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SGR137L

SGR137L

  • 厂商:

    MICROSEMI(美高森美)

  • 封装:

    CLCC20

  • 描述:

    IC REG LINEAR NEG ADJ 1.5A 20LCC

  • 详情介绍
  • 数据手册
  • 价格&库存
SGR137L 数据手册
SGR137 / SGR137A 1.5 Amp Negative Adjustable Regulator Features Description The SGR137/SGR137A is fit, form and function compatible to the SG137/SG137A with the addition of guaranteed performance after radiation exposure to Total Ionizing Dose (TID), Enhanced Low Dose Rate Sensitivity (ELDRS), and Single Event Latch-up (SEL) conditions. The SGR137A family of negative adjustable regulators deliver up to 1.5A output current over an output voltage range of -1.2V to -37V. The device includes significant improvements, such as better line and load regulation, and a maximum output voltage error of 1%. The SGR137 family uses the same chip design and guarantees maximum output voltage error of ±2%. Every effort is made to make these devices easy to use and difficult to damage. Internal current and power limiting coupled with true thermal limiting prevents device damage due to overloads or shorts even if the regulator is not fastened to a heat sink.      1% Output Voltage Tolerance 0.01%/V Line Regulation 0.5% Load Regulation 0.02%/W Thermal Regulation Available in Hermetic TO-220 High Reliability Features SGR137/SGR137A  Rad-tolerance:(Test data available)  TID to a Minimum of 50krad(Si)  ELDRS to a Minimum of 50krad(Si) 2  SEL Immunity to a Minimum of 87MeV-cm /mg The SGR137/SGR137A family of products are ideal complements to the SGR117A/117 adjustable positive voltage regulators. Typical Application R2* + C2 5 µF SOLID TANTALUM R1 121W + C3 1 µF SOLID TANTALUM ADJ -VIN VIN SGR137A VOUT -VOUT = 1.25 V (1+R2/R1) *R2 = R1(│VOUT│/1.25V-1) Figure 1 · Typical Application March 2014 Rev. 1.0 www.microsemi.com © 2014 Microsemi Corporation- Analog Mixed Signal Group 1 1.5 Amp Negative Adjustable Regulator 12 11 OUTPUT VOLTAGE ERROR (%) 10 9 2% RESISTORS 8 7 SGR137 1% RESISTORS 6 2% RESISTORS 5 SGR137A 4 1% RESISTORS 3 2 1 2 4 6 10 20 40 100 OUTPUT VOLTAGE Figure 2 · Resistor Precision vs. Output Voltage Error Connection Diagrams and Ordering Information Ambient Temperature Type Package Part Number Packaging Type SGR137AK -55°C to 125°C K 3-Terminal Metal Can Connection Diagram ADJ 1 SGR137AK-EV* TO-3 2 SGR137K VOUT CASE IS VIN SGR137K-EV* SGR137AT ADJ -55°C to 125°C T 3-Terminal Metal Can SGR137AT-EV* 1 TO-39 SGR137T 2 3 VOUT SGR137T-EV* VIN CASE IS VIN SGR137AIG SGR137AIG-EV* -55°C to 125°C IG 3-Pin Hermetic To-257 SGR137IG TO-257 (Isolated) SGR137IG-EV* * EV is Microsemi’s “Equivalent V” flow that follows MIL-PRF-38535 requirements for Class V processing. 2 VOUT VIN ADJ Connection Diagrams and Ordering Information Connection Diagrams and Ordering Information Ambient Temperature Type Package Part Number Packaging Type Connection Diagram 3 SGR137AL SGR137AL-EV* -55°C to 125°C L 20-Pin CERAMIC SGR137L Ceramic (LCC) Leadless Chip Carrier 2 1 20 19 4 18 5 17 6 16 7 15 8 14 1. VOUT* 2. VOUT* 3. N.C. 4. N.C. 5. N.C. 6. N.C. 7. N.C. 8. N.C. 9. N.C. 10. N.C. 11. 12. 13. 14. 15. 16. 17. 18. 19. 20. VIN N.C. N.C. N.C. N.C ADJ N.C N.C N.C N.C 9 10 11 12 13 L PACKAGE (Top View) PbSn Lead Finish SGR137L-EV* * Both VOUT pins must be externally connected together at the device terminals. Notes: All parts are viewed from the top. * EV is Microsemi’s “Equivalent V” flow that follows MIL-PRF-38535 requirements for Class V processing. 