Producten
DETAILS VAN DE PRODUCTEN
Huis > Producten >
SIS‑100 High‑Precision & Low‑Noise 3‑Axis FOG, 0.01°/h Zero‑Bias Stability, High‑Reliability for INS & AHRS Systems

SIS‑100 High‑Precision & Low‑Noise 3‑Axis FOG, 0.01°/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-100
Biasstabiliteit:
≤0.01 (°) /h
Cijfer:
Industrieel
Technologie:
Gyroscoop voor glasvezel
Sollicitatie:
Bewegingsdetectie, stabilisatie, navigatie
Productnaam:
Gyroscoop met drie assen
Voedingsspanning:
+5 V
Markeren:

3-axis FOG with 0.01°/h stability

,

high-reliability FOG for INS systems

,

low-noise three axis gyroscope

Productomschrijving
Product Principle This product is an inertial angular velocity sensor based on the Sagnac effect, designed to measure the rotational angular velocity of the carrier along the sensitive axis. Adopting a digital closed-loop detection circuit, the device captures the optical path difference of counter-propagating light inside the optical fiber coil caused by external rotational angular motion. The optical path difference signal is converted into a voltage signal for modulation
Producten
DETAILS VAN DE PRODUCTEN
SIS‑100 High‑Precision & Low‑Noise 3‑Axis FOG, 0.01°/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-100
Biasstabiliteit:
≤0.01 (°) /h
Cijfer:
Industrieel
Technologie:
Gyroscoop voor glasvezel
Sollicitatie:
Bewegingsdetectie, stabilisatie, navigatie
Productnaam:
Gyroscoop met drie assen
Voedingsspanning:
+5 V
Min. bestelaantal:
1set
Levertijd:
6-8 weken
Betalingscondities:
L/C, D/A, D/P, T/T, Western Union
Markeren

3-axis FOG with 0.01°/h stability

,

high-reliability FOG for INS systems

,

low-noise three axis gyroscope

Productomschrijving
Product Principle This product is an inertial angular velocity sensor based on the Sagnac effect, designed to measure the rotational angular velocity of the carrier along the sensitive axis. Adopting a digital closed-loop detection circuit, the device captures the optical path difference of counter-propagating light inside the optical fiber coil caused by external rotational angular motion. The optical path difference signal is converted into a voltage signal for modulation