The Latest Information on Piezo Nanopositioning Systems is Available Here
P-722, P-721 PIFOCÒMicroscope Objective NanoPositioners & Scanners
Ordering Information:
P-720.00 PIFOC Objective Positioner & Scanner, 100 µm, W0.8 x1/36"
P-721.00 PIFOC Objective Positioner & Scanner, 100 µm, W0.8 x1/36"
P-721.07 PIFOC Objective Positioner & Scanner, 100 µm, Specify Thread (P-721.01 - .08)
P-721.10 PIFOC Objective Positioner & Scanner, 100 µm, LVDT Sensor, W0.8 x1/36",
P-721.17 PIFOC Objective Positioner & Scanner, 100 µm, LVDT Sensor, Specify Thread (P-721.01 - .08)
P-721.20 PIFOC Objective Positioner & Scanner, 100 µm, Capacitive Sensor, W0.8 x1/36"
See "PZT Control Electronics" section for our comprehensive line of low noise, modular and OEM control electronics for computer and manual control.
TECHNICAL DATA: Models
P-720.00
P-721.00
P-721.10
P-721.20
Units
Max. objective diameter
25
39
39
39
mm
Open loop travel @ 0 to 100 V
100
90
90
90
µm ± 20 %
A2
Closed loop travel ³
-
-
100
100
µm
A5
Integrated feedback sensor
-
-
LVDT
Capacitive
B
Closed / open loop ** resolution £
- / 1
- / 1
10 / 1
1 / 1
nm
C1
Closed loop linearity (typ.)
-
-
0.1
0.03
%
Full range repeatability (typ.)
-
-
±20
±5
nm
C3
Stiffness
0.2
0.3
0.3
0.3
N/µm ± 20 %
D1
Push/pull force capacity (in operating direction)
100 / 20
100 / 20
100 / 20
100 / 20
N
D3
Tilt (Q X, Q Y) (typ.)
30
30
30
30
µrad
E1
Lateral runout (Y) (typ.)
100
100
100
100
nm
E2
Electrical capacitance
3.6
3.6
3.6
3.6
µF ± 20 %
F1
* Dynamic operating current coefficient (DOCC)
4.5
5
5
5
µA/(Hz x µm)
F2
Unloaded resonant frequency
400
620
620
620
Hz ± 20 %
G2
Resonant frequency @ 120 g load
180
280
280
280
Hz ± 20 %
G3
Resonant frequency @ 200 g load
150
220
220
220
Hz ± 20 %
G3
Operating temperature range
- 20 to 80
- 20 to 80
- 20 to 80
- 20 to 80
° C
H2
Voltage connection
VL
VL
VL
VL
J1
Sensor connection
-
-
L
2 x C
J2
Weight (with cables)
100
215
235
240
g ± 5 %
Body material
Al
Al
Al
Al
L
Recommended driver/controller
G, C, (A)
G, C, (A)
H, E
H, F, L
M
* Dynamic Operating Current Coefficient in µA per Hertz and µm. Example: Sinusoidal scan of 30 µm at 10 Hz requires approximately 1.4 mA drive current.
** Noise equivalent motion with E-503 amplifier.