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PRECISION FATIGUE RESISTANT LOAD CELL
UNIVERSAL / TENSION OR COMPRESSION

SWP SERIES LOAD CELL

CAPACITY RANGES:
1,000, 2,000, 3,000,
5,000, 10,000, 20,000,
50,000 LBS



Our SWP Series low profile load cells are an excellent
choice for applications that require ultra stiffness and
resistance to extraneous bending and side load forces.
For tension and/or compression applications, the load
cell is bolted down to a flat surface and center loaded,
utilizing the thru tapped hole. Load buttons or load bearing
compression only applications are offered in our accessories
section. For in line tension applications, we recommend our
tension base (-TB option) for hardness, flatness, stiffness,
and alignment. The SWP Series load cell and the - TB (tension
base) are manufactured from heat treated 17-4ph stainless
steel. The same high quality full bridge strain gage installation
is utilized in all our force and torque measuring products.





      SPECIFICATIONS  
 
  Rated Output (R.O.):   2 mV/V nominal  
  Nonlinearity:   0.05% of R.O.  
  Hysteresis:   0.05% of R.O  
  Nonrepeatability:   0.05% of R.O.  
  Zero Balance:   1.0% of R.O.  
  Compensated Temp. Range:   60° to 160°F  
  Safe Temp. Range:   -65° to 200°F  
  Temp. Effect on Output:   0.005% of Load/°F  
  Temp. Effect on Zero:   0.005% of R.O./°F  
  Terminal Resistance:   700 ohms nominal  
  Excitation Voltage:   10-20 VDC  
  Safe Overload:   150% of R.O.  
  Deflection Inches:   0.001 inches @ R.O.  
  Fatigue Life One Direction:   100 x 1000000  
  Fatigue Life Bidirectional:   50 x 1000000  
  Calibration Included:   Compression  
  Optional Calibration:   Tension  
 








Options
TBO-SWP135 Tension Base (1K - 5K)
TBO-SWP1020 Tension Base (5K - 20K)
TBP-SWP-50K Tension Base (50K)




 MODEL NATURAL
RINGING
FREQUENCY
Hz
 SWP-1K  4,000
 SWP-2K  5,700
 SWP-3K  7,300
 SWP-5K  8,700
 SWP-5K  6,500
 SWP-10K  7,400
 SWP-20K  8,500
 SWP-50K  10,000




DIMENSIONS (INCHES)
MODEL  CAPACITY 
LBS.
A
DIA
B
DIA
C
DIA
D E F G
DIA
H I
THREAD
J K L
 SWP-1K 1,000 4.125 2.775 1.65 1.375 0.125 0.05 1.25 0.50 5/8-18 UNF 3.500 0.281 8
 SWP-2K 2,000 4.125 2.775 1.65 1.375 0.125 0.05 1.25 0.50 5/8-18 UNF 3.500 0.281 8
 SWP-3K 3,000 4.125 2.775 1.65 1.375 0.125 0.05 1.25 0.50 5/8-18 UNF 3.500 0.281 8
 SWP-5K-4  5,000 4.125 2.775 1.65 1.375 0.125 0.05 1.25 0.50 5/8-18 UNF 3.500 0.281 8
 SWP-5K 5,000 6.000 4.260 2.50 1.750 0.125 0.05 2.25 0.81 1 1/4-12 UNF 5.125 0.406 12
 SWP-10K 10,000 6.000 4.260 2.50 1.750 0.125 0.05 2.25 0.81 1 1/4-12 UNF 5.125 0.406 12
 SWP-20K 20,000 6.000 4.260 2.50 1.750 0.125 0.05 2.25 0.81 1 1/4-12 UNF 5.125 0.406 12
 SWP-50K 50,000 8.000 5.000 3.14 2.000 0.125 0.05 3.14 0.81 1 3/4-12 UNF 6.500 0.531 16

 

