Emerson A6110 9199-00001 | AMS 6500 Shaft Vibration Monitor

$2,100.00

Emerson A6110 9199-00001 is the dual-channel shaft relative vibration monitor specified for AMS 6500 Machinery Health Monitor systems
Brand model:Emerson 
Product Name:A6110 9199-00001
Warranty: 1 year
Origin:USA
HS code:85389000.00
Inventory: Spot/Futures
Goods condition: Brand new
Delivery time: 3-4days/1month

Brand: Model/SKU: Emerson A6110 9199-00001

Get a Quote / Inquiry

Phone/WhatsApp/Wechat:
WeChat QR Code WhatsApp

Description

  • Brand: Emerson
  • Full Model Number: A6110 9199-00001
  • Lifecycle Status: Legacy / Current Lifecycle Status to Be Verified
  • Core Function: Dual-Channel Shaft Relative Vibration Monitor
  • Top 3 Technical Specs: 2 Independent or Combined Channels | 1 or 5 Hz Lower Cutoff | 50–2,000 Hz Adjustable Upper Cutoff
  • Sensor Type: Eddy Current Differential Displacement Sensors
  • Compatible Sensor Inputs: 6422 | 6423 | 6424 | 6425
  • Analog Outputs: 0/4–20 mA and 0–10 VDC
  • Power Consumption: Max. 6 W | 250 mA at 24 VDC
  • Format: 3U | 6 TE | 1-Slot Plug-In Module
  • Stock & Condition: Stock Confirmation Required | New Surplus / Tested Refurbished Subject to Availability
  • Shipping: Expedited Dispatch Subject to Order Cutoff and Carrier Service
  • Warranty: 12-Month Supplier Warranty, Subject to Quoted Terms

 

Supply Chain & Technical Deep Dive

A failed vibration protection card can hold up a rotating-equipment repair even when the rest of the AMS 6500 rack remains operational. Emerson A6110 9199-00001 is the dual-channel shaft relative vibration monitor specified for AMS 6500 Machinery Health Monitor systems. It accepts two independent or combined eddy-current differential inputs and is intended for monitoring shaft movement relative to the bearing case. The module is designed for machinery protection applications involving equipment such as steam turbines, gas turbines, compressors, and hydro turbomachinery, with API 670 compliance and hot-swappable construction documented by Emerson.

For procurement, the technical numbers matter because an equivalent-looking vibration card may use a different sensor type or rack architecture. A6110 provides a continuously configurable measurement range from 0–400 mV up to 0–8,000 mV, with a sensor supply of nominal -26.7 V and up to 35 mA available. Its rear outputs include 0/4–20 mA and 0–10 VDC signals, while output accuracy is specified at ±1% of full scale. The module consumes up to 6 W at 24 VDC, occupies one rack slot, and has an approximate net weight of 320 g. These specifications make the exact model and sensor pairing important when calculating replacement cost and avoiding cabinet re-engineering.

 

Migration, Compatibility & Field Traps

Replacement Matrix

Replacement Type Assessment Engineering Requirement
Drop-in Replacement Conditional Like-for-Like Replacement Confirm AMS 6500 rack, module revision, sensor type, wiring, and installed configuration
Software Compatible Generally Configuration-Dependent Verify measurement parameters, alarm settings, operating mode, and software recognition before commissioning
Hardware Modification Normally Not Required for Exact A6110 Replacement Hardware changes may be necessary when changing sensor technology, rack architecture, or monitor family

A6110 is a 1-slot, 3U plug-in module for the AMS 6500 platform. Emerson specifies use with displacement sensors including 6422, 6423, 6424, and 6425 and associated drivers. The module supports independent or combined dual-channel measurement, so the replacement must match the existing sensor arrangement and measurement configuration.

Field Traps — Watch Out

Sensor Mismatch: Do not treat every vibration input card as interchangeable. A6110 is designed for eddy-current differential displacement sensing. Confirm the installed probe and driver combination before installation.

Measurement Configuration: The input frequency range and measuring range are configurable. Replacing the hardware without checking the existing configuration can produce incorrect vibration interpretation even when the card powers up normally. Review lower and upper cutoff settings, measurement mode, alarm thresholds, and engineering parameters before returning the channel to service.

Emerson A6110 9199-00001

Emerson A6110 9199-00001

Quality Assurance & Testing SOP

Every Emerson 9199-00001 unit should undergo a controlled inspection before shipment. Start with an OEM anti-counterfeit visual inspection covering the Emerson identification label, model marking, board condition, connectors, mounting hardware, front-panel finish, and evidence of unauthorized rework. Serial and revision information should be recorded whenever visible.

Perform a controlled power-up and POST sequence. Check power consumption, startup behavior, channel status, and diagnostic indications. Do not assume this card uses generic ERR/RUN LEDs; for , the documented front-panel indicators include two green LEDs for individual channel OK status and red LEDs for alert and danger indications. Abnormal LED behavior is recorded before functional testing proceeds.

Functional testing should use an appropriate sensor simulator or controlled displacement-signal source. Each channel is checked independently, then in combined mode where applicable. Verify configurable measurement range, buffered outputs, 0/4–20 mA output behavior, 0–10 VDC output behavior, alarm thresholds, and status reporting. Output accuracy should be checked against the applicable full-scale reference, with the published specification of ±1% of full scale used as the acceptance benchmark.

Final QA records should identify the exact 9199-00001 model, visible revision data, inspection result, functional test result, packaging condition, and shipment reference. For surplus inventory, cosmetic condition and electrical test status should remain separate procurement fields.

 

Procurement-Driven FAQ

Is this Emerson 9199-00001 genuinely in stock, and what is the cutoff for overnight shipping?

Physical availability should be confirmed against the exact 9199-00001 quantity and condition before the purchase order is released. Overnight shipping depends on warehouse processing time, order cutoff, carrier service, and destination. The confirmed dispatch commitment should appear on the quotation.

How do you guarantee the condition of an obsolete or surplus ?

The unit condition should be stated explicitly as New Surplus, Tested Refurbished, Used, or another defined category. A tested unit should have an inspection and functional-test record, while unused surplus should be identified separately from refurbished stock. Model, visible revision, physical condition, and electrical test status should all be confirmed before shipment.

What are the warranty terms and return policies for defective units?

Warranty coverage should be stated on the quotation or sales confirmation. A typical supplier warranty can cover confirmed product defects or dead-on-arrival failures, while incorrect installation, wiring errors, field damage, electrical overstress, unauthorized modification, or mechanical damage may be excluded.

Are there any firmware or configuration compatibility issues my engineers should check?

The principal concern is configuration matching rather than assuming universal interchangeability. Engineering should verify the AMS 6500 hardware configuration, revision, sensor and driver combination, measurement mode, measuring range, alarm parameters, and output configuration before commissioning the replacement. Emerson documents configurable measurement and analysis functions for .

Can the monitor two shaft vibration channels simultaneously?

Yes. Emerson specifies two independent inputs with independent or combined monitoring modes. The module supports shaft relative vibration measurement using compatible eddy-current differential displacement sensors, with measurement and analysis functions configurable for the installed application.

mingpian
xcd