ChipFind - Datasheet

Part Number BTS6133D

Download:  PDF   ZIP


PROFET® Data sheet BTS 6133 D
Infineon Technologies AG
Page 1 of 15
2003-Oct-01
Smart Highside Power Switch
Reversave
·
Reverse battery protection by self turn on of
power MOSFET
Inversave
·
Inverse operation by self turn on of power
MOSFET
Features
·
Short circuit protection with latch
·
Current limitation
·
Overload protection
·
Thermal shutdown with restart
·
Overvoltage protection (including load dump)
·
Loss of ground protection
·
Loss of V
bb
protection (with external diode for
charged inductive loads)
·
Very low standby current
·
Fast demagnetisation of inductive loads
·
Electrostatic discharge (ESD) protection
·
Optimized static electromagnetic compatibility (EMC)
Diagnostic Function
·
Proportional load current sense (with defined fault signal in case of overload operation, overtemperature
shutdown and/or short circuit shutdown)
Application
·
Power switch with current sense diagnostic feedback for 12V and 24 V DC grounded loads
·
All types of resistive, inductive and capacitive loads
·
Replaces electromechanical relays, fuses and discrete circuits
General Description
N channel vertical power FET with charge pump, current controlled input and diagnostic feedback with load
current sense, integrated in Smart SIPMOS
chip on chip technology. Providing embedded protective functions.
IN
Charge pump
Level shifter
Rectifier
Limit for
unclamped
ind. loads
Gate
protection
Current
limit
2
Overvoltage
protection
+ Vbb
PROFET
OUT
3 & Tab
1, 5
Load GND
Load
Output
Voltage
detection
R
IS
IS
4
I
IS
I
L
V
IS
I
IN
Logic GND
Voltage
sensor
Voltage
source
Current
Sense
Logic
ESD
Temperature
sensor
R bb
V
IN
Product Summary
Operating voltage
V
bb(on)
5.5
...
38
V
On-state resistance
R
ON
10
m
Nominal current
I
L(nom)
8
A
Load current (ISO)
I
L(ISO)
33
A
Current limitation
IL12(SC)
75
A
Package
TO-252-5-1
(DPAK 5 pin; less than half the size as TO 220 SMD)




Data sheet BTS 6133 D
Infineon Technologies AG
Page 2 of 15
2003-Oct-01
Pin Symbol
Function
1 OUT
O
Output; output to the load; pin 1 and 5 must be externally
shorted* .
2 IN I
Input; activates the power switch if shorted to ground.
Tab/(3) Vbb +
Supply
Voltage; positive power supply voltage; tab and pin3
are internally shorted.
4 IS S
Sense
Output; Diagnostic feedback; provides at normal
operation a sense current proportional to the load current; in
case of overload, overtemperature and/or short circuit a
defined current is provided (see Truth Table on page 8)
5 OUT
O
Output; output to the load; pin 1 and 5 must be externally
shorted* .
*) Not shorting all outputs will considerably increase the on-state resistance, reduce the peak current capability
and decrease the current sense accuracy
Maximum Ratings at T
j
= 25 °C unless otherwise specified
Parameter Symbol
Values
Unit
Supply voltage (overvoltage protection see page 4)
V
bb
38
V
Supply voltage for full short circuit protection
1)
V
bb
30
V
Load dump protection V
LoadDump
= U
A
+ V
s
, U
A
= 13.5 V
R
I
= 2
, R
L
= 1.5
, t
d
= 400 ms, IN= low or high
V
Load dump
2
)
45
V
Load current (Short-circuit current, see page 5)
I
L
self-limited
A
Operating temperature range
Storage temperature range
T
j
T
stg
-40 ...+150
-55 ...+150
°C
Power dissipation (DC)
P
tot
59
W
Inductive load switch-off energy dissipation
3)
single pulse I
L
= 20 A, V
bb
= 12V
T
j
=150 °C:

