Q Exactive™ Plus Hybrid Quadrupole-Orbitrap™ Mass Spectrometer
Q Exactive™ Plus Hybrid Quadrupole-Orbitrap™ Mass Spectrometer
Thermo Scientific™

Q Exactive™ Plus Hybrid Quadrupole-Orbitrap™ Mass Spectrometer

하나의 질량 분광계를 사용하여 한 번의 분석으로 자신 있고 일상적으로 특성화, 정량 및 확인하십시오.
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카탈로그 번호스캔 속도질량 범위
IQLAAEGAAPFALGMBDKUp to 12 Hzm/z 50 &sim, 6000
카탈로그 번호 IQLAAEGAAPFALGMBDK
제품 가격(KRW)
-
견적 요청하기
스캔 속도:
Up to 12 Hz
질량 범위:
m/z 50 &sim, 6000
Quanfirmation™을 한 단계 높여 보십시오. Thermo Scientific™ Q Exactive™ Hybrid Quadrupole-Orbitrap™ Mass Spectrometer는 Quanfirmation(정량/확인)의 혁신적 개념을 도입했습니다. Q Exactive™ Plus Hybrid Quadrupole-Orbitrap™ Mass Spectrometer는 Quanfirmation 성능을 개선하고 응용 분야를 신뢰성 있는 DMPK 정성/정량 스크리닝 연구에서 변형 없는 단클론 항체의 특성화로 향상시키는 새로운 옵션을 추가하여 Quanfirmation을 한 단계 끌어올렸습니다. 

탁월한 Quanfirmation

  • 고급 4중극자 기술(AQT)이 전구체 선택 및 투과를 개선하여 복잡한 기질에서 저 존재비 분석물질을 보다 정밀하게 정량 가능
  • 정교한 데이터 독립적 획득(DIA)과 병렬 반응 모니터링(PRM)이 재현 가능한 정량화를 완벽한 정성적 신뢰도와 함께 제공
  • 첨단 활성 빔 가이드(AABG)가 노이즈를 줄여주고 유지보수 주기를 연장

향상된 변형 없는 단백질 분석

  • 변형 없는 단백질 모드 옵션은 뛰어난 대형 분자 트래핑을 제공하여 변형 없는 단백질 및 단백질 착물의 분석을 개선
  • 향상된 분해능 옵션은 톱다운 단백질학 및 지질학에서 ID 신뢰성을 최대화합니다.

신뢰도 높은 결과

  • HR/AM 및 전체 스캔 기능이 언제나 모든 시료 데이터를 포착하여 재실행 없이도 후향적 데이터 분석이 가능
  • 복합 매트릭스에서 시료 분석 시 최대 140,000 FWHM까지 분해능을 높여 동중 원소 방해를 제거하므로 신뢰도 높은 결과
  • AIF(전이온 단편화) 주사 모드에서 질량 정확도가 1ppm 이상이면 화합물을 정확하게 식별 가능
  • 12Hz에서의 빠른 스캐닝과 UHPLC 응용 분야에 알맞는 스펙트럼 다중검출
  • 신속한 극성 전환으로 얻을 수 있는 최대치의 정보
  • AIF와 복수의 분해 기법(in-source CID 및 HCD)이 화합물 식별을 보조
  • 6,000 m/z 까지의 질량 범위가 단일 하전된 소형 분자 및 생체 분자의 검출을 개선
  • 자기강도 주사간 동적 범위가 10,000배 이상이고, 펨토그램 수준으로 감도가 높아서 동일한 주사 내에서 미량 수준 및 높은 존재비 화합물에 대해 검출할 수 있습니다.

연구용으로만 사용 가능합니다. 진단용으로는 사용할 수 없습니다.

사양
동적 범위>5000:1
질량 정확도내부 보정: <1ppm RMS, 외부 보정: <3ppm RMS
극성 전환분해능 35,000에서 전체 주기 1회 <1초(전체 스캔 양극 모드 1회 + 전체 스캔 음극 모드 1회)
스캔 속도Up to 12 Hz
민감도모든 MS: 500fg 부스피론 on-column S/N 100:1 SIM: 30fg 부스피론 on-column S/N 100:1
질량 범위m/z 50 &sim, 6000
Max. ResolutionUp to 240,000 at m/z 200
유형Quadrupole-Orbitrap LC-MS
Unit SizeEach

자주 묻는 질문(FAQ)

Why is the turbomolecular pump not operating when using Orbitrap Exactive or Q Exactive mass spectrometry instruments?

A turbomolecular pump may be switched off because of one of the following reasons:

- Turbomolecular pump is blocked
- Failure of fans in turbomolecular pump
Each of the above reasons might lead to an overheating of the pump. When overheated, a turbomolecular pump switches off automatically to prevent its destruction. This overheating protection prevents the outbreak of a fire and minimizes the risk of destructing the pump.

If the Exactive Series mass spectrometer does not work as expected, use the Tune software for error diagnosis:
- The instrument status window displays real-time status information for the instrument components. All parameters are arranged in a tree view. In addition to showing numerical values of parameters (for example, pump speeds or component temperatures), the instrument status window uses icons to indicate the statuses of system components.
- The messages window displays real-time information about the statuses of the instrument, the control service, or other programs. It might display additional information.

