Iň täze köpugurly elektronika çözüwleri bilen öýüňizi özgertmegiňiz mümkin — akylly yşyklandyryşdan başlap, ses arkaly dolandyrylýan enjamlara çenli; bularyň hemmesi durmuşy has aňsat, has howpsuz we has baglanyşykly etmek üçin döredilen. Amallaryňyzy Bently Nevada 3500 Gözegçilik ulgamy bilen optimizirlaň, ol näsazlyklaryň öňüni almak we işleme döwrüni iň ýokary derejede saklamak üçin hakyky wagt režiminde wibrasiýa we enjamyň ýagdaýyna gözegçilik edýär.
Haryt kody:IC697CHS783
GE IC697CHS783 Series 90-70 VME Integrator Chassis
Manufacturer: General Electric
Product No.: IC697CHS783
Product Type: I/O Rack
Product Origin: USA
Payment:T/T, Western Union
Weight: 8200g
Shipping port: Xiamen
Warranty: 12 months
Paýlaş
- Çalt eltip berme
- 24/7 goldaw
- Hil üpjünçiligi
Düşündiriş
Product Overview
The IC697CHS783 is a high-capacity 17-Slot VME Integrator Rack belonging to the GE Fanuc Series 90-70 and PACSystems RX7i controller families. Built with a highly flexible VME standard C.1 compliant backplane, this chassis permits seamless co-processing by hosting both standard GE modules and 3rd-party VME-based boards. It serves as the ultimate structural and communications foundation for advanced, high-speed industrial data processing and large-scale plant automation setups.
Core Features
- 17-Slot VME Backplane: Supports open-architecture VME standard C.1 for mixing 3rd-party and proprietary modules.
- Dual Mounting Profiles: Reversible engineering adapts to standard 19-inch front racks or 10-inch deep rear panels.
- Integrated Latches: Robust molded alignment latches hold plug-in cards firmly against heavy machinery vibration.
- Configurable Rack ID: Onboard physical jumpers (JP1–JP4) allow rapid hardware address tuning across multi-rack networks.
Technical Specifications
| Parameter | Data |
|---|---|
| Model Number | IC697CHS783 |
| Total Card Slots | 17 Slots (VME Standard C.1 Compliant) |
| Backplane Power Drawing | 3.3A @ 5 VDC and 1.1A @ 12 VDC (Single power source compatible) |
| Chassis Net Weight | 8.2 kg (18.08 lbs) |
| Physical Dimensions | 11.15" (H) × 19.00" (W) × 7.50" (D) |
| Enclosure Fitting Depth | Fits 10-inch deep back enclosures (Rear-mount option) |
| Address Jumpers | 4 Hardware Jumpers (JP1 through JP4) for Rack ID allocation |
| Environmental Tolerance | −20°C to +60°C (−4°F to 140°F); 5% to 95% RH non-condensing |
| Optional Cooling Link | Supports IC697ACC721 120VAC ball-bearing fan tray (20,000-hour lifespan) |
Engineering & Installation Guide
- Rack ID Configuration: Set physical hardware jumpers JP1 to JP4 to define the rack ID before mounting the unit. Misconfigured jumpers cause immediate I/O addressing bus conflicts with the CPU.
- Mechanical Load Management: Given the substantial 8.2 kg empty base weight, ensure your standard 19-inch rack rails or enclosure sub-panels are fully anchored to sustain the total weight load once all 17 slots are populated with heavy boards.
- Thermal Optimizations: For ambient operations trending near the +60°C maximum limit, or when using power-hungry 3rd-party VME computing cards, always fit the optional IC697ACC721 ball-bearing fan tray to prevent hot-spot stagnation.
Technical FAQs
Q1: What does VME Standard C.1 compliance mean for this integrator rack?
A1: It indicates an open-architecture backplane interface. Instead of restricting you to standard GE Fanuc modules, it allows engineers to integrate specialized 3rd-party VME-bus cards (like custom network links or high-speed processing modules) directly into the same hardware loop.
Q2: Can the IC697CHS783 chassis operate from separate power supplies for the 5V and 12V rails?
