PVG5A203C03B00 [BOURNS]
Trimmer;型号: | PVG5A203C03B00 |
厂家: | BOURNS ELECTRONIC SOLUTIONS |
描述: | Trimmer 电阻器 |
文件: | 总3页 (文件大小:624K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
PVG5.pdf
12/19/17
Trimmer Potentiometers
SMD Sealed Type Multiturn PVG5 Series
3.9
(.155)
1.3
(.050)
5.1
(.200)
3.5
(.139)
1
1.2
(.047)
4.8
(.190)
2.5
(.100)
2
Features
1.5
(.060)
DIA.
1.0
(.040)
5.3
3
2.6
(.103)
3 PLCS.
1. Surface Mount 5 mm Square / Multiturn / Cermet / Sealed
2. Available in both top and side adjustment
PVG5A
(.208)
ADJUSTMENT SLOT
3. Units can be pre-adjusted at clockwise, counter-clockwise
or standard 50 % position
0.7
(.028)
Circuit
0.6
WIDE
(.022)
#2 (Wiper)
4. 5 mm design meets EIA/EIAJ/IPC/VECI SMD standard
0.5
(.020)
DEEP
X
#1
#3
trimmer footprint
Clockwise
5. RoHS compliant*
0.8
(.032)
6. For trimmer applications/processing guidelines,
click here
0.2
(.007)
1.5
(.060)
DIA.
1
1.2
(.047)
2
4.8
(.190)
PVG5H
2.6
(.102)
2.4
(.095)
3
2.3
(.090)
5.0
(.195)
4.6
Circuit
(.180)
#2 (Wiper)
ADJUSTMENT SLOT
0.6
3.71
(.146)
WIDE
(.022)
#1
#3
Clockwise
0.5
(.020)
DEEP
X
0.8
(.032)
0.2
(.007)
MM
(INCHES)
0.25
(.010)
DIMENSIONS:
TOLERANCES:
EXCEPT WHERE NOTED
Top Adjustment
Power Rating
Number of Turns
(Effective Rotation Angle)
TCR
(ppm/°C)
Part Number
(W)
Total Resistance Value
PVG5A100C03R00
PVG5A200C03R00
PVG5A500C03R00
PVG5A101C03R00
PVG5A201C03R00
PVG5A501C03R00
PVG5A102C03R00
PVG5A202C03R00
PVG5A502C03R00
PVG5A103C03R00
PVG5A203C03R00
PVG5A503C03R00
PVG5A104C03R00
PVG5A204C03R00
PVG5A504C03R00
PVG5A105C03R00
PVG5A205C03R00
0.25 (70 °C)
0.25 (70 °C)
0.25 (70 °C)
0.25 (70 °C)
0.25 (70 °C)
0.25 (70 °C)
0.25 (70 °C)
0.25 (70 °C)
0.25 (70 °C)
0.25 (70 °C)
0.25 (70 °C)
0.25 (70 °C)
0.25 (70 °C)
0.25 (70 °C)
0.25 (70 °C)
0.25 (70 °C)
0.25 (70 °C)
12
12
12
12
12
12
12
12
12
12
12
12
12
12
12
12
12
10 ohm ±10%
20 ohm ±10%
50 ohm ±10%
100 ohm ±10%
200 ohm ±10%
500 ohm ±10%
1k ohm ±10%
2k ohm ±10%
5k ohm ±10%
10k ohm ±10%
20k ohm ±10%
50k ohm ±10%
100k ohm ±10%
200k ohm ±10%
500k ohm ±10%
1M ohm ±10%
2M ohm ±10%
±150
±150
±150
±150
±150
±150
±150
±150
±150
±150
±150
±150
±150
±150
±150
±150
±150
Operating Temperature Range: -55 to +125 °C
Soldering Method: Forced Hot Air, Convection, IR, Vapor Phase (In-Line)
*RoHS Directive 2002/95/EC Jan. 27, 2003 including annex and RoHS Recast 2011/65/EU June 8, 2011.
Specifications are subject to change without notice.
The device characteristics and parameters in this data sheet can and do vary in different applications and actual device performance may vary over time.
Users should verify actual device performance in their specific applications.
