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Bintel Glebe
Usually ready for pickup in 24 hours
Bintel 84 Wentworth park road, Glebe, 2073, NSW
Phone:(02) 9518 7255
Hours:
Monday9:30 am–5:30 pm
Tuesday9:30 am–5:30 pm
Wednesday9:30 am–5:30 pm
Thursday9:30 am–5:30 pm
Friday9:30 am–5:30 pm
Saturday9:30 am–4 pm
SundayClosed
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$276.00
坚固的固定盒可为 ATX 目镜模块提供合适且安全的保护,且不会影响操作。其高品质材料还可防止撞击、污垢和刮擦,即使在苛刻的条件下也是如此。
Introducing the ASI676MC, the all-sky camera featuring a unique square
1/1.6-inch image sensor and a super high resolution of 12MP! It is perfectly suited for meteor recording and full sky surveillance. The
square format facilitates easier composition, making mosaic stitch simpler and more efficient, and the high resolution brings you clear details of the Sun and our Moon. With this camera, you may start your marvelous journey
to explore the boundless night sky.
Why Square Format?
One of the biggest benefits of AS1676MC's square format is it makes the whole mosaic construction process much easier by eliminating the need to consider the difference between the long and wide
sides of the format during mosaic stitching. Not only that, the square format also makes the AS1676MC more compatible with various types of lenses such as fisheye lenses and wide-angle lenses. Thus,
ASI676MC is more suitable for tasks such as meteor
recording and full sky surveillance.
Starvis 2 Technology
STARVIS is a sensor technology developed by Sony that surpasses the sensitivity of the human eye. STARVIS 2 is an advancement of STARVIS technology,
supporting an even higher dynamic range. With this technology, ASI676MC exhibits lower readout noise and dark current, along with significantly enhanced
sensitivity in the near-infrared spectrum.
No Amp Glow
AS1676MC does not have any amp glow, no matter
how long the exposure and how high the gain value
you set.
256MB DDR3
The camera is equipped with a USB 3.0 transmission interface and a built-in 256MB DDR3
cache to ensure stable and secure data transmission.
Higher QE Lower Readout Noise
The camera has a built-in HCG mode, which can effectively reduce readout noise at high gain. This allows the camera to maintain the same high dynamic range as it does at low gain. When the gain is 180, the HCG mode is automatically turned on. The readout noise is as low as 0.56e, and the dynamic range can still reach a level close to 11stops.
Quantum Efficiency
The QE curve and readout noise are very important parameters to measure the camera's performance. Higher QE and lower readout noise are necessary to improve the image signal-to-noise ratio. According to our estimation, the QE peak value of ASl676MC is about 83%.
Dark Current Noise
The ASI676MC's lower dark current noise means that the image signal-to-noise ratio is also higher, especially when photographing dark objects, it produces images with better sharpness.
IR-Cut Coated Window
ASI676MC is equipped with an IR-cut coated window in front of the sensor, with a diameter of 21mm and a thickness of 1.1mm. It effectively reduces infrared interference and improves image quality.
The saxon 8" DeepSky CT Dobsonian Telescope (203/1200) features a powerhouse telescope with amazing light-gathering capabilities that's easy to use and transport.
This beginner telescope is the retractable twin to the full-tube saxon 8" DeepSky Dobsonian Telescope and comes with the same specs of 203mm aperture and a focal length of 1200mm. Featuring a collapsible truss-tube dobsonian design, the optical tube can be retracted into a shorter length and locked down to ensure secure and easy transportation. This scope also comes with a paraboloidal primary mirror to eliminate spherical aberration allowing you to see wide-field views of the Moon, constellations and deep sky objects such as the Great Orion Nebula.
Assembly of the telescope requires no additional tools. You'll be pleased with how easy it is to use the saxon 8" DeepSky Collapsible Dobsonian Telescope with its Dobsonian mount. Simply swivel the telescope to the direction of your intended object and look through the eyepiece. This scope's Teflon bearing system in both axes with tension control handle means you'll be able to smoothly move your telescope to a precise location.
What is a Dobsonian telescope and why the tension control handle?
A simple, elegant form of an alt-azimuth mount made to carry a Newtonian reflector was popularized by John Dobson in the late 1970's. The Dobsonian mounted telescope is popular among amateur astronomers and telescope makers because of its simplicity. In its simplest form, the Dobsonian mount consists of a box which allows the optical tube assembly to pivot in altitude, while the box itself is swivelled on a base in azimuth.
The Dobsonian mount usually relies on the friction between the side bearings on the optical tube of the telescope and a frictional material on the saddle to hold the optical tube in place. If there is too much friction, the telescope is difficult to move to center an object in the filed of view. If there is too little friction, the telescope will not sty where it is positioned. This makes stabilizing the optical tube of the telescope difficult when using a Dobsonian mount, especially when accessories, such as a finderscope or an eyepiece, are added to the optical tube. As long as the amount of friction is at an appropriate level, and therefore stabilization of the optical tube is achieved, the telescope can remain in its desired position to view an object and maintain its position even when the mount is rotated.
The devices for stabilizing a telescope on the Dobsonian mount currently available include: a sliceable weight to counter balance the weight of the telescope, a friction lock that must be adjusted to inhibit movement of the telescope, and a spring attached between the telescope tube and mount to aid in stabilization.
These devices are inconvenient to use because they do not provide a simple and user-friendly way to adjust the friction. The objective of the saxon Tension Control Handle invention is to provide a tension adjuster that users can easily turn to add or reduce tension, thereby increasing or decreasing the friction between the optical tube and the sideboard of the mount.
By providing such a tension adjuster, the telescope does not need to be balanced in order to stay in position. The tension adjuster can be tightened such that the optical tube can stay in a position but can still be moved when prompted to adjust the position of the optical tube. Alternatively, the tension adjuster can be completely tightened to lock the optical tube in position.
将智能手机连接到观测镜上,记录大自然的近距离细节图像,对于任何户外运动爱好者来说,这可能是最引人入胜和最愉快的体验之一,可以创造永久的回忆并捕捉令人难以置信的时刻。
SMARTOSCOPE VARIO-ADAPTER 旨在通过提供真正通用的智能手机数码观鸟解决方案,将智能手机数码观鸟体验提升到一个全新的水平,该解决方案旨在实现最大程度的便利性和易用性。
SMARTOSCOPE VARIO 通用智能手机数码观景适配器采用优质材料制成,机身由铝制成,部件由高级聚甲醛“POM-C”制成,经久耐用。在奥地利设计和制造。我们的开箱即用套件可让您轻松找到适合您的观景镜的适配器。
AS1715MC 是一款灵敏的彩色相机,配备 1/2.8 英寸传感器和 846 万像素分辨率。这款相机采用索尼 STARVIS 技术,具有低读出噪声(0.72e)和超高灵敏度,非常适合对行星和较小的物体进行天文成像
深空天体以及显微镜摄影。
传输速度快相机配备USB 3.0传输接口,内置256MB DDR缓存,确保稳定、安全
数据传输。
USB 3.0 端口和 ST4 指南 USB 3.0 端口:提供 5Gb 带宽,允许 AS1715MC 以
45.1fps(10bit,高速模式)。ST4接口:可用于连接云台自动导星接口
用于指导
。
读出噪声 读出噪声包括像素噪声、电路噪声、ADC量化噪声,读出噪声越低越好,可以看到ASI715MC的读出噪声很低,随着增益值的提高,读出噪声会降低。
量子效率 QE 曲线和读出噪声是衡量相机性能的重要参数。较高的 QE 和较低的读出噪声
为了提高图像的信噪比,噪声是必不可少的。根据我们的估算,ASI715MC的QE峰值约为80%。
$320.00
Losmandy VSBS 并排 Vixen 风格板与您的德国赤道仪一起使用,允许并排安装两个望远镜。
窄型并排板可连接到配备窄型或“Vixen 式”燕尾槽的 EQ 支架上,并可安装配备窄型燕尾槽安装板的光学管。您还可以安装配备管环的光学管,该管环可连接到窄型燕尾槽安装板。
横杆为较窄的 Vixen 型(V 型)。两个鞍座板平行安装,可安装 Vixen 型或较宽的 Losmandy D 型板。
用于并排安装两个光学系统,方法是将赤道仪的鞍座旋转 90 度。Losmandy VSBS 是安装导星镜的绝佳解决方案。尤其推荐用于无法搭载第二个望远镜的情况。
重量1.25公斤。
总厚度40.5mm
马鞍板间距 235 毫米,中心到中心。
$3,055.00
The ATS 65 is a lightweight and handy spotting scope that offers high optical quality, despite its compact dimensions. With its angled view the ATS 80 enables comfortable observation for hours. The 80 mm objective lens diameter provides higher detail recognition, while a wider exit pupil ensures brighter images and comfortable viewing even in poor lighting conditions.
