Datasheet CPH5501 Datasheet (SANYO)

Page 1
Ordering number:ENN6257
PNP Epitaxial Planar Silicon Transistor
CPH5501
DC/DC Converter Applications
Applications
· Relay drivers, motor drivers, strobes.
Features
· Composite type with a PNP transistor and a Schottky barrier diode contained in one package facilitating high-density mounting.
· The CPH5501 consists of two chips which are equivalent to the 2SA1338 and the CPH3105, respectively.
· Ultrasmall-sized package permitting applied sets to be made small and slim (mounting height : 0.9mm).
Specifications
Absolute Maximum Ratings at Ta = 25˚C
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)esluP(tnerruCrotcelloCI
noitapissiDrotcelloCP
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erutarepmeTegarotSgtsT 051+ot55–
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tnerruCesaBI
noitapissiDrotcelloCP
erutarepmeTnoitcnuJjT 051
erutarepmeTegarotSgtsT 051+ot55–
OBC OEC OBE
C
PC
C
OBC OEC OBE
C
PC
B
Mounted on a ceramic board (600mm2×0.8mm)
C
Package Dimensions
unit:mm
2162
345
0.40.95
0.4
[CPH5501]
2.8
1.6 0.60.6
0.2
0.9
0.7
2.9
12
0.15
0.2
0.05
1 : Collector (TR1) 2 : Collector (TR2) 3 : Base (TR2) 4 : Emitter Common 5 : Base (TR1) SANYO : CPH5
06–V 05–V 5–V 005–Am 008–Am
2.0W
˚C ˚C
05–V 05–V 6–V 3–A 6–A 006–Am
9.0W
˚C ˚C
Any and all SANYO products described or contained herein do not have specifications that can handle applications that require extremely high levels of reliability, such as life-support systems, aircraft’s control systems, or other applications whose failure can be reasonably expected to result in serious physical and/or material damage. Consult with your SANYO representative nearest you before using any SANYO products described or contained herein in such applications.
SANYO assumes no responsibility for equipment failures that result from using products at values that exceed, even momentarily, rated values (such as maximum ratings, operating condition ranges,or other parameters) listed in products specifications of any and all SANYO products described or contained herein.
SANYO Electric Co.,Ltd. Semiconductor Company
TOKYO OFFICE Tokyo Bldg., 1-10, 1 Chome, Ueno, Taito-ku, TOKYO, 110-8534 JAPAN
13100TS (KOTO) TA-2356 No.6257–1/6
Page 2
CPH5501
Electrical Characteristics at Ta = 25˚C
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niaGtnerruCCD
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egatloVnoitarutaSrettimE-ot-rotcelloC
egatloVnoitarutaSrettimE-ot-esaBV
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h
V
hEF1VEC=– I,V2C=– Am001 hEF2VEC=– I,V2C=– A3
V V
VBC=– I,V04
OBC
VBE=– I,V4C0=1.0–Aµ
OBE
VEC=– I,V5C=– Am01
EF
VEC=– I,V01C=– Am05
T
IC=– I,Am001
)tas(EC
IC=– I,Am001
)tas(EB
IC=– I,Aµ01
OBC)RB(
IC=– R,Aµ001
OEC)RB(
IE=– I,Aµ01
OBE)RB( no gts
f
VBC=– I,V04
OBC
VBE=– I,V4C0=1–Aµ
OBE
VEC=– I,V01C=– Am005
T
1IC=1–I,AB=– Am05
)tas(EC
2IC=– I,A2B=– Am001
)tas(EC
IC=– I,A2B=– Am00188.0–2.1–V
)tas(EB
IC=– I,Aµ01
OBC)RB(
IC=– R,Am1
OEC)RB(
IE=– I,Aµ01
OBE)RB( no gts
f
0=1.0–Aµ
E
=– Am01
B
=– Am018.02.1V
B
0=06–V
E
= 05–V
EB
0=5–V
C
0=1–Aµ
E
0=06–V
E
= 05–V
EB
0=6–V
C
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nimpytxam
001065
002zHM
6.5Fp
51.04.0V
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002065 04
063zHM 42Fp 001–002–Vm 581–005–Vm
.tiucriCtseTdeificepseeS03sn .tiucriCtseTdeificepseeS032sn .tiucriCtseTdeificepseeS51sn
tinU
Electrical Connection
ECB1 B2
Tr1 Tr2
C1 C2
Switching Time Test Circuit
[TR1]
I
PW=10µs D.C.1%
INPUT
50
