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CAY16-3321F4LF

Description
Resistor Networks & Arrays 3.32K 1% Convex 4resistors
CategoryPassive components    The resistor   
File Size493KB,4 Pages
ManufacturerBourns
Websitehttp://www.bourns.com
Environmental Compliance
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CAY16-3321F4LF Overview

Resistor Networks & Arrays 3.32K 1% Convex 4resistors

CAY16-3321F4LF Parametric

Parameter NameAttribute value
Is it lead-free?Lead free
Is it Rohs certified?conform to
package instructionSMT, 0612
Reach Compliance Codecompliant
ECCN codeEAR99
Factory Lead Time19 weeks
structureChip
Component power consumption0.062 W
The first element resistor3320 Ω
JESD-609 codee3
Installation featuresSURFACE MOUNT
Network TypeISOLATED
Number of components1
Number of functions4
Number of terminals8
Maximum operating temperature125 °C
Minimum operating temperature-55 °C
Package height0.5 mm
Package length3.2 mm
Package shapeRECTANGULAR PACKAGE
Package formSMT
Package width1.6 mm
method of packingTR, PAPER, 7 INCH
Rated power dissipation(P)0.062 W
Rated temperature70 °C
resistance3320 Ω
Resistor typeARRAY/NETWORK RESISTOR
size code0612
surface mountYES
Temperature Coefficient-200,200 ppm/°C
Terminal surfaceTin (Sn) - with Nickel (Ni) barrier
Terminal shapeWRAPAROUND
Tolerance1%
Operating Voltage50 V
Base Number Matches1
M
PL
IA
NT
Features
RoHS compliant*
Convex and concave terminals
2, 4 or 8 isolated elements available
Resistance tolerance ±1 % and ±5 %
Resistance range: 10 ohms to 1 megohm
*R
oH
S
CO
CAT/CAY 16 Series - Chip Resistor Arrays
Specifications
Requirement
Short Time Overload
Soldering Heat
Temperature Cycling (5)
Moisture Load Life
Load Life
Characteristics
Characteristics
Number of Elements
Power Rating Per Resistor @ 70 °C
Package Power Rating @ 70 °C
Temperature Coefficient of Resistance
Resistance Tolerance
Resistance Range: E24 (J), E96 + E24 (F)
Zero-Ohm Jumper < 0.05 ohm
Max. Working Voltage
Operating Temp. Range
CAT16/CAY16
2 (J2), 4 (F4, J4), 8 (F8, J8)
0.0625 W
0.250 W
(0.125 W for J2)
±200 PPM/°C
±1 %, ±5 %
10 ohms - 1 megohm
50 V (25 V for CAY16-J8)
-55 °C - 125 °C
Characteristics
±2 % +0.1 ohm
±2 % +0.1 ohm
±1 % + 0.1 ohm
±3 % +0.1 ohm
±3 % +0.1 ohm
Test Method
Rated Voltage X 2.5, 5 seconds
260 °C ±5 °C, 10 seconds ±1 second
125 °C (30 minutes) - normal (15 minutes)
-55 °C (30 minutes) - normal (15 minutes)
1000 hours
1000 hours
How To Order
CA Y 16 - 103 J 4 LF
Chip Arrays
Type
• CAT16 = Concave Terminations
• CAY16 = Convex Terminations
Resistance Code
• For 1 % Tolerance:
<100 ohms - “R” represents decimal
point (example: 24R3 = 24.3 ohms)
≥100 ohms - First three digits are
significant, fourth digit represents
number of zeros to follow (example:
8252 = 82.5k ohms)
• For 5 % Tolerance:
<10 ohms - “R” represents decimal
point (example: 4R7 = 4.7 ohms)
≥10 ohms - First two digits are signifi-
cant, third digit represents number of
zeros to follow (example: 474 = 470k
ohms)
• 000 = Zero Ohm Jumper
Resistance Tolerance
• J = ±5 % (2, 4, 8 resistor pkg. and for
Zero Ohm Jumper)
• F = ±1 % (4 resistor pkg. and CAT16-F8)
Resistors
• 2 = 2 Isolated Resistors
• 4 = 4 Isolated Resistors
• 8 = 8 Isolated Resistors
Terminations
• LF = Tin-plated (RoHS compliant)
Soldering Profile for RoHS Compliant Chip Resistors and Arrays
275
<1>
Maximum of 20 seconds between
260 °C peak
<1>
255 °C
+255 °C and +260 °C
225
220 °C
Temperature (°C)
190 °C
175
150 °C
60 - 90
seconds
Ramp Down
6 °C/second
Packaging Size
125
60 - 120 seconds
10 seconds minimum
75
Ramp Up
3 °C/second maximum
25
0
50
100
150
Time (seconds)
200
250
300
J2 .......... 0606 Package Size
F4, J4 .... 1206 Package Size
F8 .......... 2406 Package Size for CAT16
J8 .......... 2406 Package Size for CAT16;
1506 Package Size for CAY16
For Standard Values Used in Capacitors,
Inductors, and Resistors,
click here.
*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.
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