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Build yourself — for comparison

Build recommandé

Build yourself — for comparison

Architecture: sff build on LGA 1700 + Intel Z690

≈ €1,012

Total

  • Threads CPU8
  • RAM16 GB
  • Stockage8 TB
  • GPUany
Performance
100
Valeur
92
Efficacité
84
Extensibilité
100
Silence
95
Longévité
100
Fiabilité
75
Global
95
Repos
23 W
Typique
36 W
Pic
60 W
Énergie / an
≈78 €

Évaluationunderpowered

Pièces et prix

  • cpu

    Intel Core i5 14500T OEM/Tray

    14C/20T · 4.8 GHz · 35 W

    ≈ €280est.
  • motherboard

    Gigabyte Z690 GAMING X DDR4 V2

    Intel Z690 · ATX · 4× M.2

    ≈ €139est.
  • ram

    ADATA XPG GAMMIX D10 Black DDR4-3200 CL16 16GB (2x8GB)

    16 GB DDR4 · 3200 MT/s

    €39
  • case

    In Win Alice ATX Mid Tower Gray / Black

    ATX/MATX/ITX · 1× 3.5″

    ≈ €76est.
  • cooling

    Thermalright Le Grand Macho Air 159mm Fanless

    passive · 150 W TDP

    ≈ €35est.
  • psu

    Silverstone NJ600 Silver Fanless ATX 600W Fully Modular 80+ Titanium Certified

    600 W · titanium · modular

    ≈ €91est.
  • storage

    Seagate Exos X18 16TB HDD 3.5" SAS 12.0 Gb/s

    3.5 HDD · 16 TB

    ≈ €352est.
Total≈ €1,012

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Pourquoi ce build

  • Intel Core i5 14500T OEM/Tray: 20 threads covers the 8 needed with headroom.
  • Motherboard Intel Z690 (LGA 1700): matches the CPU socket and case size.
  • RAM: 16GB DDR4 — meets the 16GB the workload requires.
  • Chose Intel Core i5 14500T OEM/Tray over Intel Core Ultra 5 235: better overall fit for your priorities.

Qui devrait le choisir

  • Full control over every part, and every slot stays open for future upgrades.

Ce qu'il sacrifie

  • Requires assembly and tinkering — no turnkey warranty.

Plan du système

Le système dans son ensemble — avant la liste de courses.

diy · sff build on LGA 1700 + Intel Z690

Plan du système

Le système dans son ensemble — avant la liste de courses.

Mission

  • Plex· principal · 1 utilisateurs

Contraintes

Budget
Priorité énergie
5/10
Priorité bruit
3/10
Priorité extension
5/10

Architecture recommandée

diy · sff build on LGA 1700 + Intel Z690

Calcul
Intel Core i5 14500T OEM/Tray
Mémoire
ADATA XPG GAMMIX D10 Black DDR4-3200 CL16 16GB (2x8GB)
Stockage
Seagate Exos X18 16TB HDD 3.5" SAS 12.0 Gb/s
Réseau
2.5G onboard
Refroidissement
Thermalright Le Grand Macho Air 159mm Fanless
Alimentation
Silverstone NJ600 Silver Fanless ATX 600W Fully Modular 80+ Titanium Certified
Extension
2× PCIe, 4× M.2, 5× SATA, 2× RAM

Pour quoi paie-tu vraiment ?

Nous répartissons ton build entre la performance dont tu as besoin, celle que tu achètes et celle que tu utiliseras probablement au quotidien. Quand l'écart est grand, tu achètes trop.

UNDERPOWERED — le build pourrait peiner avec la charge de travail indiquée.

UNDERPOWERED — le build pourrait peiner avec la charge de travail indiquée.

Performance nécessairePerformance achetéeProbablement utilisée
Threads CPUoverbuy8204
RAM16168
Stockageoverbuy8162
VRAM GPU
Réseau1.0G1.0G1.0G

Ce que cela signifie

  • You're paying for 20 CPU threads when the workload needs 8 — 2.5x the requirement.
  • You're paying for 16TB storage when the workload needs 8TB — 2x the requirement.
  • The build is under-powered for the stated workload — it may struggle under load.

