1PMT5313 [MICROSEMI]

Current Regulator Diode, 4.3mA I(S), 2.75V V(L), Silicon, DO-216AA, DO-216, 2 PIN;
1PMT5313
型号: 1PMT5313
厂家: Microsemi    Microsemi
描述:

Current Regulator Diode, 4.3mA I(S), 2.75V V(L), Silicon, DO-216AA, DO-216, 2 PIN

二极管
文件: 总3页 (文件大小:83K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
1PMT5283  
thru  
1PMT5314  
8700 E. Thomas Road  
Scottsdale, AZ 85251  
Tel: (480) 941-6300  
Fax (480) 947-1503  
FEATURES:  
CURRENT REGULATOR DIODES  
·
·
·
·
·
·
·
Surface-mount equivalent to 1N5283 thru 1N5314 series  
Popular Microsemi Powermiteâ surface-mount package  
Nominal current regulation from 0.22 and 4.70 mA  
Broad operating voltage  
Constructed with an Oxide Passivated All Diffused Die  
Full metallic bottom eliminates flux entrapment  
Integral Heat Sink Locking Tabs for excellent thermal dissipation and improved  
current regulation  
MAXIMUM RATINGS:  
·
·
·
·
Operating and Storage Temperature: -55°C to +150°C  
D0-216  
DC Power Dissipation: 600mW @ T 135°C  
L
Power Derating: 40mW/°C @ T > 135°C  
L
Peak operating voltage: 100 Volts  
MECHANICAL CHARACTERISTICS  
·
·
·
·
·
·
Terminals: Leads tin plated  
Thermal resistance: 30°C/W junction to Tab 1  
Polarity: Cathode indicated by a band  
Packaging: Tape and Reel (EIA Standard RS-481)  
Weight 0.016 gram  
Mounting position any way  
PACKAGING  
·
·
·
Tape and Reel Standard 481  
7 inch Reel 3,000 Pieces  
13 inch Reel 12,000 Pieces  
TYPICAL CURRENT REGULATOR CHARACTERISTICS  
5.0  
All dimensions +/- .005 inches/0.127mm  
ZK @ VK  
IP & ZS  
4.0  
3.0  
2.0  
1.0  
0
POV  
VL @ IL  
-20  
-40  
-60  
Reverse  
Forward  
-80  
Anode  
80  
Cathode  
-100  
-2.0 -1.0  
0
20  
40  
60  
90  
100 120 140  
Mounting Pad Dimensions in Inches  
VAK – ANODE CATHODE VOLTAGE (VOLTS)  
ISO 9001 CERTIFIED  
REV D 11/01/99  
IPMT5283 thru IPMT5314  
Electrical Characteristics @ TL=30°C  
MINIMUM  
MINIMUM  
KNEE  
IMPEDANCE  
@VK = 6.0V  
ZK(M )  
MAXIMUM  
LIMITING  
VOLTAGE  
REGULATOR  
CURRENT  
DYNAMIC  
IMPEDANCE  
@VS=25v  
ZS (M )  
PART  
IP(mA)@ VS = 25V  
NUMBER  
@IL = 0.8 IP (min)  
VL (VOLTS)  
(NOTE 1)  
(NOTE 2)  
NOM  
MIN  
0.198  
0.216  
0.243  
0.270  
0.297  
0.351  
0.387  
0.423  
0.504  
0.558  
0.612  
0.675  
0.738  
0.819  
0.900  
0.990  
1.06  
MAX  
1PMT5283  
1PMT5284  
1PMT5285  
1PMT5286  
1PMT5287  
1PMT5288  
1PMT5289  
1PMT5290  
1PMT5291  
1PMT5292  
1PMT5293  
1PMT5294  
1PMT5295  
1PMT5296  
1PMT5297  
1PMT5298  
1PMT5299  
1PMT5300  
1PMT5301  
1PMT5302  
1PMT5303  
1PMT5304  
1PMT5305  
1PMT5306  
1PMT5307  
1PMT5308  
1PMT5309  
1PMT5310  
1PMT5311  
1PMT5312  
1PMT5313  
1PMT5314  
0.22  
0.24  
0.27  
0.30  
0.33  
0.39  
0.43  
0.47  
0.56  
0.62  
0.68  
0.75  
0.82  
0.91  
1.00  
1.10  
1.20  
1.30  
1.40  
1.50  
1.60  
1.80  
2.00  
2.20  
2.40  
2.70  
3.00  
3.30  
3.60  
3.90  
4.30  
4.70  
0.242  
0.264  
0.297  
0.330  
0.363  
0.429  
0.473  
0.517  
0.616  
0.682  
0.748  
0.825  
0.902  
1.001  
1.100  
1.210  
1.32  
25.0  
19.0  
2.75  
2.35  
1.00  
1.00  
1.00  
1.00  
1.00  
1.05  
1.05  
1.05  
1.10  
1.13  
1.15  
1.20  
1.25  
1.29  
1.35  
1.40  
1.45  
