PD-20720 12/99
189NQ... SERIES
SCHOTTKY RECTIFIER
180 Amp
Major Ratings and Characteristics
Characteristics
I
F(AV)
Rectangular
waveform
V
RRM
range
I
FSM
@ tp = 5 µs sine
V
F
T
J
@ 180Apk, T
J
=125°C
range
Description/Features
Units
A
V
A
V
°C
The 189NQ high current Schottky rectifier module series has
been optimized for low reverse leakage at high temperature.
The proprietary barrier technology allows for reliable operation
up to 175° C junction temperature. Typical applications are in
switching power supplies, converters, free-wheeling diodes,
and reverse battery protection.
175° C T
J
operation
Unique high power, Half-Pak module
Replaces three parallel DO-5's
Easier to mount and lower profile than DO-5's
High purity, high temperature epoxy encapsulation for
enhanced mechanical strength and moisture resistance
Low forward voltage drop
High frequency operation
Guard ring for enhanced ruggedness and long term
reliability
189NQ...
180
135 to 150
15000
0.74
- 55 to 175
CASE STYLE AND DIMENSIONS
Outline HALF PAK Module
Dimensions in millimeters and inches
www.irf.com
1
189NQ... Series
PD-20720 12/99
Voltage Ratings
Part number
V
R
Max. DC Reverse Voltage (V)
135
150
V
RWM
Max. Working Peak Reverse Voltage (V)
189NQ135
189NQ150
Absolute Maximum Ratings
Parameters
I
F(AV)
Max. Average Forward Current
* See Fig. 5
I
FSM
Max. Peak One Cycle Non-Repetitive
Surge Current * See Fig. 7
E
AS
I
A R
Non-Repetitive Avalanche Energy
Repetitive Avalanche Current
189NQ Units
180
15000
1770
15
1
A
mJ
A
A
Conditions
50% duty cycle @ T
C
= 110° C, rectangular wave form
5µs Sine or 3µs Rect. pulse
10ms Sine or 6ms Rect. pulse
Following any rated
load condition and
with rated V
RRM
applied
T
J
= 25 °C, I
AS
= 1 Amps, L = 30 mH
Current decaying linearly to zero in 1 µsec
Frequency limited by T
J
max. V
A
= 1.5 x V
R
typical
Electrical Specifications
Parameters
V
FM
Max. Forward Voltage Drop
* See Fig. 1
(1)
189NQ Units
1.07
1.27
0.74
0.86
V
V
V
V
mA
mA
pF
nH
V/ µs
@ 180A
@ 360A
@ 180A
@ 360A
T
J
= 25 °C
T
J
= 125 °C
Conditions
T
J
= 25 °C
T
J
= 125 °C
V
R
= rated V
R
I
RM
C
T
L
S
Max. Reverse Leakage Current (1)
* See Fig. 2
Max. Junction Capacitance
Typical Series Inductance
4.5
65
4500
6.0
10,000
V
R
= 5V
DC
, (test signal range 100Khz to 1Mhz) 25 °C
From top of terminal hole to mounting plane
dv/dt Max. Voltage Rate of Change
(Rated V
R
)
(1) Pulse Width < 300µs, Duty Cycle < 2%
Thermal-Mechanical Specifications
Parameters
T
J
T
stg
Max. Junction Temperature Range
Max. Storage Temperature Range
189NQ Units
-55 to 175
-55 to 175
0.30
0.15
°C
°C
°C/W
°C/W
DCoperation
Conditions
R
thJC
Max. Thermal Resistance Junction
to Case
R
thCS
Typical Thermal Resistance, Case to
Heatsink
wt
T
Approximate Weight
Mounting Torque
Terminal Torque
Case Style
Min.
Max.
Min.
Max.
* See Fig. 4
Mounting surface , smooth and greased
25.6 (0.9) g (oz.)
40 (35)
58 (50)
58 (50)
86 (75)
Non-lubricated threads
Kg-cm
(Ibf-in)
HALF PAK Module
2
189NQ... Series
PD-20720 12/99
1000
1000
100
Reverse Current - I
R
(mA)
T J = 175˚C
150˚C
10
125˚C
1
0.1
0.01
0.001
0
30
100˚C
75˚C
50˚C
25˚C
100
Instantaneous Forward Current - I
F
(A)
T
J
= 175˚C
T
J
= 125˚C
T
J
= 25˚C
60
90
120
150
Reverse Voltage - V
R
(V)
Fig. 2 - Typical Values Of Reverse Current
Vs. Reverse Voltage
10000
Junction Capacitance - C
T
(pF)
10
T = 25˚C
J
1000
1
0
0.4
0.8
1.2
1.6
Forward Voltage Drop - V
FM
(V)
2
100
0
30
60
90
120
Reverse Voltage - V
R
(V)
Fig. 3 - Typical Junction Capacitance
Vs. Reverse Voltage
Fig. 1 - Max. Forward Voltage Drop Characteristics
1
Thermal Impedance Z
thJC
(°C/W)
0.1
D = 0.75
D = 0.50
D = 0.33
D = 0.25
D = 0.20
P
DM
t1
0.01
Notes:
t2
Single Pulse
(Thermal Resistance)
1. Duty factor D = t1 / t2
2. Peak T
J
= P
DM
x Z
thJC
+ T
C
0.001
0.00001
0.0001
0.001
0.01
0.1
1
10
100
t
1
, Rectangular Pulse Duration (Seconds)
Fig. 4 - Max. Thermal Impedance Z
thJC
Characteristics
3
189NQ... Series
PD-20720 12/99
180
Allowable Case Temperature - (°C)
200
Average Power Loss - (Watts)
D = 0.20
D = 0.25
D = 0.33
D = 0.50
D = 0.75
160
DC
160
140
120
100
80
60
0
100
200
300
Average Forward Current - I
F
(AV)
(A)
Fig. 5 - Max. Allowable Case Temperature
Vs. Average Forward Current
Non-Repetitive Surge Current - I
FSM
(A)
120
RMS Limit
DC
80
Square wave (D = 0.50)
Rated V applied
R
see note (2)
40
0
0
30 60 90 120 150 180 210 240 270
Average Forward Current - I
F
(AV)
(A)
Fig. 6 - Forward Power Loss Characteristics
100000
At Any Rated Load Condition
And With Rated VRRM Applied
Following Surge
10000
1000
10
100
1000
10000
Square Wave Pulse Duration - t
p
(microsec)
Fig. 7 - Max. Non-Repetitive Surge Current
L
HIGH-SPE ED
SWITCH
FR EE-WHEEL
DIODE
40HFL40S02
+
V d = 25 V olt
DUT
IRFP460
Rg = 25 ohm
C URRE NT
M ON ITOR
Fig. 8 - Unclamped Inductive Test Circuit
(2)
Formula used: T
C
= T
J
- (Pd + Pd
REV
) x R
thJC
;
Pd = Forward Power Loss = I
F(AV)
x V
FM
@ (I
F(AV)
/
D) (see Fig. 6);
Pd
REV
= Inverse Power Loss = V
R1
x I
R
(1 - D); I
R
@ V
R1
= rated V
R
4
189NQ... Series
PD-20720 12/99
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