E
AS
0.3
J
Electrostatic discharge capability (ESD)
(Human Body Model)
acc.
ESD assn. std. S5.1-1993; R=1.5k
; C=100pF
V
ESD
3.0
kV
Current through input pin (DC)
Current through current sense pin (DC)
see internal circuit diagrams page 9
I
IN
I
IS
+15, -120
+15, -120
mA
Input voltage slew rate
V
bb
16V :
V
bb
> 16V
4)
:

dV
bIN
/ dt
self-limited
20
V/
µ
s
1)
Short circuit is defined as a combination of remaining resistances and inductances. See schematic on
page11.
2)
V
Load dump
is setup without the DUT connected to the generator per ISO 7637-1 and DIN 40839
3)
See also diagram on page 11.
4)
See also on page 8. Slew rate limitation can be achieved by means of using a series resistor R
IN
in the input
path. This resistor is also required for reverse operation. See also page 10.

Data sheet BTS 6133 D
Infineon Technologies AG
Page 3 of 15
2003-Oct-01
Thermal Characteristics
Parameter and Conditions Symbol
Values
Unit
min typ
max
Thermal resistance
chip - case
:
R
thJC
-- --
1.1
K/W
junction - ambient (free air):
R
thJA
--
80 --
SMD version, device on PCB
5)
:
-- 45
55
5
) Device on 50mm*50mm*1.5mm epoxy PCB FR4 with 6cm
2
(one layer, 70
µ
m thick) copper area for Vbb
connection. PCB is vertical without blown air.
Electrical Characteristics
Parameter and Conditions Symbol
Values
Unit
at T
j
= 25, V
bb
= 12 V unless otherwise specified
min typ
max
Load Switching Capabilities and Characteristics
On-state resistance (pin 3 to pin 1,5)
V
IN
= 0, V
bb
= 5.5V, I
L
= 7.5 A
T
j
=25 °C:
T
j
=150 °C:
V
IN
= 0, V
bb
= 12V, I
L
= 7.5 A
T
j
=25 °C:
T
j
=150 °C:
R
ON
--
--
--
--
10
18
8
14
14
26
10
18
m
Nominal load current (Tab to pin 1,5)
ISO Proposal: V
ON
0.5 V, T
C
= 85°C, T
j
150°C
SMD
5)
: V
ON
0.5 V, T
A
= 85°C, T
j
150°C

I
L(ISO)
I
L(nom)
33
8
41
10
--
--
A
Turn-on time
to 90% V
OUT
:
Turn-off time
to 10% V
OUT
:
R
L
= 2.2
,
T
j
=-40...150 °C
t
on
t
off
--
--
250
250
500
500
µ
s
Slew rate on
25 to 50% V
OUT
,
R
L
= 2.2
,
T
j
=-40...150 °C
dV /dt
on
-- 0.3 0.5
V/
µ
s
Slew rate off
50 to 25% V
OUT
, R
L
= 2.2
,
T
j
=-40...150 °C
-dV/dt
off
-- 0.3 0.6
V/
µ
s


Data sheet BTS 6133 D
Parameter and Conditions Symbol
Values
Unit
at T
j
= 25, V
bb
= 12 V unless otherwise specified
min typ
max
Infineon Technologies AG
Page 4 of 15
2003-Oct-01
Operating Parameters
Operating voltage (V
IN
=0)
T
j
=-40...150 °C: V
bb(on)
5.5
--
38
V
Undervoltage shutdown
6
)
7
)
V
bIN(u)
-- 2.5 3.5
V
Undervoltage restart of charge pump
V
bb(ucp)
--
4
5.5
V
Overvoltage protection
8
)
I
bb
=15 mA
T
j
=-40...+150°C :
V
Z,IN
63
67
--
V
Standby current
T
j
=-40...+120°C
:
I
IN
=0
T
j
=150°C:
I
bb(off)
--
--
3
6
6
14
µ
A
Reverse Battery
Reverse battery voltage
9
)
-V
bb
--
--
16
V
On-state resistance (pin 1,5 to pin 3)
V
bb
= - 8V, V
IN
= 0, I
L
= -7.5 A, R
IS
= 1 k
,
7)
T
j
=25 °C:
T
j
=150 °C:
V
bb
= -12V, V
IN
= 0, I
L
= -7.5 A, R
IS
= 1 k
, T
j
=25 °C:
T
j
=150 °C:

