CodingBox Nyaraka

Madaraja ya nguvu na matumizi ya kawaida ya nishati kwa aina ya moduli

Timu yetu inashughulikia tafsiri. Makala hii haipatikani kwa Kiswahili kwa sasa, kwa hiyo inaonyeshwa kwa Kiingereza.

A switch cage delivers a fixed budget of 3.3 V power and removes a fixed amount of heat. A module declares the class it needs, the host compares it with what the cage can do, and the mismatch shows up as a module stuck in low power or a port that overheats. This page is the lookup for both sides: the class ladders per form factor with the bytes that carry them, and the wattage real modules actually draw — for cage limits, PSU sizing and cooling calculations.

Class ladders by form factor

FamilyWhere declaredLadder
SFP / SFP+ / SFP28 (SFF-8472, SFF-8431)A0h byte 64 bits 1–0 (power level 2/3), byte 66 bit… per revisionLevel I ≤ 1.0 W · Level II ≤ 1.5 W · Level III ≤ 2.0 W (SFF-8431 Rev 4.1 adds level 3); > 2 W is outside the MSA
XFP (INF-8077i)byte 220 bits 7–6Level 1 ≤ 1.5 W · 2 ≤ 2.5 W · 3 ≤ 3.5 W · 4 > 3.5 W
QSFP+ (SFF-8636)byte 129 bits 7–6Class 1 ≤ 1.5 W · 2 ≤ 2.0 · 3 ≤ 2.5 · 4 ≤ 3.5 W
QSFP28 (SFF-8636 Rev 2.x)byte 129 bits 1–0 (classes 5–7), byte 107 (class 8 max power ×0.1 W)Class 5 ≤ 4.0 W · 6 ≤ 4.5 · 7 ≤ 5.0 · 8 = value in byte 107
QSFP-DD / OSFP / SFP-DD / QSFP-DD800 (CMIS)page 00h byte 200 bits 7–5 (class), byte 201 (max power ×0.25 W)Class 1 ≤ 1.5 W · 2 ≤ 3.5 · 3 ≤ 7 · 4 ≤ 8 · 5 ≤ 10 · 6 ≤ 12 · 7 ≤ 14 · 8 > 14 W (byte 201)
OSFP MSA cagemechanical/thermal specup to 25–30 W with integrated heat sink; OSFP-XD/OSFP224 higher
CFP / CFP2 / CFP4MDIO registersup to 32 W / 12 W / 6 W

Low-power mode is ≤ 1.5 W for every family that has one; the host releases it only after validating the class (Power & thermal, Host initialization).

Typical consumption of real modules

Values are typical maximums from datasheets of common products; class is the declared ceiling, consumption the measured draw.

ModuleTypical drawUsual classNotes
1000BASE-SX / LX SFP0.5–0.8 WI
1000BASE-T SFP1.0–1.3 WI / IIPHY inside; warm
1000BASE-ZX / EZX0.8–1.2 WI / II
10GBASE-SR SFP+0.6–0.8 WIVCSEL, no CDR needed
10GBASE-LR SFP+0.8–1.0 WI
10GBASE-ER / ZR SFP+1.2–1.5 WIIAPD receiver, sometimes TEC
10G DWDM tunable SFP+1.5–2.0 WII / IIITEC and tuning
10GBASE-T SFP+ (30 m / 80 m)1.8–2.5 WII / IIIexceeds many cages; check platform
10G BiDi SFP+0.8–1.0 WI
25GBASE-SR / LR SFP280.8–1.2 WICDR included
40GBASE-SR4 QSFP+1.2–1.5 W1
40GBASE-LR4 QSFP+3.0–3.5 W44 DFB + mux
100GBASE-SR4 QSFP282.0–3.5 W3 / 4
100G PSM4 / DR / CWDM4 QSFP283.0–3.5 W4
100GBASE-LR4 QSFP283.5–4.5 W4 / 5 / 6TEC on some
100GBASE-ER4 / ER4-lite4.5–5.5 W6 / 7SOA or high-power lasers
200G FR4 / DR4 QSFP565–6 W7 / 8PAM4 DSP
400GBASE-SR8 / DR4 QSFP-DD8–10 W4 / 5DSP dominates
400GBASE-FR4 / LR4 QSFP-DD9–12 W5 / 6EML lasers
400G ZR (QSFP-DD) / ZR+ (OSFP)15–20 W / 18–24 W8coherent DSP; QSFP-DD ZR often limited to 80 km by thermal
400G LPO4–6 W2 / 3no DSP (DSP & LPO)
800G SR8 / DR8 OSFP / QSFP-DD80013–16 W7 / 8
800G 2×FR4 / 2×LR415–18 W8
800G ZR / ZR+22–28 W8OSFP mostly
1.6T DR8 (OSFP224 / OSFP-XD)20–30 W8early products
Passive DAC0 W1 / IEEPROM only
ACC (linear active copper)0.5–1 W per end1 / I
AEC (retimed copper)3–6 W per end at 400/800G2 / 3
AOC 10G / 25G0.5–1 W per endI
AOC 100G / 400G / 800G2 / 4–5 / 6–8 W per end3 / 2 / 3

Roughly: VCSEL SR < DFB LR < EML/TEC ER-ZR < PAM4 DSP < coherent, and the DSP accounts for half or more of a 400G+ module's power (Module electronics).

Supply, current and inrush

ItemValueNotes
Supply voltage3.3 V ± 5 % (3.135–3.465 V) at the module connectorDDM Vcc reading should sit in this window (Temperature & voltage)
Current at class limit1.5 W → 0.45 A; 3.5 W → 1.06 A; 8 W → 2.4 A; 14 W → 4.2 A; 25 W → 7.6 Aper cage; high-radix boxes need tens of amps on 3.3 V
Hot-plug inrushlimited by the MSA (slew and peak above steady state); host limits current per cagea module exceeding it trips the port's protection
Low-power mode≤ 1.5 Wmanagement alive, Tx off, DSP idle
OSFP / QSFP-DD 12 V?no — all pluggables here run from 3.3 V onlyCFP family and some line-card optics use additional rails

Heat and cooling

ItemRule of thumb
Watts → BTU/h× 3.412
Case temperature limit70 °C (commercial) at the specified thermal point; class limits are defined at this temperature (Temperature grades)
Cage airflowmodule heat leaves through the cage's heat sink and the host's airflow; blocked intakes or reversed airflow overheat the front row first
Rack-level32 × 400G FR4 ≈ 350 W; 64 × 800G ≈ 1 kW of optics — comparable to the switch ASIC itself
Coherent400ZR+ at 20+ W needs OSFP or a riding heat sink cage; QSFP-DD versions derate reach or run hot

Symptoms of overrun and what the host does: Power & thermal.

Choosing by power

  1. Read the cage limit from the platform's hardware guide (per port, sometimes per group).
  2. Compare with the module's declared class (bytes above) — not with the datasheet typical.
  3. For 10GBASE-T SFP+, ZR/tunable SFP+, 400G ZR and 800G modules, confirm explicitly.
  4. Sum optics power for PSU sizing on high-radix boxes; add it to the ASIC and fan budget.
  5. Prefer LPO or lower-class PMDs where the link allows — power is also cooling and cost.

In CodingBox

The declared power class and maximum power bytes are shown on the Check screen for SFF-8472, SFF-8636 and CMIS modules; editing them does not change what the module draws, only what the host believes — a coded class lower than the real draw trips port protection instead of a polite low-power hold (Check transceiver, EEPROM editor).


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