MICROCHIP PD77728 Auto Mode Register Peta
Spesifikasi Produk
- Model: PD 77728
- Mode: otomatis
- Register Peta: Klebu
Pandhuan Panggunaan Produk
Automode Operasional Flowchart
Automode Operational Flowchart nyedhiyakake pandhuan langkah-langkah kanggo nggunakake peta registrasi PD77728:
- Miwiti proses.
- Tindakake Setelan Awal (opsional) kanthi ngonfigurasi topeng Interrupt (0x01), Prioritas Port (0x15), Miscellaneous (0x17), Pemetaan Port (0x26), Prioritas port multi-bit OSS (0x27, 0x28), Watesan daya port (0x2A, 0x2B ), lan Inrush sing bisa diatur (0x40).
- Priksa manawa setelan Awal wis rampung.
- Yen YA, nerusake menyang Setelan Mode Port kanthi ngonfigurasi mode Port (0x12) lan tombol Aktifake Daya (0x19).
- Yen NO, priksa manawa Pin Interrupt kurang.
- Yen YA, waca Register Kedadean (0x00) lan ndhaftar Acara sing cocog (0x02-0x0B).
- Priksa manawa Port ON.
- Yen YA, waca Parameter Pengukuran Port: Voltage & Saiki (0x30-0x3F), Parameter Tandha IEEE (0x44-0x4B), Parameter Klasifikasi (0x4C- 0x4F), lan Parameter Autoclass (0x51-0x54)
- Mungkasi proses.
Ndhaptar Details Peta
Rincian peta registrasi piranti PD77728 kadhaptar ing macem-macem tabel:
- Interupsi (Tabel 2-1)
- Acara (Tabel 2-2)
- Status (Tabel 2-3)
Pitakonan sing Sering Ditakoni (FAQ)
- P: Apa komponen utama Peta Register Mode Otomatis PD77728?
A: Komponen utama kalebu ndhaftar Interrupts, Events, lan Status minangka rinci ing tabel peta register. - P: Kepiye carane ngatur Setelan Mode Port ing Bagan Alur Operasional Automode?
A: Sampeyan bisa ngatur Mode Port kanthi nyetel mode Port (0x12) lan Power Enable pushbutton (0x19) miturut instruksi sing kasedhiya.
PD77728 Auto Mode Register Peta
Pambuka
Dokumen iki njlèntrèhaké PD77728 ndhaftar map lan ndhaftar fungsi. Cara komunikasi PD77728 adhedhasar I2C, nggunakake akses register minangka ditampilake ing Figure 1. Saben PD77728 kalebu loro alamat I2C consecutive (alamat I2C siji kontrol 4 bandar 2 pasangan). Loro alamat I2C disetel nganggo pin A1–A4, lan saben alamat 7 bit. Piranti PD77728 ora mbutuhake dhukungan jam saka host. Waca bagean I2C ing PD77728 Datasheet kanggo program alamat I2C.
Gambar 1. Transaksi I2C
- Automode Operasional Flowchart
Tokoh ing ngisor iki nuduhake Automode Operational Flowchart saka PD77728 peta register.
Gambar 1-1. Automode Operasional Flowchart - Register Peta
Tabel ing ngisor iki nampilake rincian peta register piranti PD77728.
Tabel 2-1. interrupts
alamat | jeneng | R/W | Jinis | Bit 7 | Bit 6 | Bit 5 | Bit 4 | Bit 3 | Bit 2 | Bit 1 | Bit 0 | Reset Negara |
0x00 | ngganggu | RO | Sistem | Acara Pasokan | Miwiti Fault | Kakehan beban | Kelas Rampung | I2C
SR / Cap Meas |
Disko nnect | Pwr apik
Acara |
Pwr Aktifake
Acara |
1000,
0000b |
0x01 | Int
Topeng |
R/W | Sistem | Topeng | 1000,
0000b |
Tabel 2-2. Acara
alamat | jeneng | R/W | Jinis | Bit 7 | Bit 6 | Bit 5 | Bit 4 | Bit 3 | Bit 2 | Bit 1 | Bit 0 | Reset negara |
0x02 | daya | RO | 4321 | Power Good Ganti | Power Aktifake Ganti | 0000,0
000b |
||||||
0x03 | CoR | Pelabuhan 4 | Pelabuhan 3 | Pelabuhan 2 | Pelabuhan 1 | Pelabuhan 4 | Pelabuhan 3 | Pelabuhan 2 | Pelabuhan 1 | |||
0x04 | deteksi/
Klasifikasi |
RO | 4321 | Kelas Rampung | Ndeteksi / CC Rampung | 0000,0
000b |
||||||
0x05 | CoR | Pelabuhan 4 | Pelabuhan 3 | Pelabuhan 2 | Pelabuhan 1 | Pelabuhan 4 | Pelabuhan 3 | Pelabuhan 2 | Pelabuhan 1 | |||
0x06 | Fault | RO | 4321 | Underloading | Kakehan beban | 0000,0
000b |
||||||
0x07 | CoR | Pelabuhan 4 | Pelabuhan 3 | Pelabuhan 2 | Pelabuhan 1 | Pelabuhan 4 | Pelabuhan 3 | Pelabuhan 2 | Pelabuhan 1 | |||
0x08 | Miwiti | RO | 4321 | Fault Limit Saiki | Daya Up Fault | 0000,0
000b |
||||||
0x09 | CoR | Pelabuhan 4 | Pelabuhan 3 | Pelabuhan 2 | Pelabuhan 1 | Pelabuhan 4 | Pelabuhan 3 | Pelabuhan 2 | Pelabuhan 1 | |||
0x0A | Pasokan | RO | 4321 | Luwih saka Temp | VDD UVLO
Gagal |
VDD UVLO
Pènget |
Vpwr UVLO | PCUT34 | PCUT1 2 | OSS
Acara |
RAM
Fault |
00xx,0 000b |
0x0b | CoR |
Tabel 2-3. Status
alamat | jeneng | R/W | Jinis | Bit 7 | Bit 6 | Bit 5 | Bit 4 | Bit 3 | Bit 2 | Bit 1 | Bit 0 | Reset negara |
0x0c | Deteksi / Kelas
Status |
RO | 1 | Kelas sing dideteksi (pirsani Tabel 3-8) | Status Deteksi (pirsani Tabel 3-7) | 0000,00
00b |
||||||
0x0d | Deteksi / Kelas
Status |
RO | 2 | 0000,00
00b |
||||||||
0x0E | Deteksi / Kelas