R
ON(rev)
--
--
--
--
9.5
16
9
15
13
22
12
21
m
Integrated resistor in V
bb
line
R
bb
-- 100 150
Inverse Load Current Operation
On-state resistance
(Pins 1,5 to pin 3)
7)
V
bIN
=
12 V, I
L
=
-
7.5
A
T
j
=
25
°C:
See diagram on page 10
T
j
=
150
°C:

R
ON(inv)
--
--
8
14
10
18
m
Maximum transient inverse load current
7)
10
)
(Pins 1,5 to Tab)
Tj =
25
°C
Tj =
85
°C
Tj =
150
°C
- I
L(inv)

--
--
--

--
--
--
45
30
14
A
Drain-source diode voltage
(+V
out
> +V
bb
)
7)
I
L
=
-
7.5
A, I
IN
= 0, T
j
=
150°C
-V
ON
--
0.3
--
V
6)
V
bIN
=V
bb
-V
IN
see schematic on page 8 and on page 14.
7)
not subject to production test, specified by design
8)
See also V
Z,IN
in schematic on page 9.
9)
For operation at voltages higher then |16V| please see required schematic on page 10.
10)
Operation above these limits might cause a switch off of the device after the transition from inverse to
forward mode. In this case the device switches on again after a time delay of typ.1 msec .


Data sheet BTS 6133 D
Parameter and Conditions Symbol
Values
Unit
at T
j
= 25, V
bb
= 12 V unless otherwise specified
min typ
max
Infineon Technologies AG
Page 5 of 15
2003-Oct-01
Protection Functions
11
)
Short circuit current limit (Tab to pin 1,5)
12
)
Short circuit current limit at
V
ON
= 6V
13)
T
j
=-40°C:
T
j
=25°C:
T
j
=+150°C:
I
L6(SC)
--
--
70
110
105
90
140
--
--
A
Short circuit current limit at
V
ON
= 12V
T
j(start)
=-40°C:
t
m
=170µs
T
j(start)
=25°C:
T
j(start)
=+150°C:
I
L12(SC)
--
--
45
80
75
60
110
--
--
A
Short circuit current limit at
V
ON
= 18V
13
)
T
j(start)
=-40°C:
T
j(start)
=25°C:
T
j(start)
=+150°C:
I
L18(SC)
--
--
33
60
55
50
80
--
--
A
Short circuit current limit at
V
ON
= 24V
T
j(start)
=-40°C:
t
m
=170µs
T
j(start)
=25°C:
T
j(start)
=+150°C:
I
L24(SC)
--
--
20
40
40
35
60
--
--
A
Short circuit current limit at
V
ON
= 30V
13)
T
j(start)
=-40°C:
T
j(start)
=25°C:
T
j(start)
=+150°C:
I
L30(SC)
--
--
15
25
25
25
40
--
--
A
Short circuit shutdown detection voltage
(pin 3 to pins 1,5)

V
ON(SC)
2.5
3.5
4.5
V
Short circuit shutdown delay after input current
positive slope, V
ON
> V
ON(SC),
T
j
=
-40...+150°C
min. value valid only if input "off-signal" time exceeds 30
µ
s

t
d(SC1)
350
650 1200
µ
s
Short circuit shutdown delay during on condition
13)
V
ON
> V
ON(SC)

t
d(SC2)
--
2 --
µ
s
Output clamp (inductive load switch off)
14
)
at V
OUT
= V
bb
- V
ON(CL)
(e.g. overvoltage)
I
L
= 40 mA

V
ON(CL)
39
42 --
V
Thermal overload trip temperature
T
jt
150
175
--
°C
Thermal hysteresis
T
jt
-- 10 --
K
11)
Integrated protection functions are designed to prevent IC destruction under fault conditions described in the
data sheet. Fault conditions are considered as "outside" normal operating range. Protection functions are
not designed for continuous repetitive operation.
12
)
Short circuit current limit for max. duration of t
d(SC1)
, prior to shutdown, see also figures 3.x on page 13.
13
)
not subject to production test, specified by design
14
) See also figure 2b on page 12.