1.50  
1.55  
1.60  
1.65  
1.75  
1.85  
1.95  
2.00  
2.15  
2.25  
2.35  
2.50  
2.60  
2.75  
2.90  
14.0  
1.95  
9.0  
1.60  
6.6  
1.35  
4.10  
1.00  
3.30  
0.870  
0.750  
0.560  
0.470  
0.400  
0.335  
0.290  
0.240  
0.205  
0.180  
0.155  
0.135  
0.115  
0.105  
0.092  
0.074  
0.061  
0.052  
0.044  
0.035  
0.029  
0.024  
0.020  
0.017  
0.014  
0.012  
2.70  
1.90  
1.55  
1.35  
1.15  
1.00  
0.880  
0.800  
0.700  
0.640  
0.580  
O.540  
0.510  
0.475  
0.420  
0.395  
0.370  
0.345  
0.320  
0.300  
0.280  
0.265  
0.255  
0.245  
0.235  
1.17  
1.43  
1.26  
1.54  
1.35  
1.65  
1.44  
1.76  
1.62  
1.98  
1.80  
2.20  
1.98  
2.42  
2.16  
2.64  
2.43  
2.97  
2.70  
3.30  
2.97  
3.63  
3.24  
3.96  
3.51  
4.29  
3.87  
4.73  
4.23  
5.17  
NOTE 1: ZS is measured by superimposing a 90 Hz rms signal to 10% of VS on VS.  
NOTE 2: ZK is derived by superimposing a 90 Hz rms signal to 10% of VK on VK.  
ISO 9001 CERTIFIED  
REV D 11/01/99  
IPMT5283 thru IPMT5314  
Typical Forward Characteristics  
10  
7
TJ = 25°C  
5
3
VSM = 100V  
(DATA  
OBTAINED  
FROM PULSE  
TESTING)  
1PMT5313  
1PMT5309  
1PMT5305  
2
1
1PMT5298  
1PMT5290  
0.7  
0.5  
0.1  
0.2  
0.3  
0.5  
0.7  
1.0  
2.0  
3.0  
5.0  
7.0 10.0  
20  
30  
50  
70 100  
VAK ANODE- CATHODE VOLTAGE (VOLTS)  
Temperature Coefficient  
0.7  
0.6  
0.5  
TJ = +25°C to +150°C  
VAK = 25V  
Ä IP = a ISIP(Nom) ÄTJ/100  
0.4  
0.3  
0.2  
0.1  
Range  
Typical  
0
-0.1  
-0.2  
-0.3  
0.2  
0.3  
0.4  
0.5  
0.7  
1.0  
2.0  
3.0  
4.0  
5.0  
IP NOMINAL PINCH-OFF CURRENT (mA)  
Temperature Coefficient  
1.0  
0.8  
TJ = -55°C to +25°C  
VAK = 25V  
Ä IP = a ISIP(Nom) ÄTJ /100  
0.6  
0.4  
0.2  
0
Range  
Typica  
-0.2  
-0.4  
-0.6  
-0.8  
0.2  
0.3  
0.4  
0.5  
0.7  
1.0  
2.0  
3.0  
4.0  
5.0  
I
P
NOMINAL PINCH-OFF CURRENT (mA)  
SYMBOLS AND DEFINITIONS  
ID  
a IS  
Ip  
POV  
VK  
VL  
VS  
ZK  
Diode Current  
Current Temperature Coefficient.  
Pinch-off Current: Regulator current at specified Test Voltage, VS. IP is some times identified as IS  
Peak Operating Voltage: Maximum voltage to be applied to the device.  
Knee Impedance test voltage: Specified voltage used to establish Knee Impedance  
Limiting Voltage: Measured at IL, VL, together with Knee ac Impedance, ZK, indicates the Knee characteristic of the device  
TEST VOLTAGE: Voltage at which IP and ZS are specified  
Knee ac impedance at Test Voltage: To test ZK a 90Hz signal VK with rms value equal to 10% of test voltage VK is superimposed on VK:  
ZK = VK/iK where iK is the resultant ac current due to vK. To provide the most constant current from the diode, ZK should be as high as  
possible, therefore, a minimum value of ZK is specified.  
IL Limiting Current 80% of IP minimum used to determine Limiting Voltage, VL  
VAK anode to cathode Voltage  
ZS  
AC Impedance at Test Voltage: Specified as a minimum value. To test for ZS, a 90 Hz signal VS with rms value equal to 10% of test  
voltage, VS is superimposed on VS: ZS = vS/iS where iS is the current due to vS.  
ISO 9001 CERTIFIED  
REV D 11/01/99  

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