ANPEC APL1117-VC-TU, APL1117-VC-TR, APL1117-UC-TU, APL1117-UC-TR, APL1117-33FC-TR Datasheet

...
Copyright ANPEC Electronics Corp. Rev. B.8 - Jun., 2003
APL1117
www.anpec.com.tw
1
ANPEC reserves the right to make changes to improve reliability or manufacturability without notice, and advise customers to obtain the latest version of relevant information to verify before placing orders.
1A Low Dropout Fast Response Positive Adjustable Regulator and Fixed
••
••
Guaranteed Output Voltage Accuracy within 2%
••
••
Fast Transient Response
••
••
Guaranteed Dropout Voltage at Multiple
Currents
••
••
Load Regulation : 0.1% Typ.
••
••
Line Regulation : 0.03% Typ.
••
••
Low Dropout Voltage : 1.1V Typ. at I
OUT
=1A
••
••
Current Limit : 1A Typ. at T
J
=25°C
••
••
On-Chip Thermal Limiting : 150°C Typ.
••
••
Adjustable Output : 1.25~10.7V
••
••
Standard 3-pin TO-220, TO-252, TO-263 and
SOT-223 Power Packages
Features
Applications
••
••
Active SCSI Terminators
••
••
Low Voltage Logic Supplies
••
••
Battery-Powered Circuitry
••
••
Post Regulator for Switching Power Supply
General Description
The APL1117 is a low dropout three-terminal adjust­able regulators with 1A output current capability. In order to obtain lower dropout voltage and faster tran­sient response, which is critical for low voltage ap­plications , the APL1117 has been optimized. The device is available in an adjustable version and fixed output voltages of 1.8V, 2.5V, 2.85V and 3.3V. The output available voltage range of an adjustable ver­sion is from 1.25~10.7V with an input supply below 12V. Dropout voltage is guaranteed at a maximum of
1.3V at 1A. Current limit is trimmed to ensure speci­fied output current and controlled short-circuit current. On-chip thermal limiting provides protection against any combination of overload that would create exces­sive junction temperatures. The APL1117 is available in the industry standard 3-pin TO-220, TO-252, TO­263, and the low profile surface mount SOT-223 power packages which can be used in applications where space is limited.
Pin Description
Front View for TO-252
TAB IS V
OUT
1
2
3
V
IN
V
OUT
ADJ/GND
Front View for TO-263
1
2
3
V
IN
V
OUT
ADJ/GND
TAB is V
OUT
Front View for TO-220
1
2
3
V
IN
V
OUT
ADJ/GND
Copyright ANPEC Electronics Corp. Rev. B.8 - Jun., 2003
APL1117
www.anpec.com.tw
2
Package Code F : T O -22 0 G : T O-26 3 U : T O -2 52 V : S O T-22 3 Tem p. Range
C : 0 to 70 C
Handling Code
TU : T u be TR : T ap e & R ee l
Voltage Code
18 : 1.8 V 25 : 2 .5V 28 : 2.85 V 33 : 3.3 V
Blank : Adjustable Version
°
APL1117-
Handling Code Tem p. Range
Package Code Voltage Code
APL1117 XXXXX25
XXXXX - Date CodeAPL1117-25V :
APL1117 XXXXX33
XXXXX - Date CodeAPL1117-33V :APL1117 -33F/G/U :
APL1117 XXXXX
33
APL1117-25F/G/U :
APL1117 XXXXX
25
APL1117-18F/G/U :
APL1117 XXXXX
- D a te C od e
XXXXX
18
APL1117 XXXXX18
XXXXX - Date CodeAPL1117-18V :
APL1117 XXXXX28
XXXXX - Date Code
APL1117-28V :
APL1117-28F/G/U :
APL1117 XXXXX
28
APL1117 F /G/U :
APL1117 XXXXX
- D a te C od e
XXXXX
APL1117 XXXXX
XXXXX - Date Code
APL1117 V :
- D a te C od eXXXXX
- Date CodeXXXXX
- D a te C od e
XXXXX
Ordering and Marking Information
Symbol Parameter Rating
(Note)
Unit
V
I
Input Voltage APL1117, APL1117-33
APL1117-18, APL1117-25, APL1117-28
15
9
V
T
J
Operating Junction Temperature Range
Control Section Power Transistor
0 to 125 0 to 150
°
C
T
STG
Storage Temperature Range -65 to +150
°
C
T
L
Lead Temperature (Soldering, 10 second) 260
°
C
Absolute Maximum Ratings
Pin Description (Cont.)