The Swarovski ATS Objective Module is an essential component for the ATS/STS spotting scope system, delivering premium optical performance for nature enthusiasts, birdwatchers, and outdoor adventurers. Designed with Swarovski Optik’s renowned precision engineering, this objective module offers crystal-clear images, outstanding edge-to-edge sharpness, and exceptional light transmission, ensuring vibrant colors and high contrast even in challenging lighting conditions.
Key Features:
- Premium Optics: Features high-quality fluoride-containing HD lenses to minimize chromatic aberration and enhance color fidelity.
- Rugged & Weatherproof: Built with a durable, lightweight aluminum housing that is waterproof and nitrogen-purged, making it ideal for harsh environments.
- Versatile Compatibility: Pairs seamlessly with the Swarovski ATS and STS eyepiece modules, allowing for customized magnification and viewing angles.
- Easy Handling: The ergonomic design and smooth focusing mechanism ensure comfortable, effortless operation in the field.
Whether you're observing distant wildlife, scanning landscapes, or engaging in digiscoping, the Swarovski ATS Objective Module delivers a superior viewing experience with the clarity and precision that Swarovski Optik is known for.
| Specification | 65 mm | 80 mm |
| Effective Objective Lens Diameter | 65 mm | 80 mm |
| Eye Relief | 17 mm | 17 mm |
| Shortest Focusing Distance | 9.8 ft | 16.4 ft |
| Diopter Correction at ‚àû | > 5 dpt | > 5 dpt |
| Objective Filter Thread | M 67 x 0.75 | M 82 x 0.75 |
| Magnification | 25-50x | 20-60x |
| Exit Pupil Diameter | 2.6-1.3 mm / 3.3-1.1 mm | 3.2-1.6 mm / 4.0-1.3 mm |
| Field of View (m at 1000m / ft at 1000yds) | 126-81 ft | 108-60 ft |
| Field of View (Degrees) | 2.4-1.55° | 2.1-1.1° |
| Field of View for Eyeglass Wearers (Degrees) | 2.4-1.55° | 2.1-1.1° |
| Apparent Field of View | 60-70° | 40-65° |
| Light Transmission of Total Product | 85% | 86% |
| Focal Length with TLS APO | 750-1500 mm | 600-1800 mm |
$210.00
我们的密封和认证开关电源装置是我们的 Pegasus Astro 产品的完美搭配。它可以提供 12V 和高达 10Amps 的电压。(总功率为 120W)。低纹波和噪音可确保您为珍贵的设备提供所需和正确的“电汁”。随附适合您国家/地区的电源线(1.5m)。
保护措施
- 过流/短路保护:电源将自我保护任何接地输出,并在异常电路故障消除后自动恢复。输出短路定义为任何小于 0.1 欧姆的输出阻抗。
- 过压:故障消除后电源自动恢复
- 输入保护:F1:6.3A 250V 保险丝 电源应受到保护,以防电源线浪涌和任何异常情况
- 空载保护 电源提供空载运行功能,防止电源和系统损坏。
- 防护等级 I,(ITU-T K.21 浪涌 6KV 可应要求提供)
我们的高功率、密封且经过认证的开关电源装置是Ultimate Powerbox v2、v3 和高功率需求的完美搭配!它可以提供 12V 和高达 20Amps。(总功率为 240W)。低纹波和噪音可确保您为珍贵的设备提供所需且正确的“电力”。
技术规格
| 类型 | 价值 |
|---|---|
| 输出电压: | 12.5伏 |
| 加载中: | 0-10 安培 |
| 最大功率: | 120 瓦 |
| 输入电压范围: | 90-264伏 |
| 频率: | (47-63)赫兹 |
| 连接器尺寸: | 5.5 * 2.1mm或5.5 * 2.5mm或XT60 |
| 线长: | 150厘米/5英尺 |
| 低纹波噪声的稳压输出 | |
| 密封/保护外壳 | 湿气/灰尘无法进入 |
| 符合安全机构要求并经过 EMI/EMS 认证 | |
| 效率等级 (ErP) | 六 |
| 获得CE和FCC认证 | |
| 方面: | 169 x 61 x 39 |
Luminos 系列目镜的高倍和低倍型号均提供 82º 宽广视野,让您可以充分利用望远镜,无论您拥有的是短而快的折射望远镜还是 Celestron EdgeHD 望远镜。光学组件由六或七个元件组成(取决于型号),并完全采用多层镀膜,以获得清晰锐利的视野。所有六个 Luminos 目镜都是共焦的,这意味着您可以在观察期间更换目镜,几乎不需要或根本不需要额外调焦。
Luminos 目镜主体由抛光阳极氧化铝制成。橡胶握柄环绕目镜赤道,让您握得牢靠,并可轻松升高和降低可伸缩眼罩。只需旋转橡胶握柄即可调整眼罩高度。插入筒采用螺纹设计,可容纳滤镜。
| 一般的 | |
|---|---|
| 焦距: | 15 毫米 |
| 视场角: | 82° |
| 眼部缓解: | 17 毫米 |
| 光学涂层: | 全多层镀膜 |
| 镜头元件数量: | 7 |
| 筒身尺寸: | 32 毫米 |
| 视场光阑直径: | 26 毫米 |
| 共焦目镜: | 是的 |
| 重量: | 340.19克 |
推出 ASI183MM,这是 ZWO 迄今为止最灵敏的相机,通过背照式传感器实现了 84% 的峰值绝对量子效率 (QE)。
▶IMX183CLK-J/CQJ-J
天文摄影性能
ASI183 相机对于如此小的像素尺寸具有非常大的满阱容量( 15000e ), 1.6e读出噪声 @ 30DB, 12 档动态范围 @ 增益=0。ASI183 相机还利用固件功能将放大器辉光降至最低,以实现天文摄影的最佳性能。
高速
快速 FPS 可用于太阳和月球成像,以及实时观看/EAA。高速读出还可用于实时聚焦、双星和其他小物体的真正幸运成像、太阳系主要行星的行星成像等等。
10位ADC
5496×3672 19帧/秒
3840×2160 41.04fps
1920×1080 80.10帧/秒
1280×720 117.30fps
12位ADC
5496×3672 19帧/秒
3840×2160 36.12fps
1920×1080 70.48帧/秒
1280×720 103.23fps
高量化宽松
索尼的背照式Exmor R技术,使其在深空拍摄中表现出色。ASI183的QE峰值达到了惊人的84%。在Ha通道,QE仍然超过60%。
高 QE 意味着进入望远镜并到达传感器的光线实际上被利用的更多。ASI183 的峰值 QE 为 84%,可见光谱内不低于 ~50%,因此它将利用到达它的光线的很大一部分,从而提高信号质量。
USB 3.0 端口和 ST4 端口
USB 3.0 端口:提供 5Gb 带宽,使 ASI183 能够在全分辨率(20.18Mega)下以 19 fps(12bit,普通模式)或 19 fps(10bit,高速模式)运行。
ST4接口:可用于连接云台的自动导星接口,用于导星。
机械制图
盒子里有啥?
