EEWORLDEEWORLDEEWORLD

Part Number

Search

CR2512AFW-71R5EAS

Description
Fixed Resistor,
CategoryPassive components    The resistor   
File Size654KB,11 Pages
ManufacturerBourns
Websitehttp://www.bourns.com
Download Datasheet Parametric View All

CR2512AFW-71R5EAS Overview

Fixed Resistor,

CR2512AFW-71R5EAS Parametric

Parameter NameAttribute value
MakerBourns
Reach Compliance Codeunknown
JESD-609 codee3
Number of terminals2
Resistor typeFIXED RESISTOR
Terminal surfaceTin (Sn) - with Nickel (Ni) barrier

CR2512AFW-71R5EAS Preview

*R
AE **H oHS
C- AL C
Q2 O G OM
00 EN P
CO FR LIA
M EE NT
PL & ,
IA
NT
Features
n
Thick film technology
n
Power rating up to 1 watt @ 70 °C
n
RoHS compliant*
n
Halogen free**
n
Sulfur-resistant design (ASTM B-809)
n
AEC-Q200 compliant
CRxxxxA-AS - Sulfur-Resistant, AEC-Q200 Compliant Chip Resistors
Electrical Characteristics
Characteristic
Power Rating @ 70 °C
Operating Temp. Range
Derated to Zero Load at
Maximum Working Voltage (1)
Maximum Overload Voltage
Resistance Tolerance
Model No.
CR0201A-AS
0.05 W
-55 to +125 °C
+125 °C
25 V
50 V
50 V
100 V
±1 %, ±5 %
1 Ω ~ 9.76 Ω
-200 ~ +500 ppm/°C
100 Ω ≤ R ≤ 1M Ω
±100 ppm/°C
10 Ω ≤ R < 100 Ω
1M Ω < R ≤ 10M Ω
±200 ppm/°C
1 Ω ~ 9.1 Ω
-200 ~ +500 ppm/°C
10 Ω ≤ R ≤ 10M Ω
±200 ppm/°C
10M Ω ≤ R ≤ 20M Ω
±400 ppm/°C
1 A / 2.5 A
1 Ω ~ 9.76 Ω
±400 ppm/°C
10 Ω ≤ R ≤ 1M Ω
±100 ppm/°C
1M Ω < R ≤ 10M Ω
±200 ppm/°C
1 Ω ~ 9.76 Ω
±400 ppm/°C
10 Ω ≤ R ≤ 1M Ω
±100 ppm/°C
1M Ω < R ≤ 10M Ω
±200 ppm/°C
CR0402A-AS
0.063 W
CR0603A-AS
0.1 W
-55 to +155 °C
+155 °C
50 V
100 V
150 V
300 V
CR0805A-AS
0.125 W
Temperature Coefficient @ 1 %
(E24 + E96)
1 Ω ~ 9.76 Ω
-200 ~ +600 ppm/°C
10 Ω ~ 3M Ω
+200 ppm/°C
Temperature Coefficient @ 5 %
(E24)
1 Ω ~ 9.1 Ω
-200 ~ +600 ppm/°C
10 Ω ~ 10M Ω
+200 ppm/°C
1 Ω ~ 9.1 Ω
10M < R ≤ 20M Ω
±400 ppm/°C
10 Ω ≤ R ≤ 10M Ω
±200 ppm/°C
1 Ω ~ 9.1 Ω
10M < R ≤ 20M Ω
±400 ppm/°C
10 Ω ≤ R ≤ 10M Ω
±200 ppm/°C
Zero Ohm Jumper ≤ 0.05 Ω
Rated / Max. Current
(1)
0.5 A / 1 A
1 A / 2.5 A
2A/5A
Maximum Working Voltage is calculated with formula V= √P*R with the maximum value from the Electrical Characteristics table.
Environmental Characteristics
Moisture Sensitivity Level .......................................................... 1
ESD Classification (HBM) ........................................................1A
WARNING Cancer and Reproductive Harm -
www.P65Warnings.ca.gov
* RoHS Directive 2002/95/EC Jan. 27, 2003 including annex and RoHS Recast 2011/65/EU June 8, 2011.
** Bourns considers a product to be “halogen free” if (a) the Bromine (Br) content is 900 ppm or less; (b) the Chlorine (Cl) content is 900 ppm or less;
and (c) the total Bromine (Br) and Chlorine (Cl) content is 1500 ppm or less.