Data sheet BTS 6133 D
Parameter and Conditions Symbol
Values
Unit
at T
j
= 25, V
bb
= 12 V unless otherwise specified
min typ
max
Infineon Technologies AG
Page 6 of 15
2003-Oct-01
Diagnostic Characteristics
Current sense ratio, static on-condition
k
ILIS
=
I
L
:
I
IS
, I
IS
< I
IS,lim
15)
,
V
IS
<V
OUT
-
5
V, V
bIN
>
4.5
V
K
ILIS
--

10 000
--
IL = 30A, Tj = -40°C:
Tj = +25°C:
Tj = +150°C:
IL = 7.5A, Tj = -40°C:
Tj = +25°C:
Tj = +150°C:
IL = 2.5A, Tj = -40°C:
Tj = +25°C:
Tj = +150°C:
8300
8300
8300
7500
8000
8200
6100
6500
7600
10000
9700
9300
10000
9700
9300
10000
9700
9300
11000
10600
10000
11400
10800
10200
14200
12800
11500
I
IN
= 0
(e.g. during deenergizing of inductive loads)
:
-- 0
--
Sense current under fault conditions
16)
VON>1V, typ
T
j
=
-40...+150°C:

I
IS,fault
4.0
5.2 7.5
mA
Sense saturation current
VON<1V, typ
T
j
=
-40...+150°C:

I
IS,lim
4.0
6.0 7.5
mA
Fault-Sense signal delay after input current positive
slope, V
ON
>1V,
Tj = -40...+150°C
t
delay(fault)
350 650
1200
µ
s
Current sense leakage current, I
IN
=
0
I
IS(LL)
-- 0.1
0.5
µ
A
Current sense offset current, V
IN
=
0, I
L
0
I
IS(LH)
-- 1
60
µ
A
Current sense settling time to I
IS static
after input
current positive slope,
17
)
I
L
= 0
20 A, T
j
= -40...+150°C

t
son(IS)
--
250
500
µ
s
Current sense settling time during on condition,
17)
I
L
= 10
20 A, T
j
= -40...+150°C

t
slc(IS)
--
50
100
µ
s
Overvoltage protection
I
bb
=
15
mA
T
j
=
-40...+150°C:

V
Z,IS
63
67
--
V
15)
See also figures 4.x and 6.x on page 13 and 14.
16)
Fault conditions are overload during on (i.e. V
ON
>1V typ.), overtemperature and short circuit; see also truth
table on page 8.
17
) not subject to production test, specified by design


Data sheet BTS 6133 D
Parameter and Conditions Symbol
Values
Unit
at T
j
= 25, V
bb
= 12 V unless otherwise specified
min typ
max
Infineon Technologies AG
Page 7 of 15
2003-Oct-01
Input
Required current capability of input switch
T
j
=-40..+150°C:
I
IN(on)
-- 1.4 2.2
mA
Input current for turn-off
T
j
=-40..+150°C: I
IN(off)
-- --
30
µA


Data sheet BTS 6133 D
Infineon Technologies AG
Page 8 of 15
2003-Oct-01
Truth Table
Input
Current
level
Output
level
Current
Sense
I
IS
Normal
operation
L
H
L
H
0 (I
IS(LL)
)
nominal
Overload
18
)
L
H
L
H
0 (I
IS(LL)
)
I
IS,fault
Short circuit to GND
19
)
L
H
L
L
0 (I
IS(LL)
)
I
IS,fault
Overtemperature L
H
L
L
0 (I
IS(LL)
)
I
IS,fault
Short circuit to Vbb
L
H
H
H
0 (I
IS(LL)
)
<nominal
20)
Open load
L
H
Z
H
0 (I
IS(LL)
)
0 (I
IS(LH)
)

