MIC
www.vishay.com
Vishay Electro-Films
Thin Film Microwave Resistor
FEATURES
Wire bondable
High frequency
Small single chip size: 0.020" x 0.040"
Case: 0402
Microwave resistance range: 20 to 500
Overall resistance range: 2 to 20 k
Alumina substrate
Low stray capacitance: < 0.2 pF
Resistor material: Tantalum nitride, self passivating
Product may not be to scale
Moisture resistant
Material categorization: for definitions of compliance
The MIC resistor chips on alumina are designed with low
please see www.vishay.com/doc?99912
shunt capacitance. Most lower value resistor geometrics are
APPLICATIONS
compatible with strip lines, making them ideally suited for
Vishay EFI MIC chip resistors provide excellent
microwave circuits.
high-frequency response and are ideally suited for
These chips are manufactured using Vishay Electro-Films
prototyping.
(EFI) sophisticated Thin Film equipment and manufacturing
Typical application areas are:
technology. The MICs are 100 % electrically tested and
Amplifiers
visually inspected to MIL-STD-883.
Oscillators
Attenuators
Couplers
Filters
TEMPERATURE COEFFICIENT OF RESISTANCE, VALUES, AND TOLERANCES
PARAMETER VALUE UNIT
Resistance Range 2 to 20K
Tolerances 1 %
TCR 25, 50, 100, 200 ppm/C
Note
Only 20 to 500 are standard strip line designs for microwave applications
Tightest Tolerance Available
1.0 %
25 ppm/C
50 ppm/C
100 ppm/C
200 ppm/C
2 10 20 5 k 10 k 15 k 20 k
STANDARD ELECTRICAL SPECIFICATIONS
PARAMETER VALUE UNIT
Noise, MIL-STD-202, Method 308 -20 typ. dB
Moisture Resistance, MIL-STD-202, Method 106 0.1 max. R/R %
Stability, 1000 h, +125 C, 62 mW 0.2 max. R/R %
Operating Temperature Range -55 to +125 C
Thermal Shock, MIL-STD-202, Method 107, Test Condition F 0.1 max. R/R %
High Temperature Exposure +150 C, 1000 h 0.2 max. R/R %
Dielectric Voltage Breakdown 400 V
12
Insulation Resistance 10 min.
Operating Voltage 100 max. V
DC Power Rating at +70 C (Derated to Zero at 150 C) 0.125 max. W
5x Rated Power Short-Time Overload, +25 C, 5 s 0.1 max. R/R %
Revision: 01-Mar-17 Document Number: 61037
1
For technical questions, contact: efi@vishay.com
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000
MIC
www.vishay.com
Vishay Electro-Films
DIMENSIONS in inches
0.020
0.020 0.020
0.040
0.040 0.040
0.010 0.010 0.010
0.012
0.012 0.012
TYPICAL RANGE
TYPICAL RANGE TYPICAL RANGE
20 to 20 k
2 to 6 6.2 to 19
SCHEMATIC IMPEDANCE VS. FREQUENCY
50 , 20 mil x 40 mil SIZE
50.40
50.30
50.20
50.10
50.00
49.90
49.80
49.70
49.60
0.00 E + 00 5.00 E + 08 1.00 E + 09 1.50 E + 0.9 2.00 E + 09 2.50 E + 09 3.00 E + 09 3.50 E + 09
FREQUENCY (Hz)
MECHANICAL SPECIFICATIONS
PARAMETER
Chip Size 0.020" x 0.040" 0.003" (0.5 mm x 1.0 mm 0.076 mm)
Chip Thickness 0.010" 0.002" (0.254 mm 0.05 mm)
Chip Substrate Material 99.6 % alumina, 2 to 4 finish
Resistor Material Tantalum nitride, self-passivating
Bonding Pad Size 0.010" x 0.012" (0.254 mm x 0.30 mm) min.
Number of Pads 2
Pad Material 25 k minimum gold standard
Backing None
Tape and Reel Orientation Pattern side down
GLOBAL PART NUMBER INFORMATION
Global Part Number: MIC5000BKKMSNHWS
Global Part Number Description: MIC 50 10 %, 100 ppm/C, MIC trim, SnPb termination, no back metal, class H, WS
MI C 5 0 00 B K K M S N HW S
RESISTANCE TOL.
TCR TRIM BACK VISUAL PACKAGING
MODEL RESISTANCE MULTILPLIER CODE TERMINATION
(ppm/C) STYLE METAL CLASS CODE
CODE (%)
MIC First 4 C = 0.001 F = 1.0 E = 25 M = microwave G = Au G = Au H = class H WS =
digits are B = 0.01 G = 2.0 C = 50 S = standard S = SnPb N = none K = class K waffle pack
20 x 40 significant A = 0.1 H = 2.5 K = 100 A = Al 100 min, 1 mult
size figures of 0 = 1 J = 5.0 L = 200 T = lead TS =
microwave resistance 1 = 10 K = 10 R = 0/- 250 (Pb)-free tape and reel
resistor M = 20 (e1) 100 min, 1 mult
TaN on TF =
alumina tape and reel
5000 min, 1 mult
Revision: 01-Mar-17 Document Number: 61037
2
For technical questions, contact: efi@vishay.com
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000
IMPEDANCE ()