QHYCCD QHY10, QHY12 User Manual

User Manual
QHY10/QHY12 Color Astronomy Cooled Camera
QHY10/QHY12 User Manual V1.0
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CONTENTS
1) SAFETY PRECAUTIONS--------------------------------------------------------------------------2
2) STANDARD EQUIPMENT-----------------------------------------------------------------------3
3) SEPARATELY SOLD ACCESSORIES---------------------------------------------------------5
4)CAMERA STRUCTURE AND INTERFACE CONNECTION------------------------------6
5)CAMERA DRIVERS INSTALLATION AND QUICKLY MASTERING -------------------7
6) DC201 IINPUT VOLTAGE RANGE--------------------------------------------------------------9
7)SERVICE TEMPERATURE AND HUMIDITY OF CAMERA--------------------------------9
8) HOW TO AVOID CCD SENSOR MOIST IN HIGH HUMIDITY--------------------------10
9)NOTES ABOUT LONG TERM USING AND REMOTE OBSERVATORY-----------12
10)QHY10/12 CCD CHIP READ OUT MODE AND IMAGE CALIBRATION------------13
11) ABOUT CONTROLLING FOR BLOOMING----------------------------------------------15
12) PROTECTION OF COOLER-------------------------------------------------------------------15
13) CLEAN THE SURFACE OF CCD CHIP-----------------------------------------------------16
14) SET ON THE GAIN and OFFSET ------------------------------------------------------------17
15) QHY10/12MECHANICAL DIMENSIONS --------------------------------------------------18
16) QHY10/12 REAR CUT-OFF DISTANCE-----------------------------------------------------19
17)THE METHOD OF THE CENTER AND ANGLE ADJUSTMENT RING -------------20
18) SOFTWARE ABC COURSE -------------------------------------------------------------------21
19) IMAGE CALIBRATION OF QHY10/12 CCD -----------------------------------------------29
20) CAPTURE BIAS IMAGE-------------------------------------------------------------------------30
21) CAPTURE DARK IMAGE-----------------------------------------------------------------------31
22) CAPTURE FLAT IMAGE------------------------------------------------------------------------32
Congratulations on your new QHYCCD series purchase!
Make sure you read this guide carefully before operating your new camera! Time spent reading this guide will save you frustration
and maximize the enjoyment of your new QHY10/12 CCD Camera.
Precautions
1
The larger surface area of the Large format CCD chip and cooling system are more fragile than a small or medium sized CCD. Take extra care when transporting and storing the device. Any significant impacts may damage your equipment.
2
Connection Sequence:
1. Connect USB cable from camera to PC
2. Connect 9-pin cable from camera to DC201
3. Connect 12V power to DC201.
Disconnect Sequence
3
1. Disconnect 12V input power from DC201
2. Disconnect 9-pin cable from Camera
3. Disconnect USB cable from PC
Power to the DC201 needs to be:
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1. 4A/5A regulated DC power supply.
2. Internal diameter of connection to DC201 is 2.1mm.
3. Tip-positive*
*Please note the reverse polarity will cause damage for camera and a plug with a different internal diameter wont work.
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STANDARD EQUIPMENT Make sure that the following items are included in your camera package. If anything is missing, contact the retailer from which you purchased the camera.
1
2
3
QHY10or QHY12)
Camera
Center and Tilt Adjustment Ring
USB Cable
4
DC201 DC Power
Supply
5
6
9pin Power Cable
Desiccator / Silicon Gel Tube (only one)
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Accessories Sold Separately
(Contact your dealer for pricing and ordering
information)
Optional 12V 4A AC
1
Power Supply Adapter Input Voltage Range 100-240V
Optional Air Sealed Box
2
with Electrically Heated Silica Gel
相机接口及说明
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1Camera Front Part 2Air Hole for CCD chamber 3M42/0.75 Inner Thread Depth=3mm 4IR Cut Optic Window 5 : Heat Sink Exhaust
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2
1
5
6: 9pin Power Socket 7: USB Socket 8: Guiding/Control Port 9: Heat Sink Air Intake
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9
5
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6
Camera Software Installation
Please download the latest QHY10/12 drivers
1
at the http://www.qhyccd.com(win64/32 version). This version also supports 64/32 bit versions of Windows XP, Windows Vista, and Windows 7
Install the driver by executing the downloaded
2
file.
