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 CS206
Vishay Dale
Resistor/Capacitor Networks ECL Terminators and Line Terminator, Conformal Coated, SIP
FEATURES
* * * * * 4 to 18 pins available X7R and COG capacitors available Low cross talk Custom design capability "B" 0.250" [6.35mm], "C" 0.350" [8.89mm] and "E" 0.325" [8.26mm] maximum seated height available, dependent on schematic * 10k ECL terminators, Circuits E and M. 100k ECL terminators, Circuit A. Line terminator, Circuit T.
STANDARD ELECTRICAL SPECIFICATIONS
VISHAY PROFILE SCHEMATIC DALE POWER MODEL RATING P70C W CS206 CS206 CS206 B M C E E T A 0.125 0.125 0.125 RESISTOR CHARACTERISTICS RESISTANCE RESISTANCE TEMP. T.C.R. RANGE TOLERANCE COEFF. TRACKING % ppm/C ppm/C 10-1M 10-1M 10-1M 2, 5 2, 5 2, 5 200 200 200 100 100 100 CAPACITOR CHARACTERISTICS CAPACITANCE CAPACITANCE RANGE TOLERANCE % 0.01F 33pF to 0.1F 0.01F 10(K), 20(M) 10(K), 20(M) 10(K), 20(M)
TECHNICAL SPECIFICATIONS
PARAMETER Operating Voltage (at + 25C) Dissipation Factor (maximum) Insulation Resistance (at + 25C /rated voltage) Dielectric Test Operating Temperature Range UNIT VAC % M V C CS206 50 maximum
Capacitor Temperature Coefficient: COG maximum 0.15%, X7R maximum 2.5%
Package Power Rating (maximum at 70C): 8 PINS = 0.80 Watt C0G = 0.15; X7R = 2.5 9 PINS = 0.90 Watt 10 PINS = 1.00 Watt 100,000
2.5 x rated voltage - 55 to + 125C
EIA Characteristics: COG and X7R (COG capacitors may be substituted for X7R capacitors).
SCHEMATICS in inches [millimeters] 0.250" [6.35] High 0.250" [6.35] High ("B" Profile) ("B" Profile)
0.325" [8.26] High ("E" Profile)
0.350" [8.89] High ("C" Profile)
... 12 3 4 5 6 7 N 1 2 3 4 5 6 7
... N 12 3456 7 8 9 10 1 2 3 4 5 6 7
... N
Circuit E
Circuit M
Circuit A
Circuit T
GLOBAL PART NUMBER INFORMATION
New Global Part Numbering: 20608EC103G471KP (preferred part numbering format)
2
0
6
0
8
E
C
1
0
3
G
4
7
1
K
P
GLOBAL PIN PACKAGE/ CHARACTERISTIC RESISTANCE RES. CAPACITANCE CAP . PACKAGING SPECIAL MODEL COUNT SCHEMATIC HEIGHT TOLERANCE VALUE TOLERANCE 206 = CS206 04 = 4 Pin E = BE C = COG 2 digit significant G = 2% (in picofarads) K = 10% E = Lead Free, Bulk Blank = Standard 08 = 8 Pin M = BM X = XR7 figure, followed J = 5% 2 digit significant M = 20% P = Tin/Lead, Bulk (Dash Number) 18 = 18 Pin A = EA S = Special by a multiplier S = Special figure, followed S = Special (up to 2 digits) T = CT 100 = 10 by a multiplier S = Special 333 = 33K 330 = 33pF 105 = 1M 392 = 3900pF 104 = 1F Historical Part Number example: CS20608BEC103G471KP03 (will continue to be accepted)
CS206
HISTORICAL MODEL
08
PIN COUNT
B
PACKAGE HEIGHT
E
C
103
G
471
K
P03
SCHEMATIC CHARACTERISTIC
RESISTANCE RES CAPACITANCE CAP PACKAGING TOLERANCE VALUE TOLERANCE VALUE
www.vishay.com 60
For Technical Questions, contact: ff2aresistors@vishay.com
Document Number: 31519 Revision 10-Sep-04
CS206
Res/CapNetworks, ECL Terminators and Line Terminator
DIMENSIONS in inches [millimeters]
NUMBER OF PINS
0.085 [2.160] Typ. L Max. 0.050 [1.27] Typ. 0.135 [3.43] Max.
