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Distributor Fluke Indonesia
Distributor Fluke
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Fluke Ti480 PRO Infrared Camera
Fluke Ti480 PRO Infrared Camera
Increased sensitivity to visualize differences
- Capture smaller temperature differences with increased thermal sensitivity
It's easier to visualize and diagnose problems
- Images on the screen are getting sharper with better color differences
- Display deviations from standard temperature and communicate concerns to your team using multiple Delta-T markers - select one as a reference point and another to display differences
- Multiple square markers on camera - identify min/max temperature for equipment area or equipment array
- Determine heat differences more easily with the new palette and wider array of yellows and greens on screen
Fluke Ti401 PRO Thermal Camera
Fluke Ti401 PRO Thermal Camera
Perform thermal imaging inspections with more confidence and faster results than ever before. With a resolution of 640x480, the Fluke Ti401 PRO offers the toughness and convenience you've come to expect from Fluke with sharp, clear images and more precise temperature measurement. The popular pistol-grip design allows you to hold it with one hand. Never lose sight of the 3.5-inch (landscape) LCD screen. Transmit infrared data and operate the camera remotely with Fluke Connect Desktop software.
Fluke 1777  ThreePhase Power Quality Analyzer
Fluke 1777 - Three-Phase Power Quality Analyzer
Automatic measurements. More flexibility. Better power quality troubleshooting.

Fluke 1770 Series Three-Phase Power Quality Analyzers eliminate the complexities of power quality logging, troubleshooting, and analysis. Engineered to be the faster, easier way to perform power quality studies, the 1770 Series offers automatic measurements, a straightforward user interface and setup, best-in-class specifications, and a simplified reporting platform. The instrument can also be powered directly from the measurement circuit, eliminating the need to find a power outlet or use a lengthy extension cord.

With the 1770 Series you’ll never miss a critical power quality event—from fast transients up to 8 kV, harmonics up to 30 kHz, dips and swells, as well as the voltage, current, and power measurements that enable you to characterize your electrical system.

Automatic measurement capture

Whether you’re performing a quick system check or a detailed power quality study, consistent data is key. The Fluke 1770 Series offers a unique automatic measurement capture system that helps ensure you’re collecting the right data every time, while still giving you the flexibility to select and adjust specific parameters as needed. More than 500 power quality parameters are captured by default and the guided setup makes it easy to select the right parameters for the system you’re working on. Logged data is instantly viewable, downloadable, and shareable with Fluke Energy Analyze Plus software so you never need to wait to finish a session before reviewing results or analyzing data.

Ultimate measurement confidence

The Fluke 1770 Series are 2-in-1 devices that combine the troubleshooting functionality of a power quality meter with the robust analysis and logging capabilities of a standalone power quality analyzer—in a single, easy-to-use, handheld device.

The ‘PQ Meter’ function gives you immediate access to live onscreen data in the field so you can quickly identify potential problems while troubleshooting. The detailed ‘PQ Logging and Analysis’ function eliminates the complexity of performing power quality studies by guiding you through the setup process ensuring you’re capturing the right data every time. Couple these measurement modes with a unique measurement connection autocorrect function and you can be confident that you never need to worry about going back for a second measurement—even if you were unsure about what to look for when you started.

Powerful analysis software with easy-to-create reports

Fluke 1770 Series Power Quality Analyzers come standard with the powerful Fluke Energy Analyze Plus software, designed to eliminate the hassles found with other multi-purpose application software. Energy Analyze Plus helps you evaluate power quality data right out of the box and without extensive training.

Energy Analyze Plus makes downloading, analyzing, tracking, and reporting power quality and energy data easier than ever. Quickly compare results to historical values, benchmark against industry norms, compare measured data to local conditions, and create a more complete picture of what’s occurring across your facility, even as the data is still being collected. Energy Analyze Plus offers unified support for the Fluke 1730, 1740, and 1770 Series of Energy Loggers and Power Quality Analyzers.