L = "Low" Level
Z = high impedance, potential depends on external circuit
H = "High" Level
18
) Overload is detected at the following condition: 1V (typ.) < V
ON
< 3.5V (typ.) . See also page 11.
19
) Short Circuit is detected at the following condition: V
ON
> 3.5V (typ.) . See also page 11.
20
) Low ohmic short to
V
bb
may reduce the output current
I
L
and therefore also the sense current
I
IS
.
Terms
PROFET
V
IN
IS
OUT
bb
V
IN
I
IS
I
IN
V
bb
Ibb
IL
V
OUT
V
ON
2
4
3
1,5
R
IS
V
IS
V
bIN
R
IN
D
S
V
bIS
Two or more devices can easily be connected in
parallel to increase load current capability.


Data sheet BTS 6133 D
Infineon Technologies AG
9 of 15
2003-Oct-01
Input circuit (ESD protection)
IN
ZD
IN
I
V bb
Rbb
V
Z,IN
V bIN
V IN
ESD-Zener diode: 67 V typ., max 15 mA;
Current sense output
Normal operation
IS
IS
R
ZD
IS
V
Vbb
Z,IS
V
Rbb
IIS
IIS,fault
V
Z,IS
=
67
V
(typ.), R
IS
=
1
k
nominal (or 1
k
/n, if n
devices are connected in parallel). I
S
= I
L
/k
ilis
can be
only driven by the internal circuit as long as
V
out
- V
IS
>
5V. Therefore R
IS
should be less than
mA
V
V
bb
5
.
7
5
-
.
Note: For large values of R
IS
the voltage V
IS
can reach
almost V
bb
. See also overvoltage protection.
If you don't use the current sense output in your
application, you can leave it open.
Inductive and overvoltage output clamp
+ V
bb
OUT
PROFET
V
Z1
V
ON
V
ON
is clamped to V
ON(Cl)
=
42
V typ
Overvoltage protection of logic part
+ V
bb
V
OUT
IN
bb
R
Signal GND
Logic
PROFET
V
Z,IS
R
IS
IN
R
IS
V
Z,IN
R
V
V
Z,VIS
R
bb
=
100
typ
.
,
V
Z,IN
= V
Z,IS
=
67
V
typ.,
R
IS
=
1
k
nominal. Note that when overvoltage exceeds 67
V
typ.
a voltage above 5V can occur between IS and GND, if
R
V
, V
Z,VIS
are not used.


Data sheet BTS 6133 D
Infineon Technologies AG
10 of 15
2003-Oct-01
Reversave
(
Reverse battery protection)
Logic
IN
IS
R
OUT
L
R
Power GND
Signal GND
Vbb
-
Power
Transistor
IN
R
bb
R
D
R
IS
typ. 1
k
. Add
R
IN
for reverse battery protection in
applications with
V
bb
above 16V;
recommended value:
=
+
IS
IN
R
R
1
1
V
V
A
bb
12
|
|
08
.
0
-
To minimise power dissipation at reverse battery
operation, the overall current into the IN and IS pin
should be about 80mA. The current can be provided by
using a small signal diode D in parallel to the input
switch, by using a MOSFET input switch or by proper
adjusting the current through R
IS.
Since the current via R
bb
generates additional heat in
the device, this has to be taken into account in the
overall thermal consideration.
Inversave
(Inverse current operation)
PROFET
V
IN
OUT
IS
bb
V
bb
V
OUT
- I
L
R
IS
V
IS
V
IN
+
-
+
-
I
IS
The device can be operated in inverse load current
mode (V
OUT
> V
bb
> 0V). The current sense feature is
not available during this kind of operation (I
IS
= I
IS(LH)
).
With I
IN
= 0 (e.g. input open) only the intrinsic drain
source diode is conducting resulting in considerably
increased power dissipation. If the device is switched
on (V
IN
= 0), the power dissipation is decreased to the
much lower value R
ON(INV)
* I
2
as long as a maximum
current I
L(inv)
is not exceeded(see on p4).
Note: Temperature protection during inverse load
current operation is not possible!
V
bb
disconnect with energised inductive
load
Provide a current path with load current capability by
using a diode, a Z-diode, or a varistor. (V
ZL
+V
D
<39 V if
R
IN
=
0). For higher clamp voltages currents at IN and
IS have to be limited to
120 mA.
Version a:
PROFET
V
IN
OUT
IS
bb
V
bb
V
ZL
V
D


