NEMIX RAM DDR5-5600 2TB (16x128GB) ECC RDIMM CL46 1.1V Supermicro H14SST-G memory upgrade
- 2TB (16 x 128GB)
- 288-Pin DDR5 RDIMM
Me võtame vastu krüptoraha — nii saab teie hoitav krüptoraha osta päris riistvara.Makske krüptorahaga, kulutage seda päris riistvarale. Tasuta kindlustatud tarne kogu maailmas, üle 399 $. Lihtsad, kaubamärgita väliskarbid, saadetud Saksamaalt.Tasuta kindlustatud tarne üle 399 $. Teie kurss lukustatakse 30 minutiks kohe, kui kassa avaneb.Kurss lukustatud 30 minutiks. Iga toode on pitseeritud, selle seerianumber on kontrollitud ja sellel kehtib 24-kuuline garantii.Pitseeritud, 24-kuulise garantiiga.
LORDWORLD
Measures light, temperature, humidity, pressure, motion, UV and VOCs on a 1.3 inch OLED via two-wire I2C
The LORDWORLD Environment Sensors HAT mounts directly on a Jetson Nano and provides six onboard sensors covering light, temperature, humidity, air pressure, motion, UV, and volatile organic compounds. A 1.3inch OLED shows readings instantly without an external monitor. The board targets makers and developers building environmental monitoring or edge AI prototypes.
All sensors share a single I2C bus so the host reads every channel with two wires, keeping CPU load low during long logging sessions. The BME280 and SGP40 report climate and air-quality trends without drift in typical indoor conditions. The ICM20948 delivers steady nine-axis motion data while the TSL25911FN and Si1145 track ambient and UV light levels across extended deployments.
The HAT consumes multiple I2C addresses, limiting how many additional I2C peripherals can be added without a multiplexer. GPIO pins used for the OLED and sensor interrupts reduce the count available for other hats or custom circuitry. Projects needing many simultaneous I2C devices or full GPIO freedom must plan around these constraints.
| Brand | LORDWORLD |
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The BME280 and SGP40 sensors operate over the I2C bus with very low current draw, adding negligible load to the Jetson Nano's 5 V rail during continuous environmental monitoring.
The HAT connects to the 40-pin GPIO header and uses the I2C bus; you need a Jetson Nano running a Linux image with I2C enabled and Python libraries such as smbus2 or CircuitPython for the TSL25911FN, BME280, ICM20948, Si1145 and SGP40 drivers.
All sensors share the I2C bus on fixed addresses, leaving the CSI connector and PWM pins free, so a legacy camera module or fan controller works alongside the HAT without address collisions.
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