B1
I
B2
R
V
–10IB1=10IB2=IC=–100mA
B
R
++
100µF 470µF
5V
OUTPUT
VCC=–20V
[TR2]
I
PW=20µs D.C.1%
INPUT
R
L
VR10
50
B1
I
B2
R
B
++
100µF 470µF
5V
–10IB1=10IB2=IC=–1A
–25V
OUTPUT
R
L
No.6257–2/6
Page 3
I
-- V
--100
--90
--80
-600µA
--70
–mA
C
--60
--50
--40
--30
Collector Current, I
--20
--10 0
0 --0.2 --0.4 --0.6 --0.8 --1.0--0.1 --0.3 --0.5 --0.7 --0.9
-700µA
C
-500
µA
CE
-400
µA
µA
-300
-200µA
-100µA
Collector-to-Emitter Voltage, VCE–V
I
-- V
--120
--100
–mA
--80
C
--60
--40
Collector Current, I
--20
0
0 --0.2 --0.4 --0.6 --0.8 --1.0--0.1 --0.3 --0.5 --0.7 --0.9
C
Ta=75°C
BE
25°C
VCE=-5V
-25°C
Base-to-Emitter Voltage, VBE–V
--10
5 3
–V
2
--1.0
CE(sat)
5 3 2
--0.1
5 3
Collector-to-Emitter
Saturation Voltage, V
2
--0.01 5235
--1.0
3
2
--10
7
5
3
2
Output Capacitance, Cob – pF
--1.0 72357235
--1.0 --10
VCE(sat) -- I
23 5
--10
Collector Current, IC–mA
Cob -- V
C
IC / IB=10
23 5
--100 --1000
CB
f=1MHz
Collector-to-Base Voltage, VCB–V
CPH5501
[TR1]
IB=0
IT00010
[TR1]
IT00013
[TR1]
IT00020
[TR1]
IT00018
I
-- V
C
-40
µA
CE
-30
µA
-20
--20
-60µA
–mA
C
Collector Current, I
--18
--16
--14
--12
--10
-50µA
--8
--6
--4
--2 0
0 --5 --10 --15 --20 --25 --30 --35 --40
Collector-to-Emitter Voltage, VCE–V
2
1000
7 5
FE
3
2
100
DC Current Gain, h
7 5
3 2
--1.0 --10
--10
7 5
–V
3
BE(sat)
2
--1.0
7 5
Base-to-Emitter
Saturation Voltage, V
3
5
--0.1
FE
Ta=75°C
25°C
-25°C
23 57
Collector Current, IC–mA
VBE(sat) -- I
253
--10
C
23 57
--100
C
253253
--100
h
-- I
Collector Current, IC–mA
f
-- I
T
1000
7 5
3
– MHz
T
2
100
7 5
3 2
Gain-Bandwidth Product, f
10
23 57
--1.0 --10
C
23 57
--100
Collector Current, IC–mA
µA
-10µA
VCE=-5V
23 57
IC / IB=10
VCE=-10V
23 57
[TR1]
IB=0
IT00011
[TR1]
IT00015
[TR1]
--1000
IT00023
[TR1]
--1000
IT00017
--1000
No.6257–3/6
Page 4
CPH5501
2
1.0 7
5 3
2
0.1
Switching Time, SW Time – µs
0.01
t
7 5
3 2
r
72537
--10
SW Time -- I
t
stg
t
f
--100
Collector Current, IC–mA
P
-- Ta
0.3
C
–W
C
0.2
0.1
Mounted on a ceramic board (600mm
Collector Dissipation, P
0
2006040 80 100 140120 160
Ambient Temperature,Ta – °C
I
-- V
–mA
--1.2
--1.0
--0.8
VCE=--2V
C
BE
C
--0.6
--0.4
Collector Current, I
--0.2
Ta=75°C
0
0 --0.2--0.1 --0.4 --0.6 --0.8 --1.0--0.3 --0.5 --0.7 --0.9
Base-to-Emitter Voltage, VBE–V
--10 7
5 3
–V
2
--1.0 7
CE(sat)
5 3
2
--0.1 7
5 3
Collector-to-Emitter
Saturation Voltage, V
2
--0.01 2 3 57 2 3 57 2 3 57
--0.01
VCE(sat) -- I
25°C
°C
Ta=75
--0.1 --1.0 --10
Collector Current, IC– A Collector Current, IC–A
-25°C
C
[TR1]
VCC=20V IC=10IB1=-10I
2537
t
B2
d
IT00025
[TR1]
2
×0.8mm)
IT01304
[TR2]
°C
°C
25
-25
IT00014
C
[TR2]
IC / IB=20
IT00021
--1000
–mA
C
--100
Collector Current, I
--10
7
I
C
5 3
2
7 5
3 2
7 5
Ta=25°C
3
3253757
I
--1.0
CP
A S O
DC oper
1ms
10ms
100ms
a
ti
o
n
2537
--10 --100
Collector-to-Emitter Voltage, VCE–V
I
-- V
C
-40mA
CE
-30mA
-20mA
--2.0
--1.8
--1.6
–A
--1.4
C
--1.2
--1.0
--0.8
--0.6
Collector Current, I
--0.4
--0.2 0
0 --200 --400 --600 --800 --1000--100 --300 --500 --700 --900
Collector-to-Emitter Voltage, VCE–mV
1000
7 5
3 2
FE
100
7 5
3 2
10
DC Current Gain, h
7 5
3 2
1.0 23 57 23 57 23 57
--0.01 --0.1
FE
°C
25
Ta=75
-25
°C
C
°C
--1.0 --10
h
-- I
Collector Current, IC–A
--10 7
5 3
–V
2
--1.0 7
CE(sat)
5 3
2
--0.1 7
5 3
Collector-to-Emitter
Saturation Voltage, V
2
--0.01 23 57 23 57 23 57
--0.01 --0.1 --1.0 --10
VCE(sat) -- I
°C
Ta=75
-25°C
25°C
C
[TR1]
IT00026
[TR2]
-10mA
-8mA
-6mA
-4mA
-2mA
IB=0
IT00012
[TR2]
VCE=-2V
IT00016
[TR2]
IC / IB=50
IT00022
No.6257–4/6
Page 5
CPH5501
--1 0 7 5
–V
3 2
BE(sat)
--1 .0
Ta=-25°C
