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Número de pieza IRUH330133BK
Descripción Radiation Hardended Ultra Low Dropout Fixed Positive Linear Regulator
Fabricantes International Rectifier 
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No Preview Available ! IRUH330133BK Hoja de datos, Descripción, Manual

PD-97593B
(5962F1023505K)
IRUH330133BK
Radiation Hardended Ultra Low Dropout
IRUH330133BP
Fixed Positive Linear Regulator
+5.0VIN to +3.3VOUT @3.0A
Product Summary
Part Number
IRUH330133BK
IRUH330133BP
Dropout
0.4V
IO
3.0A
VIN
5.0V
VOUT
3.3V
MO-078AA
Description
Features
The IRUH330133 is a space qualified, ultra low dropout
linear regulator designed specifically for applications
requiring high reliability, low noise and radiation hardness.
Absolute Maximum Ratings
n Silicon On Insulator (SOI) CMOS Regulator
IC, CMOS Latch-Up Immune,
Inherently Rad Hard
n Total Dose Capability up to 300Krads(Si)
(Condition A); Tested to 500Krad (Si)
n ELDRS up to 100Krad(Si) (Condition D)
n SEU Immune up to LET = 80 MeV*cm2/mg
n Space Level Screened
n Fast Transient Response
n Timed Latch-Off Over-Current Protection
n Internal Thermal Protection
n On/Off Control via Shutdown Pin, Power
Sequencing Easily Implemented
n Isolated Hermetic MO-078 Package
Ensures Higher Reliability
n This part is also available in 8-Lead Flat Pack
Package as IRUH330133AK / IRUH330133AP
Parameter
Symbol
Min.
Max.
Units
Power Dissipation @ TC = 125°C
Maximum Output Current @ Maximum
Power Dissipation with no Derating
PD - 25 W
IO
-
See Fig 4
A
Non-Operating Input Voltage
Operating Input Voltage
Ground
Shutdown Pin Voltage
Output Pin Voltage
Operating Case Temperature Range
Storage Temperature Range
Maximmum Junction Temperature
Lead Temperature (Soldering 10sec)
Pass Transistor Thermal Resistance, Junction to Case
VIN
VIN
GND
VSHDN
VOUT
TO
TS
TJ
TL
RTHJC
-0.3 +8.0
2.9 6.4
-0.3 0.3 V
-0.3 VIN + 0.3
-0.3 VIN + 0.3
-55 +140
-65
-
+150
+150
°C
- +300
- 1.0 °C/W
www.irf.com
1
05/18/12

1 page




IRUH330133BK pdf
IRUH330133BK
IRUH330133BP
Input Capacitance
Input bypass capacitors: Two (0.1µF and 1µF) ceramics and two 100µF low ESR tantalums (AVX
TPS or equivalent), placed very close to the VIN Pin are required for proper operation. When the
input voltage supply capacitance is more than 4 inches from the device, additional input
capacitance is recommended. Larger input capacitor values will improve ripple rejection further
improving the integrity of the output voltage.
Output Capacitance
Output bypass capacitors: Two (0.1µF and 1µF) ceramics and two 100µF low ESR tantalums
(AVX TPS or equivalent) are required for loop stability. Faster transient performance can be
achieved with multiple additional 1µF ceramic capacitors. Ceramic capacitors greater than 1µF in
value are not recommended as they can cause stability issues.
Tantalum capacitor values larger than the suggested value are recommended to improve the
transient response under large load current changes. The upper capacitance value limit is
governed by the delayed over-current latch function of the regulator and can be as much as
10,000µF without causing the device to latch-off during start-up.
General Layout Rules
Low impedance connections between the regulator output and load are essential. Solid power and
ground planes are highly recommended. In those cases where the board impedances are not kept
very small, oscillations can occur due to the effect of parasitic series resistance and inductance
on loop bandwidth and phase margin.
The VSENSE Pin must be connected directly to the VOUT Pin using as short a trace as possible with
the connection inside the first bypass capacitor (see Fig. 2a).
Connect ceramic output capacitors directly across the VOUT and GND Pins with as wide a trace as
design rules allow (see Fig. 2a). Avoid the use of vias for these capacitors and avoid loops. Fig.2
shows the ceramic capacitors tied directly to the regulator output.
The input capacitors should be connected as close a possible to the VIN Pin.
Fig. 2a. Layer 1 conductor.
Ground plane below layer 1
www.irf.com
Fig. 2b. Layer 1 silkscreen
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