Status |
RO | 3 | 0000,00
00b |
||||||||
0x0f | Deteksi / Kelas
Status |
RO | 4 | 0000,00
00b |
||||||||
0x10 | daya | RO | 4321 | Daya apik | Daya Aktifake | 0000,00
00b |
||||||
Pelabuhan 4 | Pelabuhan 3 | Pelabuhan 2 | Pelabuhan 1 | Pelabuhan 4 | Pelabuhan 3 | Pelabuhan 2 | Pelabuhan 1 | |||||
0x11 | Pin | RO | Sistem | OTOMATIS | Alamat Klien | dilindhungi | dilindhungi | 0,SA[4: 0],0,0b |
Tabel 2-4. Konfigurasi
alamat | jeneng | R/W | Jinis | Bit 7 | Bit 6 | Bit 5 | Bit 4 | Bit 3 | Bit 2 | Bit 1 | Bit 0 | Reset negara |
0x12 | Pelabuhan
Mode |
R/W | 4321 | Mode Port 4 (pirsani Tabel 3-9) | Mode Port 3 (pirsani Tabel 3-9) | Mode Port 2 (pirsani Tabel 3-9) | Mode Port 1 (pirsani Tabel 3-9) | 0000,00 00b | ||||
0x15 | PWRPR | R/W | 4321 | Prioritas Daya Port | Pateni PCUT | 0000,00
00b |
||||||
Pelabuhan 4 | Pelabuhan 3 | Pelabuhan 2 | Pelabuhan 1 | Pelabuhan 4 | Pelabuhan 3 | Pelabuhan 2 | Pelabuhan 1 | |||||
0x17 | Misc | R/W | Global | Ngaktifake Pin Interrupt | Ukuran Port Sig | dilindhungi | Multi-Bit
Prioritas |
Ganti | dilindhungi | 0x29
kelakuane |
1100,00
00b |
|
KELAS | DETEK | |||||||||||
0x19 | daya
Aktifake |
WO | 4321 | Power Off | Power On | 0000,00
00b |
||||||
Pelabuhan 4 | Pelabuhan 3 | Pelabuhan 2 | Pelabuhan 1 | Pelabuhan 4 | Pelabuhan 3 | Pelabuhan 2 | Pelabuhan 1 |
Tabel 2-5. Umum
alamat | jeneng | R/W | Jinis | Bit 7 | Bit 6 | Bit 5 | Bit 4 | Bit 3 | Bit 2 | Bit 1 | Bit 0 | Reset negara |
0x1b | ID | RO | Sistem | ID produksi | ID IC | xxxx,x101b (Cathetan 1) | ||||||
0x1c | AC/CC | RO | 4321 | AutoClass Dideteksi | Asil Priksa Sambungan | 0000,0000b | ||||||
Pelabuhan 4 | Pelabuhan 3 | Pelabuhan 2 | Pelabuhan 1 | Pelabuhan 3, 4 | Pelabuhan 1, 2 |
- Cathetan:
- 1. x = Nilai ora dingerteni
- Tabel 2-6. khusus
alamat | jeneng | R/W | Jinis | Bit 7 | Bit 6 | Bit 5 | Bit 4 | Bit 3 | Bit 2 | Bit 1 | Bit 0 | Reset Negara |
0x24 | Daya ing Fault | RO | 4321 | Pelabuhan 4 | Pelabuhan 3 | Pelabuhan 2 | Pelabuhan 1 | 0000,0000b | ||||
0x25 | COR | 0000,0000b | ||||||||||
0x26 | Port Matriks | R/W | 4321 | Port 4 remap | Port 3 remap | Port 2 remap | Port 1 remap | 1110,0100b | ||||
0x27 | Prioritas Daya Multi-Bit | R/W | 21 | Rev | Pelabuhan 2 | Rev | Pelabuhan 1 | 0000,0000b | ||||
0x28 | R/W | 43 | Rev | Pelabuhan 4 | Rev | Pelabuhan 3 | 0000,0000b | |||||
0x2A | Konfigurasi Polisi 4P | R/W | 21 | Pelabuhan Polisi 4P 1, 2 | 1111,1111b | |||||||
0x2b | R/W | 43 | Pelabuhan Polisi 4P 3, 4 | 1111,1111b | ||||||||
0x2c | Temp | RO | 4321 | Suhu Mati 367 − 2 * (regVal_desimal) (derajat Celsius) | — | |||||||
0x2E | VPWR | RO | 4321 | VPWR LSB | — | |||||||
0x2f | RO | dilindhungi | VPWR MSB | — |
Tabel 2-7. Set Register Lengkap—Pengukuran Parametrik Port
alamat | jeneng | R/W | Jinis | Bit 7 | Bit 6 | Bit 5 | Bit 4 | Bit 3 | Bit 2 | Bit 1 | Bit 0 | Reset Negara |
0x30 | I-LSB | RO | 1 | Port 1 LSB Saiki | 0000,0000b | |||||||
0x31 | I-MSB | RO | 1 | dilindhungi | Port 1 MSB Saiki | 0000,0000b | ||||||
0x32 | V-LSB | RO | 1 | Port 1 Voltaglan LSB | 0000,0000b | |||||||
0x33 | V-MSB | RO | 1 | dilindhungi | Port 1 Voltaglan MSB | 0000,0000b | ||||||
0x34 | I-LSB | RO | 2 | Port 2 LSB Saiki | 0000,0000b | |||||||
0x35 | I-MSB | RO | 2 | dilindhungi | Port 2 MSB Saiki | 0000,0000b | ||||||
0x36 | V-LSB | RO | 2 | Port 2 Voltaglan LSB | 0000,0000b | |||||||
0x37 | V-MSB | RO | 2 | dilindhungi | Port 2 Voltaglan MSB | 0000,0000b | ||||||
0x38 | I-LSB | RO | 2 | Port 3 LSB Saiki | 0000,0000b |
alamat | jeneng | R/W | Jinis | Bit 7 | Bit 6 | Bit 5 | Bit 4 | Bit 3 | Bit 2 | Bit 1 | Bit 0 | Reset Negara |
0x39 | I-MSB | RO | 2 | dilindhungi | Port 3 MSB Saiki | 0000,0000b | ||||||
0x3A | V-LSB | RO | 2 | Port 3 Voltaglan LSB | 0000,0000b | |||||||
0x3b | V-MSB | RO | 2 | dilindhungi | Port 3 Voltaglan MSB | 0000,0000b | ||||||
0x3c | I-LSB | RO | 2 | Port 4 LSB Saiki | 0000,0000b | |||||||
0x3d | I-MSB | RO | 2 | dilindhungi | Port 4 MSB Saiki | 0000,0000b | ||||||
0x3E | V-LSB | RO | 2 | Port 4 Voltaglan LSB | 0000,0000b | |||||||
0x3f | V-MSB | RO | 2 | dilindhungi | Port 4 Voltaglan MSB | 0000,0000b |
Tabel 2-8. Set Register Lengkap—Konfigurasi 1
alamat | jeneng | R/W | Jinis | Bit 7 | Bit 6 | Bit 5 | Bit 4 | Bit 3 | Bit 2 | Bit 1 | Bit 0 | Reset Negara |
0x40 | Foldback lan Inrush | RW | 4321 | Ora Digunakake | Inrush sing bisa diatur | 0000,0000b | ||||||
