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SIS‑100HD High‑Precision & Low‑Noise 3‑Axis FOG, 0.005°/h Zero‑Bias Stability, High‑Reliability for INS & AHRS Systems

SIS‑100HD High‑Precision & Low‑Noise 3‑Axis FOG, 0.005°/h Zero‑Bias Stability, High‑Reliability for INS & AHRS Systems

MOQ: 1set
Levertijd: 6-8 weken
Betaalmethode: L/C, D/A, D/P, T/T, Western Union
Gedetailleerde informatie
Merknaam
SI
Modelnummer
SIS-100HD
Technologie:
Glasvezelgyroscoop
Toepassingen:
Drones, robotica, gaming, navigatiesystemen
Cijfer:
Industrieel
ondersteuning op maat:
OEM, ODM
Voedingsspanning:
+5 V
Biasstabiliteit:
≤0,005(°)/u
Markeren:

3-axis FOG with low-noise

,

high-precision three axis gyroscope

,

FOG gyroscope for INS systems

Productomschrijving
This product is a high-precision inertial angular velocity sensor based on the Sagnac effect, designed to measure the rotational angular velocity of a carrier along its sensitive axis. Equipped with a digital closed-loop detection circuit, the system captures the optical path difference of counter-propagating light in the fiber coil generated by external rotational motion. The collected optical path difference signal is converted into a voltage signal for professional
Producten
DETAILS VAN DE PRODUCTEN
SIS‑100HD High‑Precision & Low‑Noise 3‑Axis FOG, 0.005°/h Zero‑Bias Stability, High‑Reliability for INS & AHRS Systems
MOQ: 1set
Levertijd: 6-8 weken
Betaalmethode: L/C, D/A, D/P, T/T, Western Union
Gedetailleerde informatie
Merknaam
SI
Modelnummer
SIS-100HD
Technologie:
Glasvezelgyroscoop
Toepassingen:
Drones, robotica, gaming, navigatiesystemen
Cijfer:
Industrieel
ondersteuning op maat:
OEM, ODM
Voedingsspanning:
+5 V
Biasstabiliteit:
≤0,005(°)/u
Min. bestelaantal:
1set
Levertijd:
6-8 weken
Betalingscondities:
L/C, D/A, D/P, T/T, Western Union
Markeren

3-axis FOG with low-noise

,

high-precision three axis gyroscope

,

FOG gyroscope for INS systems

Productomschrijving
This product is a high-precision inertial angular velocity sensor based on the Sagnac effect, designed to measure the rotational angular velocity of a carrier along its sensitive axis. Equipped with a digital closed-loop detection circuit, the system captures the optical path difference of counter-propagating light in the fiber coil generated by external rotational motion. The collected optical path difference signal is converted into a voltage signal for professional