T A B IS V
OUT
OUT
1
2
3
ADJ/GN D
IN
Front View for SOT-223
Note : The values here show the absolute maximum rating, and for normal usage please refer the test condition in Electrical Characteristics Table.
Copyright ANPEC Electronics Corp. Rev. B.8 - Jun., 2003
APL1117
www.anpec.com.tw
3
Electrical Characteristics (Cont.)
APL1117Symbol Parameter Test Conditions
Min. Typ. Max.
Unit
V
REF
Reference Voltage
10mA≤ I
OUT
1A, 1.4V≤(V
IN -VOUT
)
≤10.75V,
T
J
=0~125°C
1.225 1.250 1.275
V
V
OUT
Output Voltage
APL1117-18
T
J
=0~125°C,
0≤ I
OUT
1.5A, 3.5V≤V
IN
9V,
1.764 1.800 1.836
APL1117-25
T
J
=0~125°C,
0≤ I
OUT
1A, 4V≤V
IN
9V,
2.450 2.500 2.550
APL1117-28
T
J
=0~125°C,
0≤ I
OUT
1A, 4.25V≤V
IN
9V,
2.790 2.850 2.910
APL1117-33
T
J
=0~125°C,
0≤ I
OUT
1A, 4.75V≤V
IN
12V,
3.235 3.300 3.365
V
REG
LINE
Line Regulation
APL1117 APL1117-18 APL1117-25 APL1117-28 APL1117-33
I
OUT
=
10mA, 1.5V≤(V
IN -VOUT
)≤10.75V
(Note1)
I
OUT
=
0A, 3.5V≤V
IN
9V
(Note1)
I
OUT
=
0A, 4V≤V
IN
5.5V
(Note1)
I
OUT
=
0A, 4.25V≤V
IN
5.15V
(Note1)
I
OUT
=
0A, 4.75V≤V
IN
7.75V
(Note1)
0.03 1 1 1 1
0.2 6 6 6 6
%
mV
REG
LOAD
Load Regulation
APL1117 APL1117-18 APL1117-25 APL1117-28 APL1117-33
(V
IN -VOUT
)
=3V, 0≤ I
OUT
1A
(Note1)
VIN=3.5V, 0≤ I
OUT
1A
(Note1)
V
IN
=4V, 0≤ I
OUT
1A
(Note1)
VIN=4.25V, 0≤ I
OUT
1A
(Note1)
VIN=4.75V, 0≤ I
OUT
1A
(Note1)
0.1 1 1 1 1
0.4 10 10 10 10
%
mV
I
OUT
=100mA
(Note2)
11.1V
D
Dropout Voltage
I
OUT
=500mA
(Note2)
I
OUT
=1A
(Note2)
1.05
1.1
1.2
1.3
V
I
LIMIT
Current Limit
(V
IN -VOUT
)=5V, TJ=25°C
1000 mA
I
ADJ
Adjust Pin Current APL1117
(V
IN -VOUT
)
=3V, I
OUT
=10mA 60 120
µ
A
I
ADJ
Adjust Pin Current Change APL1117
10mA≤ I
OUT
1A,
1.4V≤(V
IN -VOUT
)
≤10.75V
0.2 5
µ
A
I
O
Minimum Load Current APL1117
(V
IN -VOUT
)=10.75V
(Note3)
1.7 mA
PSRR Ripple R ejec tio n f
RIPPLE
=120Hz, V
RIPPLE
=1V
P-P,
(V
IN -VOUT
)
=3V
60 75 dB
T
R
Thermal Regulation
T
J
=25°C, 30ms Pulse
0.01 0.02 %/ W
T
S
Temperature Stability
0.5 %
L
S
Long -Term Stability
T
J
=125°C,1000Hrs.