Pelabuhan 4 | Pelabuhan 3 | Pelabuhan 2 | Pelabuhan 1 | |||||||||
0x41 | Firmware | RO | Sistem | Revisi Firmware | xxx,xxxb (Cathetan 1) | |||||||
0x43 | ID piranti | RO | Sistem | ID piranti | Revisi silikon | Hubungi Microchip kanggo perangkat kukuh paling dianyari. |
- Cathetan:
- 1. x = Variabel ora dingerteni
- Tabel 2-9. Pangukuran Signature Port
alamat | jeneng | R/W | Jinis | Bit 7 | Bit 6 | Bit 5 | Bit 4 | Bit 3 | Bit 2 | Bit 1 | Bit 0 | Reset Negara |
0x44 | Ndeteksi Resistance | RO | 4 | Port 1 Deteksi Signature Resistance | 0000,0000b | |||||||
0x45 | Ndeteksi Resistance | RO | 3 | Port 2 Deteksi Signature Resistance | 0000,0000b | |||||||
0x46 | Ndeteksi Resistance | RO | 2 | Port 3 Deteksi Signature Resistance | 0000,0000b | |||||||
0x47 | Ndeteksi Resistance | RO | 1 | Port 4 Deteksi Signature Resistance | 0000,0000b | |||||||
0x48 | Ndeteksi Resistance | RO | 4 | Port 1 Deteksi Signature Kapasitansi | 0000,0000b | |||||||
0x49 | Ndeteksi Resistance | RO | 3 | Port 2 Deteksi Signature Kapasitansi | 0000,0000b | |||||||
0x4A | Ndeteksi Resistance | RO | 2 | Port 3 Deteksi Signature Kapasitansi | 0000,0000b | |||||||
0x4b | Ndeteksi Resistance | RO | 1 | Port 4 Deteksi Signature Kapasitansi | 0000,0000b |
Tabel 2-10. Status Kelas sing Ditugasake
alamat | jeneng | R/W | Jinis | Bit 7 | Bit 6 | Bit 5 | Bit 4 | Bit 3 | Bit 2 | Bit 1 | Bit 0 | Reset Negara | |
0x4c | Kelas sing ditugasake | RO | 1 | Pelabuhan Kelas 1 sing ditugasake | Dijaluk Pelabuhan Kelas 1 | 0000,0000b | |||||||
0x4d | RO | 2 | Pelabuhan Kelas 2 sing ditugasake | Dijaluk Pelabuhan Kelas 2 | 0000,0000b | ||||||||
0x4E | RO | 3 | Pelabuhan Kelas 3 sing ditugasake | Dijaluk Pelabuhan Kelas 3 | 0000,0000b | ||||||||
0x4f | RO | 4 | Pelabuhan Kelas 4 sing ditugasake | Dijaluk Pelabuhan Kelas 4 | 0000,0000b |
Tabel 2-11. Konfigurasi lan Status AutoClass
alamat | jeneng | R/W | Jinis | Bit 7 | Bit 6 | Bit 5 | Bit 4 | Bit 3 | Bit 2 | Bit 1 | Bit 0 | Reset Negara | |
0x51 | Daya AutoClass | RO | 1 | rampung | Port Daya Kelas Otomatis 1 | 0000,0000b | |||||||
0x52 | RO | 2 | rampung | Port Daya Kelas Otomatis 2 | 0000,0000b | ||||||||
0x53 | RO | 3 | rampung | Port Daya Kelas Otomatis 3 | 0000,0000b | ||||||||
0x54 | RO | 4 | rampung | Port Daya Kelas Otomatis 4 | 0000,0000b |
Fungsi Register
Alamat saben register nggambarake bita data.
Register nduweni mode ing ngisor iki:
- RO: Waca mung, register iki bisa diwaca dening host (ndhaftar iki ora bisa disetel dening host).
- R/W: Waca/Tulis, register iki bisa diwaca lan disetel dening host.
- COR: Clear On Read, register iki mung bisa diwaca dening host (sawise diwaca, regane direset).
- Tipe:
- Sistem: Register makili fungsi kabeh alamat I2C, disambung menyang register iki.
- Port: Register nggambarake fungsi port utawa sawetara port, nomer port sing gegandhengan ditulis ing sel.
Register Acara (0x00 nganti 0x0B) 0x00—Interrupt Event
- Saben bit nggantosi acara sistem. Nalika bit padha karo 1, iki nuduhake yen ana kedadeyan.
- Tabel ing ngisor iki nampilake acara sing ana gandhengane karo registrasi.
- Tabel 3-1. Acara Sistem
bit | Acara jeneng | Katrangan acara |
0 | Daya Aktifake | Port wis miwiti siklus power-up. |
1 | Daya apik | Port wis rampung daya-munggah stage lan ngirim daya. |
2 | Pedhot sambungan | Port sing ngirim daya wis pindhah saka status ON menyang OFF. |
3 | I2C Bus Soft Reset / Deteksi Warisan Siap | I2C bis, 50 ms wektu entek saka Mulai kanggo Stop kondisi IEEE® deteksi gagal lan reset deteksi warisan siap diwaca. |
4 | Klasifikasi Rampung | Klasifikasi lan AutoClass rampung |
5 | Kakehan beban | Kakehan utawa acara watesan saiki |
6 | Kesalahan Miwiti | Inrush saiki dhuwur banget utawa ora cukup alokasi daya |
7 | Pasokan | Gagal ana hubungane karo pasokan sistem |
- 0x01—Topeng interupsi
- Saben bit makili topeng kanggo acara sistem, diterangake ing register 0x00.
- Nalika bit disetel dening host kanggo 1, acara kacarita ing bit relatif saka register 0x00. 0x02/0x03—Acara Daya
- Iki rong ndhaptar nuduhake owah-owahan ing port daya apik / daya ngaktifake status.
- Register 0x02 minangka register mung diwaca.
- Register 0x03 minangka register COR; nalika diwaca, loro ndhaftar, 0x02 lan 0x03, dibusak. Register 0x10 (Power Status) menehi status daya nyata port.
