PHPT61002NYCLH
100 V, 2 A NPN high power bipolar transistor
31 March 2017
Product data sheet
1. General description
NPN high power bipolar transistor in a SOT669 (LFPAK56) Surface-Mounted Device (SMD) power
plastic package.
PNP complement: PHPT61002PYCLH
2. Features and benefits
•
•
•
•
High thermal power dissipation capability
High temperature applications up to 175 °C
Reduced Printed Circuit Board (PCB) requirements comparing to transistors in DPAK
High energy efficiency due to less heat generation
3. Applications
•
•
•
•
Load switch
Power management
Linear mode voltage regulator
Backlighting apllications
4. Quick reference data
Table 1. Quick reference data
Symbol
Parameter
Conditions
Min
Typ
Max
Unit
VCEO
collector-emitter
voltage
open base
-
-
100
V
IC
collector current
-
-
2
A
ICM
peak collector current
single pulse; tp ≤ 1 ms
-
-
6
A
RCEsat
collector-emitter
saturation resistance
IC = 2 A; IB = 200 mA; Tamb = 25 °C
-
80
150
mΩ
[1]
pulsed; tp ≤ 300 µs; δ ≤ 0.02
[1]
PHPT61002NYCLH
Nexperia
100 V, 2 A NPN high power bipolar transistor
5. Pinning information
Table 2. Pinning information
Pin
Symbol Description
1
E
emitter
2
E
emitter
3
E
emitter
4
B
base
mb
C
Simplified outline
Graphic symbol
C
mb
B
E
1 2 3 4
collector
sym123
LFPAK56; PowerSO8 (SOT669)
6. Ordering information
Table 3. Ordering information
Type number
PHPT61002NYCLH
Package
Name
Description
Version
LFPAK56;
Power-SO8
Plastic single-ended surface-mounted package (LFPAK56;
Power-SO8); 4 leads
SOT669
7. Marking
Table 4. Marking codes
Type number
Marking code
PHPT61002NYCLH
1002NCC
PHPT61002NYCLH
Product data sheet
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Nexperia
100 V, 2 A NPN high power bipolar transistor
8. Limiting values
Table 5. Limiting values
In accordance with the Absolute Maximum Rating System (IEC 60134).
Symbol
Parameter
Conditions
Min
Max
Unit
VCBO
collector-base voltage
open emitter
-
100
V
VCEO
collector-emitter voltage
open base
-
100
V
VEBO
emitter-base voltage
open collector
-
7
V
IC
collector current
-
2
A
ICM
peak collector current
-
6
A
IB
base current
-
0.5
A
Ptot
total power dissipation
[1]
-
1.25
W
[2]
-
3
W
[3]
-
5
W
[4]
-
25
W
single pulse; tp ≤ 1 ms
Tamb ≤ 25 °C
Tj
junction temperature
-
175
°C
Tamb
ambient temperature
-55
175
°C
Tstg
storage temperature
-65
175
°C
[1]
[2]
[3]
[4]
Device mounted on an FR4 Printed-Circuit Board (PCB); single-sided copper; tin-plated and standard footprint.
2
Device mounted on an FR4 PCB; single-sided copper; tin-plated mounting pad for collector 6 cm .
Device mounted on an ceramic PCB; Al2O3; standard footprint.
Power dissipation from junction to mounting base.
aaa-010424
8
Ptot
(W)
6
(1)
4
(2)
2
(3)
0
-75
25
125
Tamb (°C)
225
(1) Ceramic PCB, Al2O3, standard footprint
2
(2) FR4 PCB, mounting pad for collector 6 cm
(3) FR4 PCB, standard footprint
Fig. 1.
Power derating curves
PHPT61002NYCLH
Product data sheet
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PHPT61002NYCLH
Nexperia
100 V, 2 A NPN high power bipolar transistor
9. Thermal characteristics
Table 6. Thermal characteristics
Symbol
Parameter
Conditions
Rth(j-a)
thermal resistance
from junction to
ambient
in free air
Rth(j-sp)
[1]
[2]
[3]
Min
Typ
Max
Unit
[1]
-
-
115
K/W
[2]
-
-
50
K/W
[3]
-
-
30
K/W
-
-
6
K/W
thermal resistance
from junction to solder
point
Device mounted on an FR4 Printed-Circuit Board (PCB); single-sided copper; tin-plated and standard footprint.
2
Device mounted on an FR4 PCB; single-sided copper; tin-plated and mounting pad for collector 6 cm .
Device mounted on an ceramic PCB, Al2O3, standard footprint.
aaa-010427
103
Zth(j-a)
(K/W)
duty cycle = 1
102
0.75
0.33
0.2
10
0.5
0.1
0.05
0.02
0.01
1
10-1
10-5
0.25
0
10-4
10-3
10-2
10-1
1
10
102
tp (s)
103
FR4 PCB, standard footprint
Fig. 2.