3
Connect Camera following the connection sequence outlined on Page 2.
Use the 9-pin cable to connect DC201 and
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QHY10/12. Please note: the 9-pin cable has one end with EMC ring. This end should be connected to the DC201 and not the Camera.
DC201 requires a regular 12V input ,the LED of
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+15,-15 +5 on the DC would be ON
Run EZCAP software, select scan camerain
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camera menu, It should show the QHY10/12 camera. Select the QHY10/12.
4
The computer should recognize the camera at this point.
The LED on the camera will flash once the
5
camera has successfully connected with the computer.
Download driver version detector from
6
www.qhyccd.com/download. Unpack it and
run cameraversion.exe, click QHY10 or QHY12, and ensure that the driver version matches what youve downloaded.
Make sure that the DC201 FAN and TED LED
10
are on and that the fan is blowing.
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DC201 Input Voltage Range
The DC201 requires a regulated 12V input. The normal input range is 11V-13V. If you exceed 13V-common when you are using an external battery, the higher voltage will reduce the life of the TEC and Fan. If you exceed 13V, please limit the maximum power of your Cooling Settings. This can be controlled via TEC PROTECT in theFavoritemenu of EZCAP. Please select it. If you are using the ASCOM driver, this has been set automatically.
Service Temperature and Humidity of Camera
Service Temperature of QHY10/12 is from -20C/­4F to +30C/86F. Relative Humidity amount is from 0% to 90%.
How to avoid CCD sensor moisture in high humidity environments
In certain environments, when the temperature of the camera drop below the dew-point, dew or ice may form on the camera. This is simply a law of nature. However, ice and/or dew which form on the surface of CCD chip or optic window will impact your images. If dew or ice forms on the surface of CCD, the water can flow onto the electric board, which leads to short circuit or data corruption. It is critical that you avoid dew or ice formation during operation on the CCD chip.
What if dew forms on the surface of CCD chip?
The internal space of CCD camera is relatively airtight. If dew forms on the surface of CCD chip, this indicates that there is higher relative humidity in the CCD chamber. You must dry the chamber using the following method:
1. Screw off the air socket screw on front part of CCD sealed chamber
2. Put fresh silica gel in silica gel tube. Before putting silica gel, a small piece of cotton is needed to create a barrier between the hole in the tube and the chamber.*
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* Desiccatormust be effective.
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3. Screw silica gel tube into the connection of the sealed chamber. Make sure the rubber O-Ring is present to ensure an airtight connection.
4. In about 24 hours, the proper relative humidity should be restored in the CCD sealed chamber
If you need to dry the chamber faster, you can use the following method: Using compressed air or a hand pump with dry air, make dry air go through the silicon gel tube. Meanwhile, slightly unscrew the front cover of CCD. The air current will flow over the CCD sealed chamber through the air connection of the CCD. Then air will flow out from the gap between the unscrewed front cover of CCD and the body of CCD. After a few minutes, the relative humidity in the CCD sealed chamber will get lower. Please note, too high of a pressure can damage the CCD chip and the cooling system.
Dew is formed on the IR cut glass
If the cooling temperature is too low in a high humidity environment, the CCD optic window may collect dew. This is because the temperature of the window is too low. The QHY10/12 uses 3mm thick optic glass. Although this glass should prevent dew, follow this procedure if you run into problems:
1. Install M42 to M42 heater produced by QHYCCD, The heater will raise the temperature to avoid dew forming. Consult your area dealer to purchase.
2. Reduce the cooling power. The best temperature range for QHY10/12 is from -15to ­20. Please adjust cooling temperature according to the ambient temperature.
3. Don’t put the glass window of the CCD upside down. Cold air will focus on the optic windows if it is upside down. It will cause lower temperature of optic windows.
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