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UTG61823SN

Part # UTG61823SN
Description Conn., Circ., Plug, 18 ShellSz, FemaleInsert, 23 #16 Sock
Category CONNECTOR
Availability In Stock
Qty 1
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1 + $12.21484
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BURNDY CORP
Date Code: 0044
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Technical Document


DISCLAIMER: The information provided herein is solely for informational purposes. Customers must be aware of the suitability of this product for their application, and consider that variable factors such as Manufacturer, Product Category, Date Codes, Pictures and Descriptions may differ from available inventory.

DocID018534 Rev 4 7/20
STGIPS14K60T Electrical characteristics
3 Electrical characteristics
T
J
= 25 °C unless otherwise specified.
Note: t
ON
and t
OFF
include the propagation delay time of the internal drive. t
C(ON)
and t
C(OFF)
are
the switching time of IGBT itself under the internally given gate driving condition.
Table 7. Inverter part
Symbol Parameter Test conditions
Value
Unit
Min. Typ. Max.
V
CE(sat)
Collector-emitter
saturation voltage
V
CC
= V
boot
= 15 V, V
IN
(1)
= 0 ÷ 5 V,
I
C
= 7 A
-2.12.5
V
V
CC
= V
boot
= 15 V, V
IN
(1)
= 0 ÷ 5 V,
I
C
= 7 A, T
J
= 125 °C
-1.8
I
CES
Collector-cut off current
(V
IN
(1)
= 0 “logic state”)
V
CE
= 550 V, V
CC
= V
Boot
= 15 V - 150 µA
V
F
Diode forward voltage V
IN
(1)
= 0 “logic state”, I
C
= 7 A - 2.1 V
Inductive load switching time and energy
t
on
Turn-on time
V
DD
= 300 V,
V
CC
= V
boot
= 15 V,
V
IN
(1)
= 0 ÷ 5 V,
I
C
= 7 A
(see Figure 5)
- 270 -
ns
t
c(on)
Crossover time (on) - 130 -
t
off
Turn-off time - 520 -
t
c(off)
Crossover time (off) - 140 -
t
rr
Reverse recovery time - 130 -
E
on
Turn-on switching losses - 150 -
µJ
E
off
Turn-off switching losses - 110 -
1. Applied between HIN
i
, LIN
i and
G
ND
for i = U, V, W (LIN inputs are active-low).
Electrical characteristics STGIPS14K60T
8/20 DocID018534 Rev 4
Figure 3. Switching time test circuit
Note: Figure 4 "Switching time definition" refers to HIN inputs (active high). For LIN
inputs (active
low), V
IN
polarity must be inverted for turn-on and turn-off.
Figure 4. Switching time definition
VBOOT>VCC
RSD
L
IC
VCE
+5V
VCC
INPUT
0
1
BUS
/Lin
/SD
Hin
Vcc
DT LVG
HVG
OUT
BOOT
CP+
GND
AM17167v1
VCE
IC IC
VIN
t
ON
t
C(ON)
VIN(ON)
10% IC 90% IC 10% VCE
(a) turn-on
(b) turn-off
t
rr
100% IC 100% IC
VIN
VCE
t
OFF
t
C(OFF)
VIN(OFF)
10% VCE 10% IC
AM09223V1
DocID018534 Rev 4 9/20
STGIPS14K60T Electrical characteristics
3.1 Control part
Table 8. Low voltage power supply (V
CC
= 15 V unless otherwise specified)
Symbol Parameter Test conditions Min. Typ. Max. Unit
V
CC_hys
V
CC
UV hysteresis 1.2 1.5 1.8 V
V
CC_thON
V
CC
UV turn ON threshold 11.5 12 12.5 V
V
CC_thOFF
V
CC
UV turn OFF threshold 10 10.5 11 V
I
qccu
Undervoltage quiescent
supply current
V
CC
= 10 V
SD = 5 V; LIN = 5 V;
H
IN
= 0
450 µA
I
qcc
Quiescent current
V
CC
= 15 V
SD
= 5 V; LIN = 5 V
H
IN
= 0
3.5 mA
Table 9. Bootstrapped voltage (V
CC
= 15 V unless otherwise specified)
Symbol Parameter Test conditions Min. Typ. Max. Unit
V
BS_hys
V
BS
UV hysteresis 1.2 1.5 1.8 V
V
BS_thON
V
BS
UV turn ON threshold 11.1 11.5 12.1 V
V
BS_thOFF
V
BS
UV turn OFF threshold 9.8 10 10.6 V
I
QBSU
Undervoltage V
BS
quiescent
current
V
BS
< 9 V
SD = 5 V; LIN and
HIN = 5 V
70 110 µA
I
QBS
V
BS
quiescent current
V
BS
= 15 V
SD
= 5 V; LIN and
HIN = 5 V
200 300 µA
R
DS(on)
Bootstrap driver on resistance LVG ON 120
Table 10. Logic inputs (V
CC
= 15 V unless otherwise specified)
Symbol Parameter Test conditions Min. Typ. Max. Unit
V
il
Low logic level voltage 0.8 1.1 V
V
ih
High logic level voltage 1.9 2.25 V
I
HINh
HIN logic “1” input bias current HIN = 15 V 110 175 260 µA
I
HINl
HIN logic “0” input bias current HIN = 0 V 1 µA
I
LINl
LIN logic “1” input bias current LIN = 0 V 3 6 20 µA
I
LINh
LIN logic “0” input bias current LIN = 15 V 1 µA
I
SDh
SD logic “0” input bias current SD = 15 V 30 120 300 µA
I
SDl
SD logic “1” input bias current SD = 0 V 3 µA
Dt Dead time see Figure 9 600 ns
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