“In-workshop” and “in-the-field” setup and download through PC application software
Simple data downloads using USB memory stick, WiFi, LTE, wired Ethernet, or USB cable
Analyze every measured detail of energy consumption and power quality state-of-health with automated reporting

One-touch reporting creates standardized reports conforming to standards like EN 50160, IEEE 519, GOST 33073 IEC 61000-2-2, or export data in PQDIF or NeQual compatible format or CSV for use with third-party software

Advanced analysis allows the user to choose any available logged parameter and create a highly customized view of measurements for advanced data correlation

High-speed voltage transient capture

Transients negatively impact otherwise healthy systems every day and their potential to damage your equipment can’t be underestimated. Whether your system is experiencing impulsive or oscillatory transients, the results can be devastating and cause problems ranging from insulation failures to total equipment failures. The Fluke 1775 and Fluke 1777 incorporate advanced transient capture technology to help you clearly identify high-speed voltage transients, so you have the data you need to stop them in their tracks. The Fluke 1775 Power Quality Analyzer has 1MHz sampling capability to capture fast transients, while the Fluke 1777 Power Quality Analyzer has 20MHz sampling capability to capture the fastest transients in high detail.

Compliant to international standards

The Fluke 1770 Series offers the best-in-class accuracy you’ve come to expect from a Fluke Power Quality Analyzer in a future IEC 61000-4-30 Class A edition 3 compliant package. On top of that, the 1770 Series has been engineered to meet the future requirements of Class A edition, for conformance to EN 50160 and IEEE 519, so you’ll be prepared to tackle tomorrow’s measurement requirements, today.
Fluke 810 Vibration Tester
Fluke 810 Vibration Tester
• On-board identification and location of the most common mechanical faults (bearings, misalignment, unbalance, looseness) focus maintenance efforts on root cause, reducing unplanned downtime
• Overall vibration level allows you to quickly assess overall machine health directly from the diagnosis screen
• Fault severity scale with four severity levels helps you prioritize maintenance work
• Repair recommendations advise technicians on corrective action
• Detailed diagnostic reports and spectral diagrams help confirm data quality, and narrow down the root cause of failures
• On-board context sensitive help provides real-time tips and guidance to new users
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Distributor Fluke Indonesia

PT Narmada Setia merupakan Distributor Fluke Indonesia yang melayani penjualan, servis serta garansi untuk kerusakan pabrik untuk setiap produk Fluke. Kami dapat menjamin keaslian barang untuk setiap produk Fluke yang kami kirimkan ke pelanggan. Adapun produk-produk unggulan dari Fluke adalah sebagai berikut : Digital Multimeter, Thermal Camera, Electrical Tester, Power Quality, Clamp Meter, Portable Osciloscopes, Accessories, Process Tools, Visual IR Thermometer, Insulated Tools, Leak Detection, Laser Distance Meter.
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Distributor Fluke Indonesia

Produk Terbaru

Fluke 9118A Thermocouple Calibration Furnace
Fluke 9118A Thermocouple Calibration Furnace
High performance furnace for thermocouple calibrations to 1200 °C

The Fluke Calibration 9118A Thermocouple Calibration Furnace is a horizontal, open-ended tube furnace with a temperature range of 300 °C to 1200 °C. It is used for comparison calibration of noble and base-metal thermocouples by secondary high-temperature labs and instrument shops in industries such as aerospace, automotive, energy, metals, and plastics. The 9118A is the most accurate, reliable, and flexible furnace in its class, meeting the demanding requirements of high-temperature thermocouple calibration.
Fluke 9150 Thermocouple Furnace
Fluke 9150 Thermocouple Furnace
Low cost thermocouple furnace
• Low-cost thermocouple furnace
• NIST-traceable calibration included
• RS-232 port standard

You told us you weren’t satisfied with the competition’s furnaces for checking industrial thermocouples. You said you wanted something new and more convenient to use—and you wanted it at a lower price than any other furnace available. Well, we’ve got what you asked for, and it’s the Model 9150 Thermocouple Furnace.
Fluke 9011 HighAccuracy DualWell Calibrator
Fluke 9011 High-Accuracy Dual-Well Calibrator
Widest temperature range available in a single dry-well
• Combined range from –30 °C to 670 °C, one unit – two blocks
• Two independent temperature controllers (hot and cold side)
• Stability to ±0.02 °C
• Multi-hole wells for calibrating up to eight probes simultaneously