ASI183 盒子包含所有必要的电缆、适配器和手册。
相机技术细节
传感器:1 英寸 CMOS IMX183CLK-J/CQJ-J
对角线:15.9 毫米
分辨率:20.18百万像素5496*3672
像素尺寸:2.4μm
拜耳模式:无
快门:卷帘快门
曝光范围:32µs-2000s
投资回报率:支持
ST4 导向器端口:是
读取噪声:1.6e @30db增益
量化宽松峰值:84%
满井:15ke
模数转换器:12位
接口:USB3.0/USB2.0
适配器:2 英寸 / 1.25 英寸 / M42X0.75
尺寸:φ62mm×36mm
重量:120 克或 4.2 盎司(不含镜头)
工作温度:-5℃—45℃
存储温度:-20℃—60℃
工作相对湿度:20%—80%
储存相对湿度:20%—95%
全分辨率下的最大 FPS:
10位ADC
5496×3672 19帧/秒
3840×2160 41.04fps
1920×1080 80.10帧/秒
1280×720 117.30fps
640×480 169.92fps
320×240 308.17fps
12位ADC
5496×3672 19fps
3840×2160 36.12fps
1920×1080 70.48帧/秒
1280×720 103.23fps
640×480 149.53帧/秒
320×240 271.19fps
$59.29
通常在订单完成后约 2-3 个工作日内可取货或发货
侧燕尾杆(梯形)
燕尾杆长度:108mm
梯形底座较宽部分宽度:43mm
厚度:14mm
底座(底部带有照片螺栓)
长度125mm(加上侧面燕尾杆的厚度为135mm)
宽度 44mm
厚度:12mm
凹槽长度:70mm
From $260.00
Optolong L-Pro 1.25 inch is multi-bandpass filter which offers better color balance by maximizing the transmission band. The balanced transmission allows astrophotos to be taken with minimal color cast to broadband emission objects such as galaxies, reflection nebulae and globular star clusters.
Warning - Do not use this filter for solar purposes !
Optolong L-Pro (L-Professional) filter is designed to improve the visibility of various deepsky objects. By selectively reducing the transmission of wavelengths of light pollutants, specifically those produced by artificial lightings including mercury vapor lamps, both high & low pressure sodium vapor lights and the unwanted natural light caused by neutral oxygen emission in our atmosphere (i.e. skyglow). Together with the highly transparent in main nebula emission lines at OIII(496nm and 500nm), H-beta (486nm), NII(654nm and 658nm), H-alpha(656nm) as well as SII(672nm), the filter is suitable for enhancing the contrast and details for both visual and photograghic purpose at sub-rural area with heavy light pollution.
Optolong L-Pro is multi-bandpass filter which offers better color balance by maximizing the transmission band. The balanced transmission allows astrophotos to be taken with minimal color cast to broadband emission objects such as galaxies, reflection nebulae and globular star clusters. L-Pro is the best choice for light pollution suppression.
- Optical glass fine material
- Spectrum: 380-750nm
- Surface Quality: 60/40 (Refer to MIL-O-13830)
- Fine-optically polished to ensure accurate 1/4 wavefront and < 30 seconds parallelism over the both surfaces
- High transmission at major nebula emission lines (i.e. H-alpha 656nm, OIII 496nm&500nm, SII 672nm and H-beta 486nm).
- Precision off-band blocking, specifically the major emission lines of artificial light pollution (i.e. Na 589nm, Hg 435nm and 578nm).
$199.00
GERBER Marine 双筒望远镜功能多样,随时可用,是航海和划船的理想选择,防水和氮气净化结构以及特殊的多层镀膜镜片有助于减少水和雪上的眩光,在潮湿环境中也能提供出色的性能。防水等级为 IPX5。由于这些特点,这款 Marine 双筒望远镜是航海和划船环境中最推荐的双筒望远镜。GERBER Marine 结构坚固,表面采用防滑橡胶。这款 7x50 双筒望远镜可在 6 米以上对焦。它们配有软盒、肩带、目镜盖,全部采用时尚的彩色包装
- 类型:中央焦点
- 放大倍数/直径: 7x50
- 对焦距离: 6米
-
视野:
- 角度: 7°
- 1000米处: 122米
- 1000码处: 367英尺
- 出瞳直径:7.1 毫米
- 重量: 950克
- 三脚架适应性:是
Gerber 双筒望远镜以对品质的不懈追求而制造。其卓越的组件确保每位用户都能获得极致的观看体验。其型号繁多,规格各异。Gerber 双筒望远镜已成为狂热猎人、观鸟者和划船爱好者的最爱。
规格
| 放大 | 7倍 |
| 物镜直径(mm) | 50 |
| 出瞳直径 (mm) | 7.1 |
| 出瞳距离 (毫米) | 24 |
| 视野: | 7° |
| >真实(米/1000米) | 122万 |
| 视野(英尺/1000 码) | 367T |
| 最近对焦距离 (m) | 6 |
| 屈光度补偿 (dpt) | ±3 |
| 瞳距(mm) | 56 |
| 对焦系统 | 中心 |
| 棱镜系统 | 波罗 |
| 棱镜玻璃 | BAK4 |
| 镜头和棱镜涂层 | 国会议员 |
| 眼罩款式 | 旋转 3 次即可停止 |
| 防水的 | 是的 |
| 适配三脚架 | 是的 |
| 尺寸(高x宽x深)(毫米) | 180x198x64 |
| 重量(克) | 950 |
经过精心设计,可承受
KITE APC 50 双筒望远镜采用坚固耐用的设计,防水等级达到 IPX 7,电子元件密封,并填充氮气。这些双筒望远镜可承受 1 米深的浸泡,并可在地球上最潮湿的地区使用,在恶劣条件下也能提供无与伦比的性能。
KDGS-2
2024年,KITE OPTICS推出第二代KDGS ,将KITE OPTICS的图像稳定性能推向前所未有的高度。新时代再次来临!
