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The Bently Nevada 3300/30 Six-Channel Temperature Monitor is a six-channel temperature monitoring module designed for the legacy Bently Nevada 3300 Monitoring System.
This version is specifically configured to accept Thermocouple (TC) inputs rather than RTD sensors.
It is commonly used to monitor critical temperature points in industrial machinery, including:
Bearing metal temperature
Exhaust gas temperature
Stator winding temperature
Lube oil system temperature
The monitor provides continuous protection through configurable alarm relays and standard recorder outputs, ensuring reliable thermal supervision in turbine, compressor, and generator applications.
Input Capacity
Supports up to six (6) independent thermocouple inputs
Each channel operates independently
Supported Thermocouple Types
Type J — Iron / Constantan
Type K — Chromel / Alumel
Type E — Chromel / Constantan
Type T — Copper / Constantan
Cold Junction Compensation
Internal compensation provided at the terminal block
Automatically corrects measurement drift caused by ambient temperature changes
Ensures stable temperature accuracy across operating environments
Accuracy
Within ±2.2% of signal, plus thermocouple tolerance
Reference temperature:
+25°C (+77°F)
Open Thermocouple Detection
The monitor includes automatic fault detection when a thermocouple circuit opens.
Selectable response modes:
Upscale drive — Forces reading to high value
Downscale drive — Forces reading to low value
This feature prevents machinery from operating without temperature protection.
Scan Rate
All six channels scanned approximately:
0.5 seconds per cycle
This scan speed is typical for machinery protection systems where temperature changes occur gradually compared to vibration signals.
Recorder Outputs
User-programmable analog outputs:
+4 to +20 mA
0 to -10 Vdc
+1 to +5 Vdc
Buffered Outputs
Available for diagnostic and monitoring purposes:
Front panel coaxial connectors
Rear terminal block connections
One buffered output per channel
These outputs are typically connected to:
DCS systems
PLC systems
Data recorders
Condition monitoring software
Display
7-segment LCD temperature display
Shows real-time temperature value
Channel selection:
Use the Display button
Cycles through Channel 1 to Channel 6
Alarm Setpoints
Each channel supports independent alarm configuration:
Alert alarm
Danger alarm
Both thresholds are fully adjustable.
OK Indicator
The OK LED continuously monitors system health, including:
Monitor electronics
Thermocouple sensors
Field wiring integrity
Order Format
3300/30-AXX-BXX-CXX-DXX-EXX
| Code | Temperature Range |
|---|---|
| 01 | 0 to 100°C |
| 02 | 0 to 200°C |
| 03 | 0 to 500°C |
| 04 | 0 to 1000°C |
| 05 | 32 to 212°F |
| 06 | 32 to 392°F |
| 07 | 32 to 932°F |
| 08 | 32 to 1832°F |
| Code | Thermocouple Type |
|---|---|
| 01 | Type J |
| 02 | Type K |
| 03 | Type E |
| 04 | Type T |
| Code | Description |
|---|---|
| 00 | No relays |
| 01 | Epoxy-sealed relay |
| 02 | Hermetically-sealed relay |
| Code | Certification |
|---|---|
| 00 | Not required |
| 01 | CSA / NRTL / C |
| 02 | ATEX self-certification |
| Code | Description |
|---|---|
| 00 | None |
| 01 | External barriers |
| 02 | Internal barriers |
The 3300/30 temperature monitor is a:
Double-width module
Installation requirement:
Occupies two (2) slots in the 3300 rack
This is important when planning rack capacity in retrofit or expansion projects.
Always use the correct thermocouple extension wire that matches the thermocouple type.
Examples:
Type K → Type K extension wire
Type J → Type J extension wire
Using standard copper wire will introduce:
Junction voltage errors
Temperature measurement drift
Calibration inaccuracy
This is one of the most common field installation mistakes.
Recommended grounding method:
Ground the thermocouple shield at the monitor rack only
Avoid grounding at multiple points.
Improper grounding can cause:
Ground loops
Signal noise
Unstable temperature readings
Special attention is required when using:
Grounded-tip thermocouples
These sensors are more sensitive to grounding configuration.
Do not install the monitor rack in locations with:
Rapid temperature changes
Strong airflow across terminal blocks
High thermal gradients
These conditions can affect the accuracy of the internal cold junction compensation.
Typical problematic locations:
Near ventilation ducts
Close to turbine exhaust paths
Outdoor panels without thermal shielding
Global Express Shipping
Returns & Warranty



The Bently Nevada 3300/30 Six-Channel Temperature Monitor is a six-channel temperature monitoring module designed for the legacy Bently Nevada 3300 Monitoring System.