Transient thermal impedance from junction to ambient as a function of pulse duration; typical values
PHPT61002NYCLH
Product data sheet
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PHPT61002NYCLH
Nexperia
100 V, 2 A NPN high power bipolar transistor
aaa-010428
102
duty cycle = 1
Zth(j-a)
(K/W)
0.75
0.33
10
0.5
0.2
0.1
0.05
1
0.01
10-1
10-5
0.02
0.25
0
10-4
10-3
10-2
FR4 PCB, mounting pad for collector 6 cm
Fig. 3.
10-1
1
10
102
2
tp (s)
103
Transient thermal impedance from junction to ambient as a function of pulse duration; typical values
PHPT61002NYCLH
Product data sheet
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PHPT61002NYCLH
Nexperia
100 V, 2 A NPN high power bipolar transistor
10. Characteristics
Table 7. Characteristics
Symbol
Parameter
Conditions
Min
Typ
Max
Unit
ICBO
collector-base cut-off
current
VCB = 80 V; IE = 0 A; Tamb = 25 °C
-
-
100
nA
VCB = 80 V; IE = 0 A; Tj = 150 °C
-
-
50
µA
ICES
collector-emitter cut-off VCE = 80 V; VBE = 0 V; Tamb = 25 °C
current
-
-
100
nA
IEBO
emitter-base cut-off
current
VEB = 7 V; IC = 0 A; Tamb = 25 °C
-
-
100
nA
hFE
DC current gain
VCE = 1.5 V; IC = 500 mA; Tamb = 25 °C [1]
100
180
-
VCE = 10 V; IC = 500 mA; Tamb = 25 °C
[1]
120
220
-
VCE = 5 V; IC = 1 A; Tamb = 25 °C
[1]
90
160
260
VCE = 10 V; IC = 1 A; Tamb = 25 °C
[1]
90
180
-
VCE = 10 V; IC = 2 A; Tamb = 25 °C
[1]
20
80
-
-
50
75
mV
[1]
-
160
300
mV
VCEsat
collector-emitter
saturation voltage
IC = 0.5 A; IB = 50 mA; Tamb = 25 °C
IC = 2 A; IB = 200 mA; Tamb = 25 °C
RCEsat
collector-emitter
saturation resistance
[1]
-
80
150
mΩ
VBEsat
base-emitter saturation IC = 1 A; IB = 50 mA; Tamb = 25 °C
voltage
IC = 2 A; IB = 200 mA; Tamb = 25 °C
[1]
-
0.92
1.05
V
[1]
-
1.08
1.2
V
VBEon
base-emitter turn-on
voltage
VCE = 2 V; IC = 0.1 A; Tamb = 25 °C
[1]
-
0.68
0.85
V
td
delay time
-
20
-
ns
tr
rise time
VCC = 12.5 V; IC = 1 A; IBon = 0.05 A;
IBoff = -0.05 A; Tamb = 25 °C
-
300
-
ns
ton
turn-on time
-
320
-
ns
ts
storage time
-
800
-
ns
tf
fall time
-
420
-
ns
toff
turn-off time
-
1220
-
ns
fT
transition frequency
VCE = 10 V; IC = 100 mA; f = 100 MHz;
Tamb = 25 °C
-
140
-
MHz
Cc
collector capacitance
VCB = 10 V; IE = 0 A; ie = 0 A;
f = 1 MHz; Tamb = 25 °C
-
11
-
pF
[1]
pulsed; tp ≤ 300 µs; δ ≤ 0.02
PHPT61002NYCLH
Product data sheet
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PHPT61002NYCLH
Nexperia
100 V, 2 A NPN high power bipolar transistor
aaa-026555
500
aaa-026556
3
IB = 50 mA
hFE
45
IC
(A)
400
40
35
(1)
2
300
30
(2)
25
20
15
10
200
1
(3)
5
100
0
10-1
1
10
102
0
103
104
IC (mA)
VCE = 1 V
(1) Tamb = 100 °C
(2) Tamb = 25 °C
(3) Tamb = −55 °C
Fig. 4.
0
1
3
4
VCE (V)
5
Tamb = 25 °C
Fig. 5.
Collector current as a function of collectoremitter voltage; typical values
DC current gain as a function of collector
current; typical values
aaa-010808
8
aaa-010809
1.6
VBE
(V)
VBEsat
(V)
6
1.2
4
0.8
(1)
(1)
(2)
(2)
2
0.4
(3)
(3)
0
10-1
1
10
102
0
10-1
103
104
IC (mA)
VCE = 2 V
(1) Tamb = −55 °C
(2) Tamb = 25 °C
(3) Tamb = 100 °C
Fig. 6.