Data sheet BTS 6133 D
Infineon Technologies AG
11 of 15
2003-Oct-01
Short circuit detection
Fault Condition: V
ON
> V
ON(SC)
(3.5
V typ.) and t> t
d(SC)
(typ.650 µs).
Overload detection
Fault Condition: V
ON
> 1
V typ.
detection
circuit
Logic
unit
+ Vbb
O UT
V
O N
Short circuit
Short circuit is a combination of primary and
secondary impedance's and a resistance's.
PROFET
V
IN
OUT
IS
bb
RSC
I
IN
V bb
Z
L
SC
L SC
10mOhm
5uH
A
llowable combinations of minimum, secondary
resistance for full protection at given secondary
inductance and supply voltage for single short circuit
event:
0
5
16V
10
0
100
200
RSC
[mOhm]
15
L SC
300
[uH]
V :
bb
18V
24V
30V
Inductive load switch-off energy
dissipation
PROFET
V
IN
OUT
IS
bb
E
E
E
EAS
bb
L
R
ELoad
L
RL
{
Z L
RIS
I
IN
Vbb
i (t)
L

Energy stored in load inductance:
E
L
=
1/2
·
L
·
I
2
L
While demagnetising load inductance, the energy
dissipated in PROFET is
E
AS
= E
bb
+ E
L
- E
R
=
V
ON(CL)
·
i
L
(t) dt,
with an approximate solution for RL
>
0
:
E
AS
=
I
L
·
L
2
·
R
L
(
V
bb
+
|V
OUT(CL)
|)
ln
(1+
I
L
·
R
L
|V
OUT(CL)
|
)

Maximum allowable load inductance for
a single switch off
L = f (IL );
Tj,start =
150°C, Vbb =
12
V, RL =
0
0,01
0,1
1
10
100
1000
1
10
100
I_L [A]
L [m H ]


Data sheet BTS 6133 D
Infineon Technologies AG
12 of 15
2003-Oct-01
Timing diagrams
Figure 1a: Switching a resistive load,
change of load current in on-condition:
I
IN
t
V
OUT
I
L
I
IS
t
son(IS)
t
t
slc(IS)
Load 1
Load 2
soff(IS)
t
t
t
on
off
slc(IS)
90%
dV/dton
dV/dtoff
10%
The sense signal is not valid during a settling time
after turn-on/off and after change of load current.
Figure 2a: Switching motors and lamps:
I
IN
t
V
OUT
I
IL
I
IS
I
IS,faut
/ I
IS,lim
As long as VbIS < VZ,IS the sense current will never
exceed IIS,fault and/or IIS,lim.
Figure 2b: Switching an inductive load:
I
IN
t
V
OUT
I
L
I
IS
V
ON(CL)


