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SPT9110 Datasheet(PDF) 3 Page - Cadeka Microcircuits LLC. |
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SPT9110 Datasheet(HTML) 3 Page - Cadeka Microcircuits LLC. |
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3 / 11 page ![]() 3 11/12/98 SPT9110 ELECTRICAL SPECIFICATIONS AVCC = +5.0 V, AGND = 0.0 V, Output Load = 1 kΩ and 10 pF, VIN = 2.0 Vp-p,Internal Reference, unless otherwise specified. TEST TEST SPT9110 PARAMETERS CONDITIONS LEVEL MIN TYP MAX UNITS Track Mode Dynamics Bandwidth (-3 dB) +25 °C Single Ended Out V 220 MHz Differential Out V 140 MHz Slew Rate 2.0 Vp-p Output Step +25 °C Single Ended Out 20 pF Load IV 580 V/ µs Differential Out7 20 pF Load IV 800 V/ µs Input RMS Spectral Noise Single Ended V 3.5 nV/ Hz Differential V 13.0 nV/ Hz Track-to-Hold Switching Aperture Delay +25 °C V 250 ps Aperture Jitter +25 °C V <1 ps rms Pedestal Offset +25 °CIV ±12 mV Full Temperature V ±12 mV Hold Mode Dynamics4 (VIN = 1 Vp-p) Worst Harmonic 5 MHz, 50 MSPS, Single-Ended TA = +25 °C IV -64 -68 dB TA = -40 °C to +85 °C V -64 dB Worst Harmonic 5 MHz, 50 MSPS, Differential TA = +25 °C IV -61 -65 dB TA = -40 °C to +85 °C V -63 dB Worst Harmonic 25 MHz, 50 MSPS, Single-Ended TA = +25 °C V -66 dB TA = -40 °C to +85 °C V -63 dB Worst Harmonic 25 MHz, 50 MSPS, Differential TA = +25 °C V -64 dB TA = -40 °C to +85 °C V -60 dB Worst Harmonic 50 MHz, 100 MSPS, Single-Ended TA = +25 °C IV -54 -58 dB TA = -40 °C to +85 °C V -54 dB Worst Harmonic 50 MHz, 100 MSPS, Differential TA = +25 °C IV -50 -54 dB TA = -40 °C to +85 °C V -50 dB Sampling Bandwidth5 (-3 dB) +25 °C V 400 MHz VIN = 2.0 Vp-p Hold Noise6 (RMS) +25 °C V 300 x tH mV/s Droop Rate, VIN = +2.5 V +25 °CIV ±40 mV/ µs Full Temperature IV ±80 mV/ µs Feedthrough Rejection (50 MHz) Full Temperature V -65 dB VIN= 2 Vp-p 4. For hold times longer than 50 ns, the input common mode voltage may affect the hold mode distortion. (This is due to nonlinear application of the hold signal. 5. Sampling bandwidth is defined as the -3 dB frequency response of the input sampler to the hold capacitor when operating in the sampling mode. It is greater than tracking bandwidth because it does not include the bandwidth of the output amplifier. 6. Hold mode noise is proportional to the length of time a signal is held. This value must be combined with the track mode noise to obtain total noise. 7. Optimized for hold mode performance and low power. droop that varies with VCM.) For optimal performance, CADEKA recommends that the held output signal be used within 50 ns of the |
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