In the end, we developed a programming and schematic design bubble diagram, that in concert with my notes, paints a pretty clear picture of rooms, adjacencies, spatial relationship, site orientation, vehicular access, etc. etc.

So to focus in on my process of schematic design, I thought I would focus in specifically on a single project. This one was a little different from most in that I had very little time to develop this plan. From the time of my initial meeting, I had less than a week to turn the initial programming information into a coherent plan for a house that is approximately 5,000 square feet. We are lucky to be really busy and most of the initial design work was done in my head (I was probably standing in the shower staring at the tile work).


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Was at the house location where you can acquire the Tier 2 Blast Restistant Jacket Schematic. The house is boarded up and the schematic is now missing since the Resistance Update. This will making crafting to this level impossible.

An ongoing client of ours who has been a housing advocate for many years asked us to design a second ADU for his 5,000 sf R2.5 zoned lot in North Portland. The lot is in a Historic District and the house is contributing (older than 1920) and the daylight basement has an existing ADU already.

The team has just finished the schematic design phase for the house (see above axonometric). And we are now working through some of the structural and geotechnical issues that come with building in the mountains on very steep terrain.

To give you all one example, we had initially contemplated large multi-storey retaining walls to hold back the earth and embed the house into the side of the mountain. But that is now being changed to a stepped foundation that minimizes the amount of excavation and reduces each retaining wall to no more than a single storey. This move will also result in more wood and less concrete. It has been a fun learning process.

Quickly and reliably generate detailed schematic floor plans as a starting point for design and layout conversations with your clients. Floor plans are a convenient tool for creating simplified visualizations of projects, providing added clarity and improving communication.

To download a floor plan, click the link in the email sent to you by Matterport, or log in to your Matterport Account on my.matterport.com directly. Then, go to the Space Details Page and select the Downloads tab to find your available schematic floor plan. This process will download a ZIP file containing your schematic floor plan in PNG, SVG, and PDF formats.

The garage features a small addition, perhaps for storage. A narrow group of concrete steps was the only access to the back yard. Given that this addition was three feet above the rear yard grade, an iron rail was in place. A concrete balcony with an iron rail was most likely an addition after the fact. A house that is coming up on 100 years old probably has had several owners. This suggests that improvements from one owner to the next may not have made an entirely logical progression, although most of the brick and limestone details were consistent throughout.

I am embarrassed to say that the only plan I have now is my original marked up hand drawn schematic drawing. All of the finished drawings have gone out to my client, the large tree contractor, the stone mason, the irrigation contractor-and of course, my landscape superintendent. But it will do by way of illustrating my scheme. Identical limestone terraces to the east and west of the sun porch would provide an at grade flat space for grilling and dining to the east, and to the west, a place designated for the cultivation of herbs and vegetables in pots. The terrace proud of the sun porch would provide a view to and steps down into a sunken garden. That garden would be enclosed by seat height walls. A pergola would surround the pool, with sets of columns and a roof 6 feet wide. A pergola of this style is commonly referred to as a cloister. In this application, a rectangular covered walkway will surround a central fountain feature. The area above the pool would be open to the sky.

Mike did a perfect job of matching the brick on the walls to the brick on the house. Adding an architectural element to a house of this age asks for matching materials, and style. At this point I could see that what I had intended to add to the architecture and landscape of this house would be believable. An awkward or thoughtless addition would always stand out in not a good way.

VODA has been involved with the design team crafting the Sugar House Streetcar Greenway. In early 2012 VODA worked to establish schematic plans for the corridor, identifying potential uses and community desires for the use of this public space. Design precedents were identified, and documents and graphics created to submit for public comment.

The Mason City Community School District is working on building a new high school auxiliary gym and swimming pool, a $21 million to $31 million project, depending on which option they decide - a full-blown field house or a conservative gym and pool.

Following an approval of the broad concepts presented during Phase 01, our team will refine the massing of thehome. The schematic design process will shape the residence's overall form while simultaneously developing aworkable set of floor plans. These drawings will grow to define room sizes and will include locations ofsignificant utilities and amenities. Concurrently, the exterior elevations of the project are developed to thepoint of producing a detailed rendering of the future residence.

Since the schematic design phase concludes with a photorealistic rendering, it is important that we have astrong understanding of your aesthetic preferences before proposing exterior material selectons. While this isoften understood from conversations during the first phase, sometimes it is not. If this is the case, we willpresent you with a presentation of project references to comment on. Studying these precedents is a quick wayfor us to understand your families personal preferences.

This schematic design massing diagram was used to portray how a new, modern home on a steep slope could step down with the natural landscape and still twist to maximize the best views of the property.

Hi everyone - was hoping some kind folks could do me a massive favour and look over my campervan schematic. I've been a bit confused about wire gauges and fuses in particular, but between consulting other schematics and the Victron manuals have come up with this. In general all cable runs are short as everything is super compact in the one under-bed cabinet, excluding the starter battery to B2B charger run which is approx 2.5m. So perhaps the cable gauges are over the the top here, but it's a starting point. (This is my first time doing anything like this so please bear that in mind!)


1) I've already bought this and it's just called the 'SmartSolar MPPT 75/10' - I have no idea how to find if it's isolated version or not or this was even a thing. Is there an easy way to find out and what exactly is 'non-isolated' about it? I can't find anything on Google on this one and the only mention on victron is in the manuals section where only 'isolated' is shown as an option.


The 60A fuse is based on a few schematics I've seen but also this from the manual; have I interpreted this incorrectly?

jkmann, comment about isolated vs non-isolated was in reference to the Orion between your starter battery and the house battery, not the MPPT. In the case of the Orion, the starter battery negative is connected to the chassis, so if you use the non-isolated version of the Orion, the negative connection from the starter battery essentially becomes THE chassis connection for everything in your system. With the isolated version, you can define your own "ground". You show an isolated version in your drawing (4 wires). Non-isolated models have a common negative connection (3 wires).

I recently bought a Data East pin. I am trying to learn to read and interpret the schematics from the owner's manual. Some items I have been able to figure out. Other items on the schematics might as well be in Swahili. I could use some help. Are there any DE techs who would be willing to share some teaching time with me?

I'm trying to learn the ropes on a Robocop that I bought. I have the owner's manual with the schematics on yellow colored pages. I also have a technical support manual that requires an electrical engineering degree to understand.

Looks like all those caps in rows of eight are the same, 470pF. Even if you can't find them on the schematic, I think that would be a safe assumption. Here's a question I don't think anyone has asked. What kind of problem are you having with the game?

I had a pop bumper lock up so I replaced the pre-driver transistors and transistors for the pops and sling shots at CN-19. Now what I want to do is to be able to learn to read these schematics. There is a lot electronics of stuff going on with this Data East machine. I don't have any techs around here so I have to be ready when something quits working. So I have to learn how to read these prints and find the correct part numbers when I have to order something.

Ah, alright there's the problem. I've been looking on the paper schematics for my Tommy (as the robocop schematics online don't have the CPU) and which to my understanding was a compatible CPU board. Here's a screenshot of my schematics:

Data_East_1994_The_Who_s_Tommy_Pinball_Wizard_Manu_2017-12-14_23-29-36 (resized).png

Another note, the connector on mine is CN22, but on yours it's labeled CN2. That definitely isn't correct, as CN2 is the digit strobe and only has 9 pins, which the connector here has 20+ pins (and must be a ribbon cable). It's possible that there's just an error in the schematics here something. ff782bc1db

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