Data sheet BTS 6133 D
Infineon Technologies AG
13 of 15
2003-Oct-01
Figure 3a: Typ. current limitation characteristic
0
20
40
60
80
0
10
20
VON
[V]
[A]
IL(SC)
30
V
ON(SC)
100
In case of V
ON
> V
ON(SC)
(typ. 3.5 V) the device will
be switched off by internal short circuit detection.
Figure 3b: Short circuit type one:
shut down by short circuit detection, reset by I
IN
=
0.
I
IN
I
L
I
L(SC)
I
IS
t
t
d(SC1)
I
IS,fault
t
delay(fault)
t
m
V
ON
> V
ON(SC)
Shut down remains latched until next reset via input.
Figure 3c: Short circuit type two:
shut down by short circuit detection, reset by I
IN
=
0.
I
IN
I
L
Internal Switch off
I
IS
t
t
d(SC2)
I
IS,fault
V
ON
I
L
k
ilis
1V typ.
depending on the
external impedance
Shut down remains latched until next reset via input.
Figure 4a: Overtemperature
Reset if T
j
<T
jt
I
IN
t
I
IS
V
OUT
T
j
Auto Restart
I
IS,fault


Data sheet BTS 6133 D
Infineon Technologies AG
14 of 15
2003-Oct-01
Figure 4b: Overload
T
j
<T
jt
I
IN
t
I
L
V
bb
I
S
-V
OUT
V =1V typ.
ON
R *I
ON L,lim
I
L
k
ilis
I
IS,lim
I
IS,fault
Figure 5a: Undervoltage restart of charge pump,
overvoltage clamp
0
0
10
12
V
OUT
V
bIN(ucp)
V
IN
= 0
I
IN
= 0
V
ON(CL)
V
ON(CL)
V
bIN(u)
V
bIN(u)
dynamic, short
Undervoltage
not below
V
bb
Figure 6a: Current sense versus load current:
0
1
2
0
10
20
I L
[A]
[mA] IIS
30
40
3
I
L,lim
4
I
IS(LH)
I
IS,lim
Figure 6b: Current sense ratio
21
:
0
5000
10000
15000
0
10
20
IL
[A]
kILIS
5
Approximate solution for worst case, minimum
detectable load current:
I
L (MIN)
= I
IS(LH)
·k
ILIS
(max@30A)
21
This range for the current sense ratio refers to all
devices. The accuracy of the k
ILIS
can be raised by
means of calibration the value of k
ILIS
for every
single device.


Data sheet BTS 6133 D
Infineon Technologies AG
15 of 15
2003-Oct-01
Package and Ordering Code
All dimensions in mm
D-Pak-5 Pin: TO-252-5-1
Sales Code
BTS6133D
Ordering code
Q67060-S6072-A101
Published by
Infineon Technologies AG,
St.-Martin-Strasse 53,
D-81669 München
© Infineon Technologies AG 2001
All Rights Reserved.
Attention please!
The information herein is given to describe certain components and shall not be considered as a guarantee of
characteristics.
Terms of delivery and rights to technical change reserved.
We hereby disclaim any and all warranties, including but not limited to warranties of non-infringement, regarding circuits,
descriptions and charts stated herein.
Infineon Technologies is an approved CECC manufacturer.
Information
For further information on technology, delivery terms and conditions and prices please contact your nearest Infineon
Technologies Office in Germany or our Infineon Technologies Representatives worldwide (see address list).
Warnings
Due to technical requirements components may contain dangerous substances. For information on the types in question
please contact your nearest Infineon Technologies Office.
Infineon Technologies Components may only be used in life-support devices or systems with the express written approval
of Infineon Technologies, if a failure of such components can reasonably be expected to cause the failure of that life-
support device or system, or to affect the safety or effectiveness of that device or system. Life support devices or systems
are intended to be implanted in the human body, or to support and/or maintain and sustain and/or protect human life. If they
fail, it is reasonable to assume that the health of the user or other persons may be endangered.
GPT09161
5.4
±0.1
-0.10
6.5
+0.15
A
±0.5
9.9
6.22
-0.2
1
±0.1
±0.15
0.8
0.15 max
±0.1
per side
5x0.6
1.14
4.56
+0.08
-0.04
0.9
2.3
-0.10
+0.05
B
0.51 min
±0.1
1
+0.08
-0.04
0.5
0...0.15
B
A
0.25
M
0.1
All metal surfaces tin plated, except area of cut.
(4.17)