0.3 %
Copyright ANPEC Electronics Corp. Rev. B.8 - Jun., 2003
APL1117
www.anpec.com.tw
4
Electrical Characteristics (Cont.)
APL1117
Symbol Parameter Test Conditions
Min. Typ. Max.
Unit
V
N
RMS Output Noise
T
J
=25°C,10Hz≤F≤10kHz, (% of V
OUT
)
0.003 %
θ
th
Thermal Resistance Junction to C ase, at Tab
Junction to Ambient
15 50
°
C/ W
OT
Over Temperature Point
150
°
C
I
Q
Quiescent Current
APL1117-18 APL1117-25 APL1117-28 APL1117-33
V
IN
9V
V
IN
9V
V
IN
9V
V
IN
12V
5.5
5.5
5.5
5.5
10 10 10 10
mA
Note 1 : See thermal regulation specifications for changes in output voltage due to heating effects. Load line regulations are mea­ sured at a constant junction temperature by low duty cycle pulse testing. Note 2 : Dropout voltage is specified over the full output current range of the device. Dropout voltage is defined as the minimum input/output
differential measured at the specified output current. Test points and limits are also shown on the Dropout Voltage curve. Note 3 : Minimum load current is defined as the minimum output current required to maintain regulation.
Copyright ANPEC Electronics Corp. Rev. B.8 - Jun., 2003
APL1117
www.anpec.com.tw
5
V
IN
10µ
F
APL1117
OUTIN
ADJ
121
365
1%
1%
V
OUT
150µF
10µ
F
C1
R1
R2
+
+
Application Circuits
* C1 improves ripple rejection. X
C
should be approximately
equal to R1 at ripple frequency
* Needed if device is far from filter capacitors
1.25V to 10.7V Adjustable Regulator Impro ving Ripple Rejection
V
IN
10µ
F
APL1117
OUTIN
ADJ
TTL
121
365
1%
1%
+
1k
1k
100µ
F
5V
+
5V Regulator with Shutdown
V
IN
10µ
F
C
1*
V
OUT1
+
R1
R2
1k
APL1117
OUTIN
ADJ
+
100µ
F
C
2
121
V
OUT
= 1.250V X
R1 + R2
R1
Copyright ANPEC Electronics Corp. Rev. B.8 - Jun., 2003
APL1117
www.anpec.com.tw
6
APL1117-33
0
1
2
3
4
5
6
-20 30 80 130 180
-0.05
0
0.05
0.1
0.15
0
0.5
1
1.5
2
2.5
3
3.5
4
4.5
5
-100 100 300 500 700 900
-0.03
-0.02
-0.01
0
0.01
0.02
0
0.5
1
1.5
2
2.5
3
3.5
0123456789
0.9
0.95
1
1.05
1.1
1.15
1.2
1.25
0 0.2 0.4 0.6 0.8 1
Typical Characteristics
Input Voltage (V)
Time (µS)
Dropout Voltage vs. Output Current
Output Current (A)
Dropout Voltage (V)
Output Voltage (V)
Output Voltage vs. Input V oltage
Input Voltage (V)
Load Transietn Response
Output Current (A)
Time (µS)
Line Transient Response
CIN=10µF C
OUT=10µF T antalum
VIN=5V
CIN=10µF COUT=10µF T antalum IOUT=0.1A
APL1117-33
APL1117-33
Copyright ANPEC Electronics Corp. Rev. B.8 - Jun., 2003
APL1117
www.anpec.com.tw
7
APL1117-33APL1117-33
1
1.2
1.4
1.6
1.8
2
2.2
2.4
5 7 9 11 13
2.7
2.8
2.9
3
3.1
3.2
3.3
3.4
-50-250255075100125
0
1
2
3
4
5
6
024681012
Typical Characteristics Cont.