Vishay Dale
L MAXIMUM 0.400 [10.16] 0.500 [12.70] 0.600 [15.24] 0.700 [17.78] 0.800 [20.32] 0.900 [22.86] 1.000 [25.40] 1.100 [27.94] 1.200 [30.48] 1.300 [33.02] 1.400 [35.56] 1.500 [38.10] 1.600 [40.64] 1.700 [43.18] 1.800 [45.72]
H Max. C L 0.010 [0.254] Seating Plane for 0.040 [1.016] O Hole 0.007 [0.178] Ref.
0.020 [0.508] 0.100 0.005 [2.54 0.127] Non-Cumulative at Point of Egress 0.050 [1.27]
0.135 + 0.015 - 0.010 [3.43 + 0.381 - 0.254]
H (Height) Maximum: B = 0.250" [6.35] (Circuit E and M) C = 0.350" [8.89] (Circuit T) E = 0.325" [8.26] (Circuit A)
Pin #1 is extreme left-hand terminal on side with marking.
4 pin 5 pin 6 pin 7 pin 8 pin 9 pin 10 pin 11 pin 12 pin 13 pin 14 pin 15 pin 16 pin 17 pin 18 pin
Power Dissipation %
150
MATERIAL SPECIFICATIONS
Flammability:
100
UL 94V-0. Phosphorus-bronze, solder plated. Epoxy coated. Per MIL-STD-202, Method 208E. Pin #1 identification, part number (abbreviated as space allows), DALE(R) or D, date code Meets requirements of MIL-STD202, Method 106.
Lead Material: Body Material:
50
Solderability: Part Marking:
0 0
25
50
Derating
75 70
100
125
150
Moisture Resistance:
Ambient Temperature C
PERFORMANCE
TEST Thermal Shock Short Time Overload Moisture Resistance CONDITION Subject to 5 cycles from - 65C to + 125C. 2.5 x rated working voltage for 5 seconds at + 25C. Cycle from + 25C to + 65C to + 25C over 8 hours at 90 - 98% relative humidity, with 10% of rated power applied, for 20 cycles. Stop cycling after an even number of cycles and stabilize networks at high humidity for 1 to 4 hours. Condition networks at -10C for 3 hours, then return to temperature cycling. On completion of cycling condition networks at + 25C at 50% r.h. for 22 to 24 hours. 18 shocks of 100 G and 6 ms. 12 cycles varied logarithmically from 10Hz to 2000Hz to 10Hz over 20 minutes. 1000 hours at + 70C, rated power applied 1.5 hours "ON, 0.5 hour "OFF". Immerse leads in 60/40 tin-lead solder using R flux at + 245C for 5 seconds maximum. Withstand 2.2 kg pull 1 minute. 100 V applied between case and terminals tied together. MAX. R (Typical Test Lots) 0.5% R 0.25% R 0.5% R
Resistance to Soldering Heat Immerse pins in melted solder to the lead standoffs at + 350C for 3 seconds max. Mechanical Shock Vibration Load Life Resistance to Solvents Solderability Terminal Strength Case Insulation Resistance
0.25% R 0.25% R 0.25% R 1.0% R Minimum 95% solder coverage 0.25% R IR = 10,000 Megohm minimum
Immerse and scrub samples with isopropyl alcohol, trichlorethylene and Freon TMC. Marking remains legible
Document Number: 31519 Revision 10-Sep-04
For Technical Questions, contact: ff2aresistors@vishay.com
www.vishay.com 61


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