- Bits 0…3 nuduhake pangowahan ngaktifake / mateni daya:
- 0 = Ora ana owah-owahan
- 1 = Ana owah-owahan
Bit 4…7 nuduhake owah-owahan daya sing apik - 0 = Ora ana owah-owahan
- 1 = Ana owah-owahan
0x04/0x05—Kedadeyan Deteksi, Klasifikasi, lan Priksa Sambungan
- Rong ndhaptar iki nuduhake owah-owahan ing status Deteksi, Klasifikasi, lan Priksa Sambungan.
- Register 0x04 minangka register mung diwaca.
- Register 0x05 minangka registrasi COR; nalika diwaca, loro ndhaftar, 0x04 lan 0x05, dibusak.
- Ndhaptar 0x4C nganti 0x54 nyedhiyakake informasi lengkap babagan kelas sing dijaluk, kelas sing ditugasake, lan status AutoClass.
- Bit 0…3 nuduhake deteksi lan pangowahan mriksa sambungan.
- 0 = Deteksi lan mriksa sambungan durung rampung
- 1 = Deteksi lan mriksa sambungan wis rampung Bits 4…7 nuduhake deteksi lan pangowahan mriksa sambungan
- 0 = Klasifikasi durung rampung
- 1 = Klasifikasi wis rampung 0x06/0x07—Underload/Overload Events
- Iki rong ndhaptar nuduhake owah-owahan ing status port amarga underload / medhot utawa kakehan acara.
- Register 0x06 minangka register mung diwaca.
- Register 0x07 minangka register COR; nalika diwaca, loro ndhaftar 0x06 lan 0x07 dibusak.
- Nilai watesan daya port bisa disetel ing register 0x29.
- Bit 0…3 nuduhake acara kakehan
- 0 = Ora ana owah-owahan
- 1 = Daya dibusak saka port amarga kakehan
- Bit 4…7 nuduhake acara underload/PD pedhot/MPS
- 0 = Ora ana owah-owahan
- 1 = Daya dibusak saka port amarga underloading/PD pedhot/MPS 0x08/0x09—Power-up Fault/Acara Watesan Saiki
- Rong ndhaptar iki nuduhake owah-owahan ing status port amarga fault power-up port (yaiku, inrush dhuwur), lan nalika port pedhot amarga acara watesan saiki luwih suwe.
- TLIM utawa short circuit.
- Register 0x08 minangka register mung diwaca.
- Register 0x09 minangka register COR; nalika diwaca, loro ndhaftar 0x06 lan 0x07 dibusak.
- Bits 0…3 nuduhake acara fault power-up
- 0 = Ora salah
- 1 = Daya munggah fault ing port
- Bit 4…7 nuduhake acara underload/PD pedhot/MPS
- 0 = Ora salah
- 1 = Daya dibusak saka port amarga acara watesan saiki / singkat 0x0A / 0x0B-Acara Penyetor
- Fungsi Register Iki rong register nuduhake kegagalan ing sumber daya sistem.
- Saben bit nggambarake kegagalan tartamtu.
- Register 0x0A minangka register mung diwaca.
- Register 0x0B punika COR register; nalika diwaca, loro ndhaftar, 0x06 lan 0x07, dibusak.
Tabel ing ngisor iki nerangake kegagalan sing digandhengake karo rong register kasebut.
Tabel 3-2. Acara Gagal Pasokan
bit | Acara jeneng | Katrangan acara |
0 | NA | tansah 0 |
1 | Acara OSS |
|
2 | 4-Pair Port—Over Power Event (Port 1 lan 2) |
|
3 | 4-Pair Port—Over Power Event (Port 3 lan 4) |
|
4 | VUTAMA banget kurang |
|
5 | VDD warning banget kurang |
|
6 | VDD gagal banget kurang |
|
7 | Luwih saka Suhu |
|
Daftar Status (0x0C nganti 0x11)
Iki papat ndhaptar sing nyedhiyani status deteksi port kapacak ing Tabel 3-3, lan klasifikasi dideteksi nyata kadhaptar ing Tabel 3-4. Register iki mung diwaca.
- 0x0C: Status Deteksi Port 1/Klasifikasi Terdeteksi
- 0x0D: Status Deteksi Port 2/Klasifikasi Terdeteksi
- 0x0E: Status Deteksi Port 3/Klasifikasi Terdeteksi
- 0x0F: Status Deteksi Port 3/Klasifikasi Terdeteksi
- Saben register dipérang dadi bit kanggo status deteksi lan status kelas sing dijaluk.
Tabel 3-3. Status Deteksi (Bit 0…3)
Nilai Bin / Hex | Status Deteksi |
0000b/0x0 | Ora dingerteni: Nilai POR |
0001b/0x1 | Sirkuit cendhak |
0010b/0x2 | Port wis diisi daya |
0011b/0x3 | Resistor kurang banget |
0100b/0x4 | Deteksi IEEE® 802.3bt sing valid |
0101b/0x5 | Resistor dhuwur banget |
0110b/0x6 | Port mbukak / kosong |
0111b/0x7 | Vol eksternaltage dideteksi ing port |
Nilai Bin / Hex | Status Deteksi |
1110b/0x14 | MOSFET_FAULT |
Tabel 3-4. Status Kelas sing Dijaluk (Bit 4…7)
Nilai Bin / Hex | Dijaluk kelas Status |
0000b/0x0 | Ora dingerteni: Nilai POR |
0001b/0x1 | Kelas 1 |
0010b/0x2 | Kelas 2 |
0011b/0x3 | Kelas 3 |
0100b/0x4 | Kelas 4 |
0101b/0x5 | Reserved: Dianggep minangka kelas 0 |
0110b/0x6 | Kelas 0 |
0111b/0x7 | liwat saiki |
1000b/0x8 | Kelas 5 4P SS |
1001b/0x9 | Kelas 6 4P SS |
1010b/0xA | Kelas 7 4P SS |
1011b/0xB | Kelas 8 4P SS |
1100b/0xC | Kelas 4 + (port PSE diwatesi kanggo anggaran daya tipe 1) |
1101b/0xD | Kelas 5 4P DS |
1110b/0xE | dilindhungi |
1111b/0xF | Klasifikasi ora cocog |
Cathetan:
- SS = Tandha Tunggal
- DS = Dual Signature
0x10—Daya Aktifake/Daya Apik
- Bit Power Enable (bit 0..3, bit saben port) disetel nalika port ana ing proses powered-up.
- Power Good Status bit (bit 4..7, dicokot saben port) nggantosi port pangiriman daya, sawise diuripake kasil.
- Register iki disambung menyang ndhaftar acara 0x02/0x03.
- Bits 0…3 Daya Aktifake
- 0 = Port ora ana ing proses power-up
- 1 = Port ing proses powered-up
- Bits 4…7 Daya Apik
- 0 = Port mati
- 1 = Port wis kasil diuripake
0x11—Status I2C
- Bit 3…6 nyedhiyakake nilai pin A1…A4 (pin 48..51), sing nyetel alamat I2C saka loro quads.