To give you the widest temperature range available in a dry-well calibrator, we’ve combined two of our most popular units. The 9011 allows temperature probes to be calibrated from –30 °C to 670 °C in a single unit.
Fluke 9101 ZeroPoint DryWell
Fluke 9101 Zero-Point Dry-Well
Ice-point reference without the ice
• Bath-quality stability in a portable ice-point reference
• Easy re-calibration for long-term reliability
• Ready-light frees user’s time and attention
• Solid-state cooling technology

Have you been thinking about buying a zero-point dry-well? Forget those ugly-looking units the competition makes. You can get a great looking and great performing zero-point dry-well from Fluke Calibration.

The 9101 has three test wells for inserting more than one probe at a time. All three wells are stable to ±0.005 °C. One well accommodates changeable inserts for varying probe diameters.
Fluke 9170 9171 9172  9173 Metrology Well Calibrators
Fluke 9170, 9171, 9172, & 9173 Metrology Well Calibrators
Accurate enough for lab use, and rugged and portable enough to take anywhere
• Best-performing industrial heat sources (accuracy, stability, uniformity) in the world
• Immersion depth to 203 mm (8 in)
• Optional ITS-90 reference input reads PRTs to ±0.006 °C
• Temperature range from –45 °C to 700 °C

Every once in a while, a new product comes around that changes the rules. It happened when we introduced handheld dry-wells. It happened when we introduced Micro-Baths. Now we’ve combined bath-level performance with dry-well functionality and legitimate reference thermometry to create Metrology Wells.

With groundbreaking new proprietary electronics from Fluke Calibration's (patents pending), Metrology Wells let you bring lab-quality performance into whatever field environment you might work in. New analog and digital control techniques provide stability as good as ±0.005 °C. And with dual-zone control, axial (or “vertical") uniformity is as good as ±0.02 °C over a 60 mm (2.36 in) zone. (That’s 60 mm!) Such performance doesn’t exist anywhere else outside of fluid baths.

In short, there are six critical components of performance in an industrial heat source (which the European metrology community explains, for example, in the document EA-10/13): calibrated display accuracy, stability, axial (vertical) uniformity, radial (well-to-well) uniformity, impact from loading, and hysteresis. We added a seventh in the form of a legitimate reference thermometer input and created an entirely new product category: Metrology Wells.

(By the way, Metrology Wells are the only products on the market supported by published specifications addressing every performance category in the EA-10/13. Our specs aren’t just hopes or guidelines. They apply to every Metrology Well we sell.)
Fluke 9103 9140 DryWell Calibrators  Dry Block Calibrators
Fluke 9103, 9140 Dry-Well Calibrators & Dry Block Calibrators
Great performance in portable instruments
• Lightweight and very portable
• Accuracy to ±0.25 °C
• RS-232 interface
• Easy to recalibrate

If you’ve been using a dry well calibrator or dry block calibrator for field work, you know there’s a lot more to them than temperature range and stability. Size, weight, speed, convenience, and software are also significant.

A field dry well needs to be portable, flexible, and suitable for high-volume calibrations or certifications. If it's not, you’ll soon forget about the great stuff the sales rep told you and realize what you’ve really bought.

At Fluke Calibration, we use dry well calibrators every day in our manufacturing and calibration work, and we know what makes a dry well easy and productive to use—which is exactly how users describe our series of field dry wells. These dry wells work for you instead of the other way around.
Fluke 9009 Industrial DualBlock Thermometer Calibrator
Fluke 9009 Industrial Dual-Block Thermometer Calibrator
Double your productivity or cut your calibration time in half
• Temperatures from –15 °C to 350 °C in one unit
• Two wells in each block for simultaneous comparison calibrations
• Rugged, lightweight, water-resistant enclosure