The Load Cell below come with Calibration in Compression
 
Order Code Model Capacity Range Description Price Quantity Add to Cart
SWP-1K 1K LBS. Calibrated in Compression $795
SWP-2K 2K LBS. Calibrated in Compression $795
SWP-3K 3K LBS. Calibrated in Compression $795
SWP-5K 5K LBS. Calibrated in Compression $995
SWP-5K-4 5K LBS. Calibrated in Compression $795
SWP-10K 10K LBS. Calibrated in Compression $995
SWP-20K 20K LBS. Calibrated in Compression $995
SWP-50K 50K LBS. Calibrated in Compression $2,125
OPTION-TC N/A Tension Calibration Option
0 to 20000 lbs.
$75
OPTION-TC-1 N/A Tension Calibration Option
21000 lbs to 50000 lbs.
$150
CAL-TEDS N/A Plug & Play Option with Connector $55
TB0-SWP135 N/A Tension Base (1K-3K) $175
TB1-SWP1020 N/A Tension Base (5K-20K) $225
TB2-SWP50K N/A Tension Base (50K) $425
ONE AMP-T6 NEEDED PER SWP SERIES LOAD CELL
AMP-T6 N/A Mating Assembly 6 Cond $60
   
 
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ACCESSORIES

CAL-TEDS
Plug & Play Option

AD9 (9 PIN "D" Series) Connector attached to the end of a Load Cell or Torque sensor cable with a TEDS ( Transducer Electoric Data Sheet ) EPPROM. Used with a DPM-3 Load Cell Meter, the Load Cell and DPM-3 will self calibrate. This option is a real time saver. Learn about Plug & Play Smart Sensors.

 

[Close Box]  

Learn about Plug and Play Smart Sensors


What are Plug and Play Smart Sensors?

A Plug and Play Smart Sensor is a Sensor that is compliant to the IEEE 1451.4 Standard. TEDS, or Transducer Electronic Data Sheet, is a set of electronic data in a standardized format defined within the IEEE 1451.4 standard. This data specifies what type of sensor is present, describes its interface, and gives technical information such as sensitivity, bridge type, excitation, etc. This information is stored in an EEPROM chip attached to a sensor. By having this chip, the sensor can identify and describe itself to the network and or Smart Load Cell Meter, thereby easing automatic system configuration. Let's say you have a Transducer Techniques Load Cell or Torque Sensor with the the proper instrument IEEE 1451.4 enabled Load Cell or Torque Sensor could be swapped in, self-identify, and work appropriately.


What are the advantages of Plug and Play Smart Sensors?

Benefits that can be experienced now include:

  • Simplified troubleshooting
  • Reduced safety risks. It is no longer necessary to "climb on machines" for connection verification
  • Reduced costs for set-up and tear-down
  • No recalibration is needed when replacing sensors
  • The data acquisition system can recalibrate itself

Advantages that will be available in the future include:

  • Integration with wireless transceivers
  • Elimination of large lengths of analog wiring
  • Reduced installation, maintenance and upgrade costs of measurement and control systems
  • The opportunity to add intelligence to sensors

Can a legacy / non-TEDS sensor be converted to a TEDS "Plug and Play" sensor?

Yes. A legacy / non-TEDS sensor can be converted to a TEDS "Plug and Play" sensor. Transducer Techniques offers a CAL-TEDS service to convert your sensor to a TEDS "Plug and Play" compliant sensor. The service consists of a connector, recalibration and a programmed EEPROM. This will update a legacy / non-TEDS sensor to be capable of plugging into Transducer Techniques IEEE 1451.4 compliant DPM-3 Smart Load Cell Meter.


What is Virtual TEDS?

Virtual TEDS is an online library of data sheets developed by National Instruments (www.ni.com) that contain the same information that would be found in an EEPROM TEDS, but exist for sensors not containing the EEPROM. This would define Plug and Play capability for legacy / non-TEDS sensors. As a National Instruments Plug and Play Sensor Partner and a National Instruments Alliance Member, Transducer Techniques has contributed the data for all its sensors to the Virtual TEDS database.


What parameters are included on a Transducer Techniques TEDS chip?