Register Konfigurasi (0x12 nganti 0x19 lan 0x27/0x28) 0x12—Setelan Mode Operasi Port
- Register iki diwaca / nulis, kanggo nyetel kabeh 4 bandar miturut Tabel 3-5. Saben 2 bit nyetel port miturut Tabel 3-5:
- Bit 0..1 set port 1
- Bit 2..3 set port 2
- Bit 4..5 set port 3
- Bit 6..7 set port 4
Tabel 3-5. Mode Operasi Port
Mode Operasi Port | Katrangan | Nilai |
Pateni | Sembarang kegiatan PoE dipateni (deteksi, klasifikasi, daya). | 00b |
Otonom |
|
11b |
- 0x15—Prioritas Port
- Register iki diwaca / ditulis.
- Bit 0..3 kudu disetel dadi 0.
- Bits 4..7 disetel yen port ditindakake dening pin OSS:
- Bit 4 set port 1
- Bit 5 set port 2
- Bit 6 set port 3
- Bit 7 set port 4
- Nalika bit disetel kanggo 0, port ora pedhot amarga owah-owahan tingkat OSS. Nalika bit disetel menyang 1, daya port kasebut dibusak nalika owah-owahan OSS. 0x17—Liyane
- Register iki diwaca / nulis, mung bit 4 kudu disetel.
- Bit 4 nyetel mode OSS:
- 0 = mode OSS minangka bit tunggal
- 1 = OSS multi-bit
- 0x19—Tombol Push Daya
- Register iki diwaca / ditulis.
- Bits 4..7 digunakake kanggo mateni sedhela kegiatan PoE saka bandar, dicokot saben port. Sawisé iku, port bakal nerusake aktivitas saben register 0x14
- 0 = ora nindakake apa-apa.
- 1 = Port dipateni sedhela. Sawise tumindak kasebut, bit kasebut bakal dibusak sacara internal. Sawise tumindak kasebut, bit kasebut bakal dibusak sacara internal.
- A bit saben port:
- Bit 4 set port 1
- Bit 5 set port 2
- Bit 6 set port 3
- Bit 7 set port 4
0x27/0x28—Prioritas Multi-Bit
- 2 register iki diwaca/ditulis, mung bit 4 sing kudu disetel, kabeh bit liyane kudu disimpen kaya standar.
- Ing saben ndhaptar, prioritas rong port bisa disetel, 8 tingkat prioritas, nalika prioritas 7 minangka prioritas paling dhuwur, lan prioritas 0 minangka sing paling murah.
- Register 0x27 nyetel prioritas port 1, 2.
- Register 0x28 nyetel port 3, 4.
- Register Umum (0x1B lan 0x1C)
0x1B—ID Pabrik lan IC Chip
- Register iki mung diwaca.
- Nilai register yaiku 0x2D (00101101b).
0x1C—Kelas Otomatis lan Hasil Priksa Sambungan
- Register iki mung diwaca.
- Bit 0…1 nyedhiyakake asil mriksa sambungan saka port 4 pasangan pisanan (port 1 lan 2), saben Tabel 3-6.
- Bit 2…3 nyedhiyakake asil mriksa sambungan saka port 4 pasangan kapindho (port 3 lan 4), saben Tabel 3-6.
Tabel 3-6. Hasil Priksa Sambungan
Nilai | Hasil Priksa Sambungan |
0x0 | Ora dingerteni utawa ora lengkap. |
0x1 | 4-pasangan tandha tunggal. |
0x2 | 4-pasangan dual signature. |
0x3 | Priksa sambungan sing salah, utawa teken sing ora bener sing dideteksi ing salah sawijining set pasangan. |
Bits 4…7 Tandhani yen PD sing disambungake ndhukung AutoClass:
- 0 = PD ora ndhukung AutoClass
- 1 = PD ndhukung AutoClass
A dicokot saben port:
- Bit 4 set port 1
- Bit 5 set port 2
- Bit 6 set port 3
- Bit 7 set port 4
Cathetan: Ing asil pangukuran AutoClass diwaca ing register 0x51 nganti 0x54.
Register Khusus (0x24 nganti 0x2F) 0x24/0x25—Kesalahan Ngaktifake
- Rong ndhaptar iki nuduhake kesalahan sajrone power on sequence (deteksi, klasifikasi, utawa daya ora cukup).
- Register 0x24 minangka register mung diwaca.
- Register 0x25 minangka register COR; nalika diwaca, loro ndhaftar 0x24 lan 0x25 dibusak.
Saben port diwakili dening 2 bit, kaya sing katon ing Tabel 3-8:
- Bit 0..1 nuduhake port 1
- Bit 2..3 nuduhake port 2
- Bit 4..5 nuduhake port 3
- Bit 6..7 nuduhake port 4
Tabel 3-7. Daya ing asil kesalahan
Nilai | Daya ing Gagal Description |
0x0 | Ora gagal |
0x1 | Deteksi ora sah |
0x2 | Klasifikasi ora sah |
0x3 | daya ora cukup |
0x26—Ports Matrix (Remap)
- Register iki diwaca / nulis, dimaksudaké kanggo ngatur maneh matriks bandar beda saka matrik standar (0xE4).
- Yen ndhaptar ora diowahi dening pangguna, matriks port standar ditampilake ing Tabel 3-8.
Saben port diwakili dening 2 bit:
- Bit 0..1 nggambarake port logis 1
- Bit 2..3 nggambarake port logis 2
- Bit 4..5 nggambarake port logis 3
- Bit 6..7 nggambarake port logis 4
Tabel 3-8. Matriks Port Default
bit | Nilai | Port Logika | fisik Pelabuhan |
0..1 | 0 (00b) | 1 | 1 |
2..3 | 1 (01b) | 2 | 2 |
4..5 | 2 (10b) | 3 | 3 |
6..7 | 3 (11b) | 4 | 4 |
0x2A/0x2B—4-Pair Police Configuration
- Iki loro ndhaptar diwaca / nulis, kanggo nyetel watesan daya saka bandar (PCUT). Register 0x2A nyetel port 4-pasangan adhedhasar port 1 lan 2.
- Register 0x2B nyetel port 4-pasangan adhedhasar port 3 lan 4.
- Tabel ing ngisor iki nampilake tingkat daya port 4 pasangan.
