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品牌 | 梓冠 |
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单片集成 6 比特光延时芯片
Single-chip Integrated 6 Bit Optical Delay Chip
〖简介Introduction〗
梓冠光电的单片集成 6 比特光延时芯片是基于厚膜 SOI 硅光子技术、将硅基光开关和硅波导延时路单片集成的自主研发产品。集成的硅基光开关使其延时态切换速度达到 1 μs 以下,硅波导延时使其延时精度提升 1 个量级,厚膜 SOI 硅光技术使其光损耗达到工程应用水平,单片集成的芯片解决了传统光延时器的体积大、可靠性差问题,是可全方面满足光控相控阵应用要求的新一代产品。
The single-chip integrated 6-bit optical delay chip of Ziguan Photonics is an independently developed product based on thick film SOI silicon photonics technology, which integrates silicon based optical switches and silicon waveguide delay circuits on a single chip. The integrated silicon based optical switch achieves the delay state switching speed less than 1 μs, the delay of silicon waveguide improves its delay accuracy by one order of magnitude, and the thick film SOI silicon optical technology enables the optical loss to reach the level of engineering application. The single chip integrated chip solves the problems of large volume and poor reliability of traditional optical delay devices, and is a new generation product that can fully meet the application requirements of optically contronlled phased array.
特性Features〗
n 高速切换
High speed switching
n 高延时精度
High delay accuracy
n 超小尺寸
Ultra-small size
n 超宽带工作
Ultra-broadband operation
n 全固态波导芯片可靠性强
All solid-state waveguide chip of high
〖应用Applications〗
n 光控相控阵雷达系统、电子对抗系统
Optically controlled phased array radar system、Electronic warfare system(EWS)
性能指标 Parameter | 单位 Unit | 典型值 Typical value | 备注 Notes |
延时位数 Delay bits | / | 6 | 可定制 Can be customized |
最小延时步进 Min.step-delay | ps | 59.2 | 可定制 Can be customized |
可调节最大延时量 Adjustable max.delay | ps | 3729.6 | |
延时偏差 Delay deviation | ps | ≤±0.5 | ≤±1@max |
延时切换时间 Delay switching time | µs | ≤1 | |
插入损耗 Insertion loss | dB | 14 | |
各延时态损耗差异 Delay state loss difference | dB | ±0.5 | |
波损耗 Return loss | dB | 45 | |
芯片尺寸 Chip dimension | mm | 22×10×0.7 |
〖2×2 光开关(图 1)的“交叉"、“直通"传输状态定义如下〗
〖The "Cross" and "Bar" transmission states of the 2×2 optical switch (Figure 1) is defined as follows〗
“交叉"状态(Cross 态):从输入 A 端输入,输出端 D 有光信号输出,输出端 C 没有光信号输出时,即为"交叉“态(A→D);类似定义,从输入端 B 输入,输出端 C 光信号输出,输出端 D 没有光信号输出,也为"交叉“态(B→C)。
“直通"态(bar 态):从输入端 A 处输入,输出端 C 有输出光信号,输出端 D 没有光信号输出时,即为"直通“态(A→C);类似定义,从输入端 B 输入,输出端 D 有光信号输出,输出端 C 没有光信号输出,也为“直通"态(B→àD。
序号No. | 名称Name | 描述 Description | 序号 No. | 名称 ame | 描述 Description |
1 | DMY | dummy | 19 | CH5+C | 开关 5 正极 cross 态 |
2 | DMY | dummy | 20 | CH5- | 开关 5 负极 |
3 | DMY | dummy | 21 | CH5+B | 开关 5 正极 bar 态 |
4 | DMY | dummy | 22 | CH6+C | 开关 6 正极 cross 态 |
5 | DMY | dummy | 23 | CH6- | 开关 6 负极 |
6 | DMY | dummy | 24 | CH6+B | 开关 6 正极 bar 态 |
7 | CH4+B | 开关 1 正极 bar 态 | 25 | CH7+C | 开关 7 正极 cross 态 |
8 | CH4- | 开关 1 负极 | 26 | CH7- | 开关 7 负极 |
9 | CH4+C | 开关 1 正极 cross 态 | 27 | CH7+B | 开关 7 正极 bar 态 |
10 | CH3+B | 开关 2 正极 bar 态 | 28 | CH8+ | To be defined |
11 | CH3- | 开关 2 负极 | 29 | CH8- | To be defined |
12 | CH3+C | 开关 2 正极 cross 态 | 30 | CH8+ | To be defined |
13 | CH2+B | 开关 3 正极 bar 态 | 31 | DMY | dummy |
14 | CH2- | 开关 3 负极 | 32 | DMY | dummy |
15 | CH2+C | 开关 3 正极 cross 态 | 33 | DMY | dummy |
16 | CH1+B | 开关 4 正极 bar 态 | 34 | DMY | dummy |
17 | CH1- | 开关 4 负极 | 35 | DMY | dummy |
18 | CH1+C | 开关 4 正极 cross 态 | 36 | DMY | dummy |
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