描述
Compact Powerhouse – Ready to Use
The Connect and Use Servo Drive that delivers up to 5000 Watts
The Gold Solo Bee is a “ready to use Gold Bee”, advanced high power density, highly intelligent servo drive which is rapidly operational. It delivers up to 5 kW power in an average 30.59 cc (1.87 in³) compact package. A cable kit and optional heat sinks are available for easy and fast operation of the Gold Solo Bee.
The Gold Solo Bee is provided in three optional forms (shown above) which provide top performance, advanced networking and built-in certified safety, as well as a fully featured motion controller and local intelligence. Power to the Gold Solo Bee is provided by a DC power source which is isolated from the Mains. The Gold Solo Bee can operate with single or dual power supplies. If separation between the main DC power source and a control supply is required, then a control supply (also isolated from the Mains) is required.
The Gold Solo Bee can operate as a stand-alone device or as part of a multi-axis system in a distributed configuration on a real-time network. The drive is easily set up and tuned using the Elmo Application Studio (EASII) software tools, and is fully programmable with the Elmo motion control languages.
Gold Solo Bee Highlights:
- Ultra high current – up to 80A/80V, 50A/100V
- Low weight – only 32.5 – 60.5 grams (1.14 – 2.13 oz)
- Ultra Small, Ultra Efficient, Connect and Use
- Advanced networking by EtherCAT Or CANOpen
- Avaliable communication via USB (EtherCAT Version only) and standard RS-232
- Wide operating ranges 14V to 200VDC
- Supports any feedback sensor in single, dual and gantry loop configurations
- Incorporates Proprietary “Fast and Soft Switching Technology” resulting in >99% efficiency yet negligible EMI
特点 | 单位 | 30/60 | 1/100 | 3/100 | 6/100 | 10/100 | 15/100 | 25/100 |
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最小供电电压 | VDC | 8 | 10 |
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额定供电电压 | VDC | 48 | 85 |
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最大供电电压 | VDC | 55 | 95 |
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最大连续功率输出 | W | 1370 | 80 | 235 | 470 | 800 | 1125 | 2000 |
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额定功率下的效率(常规条件下) | % | > 99 |
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最大输出电压 |
| Up to 96% of DC bus voltage |
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Lc.正弦振幅/连续直流电流 | A | 30 | 1 | 3 | 6 | 10 | 15 | 25 |
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正弦连续均方根电流限制 (Ic) | A | 21 | 0.7 | 2.1 | 4.2 | 7.1 | 10 | 17.7 |
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电流峰值限制 | A | 2 x Ic |
特点 | 单位 | 3/200 | 6/200 | 10/200 |
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最小供电电压 | VDC | 20 |
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额定供电电压 | VDC | 170 |
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最大供电电压 | VDC | 195 |
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最大连续功率输出 | W | 485 | 975 | 1650 |
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额定功率下的效率(常规条件下) | % | > 99 |
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最大输出电压 |
| Up to 96% of DC bus voltage |
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Lc.正弦振幅/连续直流电流 | A | 3 | 6 | 10 |
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正弦连续均方根电流限制 (Ic) | A | 2.1 | 4.2 | 7.1 |
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电流峰值限制 | A | 2 x Ic |
特点 | 单位 | R50/60 | R80/80 | R50/100 | R70/100 | R45/150 | R15/200 |
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最小供电电压 | VDC | 8 | 10 | 10 | 10 | 12 | 20 |
额定供电电压 | VDC | 48 | 65 | 85 | 85 | 115 | 170 |
最大供电电压 | VDC | 55 | 75 | 95 | 95 | 135 | 195 |
最大连续功率输出 | kW | 2.3 | 5 | 4.0 | 5.6 | 5 | 2.5 |
额定功率下的效率(常规条件下) | % | > 99 |
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最大输出电压 |
| Up to 96% of DC bus voltage |
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振幅正弦/直流连续电流 | A | 50 | 80 | 50 | 70 | 45 | 15 |
正弦连续均方根电流限制 (Ic) | A | 35.3 | 56.5 | 35.3 | 49.5 | 32 | 10.6 |