为了提高HFW钢管品质,高频焊接后需要对焊缝进行中频常化处理。针对中频处理后易造成焊管弯曲的现象,采用两台600 k W中频感应加热装置进行了在线焊缝模拟热处理,并对模拟结果进行了分析。分析表明,主要原因为中频温度和焊接速度等相关...为了提高HFW钢管品质,高频焊接后需要对焊缝进行中频常化处理。针对中频处理后易造成焊管弯曲的现象,采用两台600 k W中频感应加热装置进行了在线焊缝模拟热处理,并对模拟结果进行了分析。分析表明,主要原因为中频温度和焊接速度等相关因素控制不好,焊缝温度高于管体温度,焊缝温度越高弯曲度越大。同时根据现场生产工艺提出了改进措施,即在空冷段增加冷却装置,以此来控制焊管进入水冷箱的温度,防止焊管弯曲度超标,收到了良好的效果。展开更多
A low noise, high conversion gain down-conversion mixer for WLAN 802.11a applications, which adopts the high intermediate frequency (IF) topology, is presented. The input radio frequency (RF)band, local oscillator...A low noise, high conversion gain down-conversion mixer for WLAN 802.11a applications, which adopts the high intermediate frequency (IF) topology, is presented. The input radio frequency (RF)band, local oscillator(LO)frequency band and output IF are 5.15 to 5.35, 4.15 to 4.35 and 1 GHz, respectively. Source resistive degeneration technique and pseudo-differential Gilbert topology are used to achieve high linearity, and, current bleeding technique and LC resonant loads are used to acquire a low noise figure. In addition, the mixer adopts a common-source transistor pair cross-stacked with a source follow pair(CSSF)circuit as an output buffer to enhance the mixer's conversion gain but not deteriorate the other performances. The mixer is implemented in 0.18 μm RF CMOS(complementary metal oxide semiconductor transistor)technology and the chip area of the mixer including all bonding pads is 580 μm×1 185 μm. The measured results show that under a 1.8 V supply, the conversion gain is 10.1 dB; the input 1 dB compression point and the input-referred third-order intercept point are-3.5 and 5.3 dBm, respectively; the single side band (SSB)noise figure (NF)is 8.65 dB, and the core current consumption is 3.8 mA.展开更多
文摘为了提高HFW钢管品质,高频焊接后需要对焊缝进行中频常化处理。针对中频处理后易造成焊管弯曲的现象,采用两台600 k W中频感应加热装置进行了在线焊缝模拟热处理,并对模拟结果进行了分析。分析表明,主要原因为中频温度和焊接速度等相关因素控制不好,焊缝温度高于管体温度,焊缝温度越高弯曲度越大。同时根据现场生产工艺提出了改进措施,即在空冷段增加冷却装置,以此来控制焊管进入水冷箱的温度,防止焊管弯曲度超标,收到了良好的效果。
基金The Science and Technology Program of Zhejiang Province (No.2008C16017)
文摘A low noise, high conversion gain down-conversion mixer for WLAN 802.11a applications, which adopts the high intermediate frequency (IF) topology, is presented. The input radio frequency (RF)band, local oscillator(LO)frequency band and output IF are 5.15 to 5.35, 4.15 to 4.35 and 1 GHz, respectively. Source resistive degeneration technique and pseudo-differential Gilbert topology are used to achieve high linearity, and, current bleeding technique and LC resonant loads are used to acquire a low noise figure. In addition, the mixer adopts a common-source transistor pair cross-stacked with a source follow pair(CSSF)circuit as an output buffer to enhance the mixer's conversion gain but not deteriorate the other performances. The mixer is implemented in 0.18 μm RF CMOS(complementary metal oxide semiconductor transistor)technology and the chip area of the mixer including all bonding pads is 580 μm×1 185 μm. The measured results show that under a 1.8 V supply, the conversion gain is 10.1 dB; the input 1 dB compression point and the input-referred third-order intercept point are-3.5 and 5.3 dBm, respectively; the single side band (SSB)noise figure (NF)is 8.65 dB, and the core current consumption is 3.8 mA.