Instrukcja obsługi Microchip HV9912
                    Microchip
                    
                    Niesklasyfikowane
                    
                    HV9912
                
                                
    Przeczytaj poniżej 📖 instrukcję obsługi w języku polskim dla Microchip HV9912 (20 stron) w kategorii Niesklasyfikowane. Ta instrukcja była pomocna dla 9 osób i została oceniona przez 5 użytkowników na średnio 3.5 gwiazdek
                        Strona 1/20
                    
                    
                    
 2016 Microchip Technology Inc. DS20005583A-page  1
HV9912
Features
• Switch-mode Controller for Single-switch Drivers:
- Buck
- Boost
- Buck-boost
- SEPIC
• Works with High-side Current Sensors
• Closed-loop Control of Output Current
• High Pulse-Width Modulation (PWM) Dimming 
Ratio
• Internal 90V Linear Regulator (can be extended 
using external Zener Diodes)
• Internal 2% Voltage Reference (0°C < T
A < 85°C)
• Constant Frequency or Constant Off-time 
Operation
• Programmable Slope Compensation
• Linear and PWM Dimming
• +0.2A/–0.4A Gate Driver
• Hiccup Mode Protection for both Short-circuit and 
Open-circuit Conditions
• Output Overvoltage Protection
• Synchronization Capability
• Pin Compatible with HV9911
Applications
• RGB Backlight Applications
• General LED Lighting Applications
• Battery-powered LED Lamps
General Description
HV9912  is  an  LED  driver  IC  designed  to  control 
single-switch  PWM  converters  (buck,  boost, 
buck-boost  and  SEPIC)  in  a  Constant  Frequency  or 
Constant  Off-time  mode.  The  controller  uses  a  peak 
Current  Mode  control  scheme  with  programmable 
slope  compensation  and  includes  an  internal 
transconductance amplifier to control the output current 
in closed loop, enabling high output current accuracy. 
In  the  case  of  buck  and  buck-boost  converters,  the 
output current can be sensed using a high-side current 
sensor  like  the  HV7800.  In  the  Constant  Frequency 
mode, multiple HV9912 ICs can be synchronized with 
each other or with an external clock, using the SYNC 
pin.  Programmable  MOSFET  current  limit  enables 
current limiting during Input Undervoltage and Output 
Overload  conditions.  The  IC  also  includes  a  0.2A 
source  and  0.4A  sink  gate  driver  that  makes  the 
HV9912  suitable  for  high-power  applications.  An 
internal 90V linear regulator powers the IC, eliminating 
the need for a separate power supply for the IC. The IC 
also provides  a FAULT output, which  can  be used to 
disconnect the LEDs in case of a Fault condition using 
an  external  disconnect  FET. HV9912  also  provides  a 
TTL-compatible,  low-frequency  PWM  dimming  input 
that can accept an external control signal with a duty 
ratio of 0-100% and a frequency of up to a few kilohertz. 
The HV9912 includes hiccup protection from both short 
and  open  circuits,  with  automatic  recovery  after  the 
Fault condition is cleared.
The  HV9912  is  a  pin-compatible  replacement  for 
HV9911. It can be used with existing HV9911 designs, 
which  have  input  voltages  of  less  than  90V,  by 
changing ROVP1, ROVP
, and RT
.
Package Type
VIN
VDD
GATE
GND
CS
SC
RT
SYNC
FDBK
IREF
COMP
PWMD
OVP
FAULT
REF
CLIM
1
2
3
4
5
6
7
8 9
10
11
12
13
14
15
16
16-lead SOIC
(Top View)
See Table 2-1 for pin information.
Switch-Mode LED Driver IC with High Current Accuracy 
and Hiccup Mode Protection 
Specyfikacje produktu
| Marka: | Microchip | 
| Kategoria: | Niesklasyfikowane | 
| Model: | HV9912 | 
Potrzebujesz pomocy?
Jeśli potrzebujesz pomocy z Microchip HV9912, zadaj pytanie poniżej, a inni użytkownicy Ci odpowiedzą
Instrukcje Niesklasyfikowane Microchip
                        
                         15 Stycznia 2025
                        
                    
                                                            
                        
                         15 Stycznia 2025
                        
                    
                                                            
                        
                         15 Stycznia 2025
                        
                    
                                                            
                        
                         15 Stycznia 2025
                        
                    
                                                            
                        
                         15 Stycznia 2025
                        
                    
                                                            
                        
                         15 Stycznia 2025
                        
                    
                                                            
                        
                         15 Stycznia 2025
                        
                    
                                                            
                        
                         15 Stycznia 2025
                        
                    
                                                            
                        
                         15 Stycznia 2025
                        
                    
                                                            
                        
                         15 Stycznia 2025
                        
                    
                                                            Instrukcje Niesklasyfikowane
- Beurer
 - Waves
 - Vitek
 - BBB
 - Winix
 - Tormatic
 - CaterRacks
 - Omiindustriies
 - Ikan
 - Zhiyun
 - Oreg
 - Scarlett
 - Majella
 - Brennenstuhl
 - Argon
 
Najnowsze instrukcje dla Niesklasyfikowane
                        
                         29 Stycznia 2025
                        
                    
                                                            
                        
                         29 Stycznia 2025
                        
                    
                                                            
                        
                         29 Stycznia 2025
                        
                    
                                                            
                        
                         29 Stycznia 2025
                        
                    
                                                            
                        
                         29 Stycznia 2025
                        
                    
                                                            
                        
                         29 Stycznia 2025
                        
                    
                                                            
                        
                         29 Stycznia 2025
                        
                    
                                                            
                        
                         29 Stycznia 2025
                        
                    
                                                            
                        
                         29 Stycznia 2025
                        
                    
                                                            
                        
                         29 Stycznia 2025