KT 3.0 处理器和软件
使用 APC 50,您将体验到无与伦比的沉浸感,仿佛自己就在您观察的物体旁边。得益于精度的提高,KITE OPTICS 在软件改进方面取得了重大飞跃。KT 3.0 提供独特的观看体验,可以反映大脑的认知和视觉模式,有效地消除了通过双筒望远镜观看的感觉。
ED/HD 光学系统
APC 50 配备 ED/HD 光学系统,可带来无与伦比的对比度。见证稳定的图像,有效减少色差,确保每个视图都清晰锐利、栩栩如生。APC 50 可为您带来稳定、无失真的观看体验,实现精准与完美的完美结合。
KITE MHR ADVANCE+ 涂层系统
APC 双筒望远镜的光学系统配备 ED 镜片,并采用 KITE OPTICS 的 MHR Advance+ 涂层处理,实现了惊人的 86% 透光率。结合“通过稳定性增强亮度感知”,这款光学杰作在低光条件下表现出色,提供无与伦比的清晰度、生动性和精确度
一次充电即可畅玩整个赛季
APC 50 双筒望远镜拥有无与伦比的耐用性,电池续航时间长达 38 小时。真正让它与众不同的是巧妙的 APC 模式,平均使用一次充电即可延长其操作时间,覆盖整个季节。释放 APC 50 的强大功能,享受全年不间断的观看体验
APC 省电模式
无需按钮,无需担心。借助我们的 APC,您的设备可以在您不主动观察时无缝切换到睡眠模式,并在您需要时恢复运行,所有这一切都无需按任何按钮。只需动动手指,即可享受不间断、无忧的观看体验。
广角视野
APC 18×50 拥有 61° 的超大视角,符合 ISO 广角双筒望远镜标准,是真正的广角双筒望远镜。APC 18×50 带您走进更广阔、更身临其境的世界。
| 放大 | 18倍 |
|---|---|
| 物镜直径(mm) | 50 |
| ED光学系统 | 是的 |
| 出瞳距离 (mm) | 2.77 |
| 最小最近焦距 (m) | 5.5 |
| 视场 (米/1000米) | 65 |
| 视场(度) | 3.7 |
| 视场角(度) | 61 |
| 出瞳距离 (毫米) | 15.5 |
| 瞳距(mm) | 76-57 |
| 高度(毫米) | 250 |
| 宽度(毫米) | 150 |
| 重量(克) | 1015 |
| 暮光因素 | 三十 |
| 屈光补偿 (+/-) | 3 |
| 防水的 | IPX7 |
| 充气 | 是的 |
| 功能温度 | -20 摄氏度 / 45 摄氏度 |
| 透光率 (%) | 86 |
| 保修年限* | 三十 |
| * 电子产品保修期(年限) | 5 |
| 稳定校正角度(度) | 2 |
| 电池寿命(小时) | 三十 |
| 角度功率控制(APC) | 是的 |
| 睡眠定时器(分钟) | 是 (90) |
| 低电池电量指示器 | 是的 |
| 电池类型 | 锂离子(集成) |
| 可充电的 | 是 (USB-C) |
| 三脚架螺纹 | 是的 |
| 手带 | 是的 |
| 库存单位 | K280062 |
$120.00
请注意,此产品配备的是欧洲插头,不是澳大利亚插头。
规格:
- 输入:100-240V 交流电 50/60Hz
- 输出:DC12V/10A
- 功率:120瓦
- 连接方便、使用简单
- 连接器:高密度 XT-60 连接器
$115.00
- 防露罩是被动防露系统的基本组成部分,其附加功能是保护望远镜免受不良杂散光的干扰。
- 毛毡衬里有助于吸收水分并防止外部光线到达光学元件并大大提高对比度。
- 由最高品质的 ABS 级聚合物制成。
- VELCRO® 品牌紧固件提供紧密贴合和衬垫,以免损坏或刮伤望远镜的表面。
- 它们可轻松卷成方便的尺寸,方便携带到观星派对和暗夜星空地点
美国制造!
$540.00
Losmandy DVSBS 并排燕尾板
此燕尾板可让您并排安装两个光学系统。主连接燕尾杆长 380 毫米,配有两个 177 毫米长的大型 D/V 鞍座,每个鞍座均配有弹簧锁定夹,可牢固固定您的望远镜。鞍座中心之间的距离为 254 毫米,适合大多数应用。
精密机器黑色阳极氧化铝,经久耐用,包括不锈钢硬件
重量 3.2 公斤
$99.00
TMB PlanetView Planetary Eyepieces:
The TMB PlanetView Planetary Eyepiece series is designed for high-magnification planetary and lunar observing, delivering sharp, high-contrast views with excellent eye comfort. Choosing the right focal length for your telescope typically provides a significant upgrade in magnification and fine detail compared to the stock eyepieces supplied with most telescopes, making planetary features clearer and easier to observe. Featuring a 5-element optical design and a wide 58° apparent field of view, these eyepieces offer a more immersive experience than traditional narrow-field planetary designs while maintaining the crisp detail needed for serious observing.
Fully multi-coated optics and internal baffling maximise light transmission and suppress stray reflections, improving contrast on subtle planetary features and fine lunar detail. The large eye lens and generous eye relief make these eyepieces comfortable to use, especially during long observing sessions or when wearing glasses.
Built with an all-metal housing and a fold-down rubber eyecup, TMB PlanetView eyepieces are robust, practical, and compatible with all standard 1.25" focusers and filters. They are also Bintel’s number one recommended first upgrade for most telescopes, offering one of the simplest and most noticeable improvements you can make to planetary and lunar performance.
The 7mm TMB PlanetView:
The TMB PlanetView 7mm Planetary Eyepiece is an excellent high-magnification choice for Schmidt-Cassegrain telescopes and large Dobsonians.
Works particularly well with:
-
-
Celestron StarSense Explorer LT70 AZ Refractor Telescope
-
Celestron StarSense Explorer LT114 AZ Newtonian Telescope
-
Celestron StarSense Explorer DX6" SCT Telescope
-
Celestron NexStar 6SE Telescope
-
Celestron NexStar Evolution 6 Telescope
-
Celestron StarSense Explorer DX5" SCT Telescope
-
Celestron NexStar 5SE Telescope
-
Celestron NexStar Evolution 5 Telescope
-
Saxon 909 AZ3 Telescope
-
Saxon 12" Dobsonian Telescope
-
Sky-Watcher 12" Dobsonian Telescope
-
Celestron StarSense Explorer 12" Dobsonian Telescope
-
Specs:
| Specification | Details |
|---|---|
| Optical design | 5 elements |
| Apparent field of view | 58° |
| Focal length | 7mm |
| Barrel size | 1.25" (31.75mm) |
| Eye relief | 16mm |
| Eye lens diameter | 21mm |
| Lens coatings | Fully multi-coated |
| Internal baffling | Yes |
| Eyecup | Fold-down rubber |
| Filter thread | Standard 1.25" |
| Body material | Metal |
| Included accessories | Front and rear lens caps |
Maintaining its appealing style and presentation, the Yearbook of Astronomy 2026 contains comprehensive jargon-free monthly sky notes and an authoritative set of sky charts to enable backyard astronomers and sky gazers everywhere to plan their viewing of the year’s eclipses, comets, meteor showers and minor planets as well as detailing the phases of the Moon and visibility and locations of the planets throughout the year. To supplement all this is a variety of entertaining and informative articles, a feature for which the Yearbook of Astronomy is known.
