40G QSFP + kabel optik aktif JHA-QSFP-40G-AOC
Fitur
◊ Ndhukung aplikasi 40GBASE-SR4/QDR
◊ Compliant kanggo QSFP + Listrik MSA SFF-8436
◊ Multi rate nganti 10.3125Gbps
◊ + 3.3 V sumber daya tunggal
◊ Jarak transmisi nganti 300m
◊ konsumsi daya Low
◊ Suhu kasus operasi Komersial: 0 °C nganti +70 °C
◊ Kabel sertifikasi UL (opsional)
◊ RoHS tundhuk
Aplikasi
◊ 40GBASE-SR4 ing 10.3125Gbps saben jalur
◊ InfiniBand QDR
◊ pranala optik liyane
Spesifikasi:
Ratings maksimum Absolute
Tabel 1- Ratings maksimum Absolute
| Paramèter | Simbol | Min. | khas | Maks. | Unit | Cathetan |
| Tegangan Pasokan | Vcc3 | -0.5 | - | +3.6 | V | |
| Suhu panyimpenan | Ts | -10 | - | +70 | °C | |
| Kelembapan Operasi | RH | +5 | - | +85 | % | 1 |
Cathetan: 1 Ora kondensasi
Kahanan Operasi sing Disaranake
Tabel2- Kahanan operasi sing disaranake
| Paramèter | Simbol | Min. | khas | Maks. | Unit | Cathetan |
| Suhu Kasus Operasi | TC | 0 | - | +70 | °C | |
| Tegangan Pasokan Daya | Vcc | 3.14 | 3.3 | 3.47 | V | |
| Dissipation daya | Pd | - | - | 1.5 | Ing | 1 |
| tingkat bit | BR | 1.25 | 10.3125 | - | Gbps |
|
Cathetan: 1 Per terminal
Karakteristik Listrik
Tabel3- Listrik Karakteristik
| Paramèter | Simbol | Min. | Jinis. | Maks. | Unit | Cathetan | |
| ModSelL | Pilih Modul | VOL | 0 | - | 0.8 | V | |
| Modul Batal Pilih | VOH | 2.5 | - | VCC | V | ||
| LPMode | Mode Daya Sedheng | BAKAL | 0 | - | 0.8 | V | |
| Operasi Normal | HIV | 2.5 | - | VCC+0.3 | V | ||
| ResetL | Reset | BAKAL | 0 | - | 0.8 | V | |
| Operasi Normal | HIV | 2.5 | - | VCC+0.3 | V | ||
| ModPrsL | Operasi Normal | VOL | 0 | - | 0.4 | V | |
| IntL | ngganggu | VOL | 0 | - | 0.4 | V | |
| Operasi Normal | VoH | 2.4 | - | VCC | V | ||
| Karakteristik pemancar listrik | |||||||
| Diferensial Tanggal Input Swing | Vout | 200 | - | 1600 | mV | ||
| Impedansi Diferensial Output | KAROD | 90 | 100 | 110 | Oh | ||
| Karakteristik panrima listrik | |||||||
| Diferensial Data Output Swing | Aku teka, PP | 350 | - | 800 | mVPP | ||
| Bit Error Rate | BER | E-12 | 1 | ||||
| Impedansi Diferensial Input | KALIMAT | 90 | 100 | 110 | Oh | ||
Cathetan: 1 PRBS2^31-1@10.3125Gbps
Dianjurake Interface Circuit
Gambar 1, Recommended Interface Circuit
susunan pin
Gambar 2, Pin View
Tabel4- Fungsi Pin
Definisi
| Pin | Simbol | Jeneng / Katrangan | Cathetan |
| 1 | GND | lemah | 1 |
| 2 | tx2n | Input Data Inverted Transmitter | |
| 3 | tx2p | Input Data Non-Kuwalik Transmitter | |
| 4 | GND | lemah | 1 |
| 5 | tx4n | Input Data Inverted Transmitter | |
| 6 | tx4 p | Input Data Non-Kuwalik Transmitter | |
| 7 | GND | lemah | 1 |
| 8 | ModSelL | Pilih Modul | |
| 9 | ResetL | Reset Modul | |
| 10 | Vcc Rx Kab | + 3.3V Power Supply panrima | |
| 11 | SCL | 2-kabel jam antarmuka serial | |
| 12 | SDA | 2-kabel data antarmuka serial | |
| 13 | GND | lemah | 1 |
| 14 | rx3p | Receiver Non-Kuwalik Output Data | |
| 15 | Rx3n | Receiver Inverted Data Output | |
| 16 | GND | lemah | 1 |
| 17 | rx1p | Receiver Non-Kuwalik Output Data | |
| 18 | Rx1n | Receiver Inverted Data Output | |
| 19 | GND | lemah | 1 |
| 20 | GND | lemah | 1 |
| 21 | Rx2n | Receiver Inverted Data Output | |
| 22 | rx2p | Receiver Non-Kuwalik Output Data | |
| 23 | GND | lemah | 1 |
| 24 | Rx4n | Receiver Inverted Data Output | |
| 25 | rx4p | Receiver Non-Kuwalik Output Data | |
| 26 | GND | lemah | 1 |
| 27 | ModPrsL | Modul Saiki | |
| 28 | IntL | ngganggu | |
| 29 | Vcc Tx | + 3.3V Power supply pemancar | |
| 30 | Vcc1 | + 3.3V Power supply | |
| 31 | LPMode | Mode Daya Sedheng | |
| 32 | GND | lemah | 1 |
| 33 | tx 3 p | Input Data Non-Kuwalik Transmitter | |
| 34 | tx3n | Input Data Inverted Transmitter | |
| 35 | GND | lemah | 1 |
| 36 | tx1p | Input Data Non-Kuwalik Transmitter | |
| 37 | tx1n | Input Data Inverted Transmitter | |
| 38 | GND | lemah | 1 |
Wigati: 1. Circuit lemah internal diisolasi saka lemah sasis.
Spesifikasi Monitoring
Gambar 3, Peta Memori
Mekanik
Unit mm
Gambar 4, Diagram Mekanik
Tabel5- Kabel
dawa
| Dawane kabelL(Unit: m) | Sabar(Unit: cm) |
| ≤1.0 | +5/-0 |
| 1.0L≤4.5 | +15/-0 |
| 4.5L≤14.5 | +30/-0 |
| > 14.5 | +2%/-0 |
Pènget
Pancegahan Penanganan:Piranti iki gampang rusak amarga discharge elektrostatik (ESD).
Lingkungan bebas statis dianjurake banget. Tindakake pedoman miturut prosedur ESD sing tepat.
Keamanan Laser:Radiasi sing dipancarake dening piranti laser bisa mbebayani kanggo mata manungsa. Ngindhari sinar mata langsung utawa ora langsung.


