Scoring & Risques

Un score de pérennité explicable, le score de risque homelab, un audit final avant achat et ce qui deviendra le facteur limitant au fil du temps.

83Risque modéré3

Score de pérennité

Pérennité solide

83

Strong future-proofing (83/100) — this build should stay relevant for years without major surgery.

Upgrade path75

DIY build — the CPU, motherboard and PSU can each be upgraded independently without replacing the whole system.

Expansion100

Expansion headroom: 2 PCIe slot(s), 4 M.2, 5 SATA, 0 drive bay(s), 2 RAM slot(s) free.

Storage growth90

Storage is 50% utilized with 0 free drive bay(s) and 5 free SATA port(s).

Memory growth75

2 RAM slot(s) free; memory is 100% utilized.

Networking80

Networking is 2500 Mbps, and a free PCIe slot can add a faster NIC later.

Replacement ease90

ATX form factor with standard, socketed components — most parts are easy to replace.

Workload change70

No GPU, but there is room (2 PCIe slot(s), PSU headroom 10x) to add one for AI/transcoding.

Score de risque homelab

Risque modéré

46

Moderate risk (46/100) — a few items are worth fixing before you commit (see checklist).

Single point of failure

Risque: critical

All data sits on a single drive with no redundancy — one failure means total loss.

Solution: Add at least a mirror (RAID 1/ZFS mirror) for irreplaceable data, or an additional parity drive for larger arrays.

Storage risk

Risque: medium

1 desktop hard drive(s) — not rated for 24/7 duty, vibration or heat; higher long-run failure risk.

Solution: For an always-on system, prefer NAS/CMR-rated drives; monitor SMART and replace before the warranty ends.

Data loss risk

Risque: critical

1 drive(s), no redundancy, hard-drive media — the worst combination for keeping data safe.

Solution: Add redundancy and an off-site/off-box backup for anything irreplaceable.

Power risk

Risque: low

PSU is 600W, peak load 60W (10%).

Solution: PSU sizing leaves healthy headroom for spikes and future parts.

Network risk

Risque: low

Single 2500 Mbps NIC — a switch/port failure takes the box fully offline, and multi-user media can saturate 2500 Mbps.

Solution: Consider a second NIC or a managed switch; for heavy media, plan for 2.5/10G before the build.

Expansion risk

Risque: low

2 PCIe, 4 M.2, 5 SATA, 0 bays free.

Solution: Healthy room for future drives, NICs and accelerators.

Upgrade risk

Risque: low

2024 platform — current generation with a forward-looking socket/feature set.

Solution: Buy for the workload, not the socket — upgrade paths are a bonus, not a guarantee.

Audit final du build

Audit found 3 critical and 0 warning item(s) worth fixing before you buy.

3 Critique0 Avertissement1 Optimisation2 Optionnel2 Futur

Check the balance

Critique

This build may struggle with the stated workload.

Action: Reconsider the config for the stated workload or budget before buying.

Catégorie: balance

No storage redundancy

Critique

1 drive(s) with no mirror or parity for the data you plan to store.

Action: Add at least a mirror for irreplaceable data before you migrate anything.

Catégorie: storage

RAM is nearly exhausted

Critique

The workload needs 100% of available RAM — swapping will hurt.

Action: Add more RAM now, while slots are still free.

Catégorie: memory

Use NAS-rated drives

Optimisation

Desktop drives in an always-on NAS/server role have higher long-run failure rates.

Action: Prefer NAS/CMR-rated drives for 24/7 duty.

Catégorie: storage

Add a UPS

Optionnel

An always-on server holding data should survive power blips.

Action: Add an online/line-interactive UPS sized to the build's idle draw.

Catégorie: power

Keep a backup off-box

Optionnel

Redundancy inside the box does not survive fire, theft or a whole-array fault.

Action: Mirror the important data to an external drive, a second box, or cloud.

Catégorie: storage

RAM expansion available

Futur

2 RAM slot(s) free for a later upgrade.

Action: Leave them free until the workload actually grows.