- Watesan daya padha karo PCUT = 0.5 * Nilai
Tabel 3-9. Nilai PCUT
diutus kelas | Nilai Hex / Des | Minimal PPOTONGAN Setelan (0x17 Bit 0 = 0) | Minimal PPOTONGAN Setelan (0x17 Bit 0 = 1) |
Kelas 0 | 0x22 (34d) | 15.5W | 17W |
Kelas 1 | 0x08 (8d) | 4W | 17W |
Kelas 2 | 0x0E (14d) | 7W | 17W |
Kelas 3 | 0x22 (34d) | 15.5W | 17W |
Kelas 4 | 0x40 (64d) | 30W | 32W |
diutus kelas | Nilai Hex / Des | Minimal PPOTONGAN Setelan (0x17 Bit 0 = 0) | Minimal PPOTONGAN Setelan(0x17 Bit 0 = 1) |
Kelas 5-4P SS | 0x5A (90d) | 45W | 45W |
Kelas 6-4P SS | 0x78 (120d) | 60W | 60W |
Kelas 7-4P SS | 0x96 (150d) | 75W | 75W |
Kelas 8-4P SS | 0xB4 (180d) | 90W | 90W |
Kelas 4+—Tipe 1 winates | 0x22 (34d) | 15.5W | 17W |
ANY 4P DS PD | 0xB4 (180d) | 90W | 90W |
0x2C—Suhu Chip
Iki minangka register mung diwaca sing nyedhiyakake suhu mati, adhedhasar rumus ing ngisor iki: 367 − {2 * (regVal_decimal)} (derajat Celsius)
0x2E/0x2F—Pengukuran VMAIN
- Rong register iki mung diwaca, lan nyedhiyakake tingkat VMAIN kanthi 14 bit, kanthi resolusi 64.4 mV saben bit.
- Register 0x2E makili 8 bit LSB saka pangukuran.
- Register 0x2F makili 6 bit MSB, bit 6 lan 7 saka register sing ora digunakake.
- Nilai maksimum sing bisa diukur yaiku 61V, VMAIN ing ndhuwur 61V dilaporake minangka 61V (0x3B3).
- Example: VMAIN saka 55V diwenehake minangka 0x356 (55V / 64.4 mV = 854).
- Pelabuhan Voltage lan Register Pengukuran Saiki (0x30 nganti 0x3F)
- Voltage lan saiki saben port diwenehake dening papat register (loro kanggo port voltage lan loro kanggo saiki).
- Loro register saiki saben port nyedhiyakake level saiki kanthi 14 bit, kanthi resolusi 1 mA saben LSB. Nilai maksimum sing bisa diukur yaiku 1020 mA, saiki ing ndhuwur level kasebut dilaporake minangka 1020 mA (0x3FC).
- Loro voltage ndhaftar saben port nyedhiyani voltagtingkat e kanthi 14 bit, kanthi resolusi 64.4 mV saben LSB. Nilai maksimum sing bisa diukur yaiku 61V, voltage ing ndhuwur tingkat kasebut dilaporake minangka 61V (0x3B3).
0x30/0x31—Pengukuran Saiki Port 1
- Register 0x30 nggambarake 8 bit LSB saka pangukuran.
- Register 0x31 makili 6 bit MSB, bit 6 lan 7 saka register sing ora digunakake. 0x32/0x33—Port 1 Voltage Pengukuran
- Register 0x30 nggambarake 8 bit LSB saka pangukuran.
- Register 0x31 makili 6 bit MSB, bit 6 lan 7 saka register sing ora digunakake. 0x34/0x35—Pengukuran Saiki Port 2
- Register 0x30 nggambarake 8 bit LSB saka pangukuran.
- Register 0x31 makili 6 bit MSB, bit 6 lan 7 saka register sing ora digunakake. 0x36/0x37—Port 2 Voltage Pengukuran
- Register 0x30 nggambarake 8 bit LSB saka pangukuran.
- Register 0x31 makili 6 bit MSB, bit 6 lan 7 saka register sing ora digunakake.
0x38/0x39—Pengukuran Saiki Port 3
- Register 0x30 nggambarake 8 bit LSB saka pangukuran.
- Register 0x31 makili 6 bit MSB, bit 6 lan 7 saka register sing ora digunakake. 0x3A/0x3B—Port 3 Voltage Pengukuran
- Register 0x30 nggambarake 8 bit LSB saka pangukuran.
- Register 0x31 makili 6 bit MSB, bit 6 lan 7 saka register sing ora digunakake. 0x3C/0x3D—Pengukuran Arus Port 4
- Register 0x30 nggambarake 8 bit LSB saka pangukuran.
- Register 0x31 makili 6 bit MSB, bit 6 lan 7 saka register sing ora digunakake. 0x3E/0x3F—Port 4 Voltage Pengukuran
- Register 0x30 nggambarake 8 bit LSB saka pangukuran.
- Register 0x31 makili 6 bit MSB, bit 6 lan 7 saka register sing ora digunakake.
- Register Kontrol Arus Port Inrush (0x40)
0x40—Kontrol Arus Inrush
Mung bit 0-3 sing aktif, bit 4-7 ora digunakake.
Saben bit nyetel port:
- Bit 0 set port 1
- Bit 1 set port 2
- Bit 2 set port 3
- Bit 3 set port 4
- 0: Yen ing pungkasan periode wiwitan inrush saiki isih dhuwur, port ora powered munggah.
- 1: Yen ing pungkasan periode wiwitan inrush saiki isih dhuwur, port powered munggah biasane.
- Versi Firmware lan Daftar ID Chip (0x41 lan 0x43)
0x41—Versi Firmware
- Register iki mung diwaca.
- Kanggo versi paling anyar, hubungi Microchip.
- 0x43—Versi Silikon lan ID Chip
- Register iki mung diwaca.
- Bit 0…4 nuduhake ID chip.
- Bits 5…7 nuduhake versi silikon.
- Kanggo versi paling anyar, hubungi Microchip.
- Register Pengukuran Port Signature (0x44 nganti 0x4B)
0x44–0x47—Tandha Tangan Diukur Resistansi
- Papat ndhaptar iki mung diwaca, lan menehi resistensi sing diukur sajrone deteksi tandha.
- Register saben port, 256Ω saben bit (480Ω singkatan, 65280Ω maksimum).
- 0x48–0x4B—Kapasitansi Diukur Teken
- Fungsi Register Papat register iki mung diwaca, lan nyedhiyakake kapasitansi sing diukur sajrone deteksi tandha.
- Register saben port, kanthi resolusi 64 nF saben bit.
Register Status Klasifikasi Port (0x4C nganti 0x4F)
Papat ndhaptar iki mung diwaca lan nyedhiyakake kelas sing dijaluk PD lan kelas sing ditugasake ing port. Tabel ing ngisor iki nampilake loro nilai (dijaluk lan ditugasake).
