5335, High Temperature Vibration
- Uniquely combined IEPE and charge output technology, seamlessly operating as a single unit
- IEPE (4 to 20 mA, 15 to 30 V)
- High temperature
- Excellent Linearity; 2.0% - best fit between any two points used for calibration
- 10 mV/g sensitivity
- 500g range
- 4.8 to 1400 Hz Frequency Range, ±5%
- Integrated differential amplifier
- 18" Integral hardline cable assembly
- Tri-bolt mount design
- +900°F (+482°C) high temp operation
- Max. vibration: ± 600 G
- Max. shock: ± 2000 G
- Weight: 400 grams
- Case isolated
- Stainless Steel
- Hermetic seal
- Extreme stability over temperature
The Dytran model 5335 is a high temperature hybrid vibration monitoring system, consisting of a paired differential charge mode accelerometer and in-line miniature differential charge amplifier, operating from a constant current 2-wire (IEPE) power unit, and permanently joined together as a single unit with interconnecting hardline cable.
The unique configuration of the Dytran model 5335 is known as a hybrid system because it combines both IEPE and charge mode piezoelectric technologies into a single operating unit. The accelerometer is connected to the input of the charge amplifier via an 18-inch long hardline cable (SiO2) insulated which then connects to a soft-line Teflon™ insulated cable assembly. The hardline cable assembly is unaffected by high temperatures at the point of measurement.
The model 5335 features a case isolated design to avoid EMI/ground loop interference, with hermetic sealing for reliable operation in high humidity and dirty environments. It has an industry standard tri-bolt mount, stainless steel construction, and utilizes ultra high temperature piezoelectric crystals in compression mode for extremely stable operation in temperatures up to +900°F (+482°C).
Supplied Accessories: (3) model 6535 mounting screws (8-32)
Type | Voltage Mode (IEPE) |
# of Axis | 1 |
Full Scale | 500 g |
Output | 10 mV/g |
Excitation | 15 - 30 V DC |
Material | Stainless Steel |
Mounting | Tri-Bolt |
Connection | 2-Wire Integral Cable |
Min Temperature | -45 °C |
-54 °C | |
Max Temperature | 85 °C |
482 °C |
5335 Datasheet |
- High temperature hybrid accelerometer system
- Uniquely combines IEPE and charge output technology, seamlessly operating as a single unit
- IEPE (4 to 20 mA, 15 to 30 V)
- Integrated differential amplifier
- 10 mV/g sensitivity
- 500g range
- 4.8 to 660 frequency range (±5%)
- 18-inch integral hardline cable assembly
Type | Voltage Mode (IEPE) |
# of Axis | 1 |
Full Scale | 500 g |
Output | 10 mV/g |
Excitation | 15 - 30 V DC |
Material | Stainless Steel |
- IEPE
- High Frequency
- Multiple sense directions available
- Unique design eliminates need for separate mounting bracket
- 10 mV/g sensitivity
- 500g range
- 1.1 to 5,000 Hz frequency range (±10%)
- Integral 3-foot cable
Type | Voltage Mode (IEPE) |
# of Axis | 1 |
Full Scale | 500 g |
Output | 10 mV/g |
Excitation | 18 - 30 V DC |
Material | Stainless Steel |
- IEPE
- High Frequency
- Multiple sense directions available
- Unique design eliminates need for separate mounting bracket
- 10 mV/g sensitivity
- 500g range
- 0.7 to 5,000 Hz frequency range (±10%)
- Integral 5-foot cable
Type | Voltage Mode (IEPE) |
# of Axis | 1 |
Full Scale | 500 g |
Output | 10 mV/g |
Excitation | 18 - 30 V DC |
Material | Stainless Steel |
- Multiple sense directions available
- Unique design eliminates need for separate mounting bracket
- IEPE
- 10 mV/g sensitivity
- 500g range
- 1.1 to 5,000 Hz frequency range (±10%)
- Integral 14-foot cable
- Ø.26 thru hole mount
Type | Voltage Mode (IEPE) |
# of Axis | 1 |
Full Scale | 500 g |
Output | 10 mV/g |
Excitation | 18 - 30 V DC |
Material | Stainless Steel |
- IEPE
- Miniature design
- 5 mV/g, 10 mV/g, or 100 mV/g sensitivity
- 50g, 500g, or 1000g range
- 0.8 to 10,000 Hz (±5%)
- 5-44 axial connector
- 5-40 stud mount
- Weight: 2.3 grams
Type | Voltage Mode (IEPE) |
# of Axis | 1 |
Full Scale | 50 g, 500 g, 1000 g |
Output | 5 mV/g, 10 mV/g, 100 mV/g |
Excitation | 18 - 30 V DC |
Material | Stainless Steel |