7 5
3
Base-to-Emitter
Saturation Voltage, V
2
--0 .1 23 57 23 57 23 57
--0.01 --0.1 --1.0 --10
VBE(sat) -- I
°C
75
°C
25
C
Collector Current, IC–A
100
Cob -- V
7
5
3
2
CB
Output Capacitance, Cob – pF
10
--1 .0
23 57 23 57
--10 --100
Collector-to-Base Voltage, VCB–V
P
-- Ta
1.4
C
[TR2]
IC / IB=50
IT00024
[TR2]
f=1MHz
IT00019
[TR2]
f
-- I
T
A S O
DC op
C
1ms
1
0
100ms
era
ti
o
n
2
--10 --100
1000
7 5
3
FE
2
100
7
DC Current Gain, h
5
3
2
57 5723 5723 5723
--0.01
2
--1 0
I
CP
7 5
I
C
3
–A
2
C
--1 .0 7
5 3
2
--0 .1 7
Collector Current, I
5
Ta=25°C
3
Single pulse
2
Mounted on a ceramic board(600mm
--0.01 2537 2 537 2 537
--0.1 --1.0 --10
Collector Current, IC–A
--1.0--0 .1
Collector-to-Emitter Voltage, VCE–V
500
µs
ms
×0.8mm)
[TR2]
VCE=-10V
IT00017
[TR2]
100µs
IT00027
1.2
–W
1.0
C
0.8
0.6
0.4
Collector Dissipation, P
0.2
Mounted on a ceramic board (600mm
2
×0.8mm)
0
2006040 80 100 140120 160
Ambient Temperature,Ta – °C
IT00028
No.6257–5/6
Page 6
CPH5501
Specifications of any and all SANYO products described or contained herein stipulate the performance, characteristics, and functions of the described products in the independent state, and are not guarantees of the performance, characteristics, and functions of the described products as mounted in the customer's products or equipment. To verify symptoms and states that cannot be evaluated in an independent device, the customer should always evaluate and test devices mounted in the customer's products or equipment.
SANYO Electric Co., Ltd. strives to supply high-quality high-reliability products. However, any and all semiconductor products fail with some probability. It is possible that these probabilistic failures could give rise to accidents or events that could endanger human lives, that could give rise to smoke or fire, or that could cause damage to other property. When designing equipment, adopt safety measures so that these kinds of accidents or events cannot occur. Such measures include but are not limited to protective circuits and error prevention circuits for safe design, redundant design, and structural design.
In the event that any or all SANYO products(including technical data,services) described or contained herein are controlled under any of applicable local export control laws and regulations, such products must not be exported without obtaining the export license from the authorities concerned in accordance with the above law.
No part of this publication may be reproduced or transmitted in any form or by any means, electronic or mechanical, including photocopying and recording, or any information storage or retrieval system, or otherwise, without the prior written permission of SANYO Electric Co. , Ltd.
Any and all information described or contained herein are subject to change without notice due to product/technology improvement, etc. When designing equipment, refer to the "Delivery Specification" for the SANYO product that you intend to use.
Information (including circuit diagrams and circuit parameters) herein is for example only ; it is not guaranteed for volume production. SANYO believes information herein is accurate and reliable, but no guarantees are made or implied regarding its use or any infringements of intellectual property rights or other rights of third parties.
This catalog provides information as of January, 2000. Specifications and information herein are subject to change without notice.
PS No.6257–6/6
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