Articles for the 2026 edition include:
- Recent Advances in Astronomy by Rod Hine
- Recent Advances in Solar System Exploration by Peter Rea
- Anniversaries in 2026 by Neil Haggath
- The Astronomers' Stars: Taking It to Extremes by Lynne Marie Stockman
- Hawking Stars by Andrew D. Santarelli and Matthew E. Caplan
- Subrahmanyan Chandrasekhar and Professor A. S. Eddington by David M. Harland
- Planetary Protection: Keeping the Planets Safe from Earthly Bacteria by Peter Rea
- Nearby Worlds Out There: The Many Kinds of Exoplanet by John McCue
- Comets and Literature in the Nineteenth Century by Randall Stevenson
- On the Origin of NASA Names by Means of Imaginative Selection by Peter Rea
- Mission to Mars: Countdown to Building a Brave New World: Pausing for Thought by Martin Braddock
- A History of Observatory Designs: The Telescope Age from the Seventeenth to Nineteenth Centuries by Katrin Raynor
- Sidewalk Astronomy: Cosmos to Kerbside by Jonathan Powell
This iconic publication made its first appearance way back in 1962, shortly after the dawning of the Space Age. Now well into its seventh decade of production, the Yearbook continues to be essential reading for anyone lured and fascinated by the magic of astronomy and who has a desire to extend their knowledge of the Universe and the wonders to which it plays host. The Yearbook of Astronomy is indeed an inspiration to amateur and professional astronomers alike, and warrants a place on the bookshelf of all stargazers and watchers of the skies.
AUTHOR:
Brian Jones developed a fascination for astronomy at the age of five when he first saw the stars through a pair of binoculars, and his interest took him into the realms of writing sky guides for local newspapers, appearing on local radio and television, teaching astronomy and space in schools and, in 1985, becoming a full time astronomy and space writer. As well as being editor of the Yearbook of Astronomy since the 2017 edition, Brian has penned around 20 books to date which have covered a wide range of astronomy- and space-related topics for both children and adults. His passion for bringing an appreciation of the universe to his readers is reflected in his writing. The minor planet 45689 Brianjones is named after him.
100 colour illustrations
Note: special order only
- Next-Generation Imaging Sensor for Celestron Origin: Upgrade your system with Sony’s latest Starvis 2 color CMOS technology, offering improved resolution and enhanced sensitivity.
- Compact Pixels, Brighter Images: Small 2.0 μm2 pixels increase resolution while Starvis 2 technology boosts light conversion efficiency. The result: brighter, sharper images with more faint object detail revealed.
- Modern 16:9 Aspect Ratio: A wide, cinematic field of view perfectly matches smartphone and tablet screens, producing images that fill the entire display for a more pleasing view.
- Easy, Tool-Free Installation: Clear, step-by-step instructions guide you through attaching your new camera using Origin’s existing adapter and retaining ring—no prior experience required.
Reveal stunning detail in your deep-sky astrophotography with the Origin 678C—Celestron’s next-generation camera for the Origin Intelligent Home Observatory. Featuring Sony’s latest Starvis 2 CMOS technology, this high-performance camera delivers increased resolution and finer detail thanks to its smaller pixel size and enhanced sensitivity.
The Origin 678C Camera replaces the original Origin 178C Camera, giving you an upgrade in image quality. Whether you're imaging galaxies, nebulae, or star clusters, you'll capture more object detail in images that better fill your smartphone or tablet’s display screen.
It’s the perfect way to further enhance your Origin experience—and your astroimaging.
What’s New with the Origin 678C Camera
The Origin 678C Camera brings meaningful enhancements to your astrophotography experience. Here’s what you can expect:
-
Increased resolution
Although both sensors are the same physical size, the IMX678C uses smaller 2.0 μm² pixels than the 2.4 μm² pixels in the IMX178C. This results in a finer resolution of 1.2 arcseconds per pixel (down from 1.5 arcseconds per pixel), allowing you to resolve more detail and “zoom in” slightly more on celestial objects. This is especially beneficial since most night sky targets are relatively small. -
Larger file sizes
Because the IMX678C packs more effective pixels (8.4 MP vs. 6.4 MP), image files will be somewhat larger. As a result, you may notice slightly slower automatic image processing in the app, depending on the performance of your smartphone or tablet. -
Increased sensitivity
Despite having smaller pixels, the IMX678C is slightly more sensitive overall than the IMX178C. The improvement is subtle; images won’t appear dramatically brighter. -
Different ISO response
ISO values are not directly comparable between the two sensors. The IMX678C's default ISO is 1000, while the IMX178C’s is 200. -
Different aspect ratio
The IMX678C uses a 16:9 aspect ratio, compared to the 3:2 ratio of the IMX178C. This means your field of view will appear more rectangular, ideal for framing larger regions of the sky and perfectly matched to the landscape orientation of most smartphone and tablet displays—making it easier to compose, view, and share your images.
Quick and Simple Installation
Upgrading to the Origin 678C Camera is fast and hassle-free. Designed to integrate seamlessly with your Origin system, the camera installs without any complicated tools or processes. Simply remove the existing camera, attach the Origin 678C using the included adapter and retaining ring, and plug it in.
After you install the new camera, we’ll walk you through capturing new calibration frames. Dark frames reduce sensor noise, while flat frames correct for illumination variations across the image. The Origin app makes this process simple and intuitive—and you can follow along with our video, too.
For the easiest and most consistent results, we recommend the PrimaLuceLab GIOTTO for Celestron Origin— a flat-field generator custom-designed for Origin that works with the same smartphone you use to control Origin. Whether you use GIOTTO or the evening sky (i.e., “sky flats”), capturing new flat frames ensures your upgraded system is optimized and ready to deliver stunning, high-contrast astrophotography from your very next session.
Second Life for Your Origin-178C Camera
Upgrading to the Origin 678C doesn’t mean your original camera has to sit on the sidelines. The Origin-178C is a powerful tool, and now it’s free to be used with other telescopes you may own. With its standard M42 T-thread connection, it mounts easily to most optical systems and makes a great planetary or lunar imaging camera. In minutes, your 178C will be ready for a whole new role in your astrophotography toolbox.
