 –2 –1 0 1 2 1k 10k 100k 1M 10M 100M FREQUENCY (Hz) RADJ = 0Ω RADJ = 50kΩ RADJ = 100kΩ Figure 49. Small Signal Frequency Response at Various RADJ, TA = 25°C, AV = 1, VS = ±110 V, VOUT = 100 mV p-p, RF = 0 Ω, RLOAD = 10 kΩ |
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