Specifications are subject to change without notice.
Users should verify actual device performance in their specific applications.
The products described herein and this document are subject to specific legal disclaimers as set forth on the last page of this document, and at www.bourns.com/docs/legal/disclaimer.pdf.
CRxxxxA-AS - Sulfur-Resistant, AEC-Q200 Compliant Chip Resistors
Electrical Characteristics (continued)
Characteristic
Model No.
CR1206A-AS
CR1210A-AS
CR2010A-AS
CR2512A-AS
Power Rating @ 70 °C
Operating Temp. Range
Derated to Zero Load at
Maximum Working Voltage
(1)
Maximum Overload Voltage
Resistance Tolerance
0.25 W
0.33 W
-55 to +155 °C
+155 °C
200 V
400 V
±1 %, ±5 %
1 Ω ~ 9.76 Ω
±400 ppm/°C
0.5 W
1W
Temperature Coefficient @ 1 %
(E24 + E96)
10 Ω ≤ R ≤ 1M Ω
±100 ppm/°C
1M Ω < R ≤ 10M Ω
±200 ppm/°C
1 Ω ~ 9.1 Ω
10M < R ≤ 20M Ω
±400 ppm/°C
10 Ω ≤ R ≤ 10M Ω
±200 ppm/°C
2A/5A
Temperature Coefficient @ 5 %
(E24)
Zero Ohm Jumper ≤ 0.05 Ω
Rated / Max. Current
(1)
Maximum Working Voltage is calculated with formula V= √P*R with the maximum value from the Electrical Characteristics table.
Specifications are subject to change without notice.
Users should verify actual device performance in their specific applications.
The products described herein and this document are subject to specific legal disclaimers as set forth on the last page of this document, and at www.bourns.com/docs/legal/disclaimer.pdf.
CRxxxxA-AS - Sulfur-Resistant, AEC-Q200 Compliant Chip Resistors
Product Dimensions
L
W
C
D
DIMENSIONS:
T
MM
(INCHES)
Model
CR0201A-AS
CR0402A-AS
CR0603A-AS
CR0805A-AS
CR1206A-AS
CR1210A-AS
CR2010A-AS
CR2512A-AS
L
0.60 ± 0.03
(.024 ± .001)
1.00 ± 0.10
(.039 ± .004)
1.60 ± 0.10
(.063 ± .004)
2.00 ± 0.10
(.079 ± .004)
3.10 ± 0.10
(.122 ± .004)
3.10 ± 0.10
(.122 ± .004)
5.00 ± 0.15
(.197 ± .006)
6.30 ± 0.20
(.248 ± .008)
W
0.30 ± 0.03
(.012 ± .001)
0.50 ± 0.05
(.020 ± .002)
0.80 ± 0.10
(.031 ± .004)
1.25 ± 0.10
(.049 ± .004)
1.55 ± 0.10
(.061 ± .004)
2.55 ± 0.10
(.100 ± .004)
2.50 ± 0.15
(.098 ± .006)
3.20 ± 0.20
(.126 ± .008)
C
0.10 ± 0.05
(.004 ± .002)
0.20 ± 0.10
(.008 ± .004)
0.30 ± 0.20
(.012 ± .008)
0.40 ± 0.20
(.016 ± .008)
0.50 ± 0.30
(.020 ± .012)
0.50 ± 0.30
(.020 ± .012)
0.60 ± 0.30
(.024 ± .012)
0.60 ± 0.30
(.024 ± .012)
D
0.15 ± 0.05
(.006 ± .002)
0.25 ± 0.10
(.010 ± .004)
0.30 ± 0.20
(.012 ± .008)
0.40 ± 0.20
(.016 ± .008)
0.40 ± 0.20
(.016 ± .008)
0.40 ± 0.20
(.016 ± .008)
0.50 ± 0.25
(.020 ± .010)
0.50 ± 0.25
(.020 ± .010)
T
0.23 ± 0.03
(.009 ± .001)
0.32 ± 0.05
(.013 ± .002)
0.45 ± 0.10
(.018 ± .004)
0.50 ± 0.10
(.020 ± .004)
0.55 ± 0.10
(.022 ± .004)
0.60 ± 0.10
(.024 ± .004)
0.60 ± 0.10
(.024 ± .004)
0.60 ± 0.10