Camera Specifications
| Colour or Monochrome | Colour |
| Power Requirements | Powered by USB |
| USB | Uses Origin's USB-C cable |
| Camera Housing Construction | Aluminum black anodized |
| Optical Window | IR cutoff filter, transmission from 400-740 nm |
| Pixel Size | 2.0 Micron Square |
| A/D Conversion | 12 bit |
| Imaging Sensor | Sony IMX678-AAQR1, color, back-illuminated |
| Camera Resolution (in Pixels) | 3856 x 2180 |
| Total Number of Pixels | 8.4 MP |
| Mounting | M42 x 0.75 female threads |
| Sensor Size | 8.9mm diagonal |
| Shutter | Electronic Shutter |
| Software Compatibility | Origin app (iOS or Android) |
| Operating Environment | Same as Origin |
| Sub-Framing | N/A |
| Exposure Range | Unlimited |
| Frames per second | N/A |
| Back Focus Distance | 12.5 |
| Recommended/Best Usage | Higher resolution images with Origin |
| Weight | 92g |
| Dimensions | 59.0mm Ø x 25.7mm |
| Included Items | Origin-678C camera | Instruction manual |
$370.00
天文摄影市场缺乏可靠的 USB3.1 集线器,促使我们开发了 Pegasus Astro USB 控制集线器,它还可以打开/关闭每个 USB 端口。
我们自豪地推出 Pegasus Astro USB 控制中心(简称 UCH):
超高速 (SS)、低功耗、可切换的 USB3.1 Gen1 集线器,完全符合 USB-IF 的 USB 3.1 Gen1 规范。该集线器支持高速 (HS)、全速 (FS) 和低速 (LS)。新的超高速集线器与 USB 2.0 控制器并行运行,因此 5 Gbps 超高速数据传输不会受到较慢的 USB 2.0 流量的影响。
6 个 USB3.1 活动端口
USB 控制集线器 uch_3-2
该设备有 6 个 USB 3.1 端口。所有端口均向后兼容 USB 1.0 和 USB 2.0 设备。
每个端口可提供高达 2.5 安培的电流。每个端口都有一个智能电流限制传感器,当出现短路或功耗超过 2.5 安培时,会自动限制或切断电源。
每个端口都由 USB 控制器监控,如果电流限制,它会在操作系统中触发警告弹出。
工业级温度支持
市场上的大多数 USB 集线器(嗯……几乎所有)都在室温下运行,因为它们是为在温暖舒适的房间内工作而设计的。这也是为什么在寒冷的夜晚你会遇到 USB 断开连接和不稳定的原因之一。
我们的产品经过认证,可在 −40°C 至 +85°C 的温度下完美运行。所有 USB 集线器电子产品均经过精心挑选,以支持工业级温度范围。
铝制外壳
高品质、坚固的蓝色阳极氧化铝外壳容纳 USB 集线器的电子元件。金属外壳经过设计和测试,可承受 ±5kV ESD 冲击
可切换的 USB 端口
每个 USB 端口均可通过我们的独立软件控制和打开/关闭。(电源 + 数据)。您一定会喜欢此功能。无需再拔出并重新插入设备的 USB 电缆。
12V DC 操作
12V DC 操作是我们的第一个设计要求。由于大多数天文设备都需要 12V DC,为什么要使用其他东西?集线器接受 12-14V 的操作。这意味着您可以从电池插入未调节的 12V 电源。
扩展端口 (EXT)
RJ12 外部端口允许未来设备扩展
| USB 端口 | 六个下游 USB3.1 Gen1/2.0 端口 |
| USB 可切换端口 | USB1-6. 打开/关闭电源和数据(每个端口可单独切换) |
| 直流输入 | 12-14V 直流 |
| 单个端口的电流值 | 每个 2.5 安培 |
| 最大总安培数: | 8 安培 |
| 工作温度 | 工业级温度支持 (−40°C 至 +85°C) |
| 尺寸 | 100 毫米 x 72 毫米 x 24 毫米 / 3.9 英寸 x 2.8 英寸 x 0.94 英寸 |
| 重量 | 200克/7盎司 |
| 电源要求 | 2-10Amps(取决于您要插入 USB 端口的设备及其功耗) |
$3,599.00
凭借出色的精度、轻巧的重量和坚固的设计,ZEISS Conquest® Gavia 是您在人迹罕至的地方进行探索时永远需要的伙伴。
这款配备 85 毫米物镜的观测镜特别轻巧紧凑。这使它成为近距离和远距离观察的理想仪器,尤其是在难以接近的区域。同类产品中独一无二的是短距离近焦,可轻松捕获小目标。
高分辨率镜头系统和快速对焦功能可将照片转化为令人难忘的图像。无论您是拍摄单只鸟还是整个鸟群,Conquest Gavia 85 的 60 倍放大倍率都能让自然观察者尽情欣赏野生动物,确保不会忽略任何细节。通用三脚架板可与多种三脚架兼容。
ZEISS Conquest Gavia 为观鸟者和自然观察者提供了一款非常有价值的高性能观测镜。
光
镁合金机身和紧凑的尺寸使 ZEISS Gavia 成为您无论走到哪里都能轻松携带的伴侣。
人类工程学的
大型对焦环可实现精确操作并轻松对焦观看图像。
明亮、清晰、细节丰富
极其精确的屋脊棱镜和高清镜头系统保证了明亮清晰的观看图像。
无论天气如何,视野都清晰
大自然中总有令人兴奋的事物值得观赏——即使在潮湿的天气。这就是蔡司开发 LotuTec® 的原因。这是一种用于双筒望远镜和观景镜镜片的涂层,可在所有天气条件下实现清晰无阻的视野。
蔡司 T* 镀膜
蔡司 T* 镀膜是您在弱光条件下和黄昏时体验到的明亮高对比度图像的保证。然而,其背后并没有构建涂层的特定配方。相反,它是一种不断调整以适应新玻璃材料和要求的技术,并且每个镜头都有所不同。
| 放大 | 30 – 60 × |
| 有效透镜直径 | 85 毫米 |
| 出瞳直径 | 2.8 – 1.4 毫米 |
| 焦距 | 494 毫米 |
| 1,000 米处视野 | 33 – 23米 |
| 近对焦距离 | 3.3米 |
特征
LotuTec | 充氮
+ | +
防水性能
400 毫巴
方面
过滤丝
M86×1
长度
396 毫米
重量
1.7 公斤
$725.00
Terra ED Pocket 10x25 双筒望远镜坚固、可靠且易于使用。其先进而时尚的设计不仅使其重量轻,而且紧凑舒适。最高的光学精度和疏水多层镀膜可确保图像清晰无比。Terra ED 双筒望远镜防水且充满氮气,坚固耐用。Terra ED 双筒望远镜物超所值,是进入蔡司世界的完美选择。
