The Experts below are selected from a list of 315 Experts worldwide ranked by ideXlab platform
Wol Yon Hwang - One of the best experts on this subject based on the ideXlab platform.
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Fabrication of a TFF-attached WDM-type triplex transceiver module using silica PLC hybrid integration technology
Journal of Lightwave Technology, 2006Co-Authors: Young Tak Han, Jang Uk Shin, Chul Wook Lee, Hyunsung Ko, Yongsoon Baek, Chul Hee Park, Yoon Koo Kwon, Yoon Jung Park, Sang Ho Park, Wol Yon HwangAbstract:An Optical triplex transceiver (TRx) module, which consists of thin-film filter (TFF)-attached wavelength-division multiplexer (WDM) and photodiode (PD) carriers, has been fabricated using a silica planar lightwave circuit (PLC) hybrid integration technology. Two types of TFFs were attached to a diced sidewall of a silica-terraced PLC platform to realize the TFF-attached WDM. The PD carriers with a 45° mirror, on which receiving surface-illuminated PDs were bonded, were assembled with the PLC platform to form receiver (Rx) parts. As the main performances of the packaged TRx module, a very clear transmitter (Tx) eye pattern and minimum Rx sensitivity of -25.7 dBm were obtained under a 1.25-Gb/s Tx–Rx operation for digital applications. For an analog Rx application, a module responsivity of about 0.8 A/W was achieved, and a second-order interModulation distortion value of less than -70 dBc at an Optical Modulation Index of 40% was obtained under a two-tone test of 400 and 450 MHz.
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Fabrication of a TFF-Attached WDM-Type Triplex Transceiver Module Using Silica PLC Hybrid Integration Technology
Journal of Lightwave Technology, 2006Co-Authors: Yoon Jung Park, Jang Uk Shin, Hyunsung Ko, Yongsoon Baek, Chul Hee Park, Yoon Koo Kwon, Wol Yon Hwang, Sang Ho Park, Kwang-ryong Oh, Heekyung SungAbstract:An Optical triplex transceiver (TRx) module, which consists of thin-film filter (TFF)-attached wavelength-division multiplexer (WDM) and photodiode (PD) carriers, has been fabricated using a silica planar lightwave circuit (PLC) hybrid integration technology. Two types of TFFs were attached to a diced sidewall of a silica-terraced PLC platform to realize the TFF-attached WDM. The PD carriers with a 45deg mirror, on which receiving surface-illuminated PDs were bonded, were assembled with the PLC platform to form receiver (Rx) parts. As the main performances of the packaged TRx module, a very clear transmitter (Tx) eye pattern and minimum Rx sensitivity of -25.7 dBm were obtained under a 1.25-Gb/s Tx-Rx operation for digital applications. For an analog Rx application, a module responsivity of about 0.8 A/W was achieved, and a second-order interModulation distortion value of less than -70 dBc at an Optical Modulation Index of 40% was obtained under a two-tone test of 400 and 450 MHz
Yoon Jung Park - One of the best experts on this subject based on the ideXlab platform.
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Fabrication of a TFF-attached WDM-type triplex transceiver module using silica PLC hybrid integration technology
Journal of Lightwave Technology, 2006Co-Authors: Young Tak Han, Jang Uk Shin, Chul Wook Lee, Hyunsung Ko, Yongsoon Baek, Chul Hee Park, Yoon Koo Kwon, Yoon Jung Park, Sang Ho Park, Wol Yon HwangAbstract:An Optical triplex transceiver (TRx) module, which consists of thin-film filter (TFF)-attached wavelength-division multiplexer (WDM) and photodiode (PD) carriers, has been fabricated using a silica planar lightwave circuit (PLC) hybrid integration technology. Two types of TFFs were attached to a diced sidewall of a silica-terraced PLC platform to realize the TFF-attached WDM. The PD carriers with a 45° mirror, on which receiving surface-illuminated PDs were bonded, were assembled with the PLC platform to form receiver (Rx) parts. As the main performances of the packaged TRx module, a very clear transmitter (Tx) eye pattern and minimum Rx sensitivity of -25.7 dBm were obtained under a 1.25-Gb/s Tx–Rx operation for digital applications. For an analog Rx application, a module responsivity of about 0.8 A/W was achieved, and a second-order interModulation distortion value of less than -70 dBc at an Optical Modulation Index of 40% was obtained under a two-tone test of 400 and 450 MHz.
