HP ACC2 Aurora manual

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Read the first 7 pages in the document All-Sky Imaging System for University of Oslo, KEO Consultants, 12/5/95.

The camera is installed as shown in Figure 2. Three cables are connected from the PC to the camera system.

Optional! One cable from the PC COM2: to the GPS Connector box.

One cable from the PC COM1: to the Smartmtr control on the Camera U-channel.

One cable from the AT200 camera controller PC board to the Photometrics CC200 Camera controller unit. Mark: Do not connect this to the PC Centronix port. (The PC Centronix port has a similar connector as the AT200 board.)

At least two persons are needed to mount the camera. Remove the fish-eye lens before mounting the camera. (Put on the lens cap both on the camera top and both sides of the fish-eye lens).

After mounting the camera adjust it to be exactly vertically.

Put the fish-eye lens back on. It should have maximum opening

f4 and . Connect the front shutter cable to the front shutter , (see Fig. 2). The other cable is connected to a safety light detector and should be mounted at a proper place.

Connect the 1.5m data cable from the Photometrics CC200 Camera Controller Unit to the Photometrics CCD camera. This has to be done in this sequence:

1.Connect the cable to the Photometrics CC200 camera Controller Unit. It is marked which side of the cable you should use and what connetor on the Controller Unit to be used.

2.Remove the blue shorting plug on the backside of the camera, and connect the cable immediately to the camera. (The camera should always either have the terminator on, or be connected to the Controller Unit).

Both the CC200 controller Unit and the camera should be connected to 110 VAC power.

Optional! The Garmin GPS receiver is connected as shown in Figure 2. The 12V AC to DC adapter should be connected to 220 VAC power.

The PC used is a standard PC running Microsoft Windows 95. The hardware key for the PMIS program is connected to the centronix port. The PC can be connected to the ethernet, but that is not required for the camera operation.

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Contents ACC2 Jan 15 UpdatesTable of Content Precautions ACC window Press OpenCom Now if the run file, the timer file and the sequence fileStarting the Camera This settings Is useful settingsTo disk. Image.ACC window Press the Stop button and the Exit button Stopping the CameraVia Overview of the ACC ProgramGarmin VisualBasicACC2-- PMISmacros-- SMARTMTRNorway.prg ACC2 Control Files Timer fileRun file RUN filename$$ f$ e$$$ g$ s$ u$ c$ Yyyy-mm-dd hhmmssSequence file Intensifier gain Exposure timeRun file Or the GarminAs this example S0 u1Sequence file will not work Image File Names Page D1997-12-07145129W557.7nmF2G0E230 Image FormatUpper case letters a Z are used as identifiers Denotes date Denotes Wavelength W557.7nmCopying Images to a Network Disk Settings in the configuration file see below must then bePage # #### ##### # ## # # # # # # Configuration FileAccnetimageallow Imagenorth This is for the Unis/UiO camera no 1 Longyearbyen This backup last for approximate 1 hour / GBSaving Data AT DAT Storage Media Afdisk Saving Data AT Pinnacle Apex 2 X 2GB Optical DiskUse ν Verify backup Colorado Backup window press on the C in the leftThis is for the Unis/UiO camera no 2 Ny Ålesund Tools-Format Tape ,…Page TxD, RxD GND connector Automatic Update of PC ClockConnector for 12VC from the AC White GPS 12XL Camera SetupPage Focusing Acquire-expose-1000 acquire-focus Possible Errors

ACC2 Aurora specifications

The HP ACC2 Aurora represents a significant advancement in high-performance computing, catering to professionals and enthusiasts who demand exemplary performance and efficiency. This cutting-edge system integrates innovative technologies and robust specifications aimed at delivering exceptional productivity and reliability.

At the heart of the HP ACC2 Aurora is its potent processing power. It is equipped with the latest generation of multi-core processors, which provide ample power for data-intensive tasks, including simulations, 3D modeling, and complex calculations. With options for both AMD and Intel processors, users can select configurations that best meet their needs, ensuring optimal performance and scalability.

The system's memory capabilities are impressive, supporting large RAM capacities that facilitate multitasking and the execution of tight timelines on large data sets. The HP ACC2 Aurora can be configured with high-speed DDR4 memory, enhancing data access speeds and system responsiveness. This makes it an ideal choice for industries relying on real-time data analysis, such as finance, healthcare, and engineering.

Storage options on the HP ACC2 Aurora are designed to accommodate varying user needs, featuring a combination of high-speed SSDs and traditional HDDs. The M.2 NVMe SSD technology significantly reduces loading times and improves data transfer rates. Users can also benefit from RAID configurations for redundancy and data security, ensuring that critical information is well-protected.

The HP ACC2 Aurora's graphics capabilities are equally impressive, with options for high-performance dedicated GPUs. These graphics processors bring advanced rendering capabilities, making the system suitable for graphic-intensive applications such as video editing, gaming, and virtual reality experiences. The robust GPU options ensure that visual output is not only stunning but also fluid and uninterrupted.

In terms of connectivity, the HP ACC2 Aurora features a variety of ports, including USB-C, USB-A, and HDMI, enabling quick and flexible connections to peripherals and additional displays. Its sophisticated thermal management system regulates internal temperatures to maintain peak performance without overheating, ensuring longevity.

Built with high-quality materials, the design of the HP ACC2 Aurora emphasizes durability alongside aesthetics, appealing to both corporate environments and home setups. The compact form factor allows for efficient use of physical space, making it easy to integrate into existing workflows.

In summary, the HP ACC2 Aurora sets a new standard in high-performance computing. Its advanced features, ranging from powerful processors and expansive memory options to high-end graphics and versatile connectivity, make it suitable for a diverse array of applications that require performance, reliability, and efficiency. This system is undoubtedly a robust choice for any professional seeking to enhance their computational capabilities.