This version is specifically configured to accept Thermocouple (TC) inputs rather than RTD sensors.
It is commonly used to monitor critical temperature points in industrial machinery, including:
Bearing metal temperature
Exhaust gas temperature
Stator winding temperature
Lube oil system temperature
The monitor provides continuous protection through configurable alarm relays and standard recorder outputs, ensuring reliable thermal supervision in turbine, compressor, and generator applications.
Input Capacity
Supports up to six (6) independent thermocouple inputs
Each channel operates independently
Supported Thermocouple Types
Type J — Iron / Constantan
Type K — Chromel / Alumel
Type E — Chromel / Constantan
Type T — Copper / Constantan
Cold Junction Compensation
Internal compensation provided at the terminal block
Automatically corrects measurement drift caused by ambient temperature changes
Ensures stable temperature accuracy across operating environments
Accuracy
Within ±2.2% of signal, plus thermocouple tolerance
Reference temperature:
+25°C (+77°F)
Open Thermocouple Detection
The monitor includes automatic fault detection when a thermocouple circuit opens.
Selectable response modes:
Upscale drive — Forces reading to high value
Downscale drive — Forces reading to low value
This feature prevents machinery from operating without temperature protection.
Scan Rate
All six channels scanned approximately:
0.5 seconds per cycle
This scan speed is typical for machinery protection systems where temperature changes occur gradually compared to vibration signals.
Recorder Outputs
User-programmable analog outputs:
+4 to +20 mA
0 to -10 Vdc
+1 to +5 Vdc
Buffered Outputs
Available for diagnostic and monitoring purposes:
Front panel coaxial connectors
Rear terminal block connections
One buffered output per channel
These outputs are typically connected to:
DCS systems
PLC systems
Data recorders
Condition monitoring software
Display
7-segment LCD temperature display
Shows real-time temperature value
Channel selection:
Use the Display button
Cycles through Channel 1 to Channel 6
Alarm Setpoints
Each channel supports independent alarm configuration:
Alert alarm
Danger alarm
Both thresholds are fully adjustable.
OK Indicator
The OK LED continuously monitors system health, including:
Monitor electronics
Thermocouple sensors
Field wiring integrity
Order Format
3300/30-AXX-BXX-CXX-DXX-EXX
| Code | Temperature Range |
|---|---|
| 01 | 0 to 100°C |
| 02 | 0 to 200°C |
| 03 | 0 to 500°C |
| 04 | 0 to 1000°C |
| 05 | 32 to 212°F |
| 06 | 32 to 392°F |
| 07 | 32 to 932°F |
| 08 | 32 to 1832°F |
| Code | Thermocouple Type |
|---|---|
| 01 | Type J |
| 02 | Type K |
| 03 | Type E |
| 04 | Type T |
| Code | Description |
|---|---|
| 00 | No relays |
| 01 | Epoxy-sealed relay |
| 02 | Hermetically-sealed relay |
| Code | Certification |
|---|---|
| 00 | Not required |
| 01 | CSA / NRTL / C |
| 02 | ATEX self-certification |
| Code | Description |
|---|---|
| 00 | None |
| 01 | External barriers |
| 02 | Internal barriers |
The 3300/30 temperature monitor is a:
Double-width module
Installation requirement:
Occupies two (2) slots in the 3300 rack
This is important when planning rack capacity in retrofit or expansion projects.
Always use the correct thermocouple extension wire that matches the thermocouple type.
Examples:
Type K → Type K extension wire
Type J → Type J extension wire
Using standard copper wire will introduce:
Junction voltage errors
Temperature measurement drift
Calibration inaccuracy
This is one of the most common field installation mistakes.
Recommended grounding method:
Ground the thermocouple shield at the monitor rack only
Avoid grounding at multiple points.
Improper grounding can cause:
Ground loops
Signal noise
Unstable temperature readings
Special attention is required when using:
Grounded-tip thermocouples
These sensors are more sensitive to grounding configuration.
Do not install the monitor rack in locations with:
Rapid temperature changes
Strong airflow across terminal blocks
High thermal gradients
These conditions can affect the accuracy of the internal cold junction compensation.
Typical problematic locations:
Near ventilation ducts
Close to turbine exhaust paths
Outdoor panels without thermal shielding
Global Express Shipping
Returns & Warranty
Orders are processed and delivered Monday-Friday (excluding public holidays).
For full eligibility, restocking fees, and international return details, please view our official Refund & Return Policy .
| Color pattern |
Multicolor
|
| Country of origin |
United States
|
| Power source |
DC Power
|