(.024 ± .004)
Specifications are subject to change without notice.
Users should verify actual device performance in their specific applications.
The products described herein and this document are subject to specific legal disclaimers as set forth on the last page of this document, and at www.bourns.com/docs/legal/disclaimer.pdf.
CRxxxxA-AS - Sulfur-Resistant, AEC-Q200 Compliant Chip Resistors
Recommended Pad Layout
RESISTOR
Model
c
a
0.25 ~ 0.30
(.010 ~ .012)
0.50 ~ 0.60
(.020 ~ .024)
0.70 ~ 0.90
(.028 ~ .035)
1.00 ~ 1.40
(.039 ~ .055)
2.00 ~ 2.40
(.079 ~ .094)
2.00 ~ 2.40
(.079 ~ .094)
3.30 ~ 3.70
(.130 ~ .146)
3.60 ~ 4.00
(.142 ~ .157)
b
0.70 ~ 0.90
(.028 ~ .035)
1.40 ~ 1.60
(.055 ~ .063)
2.00 ~ 2.20
(.079 ~ .087)
3.20 ~ 3.80
(.126 ~ .150)
4.40 ~ 5.00
(.173 ~ .197)
4.50 ~ 5.00
(.177 ~ .197)
5.70 ~ 6.50
(.224 ± .256)
7.60 ~ 8.60
(.299 ~ .339)
c
0.30 ~ 0.40
(.012 ~ .016)
0.40 ~ 0.60
(.012 ~ .024)
0.80 ~ 1.00
(.031 ~ .039)
0.90 ~ 1.40
(.035 ~ .055)
1.20 ~ 1.80
(.047 ~ .071)
2.30 ~ 3.50
(.091 ~ .138)
2.30 ~ 3.50
(.091 ~ .138)
2.30 ~ 3.50
(.091 ~ .138)
a
b
CR0201A-AS
CR0402A-AS
DIMENSIONS:
MM
(INCHES)
CR0603A-AS
CR0805A-AS
CR1206A-AS
CR1210A-AS
CR2010A-AS
CR2512A-AS
Soldering Profile
275
<1>
Maximum of 20 seconds between
+255 °C and +260 °C
260 °C peak
<1>
255 °C
225
Temperature (°C)
220 °C
190 °C
175
150 °C
60 - 90
seconds
Ramp Down
6 °C/second
60 - 120 seconds
10 seconds minimum
75
Ramp Up
3 °C/second maximum
25
125
0
50
100
150
200
250
300
Time (Seconds)
Specifications are subject to change without notice.
Users should verify actual device performance in their specific applications.
The products described herein and this document are subject to specific legal disclaimers as set forth on the last page of this document, and at www.bourns.com/docs/legal/disclaimer.pdf.
CRxxxxA-AS - Sulfur-Resistant, AEC-Q200 Compliant Chip Resistors
Performance Characteristics (AEC-Q200)
Test
Short Time Overload
Method
IEC 60115-1 4.13
Procedure
2.5 X rated voltage for 5 sec.
Test Limits ∆R
± (1 % + 0.05 Ω )
Remarks:
0201: ± (3 % + 0.1 Ω)
0402: ± (2 % + 0.1 Ω)
0 Ω : 50 mΩ or less
1 %: ± (1.0 % + 0.05 Ω)
5 %: ± (2.0 % + 0.1 Ω)
0201: ± (3 % + 0.1 Ω)
0 Ω: 50 mΩ or less
± (1.0 % + 0.1 Ω)
0201: ± (2 % + 0.1 Ω)
0 Ω: 50 mΩ or less
1 %: ± (1.0 % + 0.05 Ω)
2 %, 5 %: ± (2.0 % + 0.1 Ω)
0201: ± (3 % + 0.1 Ω)
0 Ω: 50 mΩ or less
High Temperature Exposure
(Storage)
AEC-Q200-REV D-Test 3
MIL-STD-202 Method 108
1000 hrs. @ T=155 °C. Unpowered.
Measurement at 24 ±2 hours after test conclusion.
1000 cycles (-55 °C to +125 °C)
Measurement at 24 ±4 hours after test conclusion.
30 min. maximum dwell time at each temperature extreme.
1 min. maximum transition time.
T=24 hours / Cycle,10 Cycles.