Current Limit (A)
Input Voltage (V)
Output Voltage vs. Temperature
T emperature (°C)
Output Voltage (V)
Output Voltage (V)
Output Voltage vs. Temperature
Temperature (°C)
Input Current vs. Input Voltage
Input Current (mA)
Input Voltage (V)
Current Limit vs. Input Voltage
1.6
1.7
1.8
1.9
2
2.1
2.2
2.3
2.4
2.5
2.6
-50 -25 0 25 50 75 100 125
Copyright ANPEC Electronics Corp. Rev. B.8 - Jun., 2003
APL1117
www.anpec.com.tw
8
50
52
54
56
58
60
62
64
66
68
70
-50 -25 0 25 50 75 100 125
APL1117-33
2
3
4
5
6
7
8
-50 -25 0 25 50 75 100 125
1
1.1
1.2
1.3
1.4
1.5
1.6
1.7
1.8
1.9
-50 0 50 100 150
-100
+0
-90
-80
-70
-60
-50
-40
-30
-20
-10
10
200k
20
50 100 200 500 1k 2k 5k
10k 20k
50k
$
Typical Characteristics Cont.
Input Current (mA)
Temperature (°C)
Current Limit vs. Temperature
T emperature (°C)
Current Limit (A)
PSRR (dB)
PSRR vs. Frequency
Frequency (Hz)
Adjustable Pin Current vs. T emperature
Adjustable Pin Current (µA)
Temperature (°C)
Input Current vs. Tmeperature
VIN-VOUT=5V
Cadj=22µF IOUT=0.1A Vripple=1Vp-p
VIN-VOUT>=Vdropout
VIN-VOUT>=3V
APL11 1 7-Adj
APL1117-33
APL1117-33
Copyright ANPEC Electronics Corp. Rev. B.8 - Jun., 2003
APL1117
www.anpec.com.tw
9
The APL1117 requires an output capacitor to main­tain stability and improve transient response. Proper capacitor selection is important to ensure proper operation. The APL1117 output capacitor selection is dependent upon the ESR (equivalent series resistance) of the output capacitor to maintain stability. When the output capacitor is 10uF or greater, the output capacitor should have an ESR less than 1Ω. This will improve transient response as well as pro­mote stability. A low-ESR solid tantalum capacitor works extremely well and provides good transient re­sponse and stability over temperature.
V
IN
APL1117
OUTIN
ADJ
R1
R2
Rp
PAR A SIT IC
LINE RESISTANCE
CONNECT
R1 TO CASE
CONNECT
R2 TO LOAD
R
L
Output Voltage
V
IN
APL1117
OUTIN
ADJ
V
REF
R1
R2
V
OUT
I
ADJ
60µA
Application Information
Input Capacitor
Output Capacitor
The APL1117 develops a 1.25V reference voltage between the output and the adjust terminal. By plac­ing a resistor between these two terminals, a con­stant Current is caused to flow through R1 and down through R2 to set the overall output voltage. Normally this current is chosen to be the specified minimum load current of 10mA. For fixed voltage devices R1 and R2 are included in the device.
Load Regulation
When the adjustable regulator is used. Load regula­tion will be limited by the resistance of the wire con­necting the regulator to the load. The data sheet speci­fication for load regulation is measured at the output pin of the device. Best load regulation is obtained when the top of the resistor divider (R1) is tied di­rectly to the output pin of the device, not to the load. For fixed voltage devices the top of R1 is internally connected to the output, and the ground pin can be connected to low side of the load. If R1 were con­nected to the load, RP is multiplied by the divider ratio, the effective resistance between the regulator and the load would be:
An input capacitor of 10µF or greater is recommended. Tantalum, or aluminum electrolytic capacitors can be used for bypassing. Larger Val­ues will improve ripple rejection by bypassing the in­put to the regulator.
