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IR1176 Schematic ( PDF Datasheet ) - International Rectifier

Teilenummer IR1176
Beschreibung SYNCHRONOUS RECTIFIER DRIVER
Hersteller International Rectifier
Logo International Rectifier Logo 




Gesamt 12 Seiten
IR1176 Datasheet, Funktion
Preliminary Data Sheet PD60185-C
IR1176
SYNCHRONOUS RECTIFIER DRIVER
Features
Provides constant and proper gate drive to power
MOSFETs regardless of transformer output
Minimizes loss due to power MOSFET body
drain diode conduction
Stand alone operation - no ties to primary side
Schmitt trigger input with double pulse suppress-
ion allows operation in noisy environments
High peak current drive capability - 4A
High speed operation - 2MHz
Adaptable to multiple topologies
Product Summary
Vdd
IO+/- (peak)
Fmax
Max lead time
5Vdc
4A/4A
2MHz
500nsec
Description
The IR1176 is a high speed CMOS controller designed
to drive N-channel power MOSFETs used as synchro-
nous rectifiers in high current, high frequency forward
converters with output voltages equal or below 5VDC.
Schmitt trigger inputs with double pulse suppression
allow the controller to operate in noisy environments.
The circuit does not require any ties to the primary
side and derives its operating power directly from
the secondary. The circuit functions by anticipating
transformer output transitions, then turns the power
MOSFETs on or off before the transitions of the trans-
former to minimize body drain diode conduction and
reduce associated losses. Turn on/off lead time can
be adjusted to accommodate a variety of power
MOSFET sizes and circuit conditions. The IR1176 also
provides gate drive overlap/dead-time control via
external components to further minimize diode con-
duction by nulling effects of secondary loop and de-
vice package inductance.
Packages
IR1176S
20 Lead Surface Mount
(SSOP-20)
IR1176SS
20 Lead SOIC (MS-013AC)
IR1176
20 Lead PDIP
(MS-001AD)






IR1176 Datasheet, Funktion
IR1176
Fig. 3 Gate drive characteristics and definitions
Phase Lock Loop Design Equations:
1 - Resistor to set VCO Ceter Frequency:
Rvco (K) = [1E2 x Vchgpump(VDC) / fvco(KHz)] x Kvco _ dc(KHz/Volt)
Example (A): Choose Vchgpump = 1.5V, desired frequency (fvco) = 300KHz
Rvco = [1E2 x 1.5 /300] x 62 Hz = 31 K
2 - Small Signal gain for VCO:
Kvco_ac (KHz/Volt) = 1E2 x Kvco_dc (KHz/Volt)/Rvco(K)
Example (B): Choosing same conditions as in example A:
Kvco_ac = 1E2 x 62 / 31 = 200 KHz/volt
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IR1176 pdf, datenblatt
IR1176
Case Outline
20 Lead PDIP
01-6069 00
01-3079 00 (MS001AD)
WORLD HEADQUARTERS: 233 Kansas St., El Segundo, California 90245 Tel: (310) 252-7105
Data and specifications subject to change without notice. 1/7/2002
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