Notes: Steps 7a & 7b not required. Unpowered.
1000 hours 85 °C / 85 % RH. Note: Specified conditions:
10 % of operating power (not exceeding max. working voltage).
Measurement at 24 ±2 hours after test conclusion.
1000 hours T
a
=125 °C at 35 % rated power. Measurement at 24 ±4
hours after test conclusion.
Electrical test not required. Inspect device construction, marking and
workmanship.
Verify physical dimensions to the applicable device detail spec.
Note: User(s) and Suppliers spec. Electrical test not required.
a: Isopropyl Alcohol : Mineral Spirits = 1:3
b: Terpene Defluxer (Bioact EC-7R)
c: Deionized water : Propylene Glycol
Monomethyl Ether : monoethanolamine = 42:1:1
Wave Form: Tolerance for half sine shock pulse. Peak value is
100 grams. Normal duration (D) is 6 ms.
5 grams for 20 min., 12 cycles each of 3 orientations.
Note: Test from 10-2000 Hz.
Condition B: Immerse the specimens in and eutectic solder at
260 ±5 ℃ for 10 ±1 S.
-55 °C / +155 °C. Note: Number of cycles required: 1000, Maximum
transfer time: 20 seconds,
Dwell time: 15 minutes. Air to Air.
Verify the voltage setting at 500 V
Method B, aging 4 hours at 155 °C dry heat
Lead-free solder bath at 235 ±3 °C
Dipping time: 3 ±0.5 seconds
V-0 or V-1 are acceptable.
Electrical test not required.
The duration of the applied forces shall be 60 (±5) seconds.
3 mm deflection (0201~1210)
2 mm deflection (2010~2512)
Force of 1.8 kg for 60 seconds.
Note: 0201= N/A
Temperature Cycling
AEC-Q200-REV D-Test 4
JESD22 Method JA-104
Moisture Resistance
AEC-Q200-REV D-Test 6
MIL-STD-202 Method 106
AEC-Q200-REV D-Test 7
MIL-STD-202 Method 103
AEC-Q200-REV D-Test 8
MIL-STD-202 Method 108
AEC-Q200-REV D-Test 9
MIL-STD-883 Method 2009
AEC-Q200-REV D-Test 10
JESD22 Method JB-100
AEC-Q200-REV D-Test 12
MIL-STD-202 Method 215
AEC-Q200-REV D-Test 13
MIL-STD-202 Method 213
AEC-Q200-REV D-Test 14
MIL-STD-202 Method 204
AEC-Q200-REV D-Test 15
MIL-STD-202 Method 210
AEC-Q200-REV D-Test 16
MIL-STD-202 Method 107
AEC-Q200-REV D-Test 17
AEC-Q200-REV D-Test 18
J-STD-002
AEC-Q200-REV D-Test 17
UL-94
AEC-Q200-REV D-Test 21
Biased Humidity
± (3 % + 0.1 Ω)
0201: ± (5 % + 0.1 Ω)
0 Ω: 100 mΩ or less
Operational Life
1 %: ± (1 % + 0.1 Ω)
5 %: ± (3 % + 0.1 Ω)
0201: ± (5 % + 0.1 Ω)
0 Ω: 100 mΩ or less
External Visual
Physical Dimension
Resistance to Solvents
Marking and protective layer
cannot be detached
± (1 % + 0.1 Ω)
0 Ω: 50 mΩ or less
± (1 % + 0.1 Ω)
0 Ω: 50 mΩ or less
Mechanical Shock
Vibration
Resistance to
Soldering Heat
Thermal Shock
ESD
Solderability
Flammability
Board Flex
(Bending)
Terminal Strength
(SMD)
± (1 % + 0.1 Ω)
0201: ± (2 % + 0.1 Ω)
0 Ω: 50 mΩ or less
± (1 % + 0.1 Ω)
0201: ± (2 % + 0.1 Ω)
