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Creating local component patterns Placing the initial components for feature-driven component patterns Examining other pattern options Mirroring components Creating component patterns tutorial
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Figure 4-3: Turning on/off the Windows Firewall.
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You can create Custom views by orienting the view in the model document, and saving the view. Remember that views can be saved in the View Orientation window, which you can access by pressing the spacebar. Custom views are placed on the drawing using the Named View functionality. While not appropriate for showing dimensions, views using perspective are most useful for pictorial or illustrative views. The only way to get a perspective view on a drawing is to save a custom view in the model with perspective turned on. You can access the Perspective option at View Display Perspective, and you can edit the amount of perspective at View Modify Perspective.
In Windows 7, like Windows Vista, you can view picture thumbnails on the desktop. (This wasn t possible in Windows XP.) Previously, this functionality was available only in traditional folder windows. That said, the Windows desktop is still limited to three view styles only: Large, Medium, and Small Icons. In Windows Vista, Small Icons is called Classic Icons.
Now we imagine that e gets smaller and smaller, and ask what the limit of this average speed will be Clearly, it will be 2t, and this is the speed of the object at time t. If our object, on the other hand, moved so that the distance travelled after time twas t 3 , then by the same reasoning, the average speed from t to t + e would be
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12. Create a new part on the Sprue Bushing Seat plane. 13. Activate the Convert Entities sketch tool, select the large (approximately 4-inch diameter) circle from the Pin Layout sketch, and convert it into the sketch plane of the new part. 14. Draw a 1/2 inch circle in the center (at the origin). Extrude the sketch 0.875 inch so that it protrudes from Plate 2. 15. Exit the Edit Part mode (using the ConfirmationCorner). Rename the new part Sprue Bushing. 16. Left-click on Plate2 and select Edit Part from the shortcut toolbar. 17. Open a new sketch on the Sprue Bushing Seat plane (which is part of the assembly, not part of the part). 18. Select the large circle used in Step 13, and use the Offset sketch tool to offset the circle 0.005 inch to the outside. Create a Through All cut that comes out the exposed side of Plate2, clearing an area for the Sprue Bushing. You may need to switch to Wireframe display to accomplish this. 19. Apply a chamfer to the outer edge of the new cut, 0.010 inch. 20. Exit Edit Part mode, and save the assembly to a new location by choosing File Save As. Click the Save All button, and then select the Save Externally option, as shown in Figure 16.27.
There also are telco-return modems that use the circuit-switched PSTN for the upstream path, although this approach generally proves less than totally satisfactory. Not only does the telco-return approach require the use of a telco-provided local loop, which adds costs to the equation, but it slows the upstream path to modem speeds. Also, the widely mismatched speeds on the upstream and downstream paths cause the downstream server to slow down, therefore running at less than optimum ef ciency. DOCSIS 3.0 standards currently under development are expected to increase upstream data rates to 120 Mbps and downstream rates to 160 Mbps. CATV networks also support voice in several possible ways. The most common approach at this time is the very same TDM and PCM approach used in the circuitswitched PSTN, although some CATV networks use ADPCM modulation with silence suppression. At a rate of roughly one bit per hertz, a 6-MHz channel supports a considerable number of PCM-based voice channels. (Refer to 7 for detailed discussions of TDM, PCM, ADPCM, and silence suppression.) The current focus is on VoIP, with protocol conversion from VoIP encoding to PCM encoding occurring at a gateway located at the CATV provider s head end. The ultimate goal is that of end-to-end VoIP, with the CATV provider connecting voice directly from the CMTS to a VoIP backbone. The rst approach of TDM-based voice involves separate voice channels, both upstream and downstream. VoIP rides over the shared packet data channels, with the CMTS and cable modems providing priority access in order to support the QoS demanded for toll-quality voice communications. Cable telephony requires local power, unlike traditional telco telephony. In the event that the lights go out, local battery backup provides telephony support for a few hours
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