ZEISS TERRA ED Pocket 10x25 具有 10 倍放大率和符合人体工程学的设计,可在任何情况下实现精确对焦。这款坚固耐用的双筒望远镜的工作温度范围为 -20 至 +63° C,并配有防水外壳,使其成为极端条件下的可靠伴侣。
舒适、快速对焦
大而平滑且易于抓握的调焦轮使蔡司 Terra ED 的调焦变得特别容易,最重要的是,调焦速度快。拿起 Terra ED 双筒望远镜后,您就会立即注意到它的优点:您的食指会自动落在调焦轮上。当眼前突然出现令人兴奋的事情时,您再也不需要考虑如何握住双筒望远镜了。很快,您就能清晰对焦。
紧凑、轻便、坚固
蔡司 Terra ED 的防水外壳采用玻璃纤维加固,可满足自然爱好者的高标准。结构紧凑、轻便且坚固。蔡司 Terra ED 重量轻,易于装入任何包中,几乎坚不可摧,是您的完美伴侣。
蔡司疏水防反射涂层可确保在不利的光照条件下获得清晰、高对比度的图像。此外,由于其防水特性,它可在任何天气条件下实现清晰、无阻碍的视野
规格
| 放大 | 10 × |
| 有效透镜直径 | 25 毫米 |
| 透光率 | 88% |
| 出瞳直径 | 2.5 毫米 |
| 暮光因素 | 15.8 |
| 1,000 米(码)处的视野 | 97米 |
| 主观视角 | 54° |
| 近对焦距离 | 1.9 米(6.2 英尺) |
| 屈光度调节范围 | − 3.0 | + 3.0 dpt |
| 出瞳距离 | 16 毫米 |
| 瞳距 | 35 – 72 毫米 |
| 镜头类型 | ED |
| 棱镜系统 | 施密特-佩肯 |
特征
| LotuTec | 充氮 | - | + |
| 防水性能 | 100 毫巴 |
身体的
| 工作温度 | − 20°C | + 63°C(- 4°F | + 145°F) | |
| 长度 | 111 米 | |
| 瞳距为 65 毫米时的宽度 | 115毫米 | |
| 重量 | 310克 |
$799.00
无论是在体育赛事、剧院还是户外,Monos 都是多功能的大师,可以舒适地放入夹克口袋或手提包中。根据型号的不同,它们非常适合用作放大镜,甚至用作双筒望远镜。它们可以通过将放大倍数增加三倍,将您的双筒望远镜变成一个观察镜。即使是最小的细节也可以看到:没有什么能逃过它们的注意。它们还可用于远距离观察或详细识别猎物。
随时可用
小巧、轻便、运动型 - 紧凑型 Monos 非常适合自然远足、音乐会或体育赛事。它们以闪电般的速度将物体带到手臂长度,让您看清每一个细节。屈光度调节范围可达 +/- 4 屈光度。
蔡司 T* 镀膜
蔡司 T* 镀膜是您在弱光条件下和黄昏时体验到的明亮高对比度图像的保证。然而,其背后并没有构建涂层的特定配方。相反,它是一种不断调整以适应新玻璃材料和要求的技术,并且每个镜头都有所不同。
| 放大 | 10倍 |
| 物镜直径 | 25 毫米 |
| 视角 | 5.1°(实际) |
| 视场 | 88 米 @ 1000 米 |
| 最小焦距 | 4.5 米 |
| 出瞳直径 | 2.5 毫米 |
| 眼部舒缓 | 15 毫米 |
| 屈光度调节 | -4 至 +4 |
| 防雾 | 不 |
| 防水性能 | 防水 |
| 长度 | 10.9 厘米 |
| 重量 | 3.1 盎司 / 88 克 |
$2,049.00
高品质光学元件和高清概念
Conquest HDX 的光学卓越性基于 HD 概念:完美平衡的光学系统,结合了精选涂层、镜头和精细调整的光学设计。它可实现 90% 的透光率,从而获得最明亮的图像;色彩保真度高,从而获得逼真的图像,不会出现色边和色偏,实现完美识别;边缘到边缘的清晰度高,从而在整个视野范围内获得清晰细致的图像。
坚固耐用的设计
Conquest HDX 可在任何环境下使用,无论是极端温度、潮湿环境还是阳光直射。其耐用、防水和防震的特点归功于其坚固的机械设计和轻质镁合金外壳。此外,它覆盖有保护性橡胶装甲,在任何情况下都能提供完美的抓握力。
精心设计的人体工程学
经过精心设计的人体工程学设计,防滑手柄和平滑精确的调焦轮让长时间观察时也能舒适操作。可调节眼罩和可锁定屈光度设置确保个性化的观看体验。
无论天气如何,视野都清晰
大自然中总有令人兴奋的事物值得观赏——即使在潮湿的天气。这就是蔡司开发 LotuTec® 的原因。这是一种用于双筒望远镜和观景镜镜片的涂层,可在所有天气条件下实现清晰无阻的视野。
蔡司 T* 镀膜
蔡司 T* 镀膜是您在弱光条件下和黄昏时体验到的明亮高对比度图像的保证。然而,其背后并没有构建涂层的特定配方。相反,它是一种不断调整以适应新玻璃材料和要求的技术,并且每个镜头都有所不同。
规格
放大
8 ×
有效透镜直径
42 毫米
透光率
90%
出瞳直径
4.2 毫米
暮光因素
18.3
1,000 米(码)处的视野
128米
主观视角
西经59°
近对焦距离
2 分钟
屈光度调节范围
− 4.0 | + 4.0 dpt
出瞳距离
16.5 毫米
瞳距
54 – 74 毫米
镜头类型
高清
棱镜系统
施密特-佩肯
特征
LotuTec | 充氮气
是|是
防水性能
400 毫巴
方面
工作温度
− 20°C | + 63°C
瞳距为 65 毫米时的宽度
119毫米
重量
715克
长度
150毫米
$365.00
特征
- 4 个 12V DC 电源插座,可用于您的设备(单个通道可通过软件打开/关闭所有四个输出)
- 总分布电流为 12 安培
- 可调输出(3、5、7、8、9、12 伏)/3 安培(可打开/关闭)为您的 DSLR/无反光镜相机供电
- 嵌入式供电 USB3 集线器 – 2 个 USB2 端口和 2 个 USB3 端口可用(USB3 端口向后兼容 USB2 设备)
- 1 x 电源 USB 端口(最高 3 安培)– 适用于 Raspberry PI 3/4 电源
- EXT 端口 (RJ12) 用于连接外部附件(例如外部焦点控制器)
- 2 通道 PWM 除湿加热器 - RCA 输出(通过软件调整功率级别)
- 湿度和温度传感器(包含)
- 自动调节除湿加热器通道
- 反极性保护
- USB / PC 控制或开箱即用独立操作
- 轻质且极其紧凑的铝制外壳
内置安培表
安装在直流输入之后的安培表报告总电流。
此外,还有三个额外的安培表:一个用于 12V 四路输出,两个用于除湿加热器通道。这样您就可以轻松监控设备的详细和总体功耗。
其他主要功能
独立操作
“开箱即用”
Pocket Powerbox Micro 可以作为独立设备“开箱即用”。只需插入电缆,设置“autodew”功能,每次启动设备时,它都会检索您的设置。所以,如果您不喜欢每次都连接到 PC,您不必这样做。就这么简单!
双通道占空比
PWM 输出
两个脉冲宽度调制 (PWM) 插座能够为“耗电”的除湿加热器供电。再也不会有水分弄脏您的设备并破坏您的晴朗夜晚。您可以使用随附的软件从笔记本电脑远程控制这些插座。
自动调整
PWM(露水输出)
控制器可以通过查询环境传感器露点读数来自动调整加热器功率水平。只需单击“自动”,然后让 Pocket Powerbox Micro 决定是否需要打开并精确调整露点加热器的水平。
超过10A的
总功率
电源箱设计为支持高达 10 安培的总电流。
电源和故障状态的 LED 指示
LED 可以按模式闪烁,以警告您重要的电源问题(例如过压或欠压)。此外,可以使用软件关闭灯光。我们的 LED 非常暗,但如果您不喜欢它,您可以将其关闭
反极性保护
Pocket Powerbox Micro 具有反电压极性保护功能。如果您不小心将主电源反接,它绝对能帮您度过难关!