You’ve been asking for it and now we’re making it for you. The Model 9009 Industrial Dual-Block Calibrator lets you calibrate at hot and cold temperatures at the same time. Double your productivity or cut your calibration time in half—either way you look at it, your in-field temperature calibrations just got easier.
Fluke 724 Temperature Calibrator
Fluke 724 Temperature Calibrator
Key features
• Powerful, easy-to-use, high-accuracy temperature calibrator
• Test and calibrate temperature sensors and transmitters
• Measures 4 to 20 mA loops and can provide loop power
• Measures RTDs, thermocouples, ohms, and volts
• Source/simulates thermocouples, RTDs, volts, and ohms
Berita Terbaru
Kamera Pencitraan Termal untuk Inspeksi Bangunan dan Rumah
Thermal Imaging
Jika kebocoran panas melalui sistem HVAC tidak terdeteksi dan ditangani, konsumsi energi akan makin boros. Biaya yang ditanggung oleh pemilik rumah dan bisnis pun makin membengkak. Beberapa tahun lalu, Chip Wade, kontraktor profesional menjelaskan satu kiat kepada kami. Ia mengatakan bahwa memeriksa sistem HVAC dengan teknologi pencitraan termal merupakan cara terbaik dan tercepat untuk menunjukkan sumber kebocoran energi HVAC kepada pemilik rumah dan bisnis.

Ada beberapa hal tidak pernah berubah.

Sejak dipublikasikannya video dari Chip, inovasi dalam teknologi pencitraan termal kini mampu menghasilkan citra dan video yang lebih detail. Dalam beberapa kasus pun, inovasi tersebut mampu mendeteksi imbas masalahnya.

Tonton video Chip yang mengajak kita menjelajahi rumah berusia 100 tahun untuk memahami penggunaan pencitraan termal guna mengidentifikasi kebocoran panas secara cepat dan efisien melalui sistem HVAC.



Transkrip:

“Saat melakukan pemeriksaan rumah yang akan dijual atau direnovasi, efisiensi energi adalah salah satu hal yang perlu Anda pertimbangkan. Sudah barang tentu, inilah yang berkutat di benak sang pembayar tagihan energi.

Fluke TiR1 thermal imager adalah alat terbaik untuk memeriksa kebocoran panas di saluran pipa, dinding, dan sekitar ventilasi. Seperti yang kita duga, ada beberapa area di rumah berusia ratusan tahun ini yang perlu diperbaiki.

Pertama, ventilasi. Idealnya, saat menutup ventilasi, Anda tidak ingin ada udara panas keluar dari situ. Coba lihat ventilasi tertutup ini melalui Fluke TiR1. Ventilasi tua ini tidak tertutup rapat sehingga ada kebocoran energi.

Sekarang kita berada di kamar mandi lantai atas. Di sini ada masalah yang sudah menyebar di saluran pipa rumah ini. Jika Anda melihat ventilasi tertutup ini melalui pencitra, tampak panas keluar dari keempat sisinya. Jika melihat di sebelah kanan, panas akan keluar dari atas dan bawah baseboard. Artinya, ada kerusakan sambungan pipa dan insulasinya sangat minim. Ini, kebocoran energi ini bisa membuat tagihan pemilik rumah membengkak.

Mari kita menuju ke basement untuk melihat kondisi saluran pipa.

Nah, kita sudah di basement. Dengan mendongak, bisa dilihat bahwa tidak ada insulasi di saluran pipa ini. Menggunakan Fluke TiR1, Anda bisa melihat dan menjelaskan semuanya kepada klien. Cukup lihat warna oranye cerah itu.

Pemilik rumah ini terus memanaskan suhu basement tanpa sepengetahuannya. Artinya, ruang keluarga tidak mendapatkan panas yang dibutuhkan. Bagi pemilik rumah, ini adalah pemborosan.”
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Proses pengujian baru pada katup kontrol
Katup dibuka dan ditutup secara proporsional, dan tingkat pergerakannya divariasikan tergantung dari sinyal bervariabel antara 4 - 20 mA yang diberikan ke inputnya. Banyak katup memiliki sinyal feedback yang menunjukkan posisi aktual sebagai nilai persentase buka/tutup. Output ini bisa berupa sinyal 4 - 20 mA atau variabel HART digital yang mencerminkan persentase 0 - 100 dari rentang kerja katup kontrol.