V
OUT
= V
REF
(1+ )+ I
ADJ
R2
R2 R1
Figure 1. Basic Adjustable Regulator
Figure 2. Connections for Best Load Regulation
Rp X (1+ ), Rp = Parasitic L ine Resistance
R2 R1
Copyright ANPEC Electronics Corp. Rev. B.8 - Jun., 2003
APL1117
www.anpec.com.tw
10
Output Capacitor (Cont.)
Application Information (Cont.)
Aluminum electrolytics can also be used, as long as the ESR of the capacitor is <1. The value of the output capacitor can be increased without limit. Higher capacitance values help to improve transient response and ripple rejection and reduce output noise.
The curves for Ripple Rejection were generated us­ing an adjustable device with the adjust pin bypassed. With a 22µF bypassing capacitor 75dB ripple rejec­tion is obtainable at any output level. The impedance of the adjust pin capacitor, at the ripple frequency, should be < R1. R1 is normally in the range of 100Ω- 200. The size of the required adjust pin capacitor is a function of the input ripple frequency. At 120Hz, with R1=100, the adjust pin capacitor should be 13µF. For fixed voltage devices, and adjustable de­vices without an adjust pin capacitor, the output ripple will increase as the ratio of the output voltage to the reference voltage (VOUT /VREF ).
Ripple Rejection
Thermal Considerations
APL1117 has thermal protection which limits junction temperature to 150°C. However, device functionality is only guaranteed to a maximum junction tempera­ture of +125°C. Both the TO-220, TO-252, TO-263 and SOT-223 packages use a copper plane on the PCB and the PCB itself as a heatsink. To optimize the heat sinking ability of the plane and PCB, solder the tab of the package to the plane.
Figure 3&4 shows for the TO-252 and SOT-223 the measured values of θ(J-A) for different copper area sizes using a 2 layers, 1.6mm, and 6Sq. cm FR-4 PCB with 2oz. copper and a ground plane layer on the backside area used for heatsinking. It can be used as a rough guideline in estimating thermal resistance.
25
30
35
40
45
50
02468101214
Thermal Resistance
(Juntion to Ambient) (°C/W)
TA=25°C
Top Copper Area (cm2)
Figure 3.
θ(J-A) vs. copper area for the SOT-252 package
Copyright ANPEC Electronics Corp. Rev. B.8 - Jun., 2003
APL1117
www.anpec.com.tw
11
Application Information (Cont.)
The thermal resistance for each application will be affected by thermal interactions with other compo­nents on the board. Some experimentation will be necessary to determine the actual value. The power dissipation of APL1 117 is equal to : PD = (VIN - VOUT) x IOUT Maximum junction temperature is equal to : TJUNCTION = TAMBIENT + (PD x θJA) Note: TJUNCTION must not exceed 125°C
Thermal Considerations (Cont.)
30
35
40
45
50
55
60
0 2 4 6 8 10 12 14
Thermal Resistance
(Juntion to Ambient) (°C/W)
TA=25°C
Top Copper Area (cm2)
Figure 4.
θ(J-A) vs. copper area for the SOT-223 package
Copyright ANPEC Electronics Corp. Rev. B.8 - Jun., 2003
APL1117
www.anpec.com.tw
12
Package Information
TO-220 ( Reference JEDEC Registration TO-220)
Q
D
R
E
F
J1
e
e1
b1
L1
A
c
b
H1
L
Millimeters Inches
Dim
Min. Max. Min. Max.
A 3.56 4.8 3 0.1 4 0 0.190
b1 1.14 1.78 0.045 0.070
b 0.51 1.14 0.0 2 0 0.04 5 c 0.31 1 .14 0 .012 0.045
D 14.23 16.51 0.560 0.650
e 2.29 2.79 0.0 9 0 0 .110
e1 4.83 5.33 0.190 0.210
E 9.65 10 .67 0.380 0.420 F 0.51 1.40 0.02 0 0.05 5
H1 5.84 6.86 0.230 0.270
J1 2.03 2.92 0.080 0.115
L 12.7 14.73 0.500 0.580
L1 3.65 6.35 0.143 0.250
R 3.53 4 .09 0 .139 0.161 Q 2.54 3.43 0.1 0 0 0.13 5
Copyright ANPEC Electronics Corp. Rev. B.8 - Jun., 2003
APL1117
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13
Package Informaion
TO-252( Reference JEDEC Registration TO-252)
Millimeters Inches
Dim
Min. Max. Min. Max.
