ISM330DLCTR

STMicroelectronics
511-ISM330DLCTR
ISM330DLCTR

Tillverk:

Beskrivning:
IMU:er - Tröghetsmåttenheter iNEMO 6-axis IMU: 3-axis accelerometer and 3-axis gyroscope with digital output

ECAD-modell:
Ladda ned den kostnadsfria Libary Loader för att omvandla denna fil för ditt ECAD-verktyg. Läs mer om ECAD-modellen.

På lager: 8 478

Lager:
8 478 Kan skickas omedelbart
Fabrikens ledtid:
24 Veckor Uppskattad tillverkningstid i fabriken för kvantiteter som är större än vad som visas.
Lång ledtid har rapporterats för denna produkt.
Minst: 1   Flera: 1   Maximalt: 1000
Enhetspris:
-,-- kr
Ext. pris:
-,-- kr
Est. Pris:
Förpackning:
Komplett Papprulle (beställ i multiplar av 5000)

Prissättning (SEK)

Antal Enhetspris
Ext. pris
Skärtejp/MouseReel™
67,69 kr 67,69 kr
61,15 kr 305,75 kr
58,64 kr 586,40 kr
55,70 kr 1.392,50 kr
53,52 kr 2.676,00 kr
50,58 kr 5.058,00 kr
44,69 kr 22.345,00 kr
43,38 kr 43.380,00 kr
Komplett Papprulle (beställ i multiplar av 5000)
43,38 kr 216.900,00 kr
† 58,00 kr MouseReel™-avgiften kommer att läggas till och beräknas i din kundvagn. MouseReel™-beställningar kan inte avbeställas eller returneras.

Produktattribut Attributvärde Välj attribut
STMicroelectronics
Produktkategori: IMU:er - Tröghetsmåttenheter
RoHS-direktivet:  
SMD/SMT
LGA-14
6-axis
I2C, SPI
Digital
2 g, 4 g, 8 g, 16 g
16 bit
0.061 mg/LSB, 0.122 mg/LSB, 0.244 mg/LSB, 0.488 mg/LSB
- 40 C
+ 85 C
1.71 V
3.6 V
750 uA
Reel
Cut Tape
MouseReel
ISM330DLC
Märke: STMicroelectronics
Fuktkänsliga: Yes
Produkttyp: IMUs - Inertial Measurement Units
Område: 2000 dps
Avkänningsaxel: X, Y, Z
Fabriksförpackningskvantitet: 5000
Underkategori: Sensors
Enhetens vikt: 13,200 mg
Hittade produkter:
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Attribut som valts: 0

TARIC:
8542399000
CNHTS:
8542391090
CAHTS:
8542390000
USHTS:
8542390090
MXHTS:
8542399999
ECCN:
EAR99

iNEMO-Inertial Modules

STMicroelectronics iNEMO-Inertial Modules are compact, robust, easy-to-assemble solutions compared to discrete MEMS products. iNEMO System-in-packages (SiP) combines an accelerometer, gyroscope, and magnetometer in a monolithic 6-axis or 9-axis solution. The integration of multiple sensor outputs brings motion sensing systems to the level of accuracy required for the most demanding applications. These applications include enhanced gesture recognition, gaming, augmented reality, indoor navigation, and localization-based services.

Industrial Motion Sensors

STMicroelectronics Industrial Motion Sensors are high-performance and ultralow-power sensing solutions for Industry 4.0 with a minimum longevity commitment of 10 years. These STMicroelectronics sensors offer high performance and quality for industrial applications like robotics, condition monitoring, industrial vehicle guidance, and stabilization. Other applications include power tools, building industrial automation, navigation, medical, and defense systems. These factory-regulated sensors result in highly stable outputs and eliminate the need for re-calibration. The sensors feature robust and highly selective testing flow to guarantee accuracy, reliability, and safety.

MEMS Accelerometers

STMicroelectronics MEMS Accelerometers include analog and digital sensors featuring up to ±400g acceleration full scale and from 1.71V to 3.6V supply voltage. Accelerometers are an ideal choice for ultra-low-power applications and have advanced power-saving features. Features include low-power mode, auto wake-up function, and FIFO buffer that can be used to store data. This reduces the host processor loading and system power consumption.

ISM330DLC iNEMO® 6-Axis Inertial Module

STMicroelectronics ISM330DLC iNEMO® 6-Axis Inertial Module is a high-performance 3D digital accelerometer and 3D digital gyroscope ideal for Industry 4.0 applications. This system-in-package module uses the robust and mature manufacturing processes already used for the production of micromachined accelerometers and gyroscopes. The various sensing elements of the STMicroelectronics ISM330DLC iNEMO® 6-Axis Inertial Module are manufactured using specialized micromachining processes, while the IC interfaces are developed using CMOS technology. This allows the design of a trimmed dedicated circuit to match the characteristics of the sensing element.