硬件
看门狗
如果出于任何原因控制器两秒钟内没有响应,硬件看门狗会重置设备。这是一项巧妙的功能,可以应对控制器冻结的罕见情况 - 当您拥有一个远程天文台并且需要确保一切按预期运行的时候。
可升级
固件
设备固件可升级,以支持未来的功能和错误修复。
$1,249.00
Optron 的超紧凑型 EQ/AZ GoTo 支架 - 推出 SkyHunter 便携式 EQ/AZ
在推出创新型 Cube AZ/EQ GoTo 支架 15 年后,SkyHunter 又向完美迈进了一步。它是 iOptron 卓越历史上最轻、最紧凑的全功能便携式 goto 支架。
SkyHunter 重量仅为 1.3 公斤(包括内置充电电池),可在赤道和地平角模式下支撑 5 公斤的有效载荷。SkyHunter 支架具有四种跟踪速率,1X 或恒星、1/2X(天空和景观组合)、太阳和月球。所有 4 种跟踪速率均适用于北半球和南半球。SkyHunter 支架可通过 iOS 或 Android 智能手机/平板电脑、可选的 8410 手动控制器或计算机(通过 ASCOM、INDI 或嵌入式驱动器)进行控制。
(请注意——所示的望远镜不包含在内。)
主要特点
- 专用 Grab N' Go GOTO EQ/AZ 支架
- 支架重量 1.3 公斤
- 有效载荷5kg(平衡,不包括CW)
- 带光学编码器的双轴伺服电机
- 跟踪速度:太阳、月球、1X、1/2X、S/N
- 在北半球和南半球均可运行
- Vixen 燕尾马鞍
- 内置可充电电池,可运行长达 10 小时(20°C)
- 内置 WIFI 适配器,可全面控制 ASCOM、iOptron Commander 和 Sky Safari
- USB 端口用于固件升级和计算机控制
- 可选 Go2Nova® 8410 控制器,采用先进的 GOTONOVA® GOTO 技术
- iPolar 电子极轴镜
- 配重轴:φ20X200mm,带3/8”螺纹,不锈钢
- 配重:3 磅(1.35 千克)
- 使用 3/8” 或 1/4” 螺纹连接至相机三脚架
- 1.25 英寸不锈钢三脚架(#3221)
- 可选碳纤维三脚架
- 码头扩建 (#8041)
- 支架有限保修 1 年,电池有限保修 90 天
包装内容
- SkyHunter 便携式 EQ/AZ 安装座
- EQ 基础
- 不锈钢配重轴
- 3磅配重
- iPolar 电子极轴镜
- MiniUSB 充电线
- #3221 三脚架
- #8041 码头扩建
- 一年有限保修(电池保修 90 天)
规格
| 山 | 超紧凑型 GOTO EQ/AZ 支架 |
| 有效载荷(最大) | 5公斤,平衡 |
| 安装重量 | 含电池1.3公斤 |
| 结构材质 | 金属框架结构 |
| 电机驱动 | 带光学编码器的双轴直流伺服电机 |
| 传播 | 同步带 |
| 跟踪速度 | 太阳、月球、Cel、1/2 Cel 和 N/S |
| 最大回转速度 | 4.5°/秒 (1080X) |
| 蠕虫期 | 600 秒 |
| RA/DEC 蜗轮 | φ77mm、144齿 |
| 手持控制器 | 是(带可选 8410 HC) |
| 高度调节范围 | 0°~80° |
| 方位调整范围 | ±5° |
| 电源要求 | 内置可充电电池 |
| 电池类型 | 锂聚合物,3.7V,2000mAh |
| 运营时长 | 20ºC 时最长 10 小时 |
| 极地观测镜 | iPolar 电子极轴镜 |
| 平衡轴 | φ20mmX200mm,3/8”螺纹,不锈钢 |
| 抵消 | 1.3 公斤 |
| 燕尾鞍座 | 泼妇型 |
| 阀体底座连接 | Vixen 燕尾榫,3/8” 插座 |
| 自动导航 | 兼容 ASCOM |
| 电源充电端口 | 迷你USB(5伏) |
| 无线上网 | 内置 |
| 通信端口 | 是(Wi-Fi 和 USB) |
| 固件升级 | 是(通过 USB 端口) |
| 三脚架 | 3221 不锈钢,可选碳纤维三脚架 |
| 码头延伸 | φ80×190毫米 |
| 操作温度 | -10℃~40℃ |
| 保修单 | 一年有限保修(电池保修 90 天) |
$89.00
Farpoint 升降携带带,适用于 GSO 12 英寸 Dobs
这些吊带可让您轻松地从 Bintel 多布森望远镜底座或大多数其他配备 14 英寸直径实心管 OTA 的多布森望远镜底座上安装或拆卸 OTA。这两条吊带成对出售,可缠绕您的 OTA 并用 Velcro 固定。
内置手柄确保抓握牢固。
将带子放置在高度轴承的上方和下方可以使您的 OTA 更容易提升和操纵。
$4,190.00
施华洛世奇 NL 纯净8 X 32
适用于各种场合突破性的光学性能
装入尽可能最小的包装中:
NL Pure 32 会陪伴您去任何地方,为您带来前所未有的观看体验。
+形状
与您同在
NL Pure 的设计完美贴合您的手部。其革命性的
符合人体工程学的形状保证您即使长时间观看也可以轻松。
+查看
把握当下
迄今为止最大的视野和几乎难以辨别的边缘让您以前所未有的方式体验大自然 - 并沉浸在当下。
+舒适
轻松观察
额头托保证数小时的观察舒适度 - 最适合最大放大倍数。
+详细信息
完美之选
SWAROVISION 技术可确保令人惊叹的图像具有令人难以置信的色彩保真度,从而可以轻松识别每一个细节。
与自然融为一体
詹姆斯·李的全新NL Pure
加拿大安大略省的自然向导兼保护护林员詹姆斯·李斯 (James Lees) 是第一批收到我们全新 NL Pure 双筒望远镜的人之一。了解这位英国自然爱好者使用这款双筒望远镜的感受。
与自然融为一体:良好的开端
詹姆斯第一次尝试 NL Pure 时,他正坐在家门前。突然,一只大蓝鹭飞过,夕阳将它照得格外明亮。当这位两个孩子的父亲拿起 NL Pure 时,他完全被眼前的景象所震撼。它是如此的强烈,色彩和清晰度如此完美。他感觉自己可以伸手触摸到这只鹭,尽管它距离我们 100 米远。
把握当下:看见看不见的事物
正是为这种令人叹为观止的体验,NL Pure 才被发明出来。这款双筒望远镜的视野非常开阔,让观察者可以完全沉浸在远处的场景中。突然间,你与当下融为一体,看到了看不见的事物。在詹姆斯看来,宽阔的视野也使在高高的树冠层中寻找鸟类变得更容易,并有助于找到快速移动的小鸟。这对护林员和自然向导来说是一个很大的优势。
颜色
焦橙色
施华洛世奇 NL PURE 8x32 物镜
$349.00
Farpoint 激光准直器 635nm(2-1.25 英寸)
所有 Farpoint 激光准直器均享有终身校准保证。我们将免费重新校准任何 Farpoint 激光准直器!但 Farpoint 激光器保持出厂校准。这是因为我们拥有坚固的激光器主体和(最重要的是)我们独特的校准螺钉设计(如下所述)。
Farpoint 激光器有八个对准螺钉,而不是像其他激光器那样有六个、四个甚至三个。激光二极管的两端由两组直接相对的螺钉固定,而不是交错排列(顶部孔、底部孔、顶部孔),这样二极管可以移动,从而实现精确和持久的对准。同样,只有 Farpoint 激光器具有这种优越的对准螺钉排列,其中四个直接相对的螺钉对准激光二极管的顶部,另外四个直接相对的螺钉对准激光二极管的底部。
Farpoint 激光体由一整块铝通过一步加工精密加工而成,可实现完美对准。
Farpoint 激光器的孔径较小(0.76 毫米或 30/1000 英寸),可减少斑点并更精确地读取激光束在望远镜镜面上的位置。Farpoint 是业余天文学市场上所有激光器中孔径最小的。
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