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This diode may not be necessary if P1 is used. Choose a Dallas MAX1645B or higher Schottky diode. R7 and R13 load when the AC adapter is removed. To achieve acceptable accuracy, R6 should be power loss and voltage drop.

The input current-limit sens- which is dependent on BATT voltage. Smaller 0. Smaller inductor values require higher saturation cur- rent capabilities and degrade efficiency. See Figure 1 Dallas MAX1645B circuit configuration.

Maxim reserves the right to change the circuitry and specifications without notice at any time. This datasheet has been downloaded from: The Dallas MAX1645B frit may also be deposited on top of the dark non-conductive frit. A transparent conductive coating such as indium tin oxide ITO is deposited on Dallas MAX1645B substrate so that it contacts the silver frit. The second substrate could be similarly processed and be tinted or clear. The frit area may only be subjected to localized heating which follows the frit path. The heating source can be a laser, induction heating or a focused IR or visible light lamp.

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However for this case the frit and conductive coating will be on the convex side of the curvature. One may even deposit ITO before the frit deposition and bending and strengthening operation. Since it is desirable that the curvatures of the two substrates be matched, it is preferred that both of the substrates be bent Dallas MAX1645B as a pair or bent separately using a mold.

The second substrate inner glass in the above case could be similar in thickness to the outer glass, but preferably is thinner, in the range of 0. This glass can be clear or colored, where the color could be introduced from coatings or layers below the Dallas MAX1645B layer an Dallas MAX1645B being Solar E glass from Pilkington LOF. The color of this glass could be different or have a different coloration depth as compared to the outer glass.

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If this glass is Dallas MAX1645B, this may not be amenable for thermal tempering or strengthening to the same extent as the thick glass. However when the outer and the inner glass are laminated together to form the EC device, the composite could still meet all the automotive safety requirements from a crash simulation Dallas MAX1645B an equivalent test e.

Chromogenic glazing

To meet Dallas MAX1645B safety regulation one may use both glasses that are thin and unstrengthened, and still pass this test depending on the mechanical properties of the electrolyte film. Several Fluorine doped tin oxide coated glasses keep their conductivity even after bending and strengthening operations.


The substrates Dallas MAX1645B then coated, e. On one of the substrates the conductive coating may be deposited first before the frit was deposited, and on the other substrate, Dallas MAX1645B frit may be deposited first, followed by the transparent conductor.

WO2001084230A1 - Chromogenic glazing - Google Patents

The principles of these constructions and the way to process devices Dallas MAX1645B bent or flat glass can also be used for those devices where no active EC or other chromogenic coatings are required. These devices use liquid crystals, suspended particles or EC devices which use at least two redox species in the electrolyte.

Many of these are explained in the references cited and for example in US patent 5, which is incorporated herein by reference. The principals of EC device construction are not limited to automotive and other transportation glazing, but any application which will benefit from this invention, including architectural glazing, decorative chromogenic tiles, lamp covers, displays, mirrors, appliances, cabinets, etc. Composite laminates can be made using chromogenic glass where such elements are laminated with other elements to Dallas MAX1645B added functionalities.

WOA1 - Chromogenic glazing - Google Patents

When charging lithium-ion (Li+) batteries, the MAXB Dallas MAX1645B For pricing, delivery, and ordering information, please contact Maxim/Dallas Direct! at. The MAXB evaluation system (EV system) consists of a MAXB For pricing, delivery, and ordering information, please contact Maxim/Dallas Direct! at.

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