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UC3874DW-2
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UC3874DW-2 Programmierhandbuch - TI

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UC3874DW-2 Programmierhandbuch

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UC1851
UC2851
UC3851
Programmable, Off-Line, PWM Controller
FEATURES
All Control, Driving, Monitoring, and Protection
Functions Included
Low-Current Off Line Start Circuit
Voltage Feed Forward or Current Mode Control
High Current Totem Pole Output
50% Absolute Max Duty Cycle
PWM Latch for Single Pulse Per Period
Pulse-by-Pulse Current Limiting plus Shutdown
for Over-Current Fault
No Start-Up or Shutdown Transients
Slow Turn-On Both Initially and After Fault
Shutdown
Shutdown Upon Over or Under Voltage Sensing
Latch Off or Continuous Retry After Fault
1% Reference Accuracy
500kHz Operation
18 Pin DIL or 20 Pin PLCC Package
DESCRIPTION
The UC1851 family of PWM controllers are optimized for off-
line primary side control. These devices include a high current
totem pole output stage and a toggle flip-flop for absolute 50%
duty cycle limiting. In all other respects this line of controllers is
pin for pin compatible with the UC1841 series. Inclusion of all
major housekeeping functions in these high performance con-
trollers makes them ideal for use in cost sensitive applications.
Important features of these controllers include low current
start-up, linear feed-forward for constant volt-second operation,
and compatibility with both voltage or current mode control. In
addition, these devices include a programmable start thresh-
old, as well as programmable over-voltage, under-voltage, and
over current fault thresholds. The fault latch on these devices
can be configured for automatic restart, or latched off response
to a fault.
These devices are packaged in 18-pin plastic or ceramic dual-
in-line packages, or for surface mount applications, a 20 Pin
PLCC. The UC1851 is characterized for -55°C to +125°C op-
eration while the UC2851 and UC3851 are designed for -40°C
to +85°C and 0°C to +70°C, respectively.
BLOCK DIAGRAM
10/94
Verzeichnis

UC3874DW-2 Datenblatt-PDF

UC3874DW-2 Datenblatt PDF
TI
12 Seiten, 412 KB
UC3874DW-2 Programmierhandbuch
TI
11 Seiten, 767 KB

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