A2: No. The internal backplane power distribution network is strictly optimized for a unified, single power source supply configuration that manages both the 3.3A @ 5VDC and 1.1A @ 12VDC loads simultaneously to maintain system synchronization.
Q3: How do the molded latches prevent hardware failures in high-vibration plants?
A3: Microphonic vibration can cause slotted cards to walk out of their backplane seating over time, inducing tracking data faults. The factory-molded mechanical latches lock each module faceplate into the rigid frame, guaranteeing consistent, vibration-proof electrical contact.
Goşmaça spesifikasiýalar
Skalyar (V/f)
Wektor
AC tok bilen işleýän
Satyn alyş gollanmasy
- Sargyt etmezden ozal takyk modeli, bölek belgisini we aýratynlyklary tassyklaň.
- Bar bolan enjamyňyz ýa-da dolandyryş ulgamlaryňyz bilen laýyklygyny üpjün ediň.
- Tehniki kömek üçin sale@etowonauto.com ýa-da +8617859788089 arkaly habarlaşyň.
- Eltip beriş mümkinçiliklerini, öňdebaryş möhletlerini we iberiş talaplaryny gözden geçiriň.
- Gurnama wagty öndürijiniň görkezmelerine hem-de iň oňat tejribelere eýeriň.
Eltip bermek we gaýtarmak
Stokda bar bolan harytlar adatça şol bir iş gününde ugradylýar. Häzir stokda bolmadyk önümler üçin iberiş wagty elýeterliligine görä üýtgäp biler. Halkara eltip bermek mümkindir we eltip bermek tölegleri barýan ýeriňe, agramyna we daşaýjynyň saýlanmagyna görä hasaplanýar.
Harytlar ulanylman we asyl ýagdaýynda bolmak şerti bilen, alnan gününden başlap 30 günüň içinde yzyna gaýtarmak kabul edilýär. Yzyna iberiş üçin eltip bermek çykdajylary müşderiniň jogapkärçiliginde. Yzyna gaýtarmak baradaky rugsaty almak üçin, haýsydyr bir harydy yzyna ugratmazdan öň biziň bilen habarlaşmagyňyzy haýyş edýäris.
Has giňişleýin maglumat üçin, biziň Iberiş we yzyna gaýtarmak syýasatymyzy.

3500/61-05-CN Temperature Monitor Module | Bently Nevada
3500/22-01-02-CN TDI Module Bently Nevada
Bently Nevada 3500/42-04-00 | Seismic Monitor
-
Çalt eltip bermek
Asyl senagat awtomatizasiýa şaýlary gyssagly iberiliş üçin bütin dünýä boýunça elýeterlidir.
-
Aňsat gaýtaryşlar
Ygtybarly satuwdan soňky gorag üçin 30 günlük yzyna gaýtarmak goldawy we 12 aýlyk kepilnama.
-
24/7 goldaw
Durnukly we netijeli işleýşi saklamaga ýardam edýän çeýe, professional goldaw.
-
Hakyky we Asyl
100% hakyky, ygtybarly senagat awtomatizasiýasy öndürijilerinden gönüden-göni üpjün edilýär.
Tehniki we satyn alyş gollanmasy
-
Dual Compliance Standards for Pharma Automation?
This article presents a quantified engineering methodology for explosion-proof PLC and DCS system design in GMP-certi...
-
How to Avoid Bulk Sourcing Risks for Power Plant Control Spares?
This guide presents field-validated strategies for bulk sourcing industrial control spares in power plants. It q...
-
What Are the Hidden Costs of Fake PLC and DCS Modules?
This guide presents data-driven verification protocols for imported industrial control spare parts, addressing the es...
-
Redundant PLC + DCS: 18.6% Fan Energy Savings?
This case study documents a full automation retrofit for a 300 TPD waste incineration plant. By integrating Emerson D...
-
Can Proper Warehousing Cut Automation Hardware Failures 80%?
This technical guide presents quantified storage and maintenance standards for industrial PLC, DCS, and TSI spare par...
-
Can Industrial Control Upgrades Cut Unplanned Downtime by 90%?
This article examines why legacy PLC, DCS, and vibration monitoring systems demand urgent retrofit in 2026. Citing re...