TEDS Item Values
Manufacturer ID Transducer Techniques (ID#42)
Model Number 28
Version Letter A
Version Number 3
Serial Number 149087
Transducer Electrical Signal Type Bridge Sensor
Minimum Physical Value 0 lb
Maximum Physical Value 100 lb
Minimum Electrical Value 0 V/V
Maximum Electrical Value .0024709 V/V
Mapping Method Linear
Bridge Type Full
Impedance of Each Bridge Element 350 Ohm
Response Time .000001 sec
Excitation Level (Nominal) 10 V
Excitation Level (Minimum) 1 V
Excitation Level (Maximum) 12 V
Calibration Date 1/1/2004
Calibration Initials RAB
Calibration Period (Days) 365 days
Measurement Location ID 0
Users Data Thank You From TTI
[Close Box]  
[Close Box]

ACCESSORIES

CAL-TEDS
Plug & Play Option

AD9 (9 PIN "D" Series) Connector attached to the end of a Load Cell or Torque sensor cable with a TEDS ( Transducer Electoric Data Sheet ) EPPROM. Used with a DPM-3 Load Cell Meter, the Load Cell and DPM-3 will self calibrate. This option is a real time saver. Learn about Plug & Play Smart Sensors.

 

[Close Box]  

Learn about Plug and Play Smart Sensors


What are Plug and Play Smart Sensors?

A Plug and Play Smart Sensor is a Sensor that is compliant to the IEEE 1451.4 Standard. TEDS, or Transducer Electronic Data Sheet, is a set of electronic data in a standardized format defined within the IEEE 1451.4 standard. This data specifies what type of sensor is present, describes its interface, and gives technical information such as sensitivity, bridge type, excitation, etc. This information is stored in an EEPROM chip attached to a sensor. By having this chip, the sensor can identify and describe itself to the network and or Smart Load Cell Meter, thereby easing automatic system configuration. Let's say you have a Transducer Techniques Load Cell or Torque Sensor with the the proper instrument IEEE 1451.4 enabled Load Cell or Torque Sensor could be swapped in, self-identify, and work appropriately.


What are the advantages of Plug and Play Smart Sensors?

Benefits that can be experienced now include:

  • Simplified troubleshooting
  • Reduced safety risks. It is no longer necessary to "climb on machines" for connection verification
  • Reduced costs for set-up and tear-down
  • No recalibration is needed when replacing sensors
  • The data acquisition system can recalibrate itself

Advantages that will be available in the future include:

  • Integration with wireless transceivers
  • Elimination of large lengths of analog wiring
  • Reduced installation, maintenance and upgrade costs of measurement and control systems
  • The opportunity to add intelligence to sensors

Can a legacy / non-TEDS sensor be converted to a TEDS "Plug and Play" sensor?

Yes. A legacy / non-TEDS sensor can be converted to a TEDS "Plug and Play" sensor. Transducer Techniques offers a CAL-TEDS service to convert your sensor to a TEDS "Plug and Play" compliant sensor. The service consists of a connector, recalibration and a programmed EEPROM. This will update a legacy / non-TEDS sensor to be capable of plugging into Transducer Techniques IEEE 1451.4 compliant DPM-3 Smart Load Cell Meter.


What is Virtual TEDS?

Virtual TEDS is an online library of data sheets developed by National Instruments (www.ni.com) that contain the same information that would be found in an EEPROM TEDS, but exist for sensors not containing the EEPROM. This would define Plug and Play capability for legacy / non-TEDS sensors. As a National Instruments Plug and Play Sensor Partner and a National Instruments Alliance Member, Transducer Techniques has contributed the data for all its sensors to the Virtual TEDS database.


What parameters are included on a Transducer Techniques TEDS chip?

TEDS Item Values
Manufacturer ID Transducer Techniques (ID#42)
Model Number 28
Version Letter A
Version Number 3
Serial Number 149087
Transducer Electrical Signal Type Bridge Sensor
Minimum Physical Value 0 lb
Maximum Physical Value 100 lb
Minimum Electrical Value 0 V/V
Maximum Electrical Value .0024709 V/V
Mapping Method Linear
Bridge Type Full
Impedance of Each Bridge Element 350 Ohm
Response Time .000001 sec
Excitation Level (Nominal) 10 V
Excitation Level (Minimum) 1 V
Excitation Level (Maximum) 12 V
Calibration Date 1/1/2004
Calibration Initials RAB
Calibration Period (Days) 365 days
Measurement Location ID 0
Users Data Thank You From TTI
[Close Box]  
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