2
Product data sheet
10
102
103
104
IC (mA)
IC/IB = 20
(1) Tamb = −55 °C
(2) Tamb = 25 °C
(3) Tamb = 100 °C
Base-emitter voltage as a function of collector
current; typical values
PHPT61002NYCLH
1
Fig. 7.
Base-emitter saturation voltage as a function of
collector current; typical values
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PHPT61002NYCLH
Nexperia
100 V, 2 A NPN high power bipolar transistor
aaa-010810
10
aaa-010812
10
VCEsat
(V)
VCEsat
(V)
1
1
(1)
(3)
10-1
(2)
(1)
(3)
10-2
10-2
10-3
10-1
1
10
102
10-3
10-1
103
104
IC (mA)
IC/IB = 20
(1) Tamb = 100 °C
(2) Tamb = 25 °C
(3) Tamb = −55 °C
Fig. 8.
(2)
10-1
10
102
103
104
IC (mA)
Tamb = 25 °C
(1) IC/IB = 50
(2) IC/IB = 20
(3) IC/IB = 10
Collector-emitter saturation voltage as a
function of collector current; typical values
Fig. 9.
aaa-010813
103
Collector-emitter saturation voltage as a
function of collector current; typical values
RCEsat
(Ω)
102
102
10
10
(2)
(3)
aaa-010814
103
RCEsat
(Ω)
1
1
1
(1)
(1)
(2)
10-1
(3)
10-1
10-2
10-1
1
10
102
10-2
10-1
103
104
IC (mA)
IC/IB = 20
(1) Tamb = 100 °C
(2) Tamb = 25 °C
(3) Tamb = −55 °C
Product data sheet
10
102
103
104
IC (mA)
Tamb = 25 °C
(1) IC/IB = 50
(2) IC/IB = 20
(3) IC/IB = 10
Fig. 10. Collector-emitter saturation resistance as a
function of collector current; typical values
PHPT61002NYCLH
1
Fig. 11. Collector-emitter saturation resistance as a
function of collector current; typical values
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PHPT61002NYCLH
Nexperia
100 V, 2 A NPN high power bipolar transistor
11. Test information
IB
input pulse
(idealized waveform)
90 %
IBon (100 %)
10 %
IBoff
output pulse
(idealized waveform)
IC
90 %
IC (100 %)
10 %
t
td
ts
tr
ton
tf
toff
006aaa003
Fig. 12. BISS transistor switching time definition
VBB
RB
VCC
RC
Vo
(probe)
oscilloscope
450 Ω
(probe)
450 Ω
R2
VI
oscilloscope
DUT
R1
mlb826
Fig. 13. Test circuit for switching times
Quality information
This product has been qualified in accordance with the Automotive Electronics Council (AEC)
standard Q101 - Stress test qualification for discrete semiconductors, and is suitable for use in
automotive applications.
PHPT61002NYCLH
Product data sheet
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Nexperia
100 V, 2 A NPN high power bipolar transistor
12. Package outline
Plastic single-ended surface-mounted package (LFPAK56; Power-SO8); 4 leads
E
A2
A
SOT669
C
c2
b2
E1
b3
L1
mounting
base
b4
D1
D
H
L2
1
2
3
e
4
w
b
A
X
c
1/2 e
A
(A3)
A1
C
q
L
detail X
0
y C
θ
5 mm
8°
scale
0°
Dimensions (mm are the original dimensions)
Unit(1)
mm
A
A1
A2
A3
b
b2
max 1.20 0.15 1.10
0.50 4.41
nom
0.25
min 1.01 0.00 0.95
0.35 3.62
c
c2
D(1) D1(1) E(1) E1(1)
b3
b4
2.2
0.9
0.25 0.30 4.10 4.20
5.0
3.3
2.0
0.7
0.19 0.24 3.80
4.8
3.1
e
1.27
H
L
L1
L2
6.2
0.85
1.3
1.3
5.8
0.40
0.8
0.8
Note
1. Plastic or metal protrusions of 0.15 mm maximum per side are not included.
Outline
version
SOT669
References
IEC
JEDEC
JEITA
w
y
0.25
0.1
sot669_po
European
projection
Issue date
11-03-25
13-02-27
MO-235
Fig. 14. Package outline LFPAK56; Power-SO8 (SOT669)
PHPT61002NYCLH
Product data sheet
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100 V, 2 A NPN high power bipolar transistor
13. Soldering
Footprint information for reflow soldering
SOT669
4.7
4.2
0.9
(3×)
0.25
(2×)
0.25
(2×)
0.6
(4×)
3.45
0.6
(3×)
2
3.5
2.55
0.25
(2×)
SR opening =
Cu + 0.075
1.1
2.15
3.3
SP opening =
Cu - 0.050
0.7
(4×)
1.27
3.81
solder lands
solder paste
125 µm stencil
solder resist
occupied area
Dimensions in mm
sot669_fr
Fig. 15. Reflow soldering footprint for LFPAK56; Power-SO8 (SOT669)
PHPT61002NYCLH
Product data sheet
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Nexperia
100 V, 2 A NPN high power bipolar transistor
14. Revision history
Table 8. Revision history
Data sheet ID
Release date
Data sheet status
Change notice
Supersedes
PHPT61002NYCLH
v.1
20170331
Product data sheet
-
-
PHPT61002NYCLH
Product data sheet
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PHPT61002NYCLH
Nexperia
100 V, 2 A NPN high power bipolar transistor
for the products described herein shall be limited in accordance with the
Terms and conditions of commercial sale of Nexperia.