A 2.18 2.39 0.086 0.094
A1 0.89 1.27 0.035 0.050
b 0.508 0.89 0. 020 0.035
b2 5.2 07 5.461 0.205 0. 215
C 0.46 0.58 0.018 0.023
C1 0.46 0.58 0.018 0.023
D 5.334 6.2 2 0.210 0.2 45
D1 5.2 REF 0.205 REF
E 6.35 6.73 0.250 0.265 E1 5.3 REF 0.209 REF e1 3.96 5.18 0.156 0.204
H 9.398 10.41 0.370 0.410
L 0.51 0.020 L1 0.64 1.02 0.025 0.040 L2 0.89 2.032 0.035 0. 080
L2
D
L1
b
b2
E
C1
A
H
L
C
A1
e1
D1
E1
Copyright ANPEC Electronics Corp. Rev. B.8 - Jun., 2003
APL1117
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14
Package Information
TO-263 ( Reference JEDEC Registration TO-263)
E
D
L
L2
L3
D1
E1
TERMINAL 4
c
A
c2
R
L1
L4
Φ 1
DE T AIL "A "R O T E D
b2 b
e
e1
Millim e t ers Inch e s
Dim
Min. Max. Min. Max.
A 4.06 4.83 0.160 0.190 b
0.51 1.016
0.02 0.040
b2 1.14 1.651 0.045 0.065
c 0.38 TYP. 0.015 TYP.
c2
1.14 1.40
0.045 0.055 D 8.64 9.65 0.340 0.380 e 9.65 10.54 0.380 0.415
e1
2.54 TYP
0.100 TYP
L 14.60 15.88 0.575 0.625
L1 2.24 2.84 0.090 0.110 L2
1.02 2.92
0.040 0.112
L3 1.20 1.78 0.050 0.070
Copyright ANPEC Electronics Corp. Rev. B.8 - Jun., 2003
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15
Package Information
SOT-223( Reference JEDEC Registration SOT-223)
B1
D
H E
K
e
e1
A
c
L
A1
a
B
b
Millimeters Inch e sDim
Min. Max. Min. Max.
A 1.50 1.80 0.06 0.07
A1 0.02 0.08
B 0.60 0.80 0.02 0.03
B1 2.90 3.10 0.11 0.12
c 0.28 0.32 0.01 0.01 D 6.30 6.70 0.25 0.26 E 3.30 3.70 0.13 0.15
e 2.3 BSC 0.09 BSC
e1 4.6 BSC 0.18 BSC
H 6.70 7.30 0.26 0.29
L 0.91 1.10 0.04 0.04 K 1.50 2.00 0.06 0.08
α
0
°
10
°
0
°
10
°
β
13
°
13
°
Copyright ANPEC Electronics Corp. Rev. B.8 - Jun., 2003
APL1117
www.anpec.com.tw
16
Reference JEDEC Standard J-STD-020A APRIL 1999
Reflow Condition (IR/Convection or VPR Reflow)
Physical Specifications
Terminal Material Solder-Plated Copper (Solder Material : 90/10 or 63/37 SnPb Lead Solderability Meets EIA Specification RSI86-91, ANSI/J-STD-002 Category 3. Packaging 2500 devices per reel
Pre-heat temperature
183 C
Peak temperature
Time
°
temperature
Convection or IR/
Convection
VPR
Average ramp-up rate(183°C to Peak) 3°C/second max. 10°C /second max. Preheat temperature 125± 25°C)
120 seconds max.
Temperature maintained above 183
°
C
60 ~ 150 seconds
Time within 5°C of actual peak temperature
10 ~ 20 seconds
60 seconds
Peak temperature range
220 +5/-0
°
C or 235 +5/-0°C 215~ 219°C or 235 +5/-0°C
Ramp-down rate
6
°
C /second max. 10°C /second max.