Tabel 3-10. Dijaluk lan diutus Nilai
Nilai saka Dijaluk lan diutus bit | kelas Status | |||
0 | 0 | 0 | 0 | Ora dingerteni |
0 | 0 | 0 | 1 | Kelas 1 |
0 | 0 | 1 | 0 | Kelas 2 |
0 | 0 | 1 | 1 | Kelas 3 |
0 | 1 | 0 | 0 | Kelas 4 |
0 | 1 | 0 | 1 | NA |
0 | 1 | 1 | 0 | Kelas 0 |
0 | 1 | 1 | 1 | NA |
1 | 0 | 0 | 0 | Kelas 5—4-Pasangan SS |
1 | 0 | 0 | 1 | Kelas 6—4 Pasangan SS |
1 | 0 | 1 | 0 | Kelas 7—4-Pasangan SS |
1 | 0 | 1 | 1 | Kelas 8 —4-Pasangan SS |
1 | 1 | 0 | 0 | NA |
1 | 1 | 0 | 1 | Kelas 5—4-Pasangan DS |
1 | 1 | 1 | 0 | NA |
1 | 1 | 1 | 1 | NA |
Cathetan:
- SS = Tandha Tunggal; DS = Dual Signature.
- Yen PSE duwe anggaran daya winates lan ora bisa ngirim daya sing dijaluk PD, kelas sing ditugasake port bisa luwih murah tinimbang kelas sing dijaluk PD.
0x4C—Status Kelas Port 1
- Bits 0…3 nyedhiyakake kelas sing dijaluk PD. Bits 4…7 nyedhiyakake kelas sing ditugasake port. 0x4D—Status Kelas Port 2
- Bits 0…3 nyedhiyakake kelas sing dijaluk PD. Bits 4…7 nyedhiyakake kelas sing ditugasake port. 0x4E—Status Kelas Port 3
- Bits 0…3 nyedhiyakake kelas sing dijaluk PD. Bits 4…7 nyedhiyakake kelas sing ditugasake port. 0x4F—Status Kelas Port 4
- Bits 0…3 nyedhiyakake kelas sing dijaluk PD. Bits 4…7 nyedhiyakake kelas sing ditugasake port.
Daftar Status Kelas Otomatis (0x51 nganti 0x54)
- Papat register iki mung diwaca lan menehi pangukuran lan status AutoClass.
- Bits 0…6 nyedhiyakake daya sing diukur sajrone AutoClass stage, kanthi resolusi 0.5W saben LSB. Bit 7 nyedhiyakake status AutoClass:
- 0 = Pangukuran ora ditindakake.
- 1 = Pangukuran AutoClass wis rampung. 0x51—Status Kelas Otomatis Port 1
- Bits 0…6 minangka kelas sing dijaluk PD.
- Bit 7 minangka status AutoClass.
- 0x52—Status Kelas Otomatis Port 2
- Bits 0…6 minangka kelas sing dijaluk PD.
- Bit 7 minangka status AutoClass.
- 0x53—Status Kelas Otomatis Port 3
- Bits 0…6 minangka kelas sing dijaluk PD.
- Bit 7 minangka status AutoClass.
- 0x53—Status Kelas Otomatis Port 3
- Bits 0…6 minangka kelas sing dijaluk PD.
- Bit 7 minangka status AutoClass.
Riwayat Revisi
Riwayat revisi nggambarake owah-owahan sing ditindakake ing dokumen kasebut. Owah-owahan kasebut didhaptar kanthi revisi, diwiwiti saka publikasi paling anyar.
Revisi | Tanggal | Katrangan |
B | 4/2023 | Ditambahake bagean 1. Automode Operational Flowchart lan Gambar 1-1 |
A | 04/2023 | Revisi wiwitan |
Informasi Microchip
- Microchip kasebut Websitus
Microchip nyedhiyakake dhukungan online liwat kita websitus ing www.microchip.com . Iki websitus digunakake kanggo nggawe files lan informasi gampang kasedhiya kanggo pelanggan. Sawetara konten sing kasedhiya kalebu:- Dhukungan Produk - Lembar data lan kesalahan, cathetan aplikasi lan sampprogram le, sumber desain, Panuntun pangguna lan dokumen support hardware, Rilis piranti lunak paling anyar lan piranti lunak arsip
- Dhukungan Teknis Umum - Pitakonan sing Sering Ditakoni (FAQ), panjalukan dhukungan teknis, grup diskusi online, daftar anggota program mitra desain Microchip
- Bisnis Microchip - Pandhuan pamilih lan pesenan produk, siaran pers Microchip paling anyar, dhaptar seminar lan acara, dhaptar kantor penjualan Microchip, distributor lan perwakilan pabrik
- Layanan Notifikasi Ganti Produk
- Layanan kabar pangowahan produk Microchip mbantu para pelanggan tetep saiki ing produk Microchip. Pelanggan bakal nampa kabar email yen ana owah-owahan, nganyari, revisi utawa kesalahan sing ana gandhengane karo kulawarga produk utawa alat pangembangan sing dikarepake.
- Kanggo ndhaftar, pindhah menyang www.microchip.com/pcn lan tindakake pandhuan registrasi.
- Dhukungan Pelanggan
- Pangguna produk Microchip bisa nampa pitulung liwat sawetara saluran:
- Distributor utawa Perwakilan
- Kantor Penjualan Lokal
- Embedded Solution Engineer (ESE)
- Dhukungan Teknis
- Pelanggan kudu hubungi distributor, wakil utawa ESE kanggo dhukungan. Kantor penjualan lokal uga kasedhiya kanggo mbantu para pelanggan. Dhaptar kantor penjualan lan lokasi kalebu ing dokumen iki.
- Dhukungan teknis kasedhiya liwat websitus ing: www.microchip.com/support
- Fitur Proteksi Kode Piranti Microchip
- Elinga rincian ing ngisor iki babagan fitur perlindungan kode ing produk Microchip:
- Produk Microchip cocog karo spesifikasi sing ana ing Lembar Data Microchip tartamtu.
- Microchip percaya yen kulawarga produk kasebut aman nalika digunakake kanthi cara sing dikarepake, ing spesifikasi operasi, lan ing kahanan normal.
- Nilai Microchip lan agresif nglindhungi hak properti intelektual sawijining. Usaha kanggo nglanggar fitur perlindungan kode produk Microchip dilarang banget lan bisa uga nglanggar Digital Millennium Copyright Act.
- Microchip utawa pabrikan semikonduktor liyane ora bisa njamin keamanan kode kasebut. Proteksi kode ora ateges manawa produk kasebut "ora bisa dipecah". Proteksi kode terus berkembang. Microchip nduweni komitmen kanggo terus ningkatake fitur perlindungan kode produk kita.
