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DEMO BOARD QUICK START GUIDE DC427 RMS TO DC CONVE


DESCRIPTION Demo board DC427 features the LTC1966 Precision Mi-variety of passive components to support configurations for varied applications. Two optional post-filters are in-cluded to improve averaging ripple and step response performance, as illustrated in the Design Cookbook sec-tion of the LTC1966 Datasheet. The new LTC1966 is a patent-pending -based RMS to DC converter that is simpler, more accurate, more flexi-ble, and lower power than conventional log-antilog RMS-to-DC converters. The LTC1966 accepts single-ended or differential inputs with rail-to-rail common-superior linearity, which allows hassle-free system cali-bration at any input voltage. QUICK START PROCEDURE Table 1 shows the Jumper positions and their respective effects. Be sure that the jumpers are in the bold (default) positions. Refer to Figure 1 for the connection diagram and follow the procedure below: 1. Connect the power supplies as shown. The power labels of VSS and VDD directly correspond to pins 4 and other features the LTC1966 Precision Mi-variety of passive components to support configurations for varied applications. Two optional post-filters are in-cluded to improve averaging ripple and step response performance, as illustrated in the Design Cookbook sec-tion of the LTC1966 Datasheet. The new LTC1966 is a patent-pending -based RMS to DC converter that is simpler, more accurate, more flexi-ble, and lower power than conventional log-antilog RMS-to-DC converters. The LTC1966 accepts single-ended or differential inputs with rail-to-rail common-superior linearity, which allows hassle-free system cali-bration at any input voltage. QUICK START PROCEDURE Table 1 shows the Jumper positions and their respective effects. Be sure that the jumpers are in the bold (default) positions. Refer to Figure 1 for the connection diagram and follow the procedure below: 1. Connect the power supplies as shown. The power labels of VSS and VDD directly correspond to pins 4 and other than 5V may be used, refer t Datasheet. The new LTC1966 is a patent-pending

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Relevant Keywords: 
ENJ1J2LTC1966CMS8RMS, R6/R8, LTC1966CMS8, U2/U3, DIP-8, R1/R3, LTC1966, SOT-6, DC427A, MS-8, LT1494, SOT-23, DC427, MILL-MAX, KELVIN-SENSE, SO-8, 2GNDVSS()GNDVDD()GNDE2PIN, LTC1966s

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