Time 25°C to peak temperature
6 minutes max.
pkg. thickness
≥≥≥≥
2.5mm
and all bags
pkg. thickness < 2.5mm and
pkg. volume
≥≥≥≥
350 mm
pkg. thickness < 2.5mm and pkg.
volume <
Convection 220 +5/-0°C
Convection 235 +5/-0
°
C
VPR 215-219°C
VPR 235 +5/-0
°
C
IR/Convection 220 +5/-0
°
C IR/Convection 235 +5/-0
°
C
Classification Reflow Profiles
Package Reflow Conditions
Copyright ANPEC Electronics Corp. Rev. B.8 - Jun., 2003
APL1117
www.anpec.com.tw
17
Rel ia bility test p r o gram
Test item Method Description
SOLDERABILITY M IL-STD-883D-2003
245°C , 5 SEC
HOLT MIL-STD-883D-1005.7
1000 Hrs Bias @ 125 °C
PCT JESD-22-B, A102
168 Hrs, 100 % RH , 121°C
TST MIL-STD-883D-1011.9
-65°C ~ 150°C, 200 Cycles ESD MIL-STD-883D-3015.7 VHBM > 2KV, VMM > 200V Latch-Up JESD 78 10m s , Itr > 100mA
Applica tio n
A B C J T1 T2 W P E
330 ±3100 ± 213 ± 0. 5 2 ± 0.5
16.4 + 0.3
-0.2
2.5± 0.5
16+ 0.3
- 0.1
8 ± 0.1
1.75± 0.1
F D D1 Po P1 Ao Bo Ko t
TO-252
7.5 ± 0 .1 1 .5 + 0 .1 1.5± 0.25 4.0 ± 0.1 2.0 ± 0 .1 6 .8 ± 0.1 10.4± 0 .1 2 .5± 0.1 0.3±0.05
Applica tio n
A B C J T1 T2 W P E
380±380 ± 213 ± 0. 5 2 ± 0.5 24 ± 42± 0.3
24 + 0.3
- 0.1
16 ± 0.1 1.75± 0.1
F D D1 Po P1 Ao Bo Ko t
TO-263
11 .5 ± 0 .1 1 .5 + 0 .1 1.5± 0.25 4.0 ± 0.1 2.0 ± 0.1 10.8 ± 0.1 16.1± 0 .1 5 .2± 0.1
0.35±0.01 3
Applica tio n
A B C J T1 T2 W P E
330±162±1.5
12.75
±
0.15
2 ± 0.6 12.4 +0.2 2± 0.2 12 ± 0.3 8 ± 0 .1 1 .7 5± 0.1
F D D1 Po P1 Ao Bo Ko t
SOT-223
5.5 ± 0.05 1.5+ 0.1 1.5+ 0.1 4.0 ± 0 .1 2.0 ± 0.05 6.9 ± 0 .1 7 .5± 0 .1 2 .1± 0.1 0.3±0.05
A
J
B
T2
T1
C
t
Ao
E
W
Po
P
Ko
Bo
D1
D
F
P1
Carrier Tape & Reel Dimension
Copyright ANPEC Electronics Corp. Rev. B.8 - Jun., 2003
APL1117
www.anpec.com.tw
18
Application Carrier Width Cover Tape Width Devices Per Reel
TO- 252
16 13.3 2500
TO- 263
24 21.3 1000
SOT- 223
12 9.3 2500
Cover Tape Dimensions
Customer Service
Anpec Electronics Corp.
Head Office :
5F, No. 2 Li-Hsin Road, SBIP, Hsin-Chu, Taiwan, R.O.C. Tel : 886-3-5642000 Fax : 886-3-5642050
Taipei Branch :
7F, No. 137, Lane 235, Pac Chiao Rd., Hsin Tien City, Taipei Hsien, Taiwan, R. O. C. Tel : 886-2-89191368 Fax : 886-2-89191369
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