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AOTF409
MOSFET P-CH 60V 5.4A/24A TO220FL
- メーカー
- Mfr。パート #AOTF409
- パッケージ
- データシート AOTF409 DataSheet
- 在庫中6169
100% オリジナル &新しい
出荷の準備ができている24時間
365日の保証
RFQおよびもっと割引を得る
仕様
| Supplier | Alpha & Omega Semiconductor Inc. |
| Package | Tube |
| ProductStatus | Active |
| FETType | P-Channel |
| Technology | MOSFET (Metal Oxide) |
| DraintoSourceVoltage(Vdss) | 60 V |
| Current-ContinuousDrain(Id)@25°C | 5.4A (Ta), 24A (Tc) |
| DriveVoltage(MaxRdsOnMinRdsOn) | 4.5V, 10V |
| RdsOn(Max)@IdVgs | 40mOhm @ 20A, 10V |
| Vgs(th)(Max)@Id | 2.4V @ 250µA |
| GateCharge(Qg)(Max)@Vgs | 52 nC @ 10 V |
| Vgs(Max) | ±20V |
| InputCapacitance(Ciss)(Max)@Vds | 2953 pF @ 30 V |
| PowerDissipation(Max) | 2.16W (Ta), 43W (Tc) |
| OperatingTemperature | -55°C ~ 175°C (TJ) |
| MountingType | Through Hole |
| SupplierDevicePackage | TO-220FL |
概要
Description
If AOTF409 refers to Acousto-Optic Tunable Filters (AOTF), an introductory course would cover:
- Principles: acousto-optic interaction, Bragg diffraction, and how RF drive tunes the transmitted wavelength; materials (e.g., TeO2, LiNbO3) and polarization effects.
- Device basics: diffraction efficiency, insertion loss, angular deflection, RF frequency vs. wavelength, response time and thermal effects.
- System design: optical layout, RF drive circuitry, synchronization with detectors, calibration and alignment.
- Performance metrics: spectral resolution/bandwidth, crosstalk, dynamic range, noise, and calibration procedures.
- Applications: hyperspectral imaging, spectroscopy, remote sensing, fluorescence, and LIDAR.
- Labs/assignments: modeling (e.g., Jones calculus or transfer functions), measuring spectral response, simulating AOTF behavior, basic hands-on setup (where available).
- Prereqs and outcomes: optics, signals/systems; outcomes include explaining the principle, predicting performance, selecting an AOTF for a task, and integrating it into a system.
If you meant something else by AOTF or a different course code, please share more context.
- Principles: acousto-optic interaction, Bragg diffraction, and how RF drive tunes the transmitted wavelength; materials (e.g., TeO2, LiNbO3) and polarization effects.
- Device basics: diffraction efficiency, insertion loss, angular deflection, RF frequency vs. wavelength, response time and thermal effects.
- System design: optical layout, RF drive circuitry, synchronization with detectors, calibration and alignment.
- Performance metrics: spectral resolution/bandwidth, crosstalk, dynamic range, noise, and calibration procedures.
- Applications: hyperspectral imaging, spectroscopy, remote sensing, fluorescence, and LIDAR.
- Labs/assignments: modeling (e.g., Jones calculus or transfer functions), measuring spectral response, simulating AOTF behavior, basic hands-on setup (where available).
- Prereqs and outcomes: optics, signals/systems; outcomes include explaining the principle, predicting performance, selecting an AOTF for a task, and integrating it into a system.
If you meant something else by AOTF or a different course code, please share more context.
Package
There isn’t a universal “AOTF409” package—the package depends on the vendor. Please provide the manufacturer or datasheet. Generally AOTF devices use custom opto-mechanical housings or small metal/CAN-like packages per supplier.
Application
AOTF409 is an acousto-optic tunable filter. Common applications include:
- Imaging and hyperspectral spectrometers for material ID, agriculture, and食品 quality control.
- Remote sensing and environmental monitoring.
- Biomedical imaging and spectroscopy (fluorescence, Raman, tissue diagnostics).
- Laser systems for rapid wavelength tuning and channel selection.
- Optical communications (tunable narrowband filtering for DWDM).
- Lidar/rangefinding with selective-wavelength operation.
- Imaging and hyperspectral spectrometers for material ID, agriculture, and食品 quality control.
- Remote sensing and environmental monitoring.
- Biomedical imaging and spectroscopy (fluorescence, Raman, tissue diagnostics).
- Laser systems for rapid wavelength tuning and channel selection.
- Optical communications (tunable narrowband filtering for DWDM).
- Lidar/rangefinding with selective-wavelength operation.
出荷
出荷方法私たち
DHL、FedEx、TNT、UPS、またはあなたの選択の他の運送業者を通じてグローバルな出荷サービスを提供します。
出荷料参照(DHL/FedEx):
DHL の: 配送費は25ドル〜45ドル(0.5kg)の範囲で、推定配送時間は2〜5営業日です。
フェデックス: 配送費は25ドル〜40ドル(0.5kg)の範囲で、推定配送時間は3〜7営業日。
UPS の: 配送費は25ドル〜45ドル(0.5kg)の範囲で、推定配送時間は3〜7営業日。
TNT社: 配送費は25ドル〜65ドル(0.5kg)の範囲で、推定配送時間は3〜7営業日。
EMS: 配送料金は30〜50ドル(0.5kg)の範囲で、推定配送時間は7〜15営業日です。
登録航空郵便: 配送費は2〜4ドル(0.1kg)で、推定配送時間は5〜20営業日です。
支払い
Payment Methods
支払い期間は100%前払いです。
現在、下記の支払い方法のみを受け入れています。:
1. ペイパル
2. クレジット・デビットカード
3. ワイヤー 転送
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