15. Legal information
Right to make changes — Nexperia reserves the right to make changes
to information published in this document, including without limitation
specifications and product descriptions, at any time and without notice. This
document supersedes and replaces all information supplied prior to the
publication hereof.
Data sheet status
Document
status [1][2]
Product
status [3]
Objective
[short] data
sheet
Development This document contains data from
the objective specification for product
development.
Preliminary
[short] data
sheet
Qualification
This document contains data from the
preliminary specification.
Product
[short] data
sheet
Production
This document contains the product
specification.
[1]
[2]
[3]
Suitability for use — Nexperia products are not designed, authorized or
warranted to be suitable for use in life support, life-critical or safety-critical
systems or equipment, nor in applications where failure or malfunction
of an Nexperia product can reasonably be expected to result in personal
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Definition
Quick reference data — The Quick reference data is an extract of the
product data given in the Limiting values and Characteristics sections of this
document, and as such is not complete, exhaustive or legally binding.
Please consult the most recently issued document before initiating or
completing a design.
The term 'short data sheet' is explained in section "Definitions".
The product status of device(s) described in this document may have
changed since this document was published and may differ in case of
multiple devices. The latest product status information is available on
the Internet at URL http://www.nexperia.com.
Definitions
Preview — The document is a preview version only. The document is still
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Nexperia does not give any representations or warranties as to the accuracy
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PHPT61002NYCLH
Product data sheet
Applications — Applications that are described herein for any of these
products are for illustrative purposes only. Nexperia makes no representation
or warranty that such applications will be suitable for the specified use
without further testing or modification.
Customers are responsible for the design and operation of their applications
and products using Nexperia products, and Nexperia accepts no liability for
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or problem which is based on any weakness or default in the customer’s
applications or products, or the application or use by customer’s third party
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liability in this respect.
Limiting values — Stress above one or more limiting values (as defined in
the Absolute Maximum Ratings System of IEC 60134) will cause permanent
damage to the device. Limiting values are stress ratings only and (proper)
operation of the device at these or any other conditions above those
given in the Recommended operating conditions section (if present) or the
Characteristics sections of this document is not warranted. Constant or
repeated exposure to limiting values will permanently and irreversibly affect
the quality and reliability of the device.
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accepts no liability for inclusion and/or use of non-automotive qualified
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In the event that customer uses the product for design-in and use in
automotive applications to automotive specifications and standards,
customer (a) shall use the product without Nexperia’ warranty of the product
for such automotive applications, use and specifications, and (b) whenever
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PHPT61002NYCLH
Nexperia
100 V, 2 A NPN high power bipolar transistor
customer uses the product for automotive applications beyond Nexperia’
specifications such use shall be solely at customer’s own risk, and (c)
customer fully indemnifies Nexperia for any liability, damages or failed
product claims resulting from customer design and use of the product for
automotive applications beyond Nexperia’ standard warranty and Nexperia’
product specifications.
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Trademarks
Notice: All referenced brands, product names, service names and
trademarks are the property of their respective owners.
PHPT61002NYCLH
Product data sheet
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PHPT61002NYCLH
Nexperia
100 V, 2 A NPN high power bipolar transistor
16. Contents
1. General description......................................................1
2. Features and benefits.................................................. 1
3. Applications.................................................................. 1
4. Quick reference data....................................................1
5. Pinning information......................................................2
6. Ordering information....................................................2
7. Marking.......................................................................... 2
8. Limiting values............................................................. 3
9. Thermal characteristics............................................... 4
10. Characteristics............................................................ 6
11. Test information......................................................... 9
12. Package outline........................................................ 10
13. Soldering................................................................... 11
14. Revision history........................................................12
15. Legal information..................................................... 13
©
Nexperia B.V. 2017. All rights reserved
For more information, please visit: http://www.nexperia.com
For sales office addresses, please send an email to: salesaddresses@nexperia.com
Date of release: 31 March 2017
PHPT61002NYCLH
Product data sheet
All information provided in this document is subject to legal disclaimers.
31 March 2017
©
Nexperia B.V. 2017. All rights reserved
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