- frequency division; frequency demultiplication; dividing frequency; scaling-down; frequency splitting
- 分频比 divide down ratio; division ratio; frequency dividing ratio
- 分频的 crossover
- 分频点 cross freguency
- 分频管 modulation divider tube; modulation dividertube
- 分频级 frequency divider stage; frequency division step
- 分频器 counter down; counter-down; counting-down circuit; fdct frequency divider; frequecny demultiplier; frequency demultiplier; frequency divider
- 分频制 frequency division system
- 预分频 gptmtnpr; prescale
- 主动分频,电子分频,有源分频 active cro over; active crossover
- 被动,被动分频,功率分频 passive
- 有源分频,电子分频 active crossover
- 百分频率 percentage frequency
- 参看“分频频率” crossover frequency
- 参考分频器 parametric frequency divider
- 参量分频器 parametric frequency divider
- 场分频器 field divider
- 成分频率 component frequency
- 带预分频器 separate prescale
- 电子分频 active crossover
- 电子分频器 crossover network=crossover
- 动态分频器 dynamic divider
- 多工分频 frequency-division multiplex
- 二分频音箱 two-way speaker
- 反馈分频器 feedback divider; feedback frequency demultiplier
- 分票区/点票区 sorting/counting zone
- 分票区 sorting/counting zone
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- N is the desired noninteger frequency divider .
N为所要求的非整数分频值。 - It was used as a frequency divider and no numbers are decoded from it .
它被用作无解码输出的分频器。 - Performance analysis of a digital divider
一种数字分频器的设计及性能分析 - N is the desired noninteger frequency divider
N为所要求的非整数分频值。 - 3 units wide frequency range and with drive electronic sound technology
3寸单元,带分频器 - With drive electronic and sound technology , tower speaker 2 inch
高光箱体, 2寸单元,带分频器 - Used in speaker dividing network circuits
适用于音频网络分频电路。 - Analysis of color separation grating of oblique incident wave
光束斜入射的分频光栅衍射行为研究 - Rigorous coupled - wave analysis of frequency separation grating used for icf
的分频光栅的耦合波分析 - Separating filters of coupling devices for power line carrier systems
电力线载波结合设备分频滤波器
- 分频的日语:ぶんかつしゅうはすう ぶんしゅう フリヶンシーディビジョン わりだし ぶんしゅうすう ディバイディング しゅうはすうていこう デバイディング しゅうはすうぶんかつ
- 分频的韩语:[명사]〈물리〉 주파수 체강(遞降). 분주(分周).
- 分频什么意思:
分频
- 拼音:fēn pín
- 注音:ㄈㄣ ㄆㄧㄣˊ
词语解释
将较高频率变为其整数分之一低频率的方法。早期采用混频法,后又采用张弛振荡与被分频率同步法,还可用锁相法。在高频技术中,可用隧道二极管分频。常用二进制触发器分频法,利用反馈可实现任意分数的分频。分频所得信号可保留原信号的稳定度。