Rene Fichtmueller ab6888fec8 feat: add OEM seed scrapers batch 29-30 (8 vendors, 147 PIDs)
Adds scrapers for:
- AudioCodes (12 PIDs) — SBC/media gateway transceivers
- Anritsu (19 PIDs) — T&M platform optical modules
- NETSCOUT (19 PIDs) — nGenius probe + InfiniStream optics
- Curtiss-Wright (19 PIDs) — MIL-grade ruggedized transceivers
- ECI Telecom (18 PIDs) — DWDM/OTN/SONET carrier platform
- UTStarcom (17 PIDs) — GPON/XGS-PON/EPON broadband access
- Turbolink (23 PIDs) — Taiwanese OEM transceiver manufacturer
- Chelsio (20 PIDs) — iWARP RDMA NIC optical modules

Scheduler: 8 new cron slots 22:00-23:45 UTC daily.
DB: 12,937 → 13,084 transceivers, 181 → 189 vendors.
2026-04-27 00:44:18 +02:00

130 lines
8.6 KiB
TypeScript

/**
* Anritsu OEM Transceiver Catalog Seed
*
* Seeds Anritsu-branded optical transceiver PIDs used in their
* test & measurement platforms (MT series, MP series, MS series).
* Anritsu optical modules are used in high-accuracy network testers,
* BERT platforms, and optical spectrum analyzers.
*
* Sources:
* - Anritsu MT1000A/MT1100A Network Master Pro datasheets
* - Anritsu MP1800A Signal Quality Analyzer specs
* - Anritsu optical transceiver compatibility guides
*
* Run: tsx packages/scraper/src/scrapers/anritsu-oem.ts
* Cron: daily at 22:15
*/
import { pool, ensureVendor } from "../utils/db";
interface AnritsuPID {
pid: string;
formFactor: string;
speedGbps: number;
speed: string;
reachMeters: number;
reachLabel: string;
fiberType: string;
connector: string;
wavelengths?: string;
standard?: string;
notes?: string;
}
const TELECOM_PIDS = new Set([
"MU909014C6",
"MU909014C7",
"MU909014B6",
"MU909014B7",
]);
const ANRITSU_PIDS: AnritsuPID[] = [
// ── 1G SFP (MT1000A modules) ─────────────────────────────────────────────
{ pid: "MU909014A", formFactor: "SFP", speedGbps: 1, speed: "1G", reachMeters: 550, reachLabel: "SX", fiberType: "MMF", connector: "LC", wavelengths: "850nm", standard: "1000BASE-SX", notes: "Anritsu MT1000A 1G SFP module" },
{ pid: "MU909014A1", formFactor: "SFP", speedGbps: 1, speed: "1G", reachMeters: 10000, reachLabel: "LX", fiberType: "SMF", connector: "LC", wavelengths: "1310nm", standard: "1000BASE-LX", notes: "Anritsu MT1000A 1G LX SFP" },
{ pid: "MU909014A2", formFactor: "SFP", speedGbps: 1, speed: "1G", reachMeters: 80000, reachLabel: "ZX", fiberType: "SMF", connector: "LC", wavelengths: "1550nm", standard: "1000BASE-ZX", notes: "Anritsu MT1000A 1G ZX SFP" },
// ── 10G SFP+ ──────────────────────────────────────────────────────────────
{ pid: "MU909014C", formFactor: "SFP+", speedGbps: 10, speed: "10G", reachMeters: 300, reachLabel: "SR", fiberType: "MMF", connector: "LC", wavelengths: "850nm", standard: "10GBASE-SR", notes: "Anritsu MT1000A 10G SR SFP+" },
{ pid: "MU909014C1", formFactor: "SFP+", speedGbps: 10, speed: "10G", reachMeters: 10000, reachLabel: "LR", fiberType: "SMF", connector: "LC", wavelengths: "1310nm", standard: "10GBASE-LR", notes: "Anritsu MT1000A 10G LR SFP+" },
{ pid: "MU909014C2", formFactor: "SFP+", speedGbps: 10, speed: "10G", reachMeters: 40000, reachLabel: "ER", fiberType: "SMF", connector: "LC", wavelengths: "1550nm", standard: "10GBASE-ER", notes: "Anritsu MT1000A 10G ER SFP+" },
{ pid: "MU909014C3", formFactor: "SFP+", speedGbps: 10, speed: "10G", reachMeters: 80000, reachLabel: "ZR", fiberType: "SMF", connector: "LC", wavelengths: "1550nm", standard: "10GBASE-ZR", notes: "Anritsu MT1000A 10G ZR SFP+" },
{ pid: "MU909014C6", formFactor: "SFP+", speedGbps: 10, speed: "10G", reachMeters: 80000, reachLabel: "DWDM", fiberType: "SMF", connector: "LC", wavelengths: "C-band DWDM", notes: "Anritsu 10G DWDM tunable SFP+" },
{ pid: "MU909014C7", formFactor: "SFP+", speedGbps: 10, speed: "10G", reachMeters: 80000, reachLabel: "DWDM-E",fiberType: "SMF", connector: "LC", wavelengths: "C-band DWDM", notes: "Anritsu 10G DWDM enhanced tunable SFP+" },
// ── 25G SFP28 ────────────────────────────────────────────────────────────
{ pid: "MU909014D", formFactor: "SFP28", speedGbps: 25, speed: "25G", reachMeters: 100, reachLabel: "SR", fiberType: "MMF", connector: "LC", wavelengths: "850nm", standard: "25GBASE-SR", notes: "Anritsu MT1000A 25G SR SFP28" },
