EB01 Apex Microtechnology Corporation, EB01 Datasheet - Page 2

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EB01

Manufacturer Part Number
EB01
Description
Motion Control
Manufacturer
Apex Microtechnology Corporation
Datasheet

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EB01
ABSOLUTE MAXIMUM RATINGS
SPECIFICATIONS
PARAMETER
POSITIVE OUTPUT VOLTAGE
NEGATIVE OUTPUT VOLTAGE
POSITIVE EDGE DELAY
RISETIME
NEGATIVE EDGE DELAY
FALLTIME
PWM FREQUENCY
INPUT IMPEDANCE
INPUT AND OUTPUT SIGNALS
PIN
1
2
3
4
5
6
7
8
9
10
11
12
NOTES: 1.
INPUT
the half bridge. A logic level high turns on the IGBT; a logic
level low turns it off. A common shutdown input turns off
all IGBTs when high.
2/3V
interfaces with CMOS or HCMOS provided that the V
logic family and the EB01 are the same.
is added to the TTL gates driving the EBO1, and V
the EB01 is the same supply as the logic supply for the
TTL family.
all other inputs low, insuring that all outputs are off.
APEX MICROTECHNOLOGY CORPORATION • 5980 NORTH SHANNON ROAD • TUCSON, ARIZONA 85741 • USA • APPLICATIONS HOTLINE: 1 (800) 546-2739
2
A logic level input independently controls each IGBT in
All inputs are Schmitt triggers with the upper threshold at
TTL families may be used if a pull-up to the logic supply
An open signal connector pulls the shut down input high and
dd
and the lower threshold at 1/3 V
2.
3.
4.
5.
SYMBOL
V
Lin3
Hin3
V
V
Lin2
V
Hin2
V
Lin1
SD
Hin1
Guaranteed but not tested.
Total package power dissipation at 25°C case tempterature with three outputs active.
Each IGBT.
Long term operation at the maximum junction temperature will result in reduced product life. Lower internal temperature by
reducing internal dissipation or using better heatsinking to achieve high MTTF.
Derate the High Voltage Supply V
cc
dd
cc
ss
cc
3
2
1
I
HV=500V, Fpwm=30kHz, L=100 µH
Set by external circuitry
Set by internal resistors
TEST CONDITIONS
OUT
FUNCTION
Gate supply 3
Low drive logic in 3
High drive logic in 3
Logic supply
Gate supply 2
Low drive logic in 2
Logic ground
High drive logic in 2
Gate supply 1
Low drive logic in 1
Shut down logic in
High drive logic in 1
dd
=20A; V
. This comfortably
s
by -0.133% per °C below 25°C.
HIGH VOLTAGE SUPPLY, HV
OUTPUT CURRENT, peak
OUTPUT CURRENT, continuous
DRIVER SUPPLY VOLTAGE, Vcc
LOGIC SUPPLY VOLTAGE, Vdd
LOGIC INPUT VOLTAGE
POWER DISSIPATION, internal
THERMAL RESISTANCE TO CASE
TEMPERATURE, pin solder, 10s
TEMPERATURE, junction
TEMPERATURE RANGE, storage
OPERATING TEMPERATURE, case
cc
=10.8V, V
"
"
"
"
"
dd
for the
dd
for
dd
=5V;
one input is open circuited a high radiated noise level could
supuriousy turn on an IGBT.
OUTPUT
half bridge. Separate HV supply, emitter, and HV return lines
are provided for each section.
the saturation voltage is 2.7V maximum.
parallel. When switching an inductive load this diode will
conduct, and the drop at 20A will be 2.7V maximum.
However, input impedance is 50k on all inputs; therefore, if
Each output section consists of a switching mode IGBT
The IGBTs are conservatively rated to carry 20A. At 20A
Each IGBT has a high-speed diode connected in anti-
PIN
13
14
15
16
17
18
19
20
21
22
23
24
4
1
5
497.3
-2.7
MIN
2
50
3
SYMBOL
HV1
OUT1
E1
HVRTN1
HV2
OUT 2
E2
HVRTN2
HV3
OUT 3
E3
HVRTN 3
TYP
ABSOLUTE MAXIMUM RATINGS
500V
28A
20A
20V
20V
-0.3V to V
179 Watts
2.1°C/Watt
300°C
150°C
–65 to +150°C
–25 to +85°C
FUNCTION
High Voltage supply 1
Section 1 output
Section 1 emitter
Section 1 return
High voltage supply 2
Section 2 output
Section 2 emitter
Section 2 return
High voltage supply 3
Section 3 output
Section 3 emitter
Section 3 return
502.7
MAX
1000
1000
500
500
2.7
30
dd
SPECIFICATIONS
+ 0.3V
n-second
n-second
n-second
n-second
UNITS
k-ohm
Volts
Volts
kHz

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