4605M-901-472LF [BOURNS]

BUSSED C NETWORK, 50V, X7R, 0.0047uF, THROUGH HOLE MOUNT, SIP-5, SIP, ROHS COMPLIANT;
4605M-901-472LF
型号: 4605M-901-472LF
厂家: BOURNS ELECTRONIC SOLUTIONS    BOURNS ELECTRONIC SOLUTIONS
描述:

BUSSED C NETWORK, 50V, X7R, 0.0047uF, THROUGH HOLE MOUNT, SIP-5, SIP, ROHS COMPLIANT

电容器
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Features  
This series is currently available but  
not recommended for new designs.  
Integrates capacitor function in one  
package  
RoHS compliant*  
Design reduces termination noise  
Popular standard capacitance values  
available  
Isolated, bussed and dual-bussed circuits  
available  
Compatible with wave soldering  
900 Series - Capacitor Networks  
Isolated Capacitors (902 Circuit)  
Electrical Characteristics  
Product Dimensions  
Capacitance Tolerance  
5.08  
(.200)  
MAX.  
...  
A
39 pF - 270 pF...........................±±0 ꢀ  
>270 pF - 0.± μF .......................±20 ꢀ  
Circuit Configuration.....Isolated, bussed  
and dual-bussed  
MAXIMUM  
1
4
6
10  
12  
14  
PIN #1  
REF.  
Capacitor Dielectric ............... NPO, X7R  
Capacitance Voltage Rating  
These models incorporate 2 to 7  
isolated capacitors of equal value, each  
connected between two pins.  
3.50 .50  
(.138 .020)  
39 pF - 270 pF..NPO - 50 V @ +25 °C  
>270 pF - 0.047 μF  
.508 .050  
(.020 .002)  
TYP.  
..........................X7R - 50 V @ +25 °C  
Bussed Capacitors (901 Circuit)  
2.54 .07  
(.100 .003*)  
TYP.  
NON-ACCUM.  
Physical Characteristics  
Pin  
A Maximum  
Lead Spacing............. 0.±00 ” (2.54 mm)  
Terminal Coating.......... Sn/Ag/Cu-plated  
Body Material...............Epoxy/Anhydride  
conformal material  
Count mm (Inches)  
4
5
±0.2 (.402)  
±2.7 (.500)  
±5.3 (.602)  
±7.8 (.70±)  
20.4 (.803)  
22.9 (.902)  
25.4 (±.00)  
28.0 (±.±02)  
30.5 (±.20±)  
33.± (±.303)  
35.6 (±.402)  
3.81  
MAX.  
(.150)  
6
1
14  
7
8
These models incorporate 3 to ±3  
capacitors of equal value, each  
connected between a common bus  
(Pin ±) and a separate pin.  
9
Standard High Volume Part Numbers  
±0  
±±  
±2  
±3  
±4  
.254 .10  
(.010 .039)  
46±0M-90±-±03LF  
46±0M-902-±03LF  
46±0M-90±-±04LF  
46±0M-902-±04LF  
TYP.  
Dual-Bussed Capacitors (904 Circuit)  
Typical Part Marking  
Represents total content. Layout may  
How To Order  
vary.  
46 10 M - 901 - 103 LF  
MODEL  
1
n-1 n  
CAPACITANCE  
INDICATOR  
CODE  
Model  
These models incorporate 2 to ±2  
capacitors of equal value, each  
91-101  
(46 = SIP Pkg)  
PIN ONE  
INDICATOR  
Number of Pins  
connected to a dual buss that connects  
Pin ± to the last pin.  
Profile  
(M = Standard Profile)  
Electrical Configuration  
• 90± = Bussed  
Standard Capacitance Values and Codes  
• 902 = Isolated  
• 904 = Dual-Bussed  
These are the standard and non-standard capacitance values available. Consult  
factory for capacitance values and types outside this range. Tolerances of 5 ꢀ, ±0 ꢀ  
and 20 ꢀ are available.  
Capacitance Code  
• First 2 digits are significant  
• Third digit represents the  
number of zeros to follow.  
Terminations  
“NPO” DIELECTRICS  
10 % Tolerance  
“X7R” DIELECTRICS  
20 % Tolerance  
“X7R” DIELECTRICS  
20 % Tolerance  
• LF = Lead free (Sn/Ag/Cu-plated)  
Consult factory for other available options.  
Capacitance Capacitance  
Capacitance Capacitance  
Capacitance Capacitance  
(pF)  
39  
Code  
390  
470  
560  
680  
820  
±0±  
±2±  
±5±  
±8±  
22±  
27±  
(pF)  
330  
Code  
33±  
39±  
47±  
56±  
68±  
82±  
±02  
±22  
±52  
±82  
222  
272  
332  
392  
472  
562  
682  
822  
(μF)  
0.0±  
Code  
±03  
±23  
±53  
±83  
223  
273  
333  
393  
473  
563  
683  
823  
±04  
47  
390  
0.0±2  
0.0±5  
0.0±8  
0.022  
0.027  
0.033  
0.039  
0.047  
0.056  
0.068  
0.082  
0.±  
56  
470  
68  
560  
82  
680  
±00  
±20  
±50  
±80  
220  
270  
820  
±000  
±200  
±500  
±800  
2200  
2700  
3300  
3900  
4700  
5600  
6800  
8200  
REV. ±2/±5  
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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