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NAC5021-Hxx

NAC5021-Hxx

Products in this category
  • NAC5021-Hxx
  • NAC5022-Hxx
  • NAC5023-Hxx

Noliac damage tolerant actuator stack NAC5021-Hxx (height in mm – Hxx) is a multilayer actuator that can be stacked to match your requirements. The fuse technology of the damage tolerant stack fuses out any damaged ceramic element and the remaining ceramic elements continue to operate. This makes the damage tolerant stack an effective way to ensure high reliability for critical applications. The damage tolerant stack provides a stroke up to 112.2 µm and blocking force up to 2060 N depending on the height of the stack.

Specifications Drawings Mount and connect Wires
Specifications
Attributes
Value
Tolerance
Length / outer diameter
7 mm
+0.35/-0.15 mm
Width / inner diameter
7 mm
+0.35/-0.15 mm
Max width / outer diameter max
9.56 mm (see remarks)
Height
4 — 70 mm
+/-0.2 mm or 1% (whichever is largest)
Operating voltage, max.
200 V
Free stroke, max.
3.3 — 112.2 µm
+/- 15%
Blocking force, max.
2060 N
+/-20%
Capacitance
200-6750 nF
+/- 15%
Stiffness
624-18 N/µm
+/-20%
Maximum operating temperature
150 °C
Material
Unloaded resonance frequency
>248 k - 16 k Hz
Electrodes
Screen-printed Ag and soldered bus wire
Remarks
Max width and lenght

Stack options

Height
Stroke
Capacitance
Height
4 mm
Stroke
3.3 µm
Capacitance
200 nF
Height
6 mm
Stroke
6.6 µm
Capacitance
400 nF
Height
8 mm
Stroke
9.9 µm
Capacitance
590 nF
Height
10 mm
Stroke
13.2 µm
Capacitance
790 nF
Height
12 mm
Stroke
16.5 µm
Capacitance
990 nF
Height
14 mm
Stroke
19.8 µm
Capacitance
1190 nF
Height
16 mm
Stroke
23.1 µm
Capacitance
1390 nF
Height
18 mm
Stroke
26.4 µm
Capacitance
1580 nF
Height
20 mm
Stroke
29.7 µm
Capacitance
1780 nF
Height
22 mm
Stroke
33 µm
Capacitance
1980 nF
Height
24 mm
Stroke
36.3 µm
Capacitance
2180 nF
Height
26 mm
Stroke
39.6 µm
Capacitance
2380 nF
Height
28 mm
Stroke
42.9 µm
Capacitance
2570 nF
Height
30 mm
Stroke
46.2 µm
Capacitance
2770 nF
Height
32 mm
Stroke
49.5 µm
Capacitance
2970 nF
Height
34 mm
Stroke
52.8 µm
Capacitance
3170 nF
Height
36 mm
Stroke
56.1 µm
Capacitance
3370 nF
Height
38 mm
Stroke
59.4 µm
Capacitance
3560 nF
Height
40 mm
Stroke
62.7 µm
Capacitance
3760 nF
Height
42 mm
Stroke
66 µm
Capacitance
3960 nF
Height
44 mm
Stroke
69.3 µm
Capacitance
4160 nF
Height
46 mm
Stroke
72.6 µm
Capacitance
4360 nF
Height
48 mm
Stroke
75.9 µm
Capacitance
4550 nF
Height
50 mm
Stroke
79.2 µm
Capacitance
4750 nF
Height
52 mm
Stroke
82.5 µm
Capacitance
4950 nF
Height
54 mm
Stroke
85.8 µm
Capacitance
5150 nF
Height
56 mm
Stroke
89.1 µm
Capacitance
5350 nF
Height
58 mm
Stroke
92.4 µm
Capacitance
5540 nF
Height
60 mm
Stroke
95.7 µm
Capacitance
5740 nF
Height
62 mm
Stroke
99 µm
Capacitance
5940 nF
Height
64 mm
Stroke
102.3 µm
Capacitance
6140 nF
Height
66 mm
Stroke
105.6 µm
Capacitance
6340 nF
Height
68 mm
Stroke
108.9 µm
Capacitance
6530 nF
Height
70 mm
Stroke
112.2 µm
Capacitance
6730 nF
Drawings
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Noliac - Your Piezo Partner
Mount and connect

Mounting

The stacks have ground top and bottom insulating ceramic end-plates in order to obtain flat and parallel surfaces for mounting. The stacks may be mounted either by mechanical clamping or gluing.

If glued, it is important to ensure a very thin glue line between the actuator and the substrate. It is recommended that a pressure, e.g. 2-5 MPa, is applied during the curing process.

During manufacturing or handling, minor chips on the end-plates can appear. Minor chips cannot be avoided, but such chips do not affect performance.

Electrical connection

The positive electrode is indicated by the red wire.

Noliac - Your Piezo Partner

The actuators may only be stressed axially. Tilting and shearing forces must be avoided.

Noliac - Your Piezo Partner

The actuators without preload are sensitive to pulling forces. It is recommended to apply a pre-load in order to optimize the performances of the actuators.

Noliac - Your Piezo Partner

The force must be applied on the full surface of the actuator in order to assure a good load distribution.

Noliac - Your Piezo Partner

Epoxy glues are well suited for gluing piezoceramics.

Wires

The Noliac fuse stack is delivered with wires. Therefore, when you order a fuse stack from Noliac, you have to select one of our wire options below. You should consider these parameters, when you select a wire for connection:

  • Operation voltage
  • Intensity of current
  • Operating temperature
  • Environment

We recommend Teflon wires
Teflon wires can stand temperatures above 200 °C, whereas PVC wires only resist temperatures up to 80 °C. In tough operating conditions or in vacuum, it is recommended always to use Teflon isolated wires to guarantee the proper performances of PZT elements.

Wire thickness (AWG)
The wire thickness is determined by the current that has to be transmitted to and from the PZT element. The required current is determined by the capacitance of the PZT element, the maximum driving frequency and the maximum voltage Up-p.

Noliac - Your Piezo Partner
Noliac - Your Piezo Partner

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Performance Dimensions
Value
Max operating voltage / V
Min
Min free stroke / µm
Min
Min estimated blocking force / N
Min
Min
Max
Length or outer diameter / mm
Min
Max
Width or inner diameter / mm
Min
Max
Max height / mm
Max
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