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Fabrication of a TFF-Attached WDM-Type Triplex Transceiver Module Using Silica PLC Hybrid Integration Technology
Journal of Lightwave Technology, 2006Co-Authors: Yoon Jung Park, Jang Uk Shin, Hyunsung Ko, Yongsoon Baek, Chul Hee Park, Yoon Koo Kwon, Wol Yon Hwang, Sang Ho Park, Kwang-ryong Oh, Heekyung SungAbstract:An Optical triplex transceiver (TRx) module, which consists of thin-film filter (TFF)-attached wavelength-division multiplexer (WDM) and photodiode (PD) carriers, has been fabricated using a silica planar lightwave circuit (PLC) hybrid integration technology. Two types of TFFs were attached to a diced sidewall of a silica-terraced PLC platform to realize the TFF-attached WDM. The PD carriers with a 45deg mirror, on which receiving surface-illuminated PDs were bonded, were assembled with the PLC platform to form receiver (Rx) parts. As the main performances of the packaged TRx module, a very clear transmitter (Tx) eye pattern and minimum Rx sensitivity of -25.7 dBm were obtained under a 1.25-Gb/s Tx-Rx operation for digital applications. For an analog Rx application, a module responsivity of about 0.8 A/W was achieved, and a second-order interModulation distortion value of less than -70 dBc at an Optical Modulation Index of 40% was obtained under a two-tone test of 400 and 450 MHz
Heekyung Sung - One of the best experts on this subject based on the ideXlab platform.
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Fabrication of a TFF-Attached WDM-Type Triplex Transceiver Module Using Silica PLC Hybrid Integration Technology
Journal of Lightwave Technology, 2006Co-Authors: Yoon Jung Park, Jang Uk Shin, Hyunsung Ko, Yongsoon Baek, Chul Hee Park, Yoon Koo Kwon, Wol Yon Hwang, Sang Ho Park, Kwang-ryong Oh, Heekyung SungAbstract:An Optical triplex transceiver (TRx) module, which consists of thin-film filter (TFF)-attached wavelength-division multiplexer (WDM) and photodiode (PD) carriers, has been fabricated using a silica planar lightwave circuit (PLC) hybrid integration technology. Two types of TFFs were attached to a diced sidewall of a silica-terraced PLC platform to realize the TFF-attached WDM. The PD carriers with a 45deg mirror, on which receiving surface-illuminated PDs were bonded, were assembled with the PLC platform to form receiver (Rx) parts. As the main performances of the packaged TRx module, a very clear transmitter (Tx) eye pattern and minimum Rx sensitivity of -25.7 dBm were obtained under a 1.25-Gb/s Tx-Rx operation for digital applications. For an analog Rx application, a module responsivity of about 0.8 A/W was achieved, and a second-order interModulation distortion value of less than -70 dBc at an Optical Modulation Index of 40% was obtained under a two-tone test of 400 and 450 MHz
Sang Ho Park - One of the best experts on this subject based on the ideXlab platform.
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Fabrication of a TFF-attached WDM-type triplex transceiver module using silica PLC hybrid integration technology
Journal of Lightwave Technology, 2006Co-Authors: Young Tak Han, Jang Uk Shin, Chul Wook Lee, Hyunsung Ko, Yongsoon Baek, Chul Hee Park, Yoon Koo Kwon, Yoon Jung Park, Sang Ho Park, Wol Yon HwangAbstract:An Optical triplex transceiver (TRx) module, which consists of thin-film filter (TFF)-attached wavelength-division multiplexer (WDM) and photodiode (PD) carriers, has been fabricated using a silica planar lightwave circuit (PLC) hybrid integration technology. Two types of TFFs were attached to a diced sidewall of a silica-terraced PLC platform to realize the TFF-attached WDM. The PD carriers with a 45° mirror, on which receiving surface-illuminated PDs were bonded, were assembled with the PLC platform to form receiver (Rx) parts. As the main performances of the packaged TRx module, a very clear transmitter (Tx) eye pattern and minimum Rx sensitivity of -25.7 dBm were obtained under a 1.25-Gb/s Tx–Rx operation for digital applications. For an analog Rx application, a module responsivity of about 0.8 A/W was achieved, and a second-order interModulation distortion value of less than -70 dBc at an Optical Modulation Index of 40% was obtained under a two-tone test of 400 and 450 MHz.
