UC3854BN UNITRODE, UC3854BN Datasheet - Page 8

no-image

UC3854BN

Manufacturer Part Number
UC3854BN
Description
HIGH POWER FACTOR REG, 3854, DIP16
Manufacturer
UNITRODE
Datasheet

Specifications of UC3854BN

Primary Input Voltage
20V
No. Of Outputs
1
Output Voltage
12.8V
Voltage Regulator Case Style
DIP
No. Of Pins
16
Operating Temperature Range
0°C To +70°C
Operating Temperature Max
70°C
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
UC3854BN
Manufacturer:
TI
Quantity:
5 900
Part Number:
UC3854BN
Manufacturer:
TI
Quantity:
100
Part Number:
UC3854BN
Manufacturer:
ST
0
Part Number:
UC3854BN
Manufacturer:
UNITRODE
Quantity:
20 000
UC1854A
UC2854A, UC2854B
UC3854A, UC3854B
SLUS329E – MONTH 2003 – REVISED JANUARY 2008
FUNCTIONAL DESCRIPTION
The UC3854A and UC3854B family of products are designed as pin compatible upgrades to the industry
standard UC3854 active power factor correction circuits. The circuit enhancements allow the user to eliminate in
most cases several external components currently required to successfully apply the UC3854. In addition,
linearity improvements to the multiply, square and divide circuitry optimizes overall system performance. Detailed
descriptions of the circuit enhancements are provided below. For in-depth design applications reference data
refer to the application notes, UC3854 Controlled Power Factor Correction Circuit Design (SLUA144) and
UC3854A and UC3854B Advanced Power Factor Correction Control ICs (SLUA177).
Multiply/Square and Divide
The UC3854A/B multiplier design maintains the same gain constant
relationship between the inputs and output current is given as:
This is nearly the same as the UC3854, but circuit differences have improved the performance and application.
The first difference is with the IAC input. The UC3854A/B regulated this pin voltage to the nominal 500 mV over
the full operating temperature range, rather than the 6.0 V used on the UC3854. The low offset voltage
eliminates the need for a line zero crossing compensating resistor to VREF from IAC that UC3854 designs
require. The maximum current at high line into IAC should be limited to 250 A for best performance.
Therefore, if V
The V
from 0 V to 5.5 V. Since the UC3854A squaring circuit employs an analog multiplier, rather than a linear
approximation, accuracy is improved, and discontinuities are eliminated. The external divider network connected
to VRMS should produce 1.5 V at low line (85 VAC). This puts 4.77 V on VRMS at high line (270 VAC) which is
well within its operating range.
The voltage amplifier output forms the third input to the multiplier and is internally clamped to 6.0 V. This
eliminated an external zener clamp often used in UC3854 designs. The offset voltage at this input to the
multiplier has been raised on the UC3854A/B to 1.5 V.
The multiplier output pin, which is also common to the current amplifier non-inverting input, has a –0.3 V to 5.0 V
output range, compared to the –0.3 V to 2.5 V range of the UC3854. This improvement allows the UC3854A/B to
be used in applications where the current sense signal amplitude is very large.
8
I
RMS
R
MOUT
IAC
Submit Documentation Feedback
pin linear operating range is improved with the UC3854A/B as well. The input range for VRMS extends
=
=
270 1 414
VAC(max)
I
250
IAC
´
´
m
.
(
K
V
A
= 270 V,
VAO
´
(
Product Folder Link(s):
=
V
-
VRMS
1 53
1 5
. M
. V
)
2
)
W
UC1854A UC2854A, UC2854B UC3854A, UC3854B
Copyright © 2003–2008, Texas Instruments Incorporated
æ
ç
è
K
=
-
V
1
ö
÷
ø
as the UC3854. The
www.ti.com
(1)
(2)

Related parts for UC3854BN