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化工儀器網(wǎng)>產(chǎn)品展廳>常用儀表>其它常用儀表>其它常用儀表> 任意尾脈沖發(fā)生器Model DB-2

任意尾脈沖發(fā)生器Model DB-2

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  • 公司名稱(chēng) 北京燕京電子有限公司
  • 品牌
  • 型號(hào)
  • 產(chǎn)地 美國(guó)
  • 廠商性質(zhì) 經(jīng)銷(xiāo)商
  • 更新時(shí)間 2017/9/12 17:53:40
  • 訪問(wèn)次數(shù) 619

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北京燕京電子有限公司成立于1988年,是北京電子控股有限責(zé)任公司直屬企業(yè),是一家集成供應(yīng)商和專(zhuān)業(yè)設(shè)備及儀器的服務(wù)商。公司目前經(jīng)營(yíng)規(guī)模超億元,主 營(yíng)業(yè)務(wù)為向國(guó)內(nèi)外科研院所、大型設(shè)備制造業(yè)和金融業(yè)提供成套集成供應(yīng)及專(zhuān)業(yè)設(shè)備儀器的維護(hù)、運(yùn)行等專(zhuān)業(yè)化的系統(tǒng)解決方案和服務(wù)。

在制造行業(yè),燕京公司在世界各地?fù)碛斜姸嗟?代理商和合作伙伴,經(jīng)過(guò)*合作交流的實(shí)踐建立了廣泛的市場(chǎng)營(yíng)銷(xiāo)網(wǎng)絡(luò)。同時(shí)與國(guó)內(nèi)各相關(guān)領(lǐng)域的重要 廠商也建立有良好的合作關(guān)系,為大型設(shè)備制造業(yè)的客戶(hù)提供成套原材料、零部件及電子元器件。

在儀器服務(wù)方面,燕京公司是眾多儀器設(shè)備廠商在中國(guó)的重要合作伙伴。公司致力于從事工業(yè)電子、教學(xué)科研、通信技術(shù)以及電力石化等領(lǐng)域的產(chǎn)品 銷(xiāo)售和系統(tǒng)集成,能夠?yàn)橛脩?hù)提供各種良好的針對(duì)行業(yè)的、完整的測(cè)試應(yīng)用解決方案。
 

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applications
the primary use of this pulse generator is to simulate actual operating conditions without requiring a live source and detector combination. such parameters as frequency response, linearity, and discrimination levels may easily be measured without the inconvenience of dim oscilloscope display or long accumulation times. proper operation of baseline restorer circuits may be quickly verified. scalers and ratemeters may be checked for satisfactory pulse recognition under random pulse conditions.

the negligible amplitude shift with frequency of the pulser makes the standard frequency test using a live source and a low rate precision pulse generator unnecessary.

although most test applications will find the pulser connected to the test input of a charge sensitive preamplifier, it is possible to simulate the preamp itself with the pulse generator. the pulser is connected directly to the main amplifier and the preamp decay time constant is matched by proper se-lection of the pulser fall time. set up of a system containing an inaccessible preamp can then be accomplished with ease.

for accurate simulation of detector pulse shapes, the rise time control should be adjusted to match 2.2 times the detector decay time constant. for example, if a pulse shape analyzer working with csi-nai phoswich is to be tested, the pulse generator rise time should be set to 0.5 μsec rise time for the nai signal, and 2 μsec for the csi signal. intermediate signals are best obtained by mixing the outputs from two synchronized generators, 2 μsec rise time. by varying the amplitude ratio of the two generators, intermediate values of rise time are generated.

solid state and plastic detectors have decay constants far shorter than the adjustment range of this generator. however, the shaping time constants used in virtually all systems are greater than the 100 nsec minimum rise time. the ballistic deficit formula predicts the reduction in amplitude, b. d., for a shaping system containing identical time constants for all shaping.

b.d. = (4)

where n = the number of integrations with time, constant =rc, and tr is the rise time of the preamp output. the preamp output rise time may be calculated from:

(5)

where tp is the pulser rise time and ti is the rise time of the preamp in response to a unit step of zero rise time. the ballistic deficit for a preamplifier with a ti of 10 nsec used with a shaping amplifier6 with 1 μsec time constants would be only 0.02% when used with this pulse generator. therefore, the ballistic deficit caused by this pulser may be ignored for most applications.

the external reference allows remote programming of the amplitude of the pulser, and the external trigger permits control of the output pulse rate. the latter provision is especially convenient if the average random rate needs to be controlled and an external random clock is unavailable. by placing the pulser in the random mode, a periodic waveform at the external trigger input will control the average random rate.

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