- Kabar Legal
- Publikasi iki lan informasi ing kene mung bisa digunakake karo produk Microchip, kalebu kanggo ngrancang, nguji, lan nggabungake produk Microchip karo aplikasi sampeyan. Panganggone informasi iki kanthi cara liya nglanggar syarat kasebut. Informasi babagan aplikasi piranti diwenehake mung kanggo penak sampeyan lan bisa uga diganti karo nganyari. Sampeyan tanggung jawab kanggo mesthekake yen aplikasi sampeyan cocog karo spesifikasi sampeyan. Hubungi kantor sales Microchip lokal kanggo dhukungan tambahan utawa, entuk dhukungan tambahan ing www.microchip.com/en-us/support/design-help/client-support-services.
- INFORMASI IKI DISEDIAKAN BY MICROCHIP "AS IS". MICROCHIP TANPA REPRESENTASI UTAWA JAMINAN APA SAJA APA SAJA UTAWA TERSURAT, TERTULIS UTAWA LISAN, STATUTORY UTAWA LAIN, sing ana hubungane karo informasi kasebut kalebu nanging ora winates karo JAMINAN NON-INFLARITY, NON-INFRINGEMENT. TUJUAN, Utawa JAMINAN sing ana gandhengane karo KONDISI, KUALITAS, UTAWA KINERJA.
- MICROCHIP ORA TANGGUH TANGGUNG JAWAB ANGGAP, KHUSUS, PUNITIF, INSIDENTAL, UTAWA KONSEQUENTIAL RUGI, RUSAK, BIAYA, UTAWA BAYARAN APA SAJA KANGGO ING INFORMASI UTAWA PENGGUNAAN, NANGUN SING DIBUAT, SANAYAN ANA KEMUNGKINAN UTAWA KERUSAKAN SING BISA. SAMPAI KEPENUH sing diidinke dening hukum, tanggung jawab total microchip ing kabeh pratelan kanthi cara apa wae sing ana gandhengane karo informasi utawa
- Panganggone ora bakal ngluwihi jumlah biaya, yen ana, sing wis mbayar langsung menyang microchip kanggo informasi.
- Panggunaan piranti Microchip ing support urip lan / utawa aplikasi safety tanggung ing resiko panuku, lan panuku setuju kanggo defend, indemnify lan terus Microchip mbebayani saka samubarang lan kabeh karusakan, claims, cocog, utawa expenses asil saka nggunakake kuwi. Ora ana lisensi sing diwenehake, kanthi implisit utawa liya, miturut hak properti intelektual Microchip kajaba kasebut.
merek dagang
- Jeneng lan logo Microchip, logo Microchip, Adaptec, AVR, logo AVR, AVR Freaks, BesTime, BitCloud, CryptoMemory, CryptoRF, dsPIC, flexPWR, HELDO, IGLOO, JukeBlox, KeeLoq, Kleer, LANCheck, LinkMD, maXStylus, maXTouch MediaLB, megaAVR, Microsemi, logo Microsemi, MOST, MOST logo, MPLAB, OptoLyzer, PIC, picoPower, PICSTART, PIC32 logo, PolarFire, Prochip Designer, QTouch, SAM-BA, SenGenuity, SpyNIC, SST, SST Logo, SuperFlash, Symmetricom , SyncServer, Tachyon, TimeSource, tinyAVR, UNI/O, Vectron, lan XMEGA minangka merek dagang kadhaptar saka Microchip Technology Incorporated ing AS lan negara liya.
- AgileSwitch, APT, ClockWorks, Perusahaan Solusi Kontrol Embedded, EtherSynch, Flashtec, Kontrol Kacepetan Hiper, Beban HyperLight, Libero, motorBench, mTouch, Powermite 3, Precision Edge, ProASIC, ProASIC Plus, logo ProASIC Plus, Quiet- Wire, SmartFusion, SyncWorld, Temux, TimeCesium, TimeHub, TimePictra, TimeProvider, TrueTime, lan ZL minangka merek dagang kadhaptar saka Microchip Technology Incorporated ing AS
- Penindasan Kunci Adjacent, AKS, Analog-kanggo-Digital Age, Kapasitor Apa wae, AnyIn, AnyOut, Switching Augmented, BlueSky, BodyCom, Clockstudio, CodeGuard, CryptoAuthentication, CryptoAutomotive, CryptoCompanion, CryptoController, dsPICDEM, dsPICDEM.net Average Matching, Dynamic Matching , DAM, ECAN, Espresso T1S, EtherGREEN, GridTime, IdealBridge, In-Circuit Serial Programming, ICSP, INICnet, Intelligent Paralleling, IntelliMOS, Inter-Chip Connectivity, JitterBlocker, Knob-on-Display, KoD, maxCrypto, maxView, memBrain, Mindi, MiWi, MPASM, MPF, MPLAB Certified logo, MPLIB, MPLINK, MultiTRAK, NetDetach, Omniscient Code Generation, PICDEM, PICDEM.net, PICkit, PICtail, PowerSmart, PureSilicon, QMatrix, REAL ICE, Ripple Blocker, RTAX , RTG4, SAM- ICE, Serial Quad I/O, simpleMAP, SimpliPHY, SmartBuffer, SmartHLS, SMART-I.S., storClad, SQI, SuperSwitcher, SuperSwitcher II, Switchtec, SynchroPHY, Total Endurance, Trusted Time, TSHARC, USBCheck, VariSense, VectorBlox, VeriPHY, ViewSpan, WiperLock, XpressConnect, lan ZENA minangka merek dagang Microchip Technology Incorporated ing AS lan negara liya.
- SQTP minangka tandha layanan saka Microchip Technology Incorporated ing AS
- Logo Adaptec, Frequency on Demand, Silicon Storage Technology, lan Symmcom minangka merek dagang kadhaptar saka Microchip Technology Inc. ing negara liya.
- GestIC minangka merek dagang kadhaptar saka Microchip Technology Germany II GmbH & Co. KG, anak perusahaan saka Microchip Technology Inc., ing negara liya.
- Kabeh merek dagang liyane sing kasebut ing kene minangka properti saka perusahaan kasebut. © 2023, Microchip Technology Incorporated lan anak perusahaan. Kabeh hak dilindhungi undhang-undhang.
- ISBN: 978-1-6683-2380-9
- Sistem Manajemen Mutu
- Kanggo informasi babagan Sistem Manajemen Kualitas Microchip, bukak www.microchip.com/quality.
Dodolan lan Layanan ing saindenging jagad
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EROPA
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- Fax: 43-7242-2244-393
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- Tel: 46-31-704-60-40
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- Telpon: 46-8-5090-4654
- UK - Wokingham
- Telpon: 44-118-921-5800
- Fax: 44-118-921-5820
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