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Fabrication of a TFF-Attached WDM-Type Triplex Transceiver Module Using Silica PLC Hybrid Integration Technology
Journal of Lightwave Technology, 2006Co-Authors: Yoon Jung Park, Jang Uk Shin, Hyunsung Ko, Yongsoon Baek, Chul Hee Park, Yoon Koo Kwon, Wol Yon Hwang, Sang Ho Park, Kwang-ryong Oh, Heekyung SungAbstract:An Optical triplex transceiver (TRx) module, which consists of thin-film filter (TFF)-attached wavelength-division multiplexer (WDM) and photodiode (PD) carriers, has been fabricated using a silica planar lightwave circuit (PLC) hybrid integration technology. Two types of TFFs were attached to a diced sidewall of a silica-terraced PLC platform to realize the TFF-attached WDM. The PD carriers with a 45deg mirror, on which receiving surface-illuminated PDs were bonded, were assembled with the PLC platform to form receiver (Rx) parts. As the main performances of the packaged TRx module, a very clear transmitter (Tx) eye pattern and minimum Rx sensitivity of -25.7 dBm were obtained under a 1.25-Gb/s Tx-Rx operation for digital applications. For an analog Rx application, a module responsivity of about 0.8 A/W was achieved, and a second-order interModulation distortion value of less than -70 dBc at an Optical Modulation Index of 40% was obtained under a two-tone test of 400 and 450 MHz
Hyunsung Ko - One of the best experts on this subject based on the ideXlab platform.
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Fabrication of a TFF-attached WDM-type triplex transceiver module using silica PLC hybrid integration technology
Journal of Lightwave Technology, 2006Co-Authors: Young Tak Han, Jang Uk Shin, Chul Wook Lee, Hyunsung Ko, Yongsoon Baek, Chul Hee Park, Yoon Koo Kwon, Yoon Jung Park, Sang Ho Park, Wol Yon HwangAbstract:An Optical triplex transceiver (TRx) module, which consists of thin-film filter (TFF)-attached wavelength-division multiplexer (WDM) and photodiode (PD) carriers, has been fabricated using a silica planar lightwave circuit (PLC) hybrid integration technology. Two types of TFFs were attached to a diced sidewall of a silica-terraced PLC platform to realize the TFF-attached WDM. The PD carriers with a 45° mirror, on which receiving surface-illuminated PDs were bonded, were assembled with the PLC platform to form receiver (Rx) parts. As the main performances of the packaged TRx module, a very clear transmitter (Tx) eye pattern and minimum Rx sensitivity of -25.7 dBm were obtained under a 1.25-Gb/s Tx–Rx operation for digital applications. For an analog Rx application, a module responsivity of about 0.8 A/W was achieved, and a second-order interModulation distortion value of less than -70 dBc at an Optical Modulation Index of 40% was obtained under a two-tone test of 400 and 450 MHz.
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Fabrication of a TFF-Attached WDM-Type Triplex Transceiver Module Using Silica PLC Hybrid Integration Technology
Journal of Lightwave Technology, 2006Co-Authors: Yoon Jung Park, Jang Uk Shin, Hyunsung Ko, Yongsoon Baek, Chul Hee Park, Yoon Koo Kwon, Wol Yon Hwang, Sang Ho Park, Kwang-ryong Oh, Heekyung SungAbstract:An Optical triplex transceiver (TRx) module, which consists of thin-film filter (TFF)-attached wavelength-division multiplexer (WDM) and photodiode (PD) carriers, has been fabricated using a silica planar lightwave circuit (PLC) hybrid integration technology. Two types of TFFs were attached to a diced sidewall of a silica-terraced PLC platform to realize the TFF-attached WDM. The PD carriers with a 45deg mirror, on which receiving surface-illuminated PDs were bonded, were assembled with the PLC platform to form receiver (Rx) parts. As the main performances of the packaged TRx module, a very clear transmitter (Tx) eye pattern and minimum Rx sensitivity of -25.7 dBm were obtained under a 1.25-Gb/s Tx-Rx operation for digital applications. For an analog Rx application, a module responsivity of about 0.8 A/W was achieved, and a second-order interModulation distortion value of less than -70 dBc at an Optical Modulation Index of 40% was obtained under a two-tone test of 400 and 450 MHz