In case of an overheated turbomolecular pump, shut down the mass spectrometer as described on page 6-8 of the manual (https://assets.thermofisher.com/TFS-Assets/CMD/manuals/man-bre0012255-exactive-series-manbre0012255-en.pdf). To prevent permanent damage to components of the Exactive Series mass spectrometer, Thermo Fisher Scientific recommends that you call a Thermo Fisher Scientific field service engineer.

Find additional tips, troubleshooting help, and resources within our Mass Spectrometry Support Center.

Why is the temperature of UHV chamber higher than expected when using Orbitrap Exactive or Q Exactive mass spectrometry instruments?

The UHV chamber heating control may have failed. During general operation of the mass spectrometer, the temperature of the UHV chamber is not regulated. Only during a system bakeout, electric power is supplied to the heating elements of the UHV chamber. The heating always operates at maximum power. Thus, failure of the heating control does not lead to a dangerous overheating of the mass spectrometer. If the Exactive Series mass spectrometer does not work as expected, use the Tune software for error diagnosis:

- The messages window displays real-time information about the statuses of the instrument, the control service, or other programs. If the heating was terminated, the window displays a corresponding error message.

In case of a failure of the UHV chamber heating control, shut down the mass spectrometer as described on page 6-8 of the manual (https://assets.thermofisher.com/TFS-Assets/CMD/manuals/man-bre0012255-exactive-series-manbre0012255-en.pdf). To prevent permanent damage to components of the Exactive Series mass spectrometer, Thermo Fisher Scientific recommends that you call a Thermo Fisher Scientific field service engineer.

Find additional tips, troubleshooting help, and resources within our Mass Spectrometry Support Center.

When using Orbitrap Exactive or Q Exactive mass spectrometry instruments, why does the tune software show bad vacuum?

Here are possible causes and solutions:
-System was vented because of a main power failure: A main power failure has the same consequence as switching off with the main power circuit breaker switch. If the power is available again, the system is started up automatically: the pumps are switched on and the vacuum is created. If the system has been vented during the mains failure, it is necessary to bake out the system to obtain the operating vacuum. See “Baking Out the System” on page 8-12 of the manual. If the log file of the data system shows a reboot of the system and the pressure reading in the Tune software shows a bad vacuum, this indicates that the system was vented. In case of frequent but short power failures, we recommend that you install an uninterruptible power supply (UPS). If main power failures occur frequently while the system is not attended (for example, in the night), we recommend that you install a power fail detector. - Vacuum leak: Refer to pages 7-5 and 8-12 in the Operator's Manual (https://assets.thermofisher.com/TFS-Assets/CMD/manuals/man-bre0012255-exactive-series-manbre0012255-en.pdf).

Find additional tips, troubleshooting help, and resources within our Mass Spectrometry Support Center.

Why does the metal needle insert in the heated ESI probe frequently clog when using Orbitrap Exactive or Q Exactive mass spectrometry instruments?

Clogging of the H-ESI spray needle is generally caused by the presence of non-volatile components in the injected samples. If the non-volatile components of the samples are not removed during sample preparation, they will be injected onto the column where they will gradually bleed off over time into the detector. They may also be directly introduced by the use of non-volatile buffers in the mobile phase. Non volatile buffers should be avoided in LC-MS analysis because the spray needle will clog frequently and in addition the MS optics will quickly become contaminated.

Clogging issues may be worsened when using a divert valve or bypass valve. This is because when the valve switches to waste the LC flow to the needle is stopped, causing the residual liquid in the hot needle to quickly evaporate. This in turn causes the non-volatile components to deposit on the inner wall of the tubing which will eventually clog it.

When using a divert or bypass valve, the issue may be fully resolved by adding another HPLC pump to supply make-up flow through the needle when the column eluent is bypassed. The second pump is connected to the divert valve or bypass valve so that when the eluent is diverted to waste, clean solvent flows through the needle to help keep it clean. Alternatively, sample preparation procedures should be modified to reduce the amount of non-volatile components in each sample injection.

Find additional tips, troubleshooting help, and resources within our Mass Spectrometry Support Center.

What is High Energy Collision Dissociation (HCD) as it relates to Orbitrap Exactive or Q Exactive mass spectrometry instruments?

The HCD Cell consists of a straight multipole (octapole) device mounted within a metal tube. The metal tube is in turn connected to the C-Trap in direct line of sight.

The voltage offset between the C-Trap and the HCD Cell is used to accelerate the precursor ions into the gas filled cell. Inside the HCD cell, ions collide with the neutral gas causing rotation, stretching and ultimately cleaving bonds to create fragment ions and neutral species, which are subsequently removed by the vacuum system.

The generated fragment or product ions are then pushed back toward the C-Trap and focused before being pushed toward the Orbitrap analyzer.

Find additional tips, troubleshooting help, and resources within our Mass Spectrometry Support Center.