specdeviceinfo

SAMSUNG-SM-T217A

SAMSUNG-SM-T217A · Samsung

SoC
qcom
RAM
1.5 GB
Resolution
1024x600
Android API
specdeviceinfo analysis

What this hardware actually means

Editorial interpretation generated from the device's self-reported fields and our SoC tier database. Cross-reference with the raw fields below; if you spot a contradiction, please tell us.

Platform & performance positioning

The samsung SAMSUNG-SM-T217A reports its platform as qcom. The CPU configuration is 2-core, Krait, running up to 384 - 1728 MHz. The GPU is Qualcomm Adreno (TM) 305. Without a confirmed SoC tier mapping for this platform string, we treat the device as unverified. If you're using this entry to compare against a phone you're inspecting, focus on the raw fields below rather than tier-level conclusions.

Day-to-day workload

1.5 GB of RAM is tight for 2026 standards — usable for the basics but limits modern app behavior. Display resolution is 1024x600.

Identity

MANUFACTURER
samsung
BRAND
samsung
MODEL
SAMSUNG-SM-T217A

Operating System

PLATFORM
qcom

SoC / CPU

CPU
SAMSUNG LT02
CORES
2
FAMILY
Krait
CLOCK_SPEED
384 - 1728 MHz

GPU

GPU_VENDOR
Qualcomm
GPU_MODEL
Adreno (TM) 305
GPU_CLOCK
192 - 500 MHz

Memory & Storage

RAM
1.5 GB
FLASH
MAG2GC

Display

RESOLUTION
1024x600
TOUCHSCREEN
zinitix_touch

Sensors

ACCELEROMETER
k2dh
MAGNETOMETER
MS-3R
ALSPS
gp2a020

Audio & Power

CHARGER
sec-charger sec-fuelgauge

Other

CAMERA
s5k5ccgx sr130pc20 s5k5ccgx sr130pc20
SOUND
msm8230tapansnd
OTHER
ice4 ad7146_MLD fsa9485 geomagnetic wcd9xxx-i2c-core

Related devices

Other phones in our database with similar hardware — same brand or same SoC.

DevCheck AI · v1.0.4

Spot a refurbished, cloned, or emulated phone in 3 seconds.

DevCheck AI cross-checks 8 hardware signals on your Android device — CPU cores, ABI, SoC↔GPU vendor pairing, sensor presence, build fingerprint structure and more — and gives a single Hardware Trust Score.

  • Hardware Trust Score
  • Real Battery State-of-Health
  • SoC variant + big.LITTLE breakdown
  • Multi-source thermal monitoring