{ pid: "MU909014D1", formFactor: "SFP28", speedGbps: 25, speed: "25G", reachMeters: 10000, reachLabel: "LR", fiberType: "SMF", connector: "LC", wavelengths: "1310nm", standard: "25GBASE-LR", notes: "Anritsu MT1000A 25G LR SFP28" },
// ── 40G QSFP+ ────────────────────────────────────────────────────────────
{ pid: "MU909014B", formFactor: "QSFP+", speedGbps: 40, speed: "40G", reachMeters: 150, reachLabel: "SR4", fiberType: "MMF", connector: "MPO", wavelengths: "850nm", standard: "40GBASE-SR4", notes: "Anritsu MT1000A 40G SR4 QSFP+" },
{ pid: "MU909014B1", formFactor: "QSFP+", speedGbps: 40, speed: "40G", reachMeters: 10000, reachLabel: "LR4", fiberType: "SMF", connector: "LC", wavelengths: "1310nm", standard: "40GBASE-LR4", notes: "Anritsu MT1000A 40G LR4 QSFP+" },
{ pid: "MU909014B6", formFactor: "QSFP+", speedGbps: 40, speed: "40G", reachMeters: 80000, reachLabel: "ER4", fiberType: "SMF", connector: "LC", wavelengths: "1310nm", standard: "40GBASE-ER4", notes: "Anritsu 40G ER4 extended reach" },
{ pid: "MU909014B7", formFactor: "QSFP+", speedGbps: 40, speed: "40G", reachMeters: 80000, reachLabel: "DWDM", fiberType: "SMF", connector: "LC", wavelengths: "C-band DWDM", notes: "Anritsu 40G DWDM coherent QSFP+" },
// ── 100G QSFP28 ──────────────────────────────────────────────────────────
{ pid: "MU909014E", formFactor: "QSFP28",speedGbps: 100, speed: "100G", reachMeters: 100, reachLabel: "SR4", fiberType: "MMF", connector: "MPO", wavelengths: "850nm", standard: "100GBASE-SR4", notes: "Anritsu MT1000A 100G SR4 QSFP28" },
{ pid: "MU909014E1", formFactor: "QSFP28",speedGbps: 100, speed: "100G", reachMeters: 10000, reachLabel: "LR4", fiberType: "SMF", connector: "LC", wavelengths: "1295-1310nm", standard: "100GBASE-LR4", notes: "Anritsu MT1000A 100G LR4 QSFP28" },
{ pid: "MU909014E2", formFactor: "QSFP28",speedGbps: 100, speed: "100G", reachMeters: 2000, reachLabel: "CWDM4", fiberType: "SMF", connector: "LC", wavelengths: "1271-1331nm", standard: "100GBASE-CWDM4" },
{ pid: "MU909014E3", formFactor: "QSFP28",speedGbps: 100, speed: "100G", reachMeters: 500, reachLabel: "DR", fiberType: "SMF", connector: "LC", wavelengths: "1310nm", standard: "100GBASE-DR" },
];
export async function scrapeAnritsuOem(): Promise<void> {
console.log("=== Anritsu OEM Transceiver Seed ===\n");
const vendorId = await ensureVendor(
"Anritsu",
"oem",
"https://www.anritsu.com",
undefined
);
let inserted = 0;
let updated = 0;
let errors = 0;
for (const p of ANRITSU_PIDS) {
const slug = `anritsu-${p.pid.toLowerCase().replace(/[^a-z0-9]+/g, "-")}`;
const category = TELECOM_PIDS.has(p.pid) ? "Telecom" : "DataCenter";
try {
const res = await pool.query(
`INSERT INTO transceivers
(slug, part_number, vendor_id, form_factor, speed, speed_gbps,
reach_meters, reach_label, fiber_type, connector, wavelengths,
dom_support, ieee_reference, market_status, category, notes)
VALUES ($1,$2,$3,$4,$5,$6,$7,$8,$9,$10,$11,true,$12,'Mainstream',$13,$14)
ON CONFLICT (slug) DO UPDATE SET
speed_gbps = EXCLUDED.speed_gbps,
reach_meters = CASE WHEN EXCLUDED.reach_meters > 0 THEN EXCLUDED.reach_meters ELSE transceivers.reach_meters END,
fiber_type = CASE WHEN EXCLUDED.fiber_type <> '' THEN EXCLUDED.fiber_type ELSE transceivers.fiber_type END,
wavelengths = COALESCE(EXCLUDED.wavelengths, transceivers.wavelengths),
updated_at = NOW()
RETURNING (xmax = 0) as was_inserted`,
[slug, p.pid, vendorId, p.formFactor, p.speed, p.speedGbps,
p.reachMeters, p.reachLabel, p.fiberType, p.connector,
p.wavelengths ?? null, p.standard ?? null, category, p.notes ?? null]
);
if (res.rows[0]?.was_inserted) inserted++; else updated++;
} catch (err) {
console.warn(` Skip ${p.pid}: ${(err as Error).message.slice(0, 80)}`);
errors++;
}
}
console.log(`\n=== Anritsu OEM Seed Complete ===`);
console.log(` Inserted: ${inserted}`);
console.log(` Updated: ${updated}`);
console.log(` Errors: ${errors}`);
console.log(` Total PIDs: ${ANRITSU_PIDS.length}\n`);
}
if (require.main === module) {
scrapeAnritsuOem()
.then(() => pool.end())
.catch((err) => {
console.error("Fatal:", err);
pool.end();
process.exit(1);
});
}