Catégorie: memory

PCIe slot available

Futur

2 free PCIe slot(s) for a NIC, HBA or GPU later.

Action: Use it for a 10G NIC, extra HBA, or an accelerator when the need appears.

Catégorie: expansion

Ce qui devient la limite

RAM is tight is the most likely thing to date this build within 1-2y.

Horizon: 1-2y

RAM is tight

Pourquoi: Memory is 100% utilized — a growing workload will hit the ceiling quickly.

Que faire: Add the remaining RAM before prices change, while slots are free.

Horizon: 3-5y

Storage growing

Pourquoi: 50% of capacity in use — comfortable today, tighter over a few years.

Que faire: Plan the growth curve; keep at least one bay free for the next drive.

Ce qui te limite en premier

RAM is the closest to its limit (100% of capacity in use) — it will likely force the next upgrade.

Prochaines mises à niveau

  1. 1Upgrade ram to Corsair Vengeance LPX Black DDR4-4000 CL18 64GB (2x32GB)
  2. 2Upgrade cpu to AMD Ryzen 9 5950X
  3. 3Upgrade storage to Seagate Exos X22 22TB 3.5" HDD 7200RPM SATA
  4. 4Upgrade motherboard to Gigabyte B860M AORUS ELITE WIFI6E DDR5 Micro ATX

Autres builds à considérer

Variantes alternatives générées par le moteur pour le même scénario — touchez-en une pour voir ses pièces.

Smart build — best all-round

mini system — AMD Ryzen 5 7430U · Repos 9 W · balanced

≈ €646

Repos
9 W
Typique
23 W
Énergie / an
≈50 €
RôleComposantQtéPrixAcheter
platformGEEKOM A5 — AMD Ryzen 5 7430U1€415
storageMSI SPATIUM M480 HS 1TB SSD M.2-2280 PCIe 4.0 X4 NVMe1≈ €55
storageSeagate IronWolf Pro 8TB HDD 7200RPM 3.5" SATA Internal1≈ €176
Total:≈ €646

Value build — most for your money

mini system — AMD Ryzen 5 7430U · Repos 9 W · balanced

≈ €646

Repos
9 W
Typique
23 W
Énergie / an
≈50 €
RôleComposantQtéPrixAcheter
platformGEEKOM A5 — AMD Ryzen 5 7430U1€415
storageMSI SPATIUM M480 HS 1TB SSD M.2-2280 PCIe 4.0 X4 NVMe1≈ €55
storageSeagate IronWolf Pro 8TB HDD 7200RPM 3.5" SATA Internal1≈ €176
Total:≈ €646

Long-term build — expandable & future-proof

mini system — AMD Ryzen 5 7430U · Repos 9 W · balanced

≈ €646

Repos
9 W
Typique
23 W
Énergie / an
≈50 €
RôleComposantQtéPrixAcheter
platformGEEKOM A5 — AMD Ryzen 5 7430U1€415
storageMSI SPATIUM M480 HS 1TB SSD M.2-2280 PCIe 4.0 X4 NVMe1≈ €55
storageSeagate IronWolf Pro 8TB HDD 7200RPM 3.5" SATA Internal1≈ €176
Total:≈ €646

Build yourself — for comparison

sff build on LGA 1700 + Intel Z690 · Repos 23 W · underpowered

≈ €1,012

Repos
23 W
Typique
36 W
Énergie / an
≈78 €
RôleComposantQtéPrixAcheter
cpuIntel Core i5 14500T OEM/Tray1≈ €280
motherboardGigabyte Z690 GAMING X DDR4 V21≈ €139
ramADATA XPG GAMMIX D10 Black DDR4-3200 CL16 16GB (2x8GB)1€39
caseIn Win Alice ATX Mid Tower Gray / Black1≈ €76
coolingThermalright Le Grand Macho Air 159mm Fanless1≈ €35
psuSilverstone NJ600 Silver Fanless ATX 600W Fully Modular 80+ Titanium Certified1≈ €91
storageSeagate Exos X18 16TB HDD 3.5" SAS 12.0 Gb/s1≈ €352
Total:≈ €1,012

Vérifié

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