PVG5.pdf
12/19/17
Side Adjustment
Power Rating
(W)
Number of Turns
(Effective Rotation Angle)
TCR
(ppm/°C)
Part Number
Total Resistance Value
PVG5H100C03B00
PVG5H200C03B00
PVG5H500C03B00
PVG5H101C03B00
PVG5H201C03B00
PVG5H501C03B00
PVG5H102C03B00
PVG5H202C03B00
PVG5H502C03B00
PVG5H103C03B00
PVG5H203C03B00
PVG5H503C03B00
PVG5H104C03B00
PVG5H204C03B00
PVG5H504C03B00
PVG5H105C03B00
PVG5H205C03B00
0.25 (70 °C)
0.25 (70 °C)
0.25 (70 °C)
0.25 (70 °C)
0.25 (70 °C)
0.25 (70 °C)
0.25 (70 °C)
0.25 (70 °C)
0.25 (70 °C)
0.25 (70 °C)
0.25 (70 °C)
0.25 (70 °C)
0.25 (70 °C)
0.25 (70 °C)
0.25 (70 °C)
0.25 (70 °C)
0.25 (70 °C)
12
12
12
12
12
12
12
12
12
12
12
12
12
12
12
12
12
10 ohm ±10%
20 ohm ±10%
50 ohm ±10%
100 ohm ±10%
200 ohm ±10%
500 ohm ±10%
1k ohm ±10%
2k ohm ±10%
5k ohm ±10%
10k ohm ±10%
20k ohm ±10%
50k ohm ±10%
100k ohm ±10%
200k ohm ±10%
500k ohm ±10%
1M ohm ±10%
2M ohm ±10%
±150
±150
±150
±150
±150
±150
±150
±150
±150
±150
±150
±150
±150
±150
±150
±150
±150
Operating Temperature Range: -55 to +125 °C
Soldering Method: Forced Hot Air, Convection, IR, Vapor Phase (In-Line)
Standard Land Pattern
PVG5A
PVG5H
2.0
1.6
(.079)
(.063)
2.0
1.6
(.079)
(.063)
2.8
(.110)
2.25
(.089)
2.25
(.089)
2.8
(.110)
1.6
(.063)
1.3
(.051)
1.6
(.063)
1.3
(.051)
1.2
(.047)
1.3
(.051)
1.0
(.039)
1.3
(.051)
MM
(INCHES)
DIMENSIONS:
TOLERANCES:
0.1
(.004)
EXCEPT WHERE NOTED
Specifications are subject to change without notice.
The device characteristics and parameters in this data sheet can and do vary in different applications and actual device performance may vary over time.
Users should verify actual device performance in their specific applications.
PVG5.pdf
12/19/17
Characteristics
Part Numbering
ΔTR
ΔV.S.S.: ±1%
: ±2%
Temperature
Cycle
PV G5 A 103 C03 B00
Product ID
PV = Trimming Potentiometer
ΔTR
IR
: ±2%
: 10M ohm min.
Series
Humidity
G5 = SMD Sealed 5 mm Square, 12 Turns
Adjustment Direction/Lead Type
A = Top
H = Side
ΔTR
ΔV.S.S.: ±1%
: ±1%
Vibration (20G)
Shock (100G)
Total Resistance
ΔTR : ±1%
ΔV.S.S.: ±1%
Expressed by three figures.
The first and second figures are
significant digits; the third figure expresses
the number of zeros that follow.
ΔTR
ΔV.S.S.: ±1%
: ±3% or 3 ohm max., whichever is greater
Temperature
Load Life
Resistance
(Ohms)
10
Resistance
Code
100
Low Temperature
Exposure
ΔTR
ΔV.S.S.: ±1%
: ±1%
20
200
High Temperature
Exposure
ΔTR
ΔV.S.S.: ±1%
: ±2%
50
500
100
101
200
201
Rotational Life
ΔTR : ±3% or 3 ohm max., whichever is greater
500
501
1,000
102
(100 cycles)
2,000
202
5,000
502
ΔTR
: Total Resistance Change
10,000
20,000
50,000
100,000
200,000
500,000
1,000,000
2,000,000
103
ΔV.S.S.: Voltage Setting Stability
IR : Insulation Resistance
203
503
104
204
504
105
205
Typical Part Marking
Popular distribution values listed in boldface.
Special resistances available.
3-Digit Date Code and Manufacturing Code
- First digit indicates year of manufacture;
- Last two digits indicate week of manufacture;
- 4th digit is suffix for manufacturing location:
C = Costa Rica
Individual Specification
C03 = Standard Type
Packaging
B00 = Tube (50 pcs. per tube)
R00 = 7 ” Reel (250 pcs. per reel) - Style A
7 ” Reel (500 pcs. per reel) - Style H
Example:
604C = Manufactured in 2016, week 4, Costa Rica
Resistance Code
- Resistance code marking as shown in the
Part Numbering Resistance Table.
Specifications are subject to change without notice.
The device characteristics and parameters in this data sheet can and do vary in different applications and actual device performance may vary over time.
Users should verify actual device performance in their specific applications.
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