1 %: ± (0.5 % + 0.05 Ω)
5 %: ± (1 % + 0.1 Ω)
0201: ± (2 % + 0.1 Ω)
0 Ω: 50 mΩ or less
> 95 % area covered with tin
V-0 or V-1
1 %: ± (0.5 % + 0.05 Ω)
5 %: ± (1 % + 0.1 Ω)
0201: ± (1 % + 0.1 Ω)
0 Ω: 50 mΩ or less
± (0.5 % + 0.05 Ω)
0 Ω: 50 mΩ or less
1 %: ± (1 % + 0.05 Ω)
5 %: ± (2 % + 0.05 Ω)
0201:
1 %: ± (2 % + 0.05 Ω)
5 %: ± (3 % + 0.05 Ω)
0 Ω: 100 mΩ or less
IEC 60115-1 4.32
Sulfuration Test
ASTM-B-809-95
Sulfur (saturated vapor) 1,000 hours,
105 ±2 °C, unpowered
Specifications are subject to change without notice. Users should verify actual device performance in their specific applications.
The products described herein and this document are subject to specific legal disclaimers as set forth on the last page of this document, and at www.bourns.com/docs/legal/disclaimer.pdf.
EFT 2B, but all others passed.
Is it possible to increase the capacitance of EFT 2B? Is there any other way?...
jack4103 Power technology
CircuitPython Badge Board
Source: https://kevinneubauer.com/portfolio/cir ... hon-badge/Features :Run Adafruit CircuitPython ! Atmel ATSAMD51J19 ARM Cortex M4 Microcontroller 8 MB Flash Accelerometer Speaker/Buzzer SK6812 LED ...
dcexpert MicroPython Open Source section
Today at 10:00 AM, live broadcast with prizes: Application of TI millimeter-wave radar in cars
Today at 10:00 AM, live broadcast with prizes: Application of TI millimeter-wave radar in carsClick here to enter the live broadcastLive broadcast time: 10:00-11:30 am, May 26Live Topic:Application of...
EEWORLD社区 Automotive Electronics
LTC2325
According to your previous post, the sync signal is input at 10MHz, output at 10MHz, and then the phase and duty cycle are multiplied by 2. It seems that there is a big error. I don't know if my confi...
xkl5599 EE_FPGA Learning Park
Today is Fibonacci Day
November 23 is Fibonacci Day, an annual holiday that honors one of the most influential mathematicians of the Middle Ages, Leonardo Bonacci. November 23 is designated as Fibonacci Day because when the...
dcexpert Talking
28379 Motor Control
Hello everyone, I am using TI 28379launchpad + 8305 driver board to implement FOC control of PMSM I used a 60W small motor from JMC before, and I ran it successfully. The program used C-code converted...
Albert_Ou Motor Drive Control(Motor Control)

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Datasheet   0 1 2 3 4 5 6 7 8 9 A B C D E F G H I J K L M N O P Q R S T U V W X Y Z
Room 1530, 15th Floor, Building B, No. 18 Zhongguancun Street, Haidian District, Beijing Telephone: (010) 82350740 Postal Code: 100190
Copyright © 2005-2024 EEWORLD.com.cn, Inc. All rights reserved 京ICP证060456号 京ICP备10001474号-1 电信业务审批[2006]字第258号函 京公网安备 11010802033920号