Indikator penting lainnya tentang kinerja katup adalah tekanan yang dibutuhkan oleh katup untuk bergerak ke posisi yang diinginkan. Misalnya, katup dapat diprogram untuk mengetahui apakah jika sinyal 12 mA diberikan, katup tersebut bisa terbuka sebesar 50%. Elektronik pintar akan mengontrol apakah regulator tekanan pintar diperlukan guna menaikkan atau menurunkan tekanan saat dibutuhkan untuk menggerakkan elemen kontrol ke posisi yang diinginkan.

Memberikan sinyal mA yang bervariasi sambil sekaligus memonitor milliamp output atau persentase sinyal pergerakan akan memberitahu Anda apakah suatu katup kontrol beroperasi dengan baik pada rentang kerjanya. Demikian pula, memonitor dan mencatat tekanan yang diberikan ke elemen kontrol akhir sambil memvariasikan sinyal input 4 - 20 mA ke katup adalah pengujian penting untuk mengidentifikasi apakah katup macet. Hubungan antara tekanan dan mA atau posisi katup biasanya akan linear jika katup beroperasi dengan baik. Jika diperlukan tekanan tambahan, hal ini seringkali dapat dipertimbangkan untuk katup yang macet dan akan ditampilkan jika pengukuran dicatat dan diplot dalam grafik. Dengan mencatat sinyal-sinyal ini, kinerja katup dapat didokumentasikan. Pengujian yang didokumentasikan dan hasilnya ini biasanya disebut "karakteristik” katup.

Katup biasanya menyertakan indikator manual sederhana yang memberi Anda perkiraan tentang persentase pergerakan untuk menentukan kapan beroperasi. Akan tetapi indikator ini tidak menunjukkan kepada Anda bagaimana katup akan beroperasi pada kondisi dinamis dan berubah, dan akurasinya tidak terjamin.
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Bagaimana peralatan deteksi kebocoran udara
Fluke mewawancarai sebuah pabrik terkait dengan kebocoran udara. Pabrikan ini benar-benar membantu menjaga roda perniagaan bergerak. Sebagai salah satu pabrikan aftermarket peralatan servis roda terkemuka di dunia, perusahaan ini mendesain, membangun, dan memasarkan produk dengan mereka tepercaya dan ternama.

Banyak proses pabrikan ini bergantung pada udara bertekanan untuk menjalankan sekitar 400 alat dalam pabrik seluas 13.935 meter persegi—semuanya berasal dari kompresor bertenaga 200 horsepower. “Kami menggunakan udara bertekanan di semua tempat di pabrik ini—untuk perkakas pneumatik, las robot, pemotong laser, dan peralatan cat serbuk,” kata presiden pabrikan ini. Dari udara bertekanan muncul kebisingan dan—kebocoran udara.

Mengendalikan pemborosan energi

Kebocoran udara menyebabkan peralatan yang digerakkan udara bertekanan bekerja lebih keras, menyebabkan energi terbuang. Kemungkinan kebocoran udara di pabrik semakin meningkat dengan adanya peralatan lama yang terkumpul selama beberapa dekade terakhir dari berbagai konsolidasi pabrik. Mendengarkan kebocoran udara bisa sangat sulit di lingkungan yang berisik, jadi kebanyakan aktivitas deteksi kebocoran dilakukan setelah jam kerja.

“Biasanya kami menunggu hingga gedung menjadi sangat sunyi—saat pergantian shift atau penghentian operasi untuk pemeliharaan dan kami hanya mencoba mendengarkan kebocoran udara sebagai yang kami bisa,” ujar supervisor pemeliharaan. “Kami juga memakai botol-botol air sabun untuk menyemprot area yang kemungkinan bocor dan mencari gelembung.” Metode semprot dan lihat ini mengharuskan anggota tim pemeliharaan cukup dekat dengan kemungkinan kebocoran untuk mendengarkannya dan menyemprotkan larutan tersebut ke area yang benar.

Metode lain untuk menemukan kebocoran udara bertekanan adalah menggunakan detektor kebocoran ultrasonik. Metode ini memerlukan personel yang sangat terlatih dan cukup banyak waktu yang diperlukan untuk menemukan semua kebocoran. Kebocoran kecil bisa cukup sulit didengar telinga manusia, dan tidak semua kebocoran berada di area yang mudah diakses. Hal ini bisa menjadi tugas yang merepotkan.
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