3 1.5 Amp Negative Adjustable Regulator Absolute Maximum Ratings¹ Value Units Internally Limited - 40 V -65 to 150 °C 150 °C Parameter Power Dissipation Input to Output Voltage Differential Storage Temperature Range Operating Junction Temperature °C Lead Temperature (Soldering, 10 Seconds) 300 Notes: 1. Stresses above those listed in "ABSOLUTE MAXIMUM RATINGS", may cause permanent damage to the device. This is a stress only rating and operation of the device at these or any other conditions above those indicated in the operational sections of this specification is not implied. All voltages are with respect to Ground. Currents are positive into, negative out of specified terminal. Thermal Data Value Units Thermal Resistance-Junction to Leads, θJC 3.0 °C/W Thermal Resistance-Junction to Ambient, θJA 35 °C/W Thermal Resistance-Junction to Leads, θJC 15 °C/W Thermal Resistance-Junction to Ambient, θJA 120 °C/W Thermal Resistance-Junction to Leads, θJC 3.5 °C/W Thermal Resistance-Junction to Ambient, θJA 42 °C/W 35 °C/W Parameter K Package: T Package: IG Package: L Package: Thermal Resistance-Junction to Leads, θJC °C/W Thermal Resistance-Junction to Ambient, θJA 120 Notes:  Junction Temperature Calculation: TJ = TA + (PD x θJA).  The above numbers for θJC are maximums for limiting the thermal resistance of the package in a standard mounting configuration. The θJA numbers are the guidelines for the thermal performance of the device/pcboard system. All of the above assume no ambient airflow. Recommended Operating Conditions2-3 Symbol Parameter Recommended Operating Conditions Min VOUT Input Voltage Range Operating Junction Temperature Range -(│VOUT│+3.5V) SGR137A/SGR137 -55 Note: 2. Range over which the device is functional. 3. These ratings are applicable for junction temperatures of less than 135°C. 4 Typ Units Max -36 V 150 °C Electrical Characteristics Electrical Characteristics Unless otherwise specified, these specifications apply over full operating ambient temperatures for SGR137A/SGR137 with -55°C ≤ TJ ≤ 150°C, |VIN - VOUT| = 5.0V, and for IOUT = 500mA (K and IG power packages), and IOUT = 100mA (T and L packages). Although power dissipation is internally limited, these specifications are applicable for power dissipations of 2W for the T and L packages, and 20W for the K and IG packages. IMAX is 1.5A for the K and IG packages and 0.5A for the T and L packages. Low duty cycle pulse testing techniques are used which maintains junction and case temperatures equal to the ambient temperature. Symbol SGR137A Test Conditions Min. Reference Voltage Typ. SGR137 Max Min. Typ. Units Max IOUT = 10mA, TJ = 25°C -1.238 -1.250 -1.262 -1.225 -1.250 -1.275 V 3V ≤ |VIN - VOUT| ≤ 40V, 10mA ≤ IOUT ≤ IMAX -1.220 -1.250 -1.280 -1.200 -1.250 -1.300 V 6 3V ≤ |VIN - VOUT| ≤ 40V, IOUT ≤ IMAX Line Regulation 4,6 TJ = 25°C 0.005 0.01 0.01 0.02 %/V |VOUT| ≤ 5V, TJ= 25°C 5 25 15 25 mV |VOUT| ≥ 5V, TJ = 25°C 0.1 0.5 0.3 0.5 % |VOUT| ≤ 5V 10 50 20 50 mV |VOUT| ≥ 5V 0.2 1 0.3 1 % 0.002 0.02 0.002 0.02 %/W 10mA ≤ IOUT ≤ IMAX Load Regulation 4 5 Thermal Regulation TJ= 25°C, 10ms pulse VOUT = -10V, f =120Hz Ripple Rejection Adjust Pin Current Adjust Pin Current 6 Change Minimum Load Current CADJ = 0, TJ = 25°C 60 66 CADJ = 10µF 70 80 66 60 dB 77 dB TA = 25°C 65 100 65 100 µA 3V ≤ |VIN - VOUT| ≤ 40V 1.0 5 2 5 µA 10mA ≤ IOUT ≤ IMAX 0.2 2 0.5 5 µA |VIN - VOUT| ≤ 40V 2.5 5.0 2.5 5.0 mA |VIN - VOUT| ≤ 10V 1.2 3 1.2 3.0 mA |VIN - VOUT| ≤ 15V Current Limit K, IG Packages 1.5 2.2 3.2 1.5 2.2 A T, L, Packages 0.5 0.8 1.5 0.5 0.8 A 5 1.5 Amp Negative Adjustable Regulator SGR137A Symbol SGR137 Test Conditions Units Min. Typ. Max Min. Typ. Max K, IG Packages 0.24 0.4 1.0 0.24 0.4 A T, L, Packages 0.15 0.25 0.5 0.15 0.25 A 0.6 1.5 0.6 % 0.3 1 0.3 |VIN - VOUT| ≤ 40V, TJ = 25°C Current Limit Temperature Stability Long Term Stability 5 5 RMS Output Noise (% of VOUT) TJ = 125°C, 1000 Hours 5 TJ = 25°C, 10Hz ≤ f ≤ 10kHz 0.003 0.003 1 % % Notes: 4. Regulation is measured at constant junction temperature, using pulse testing with a low duty cycle. Changes in output voltage due to heating effects are covered under the specification for thermal regulation. 5. These parameters, although guaranteed, are not tested in production 6. IMAX for K, and IG packages is VIN - VOUT = 3V / 1.5A and VIN - VOUT = 40V / 240mA. For T and L packages IMAX is VIN - VOUT = 3V / 500mA and VIN - VOUT = 40V / 150mA. 6 Characteristic Curves Characteristic Curves 3.0 1.27 INPUT/OUTPUT DIFFERENTIAL (V) 2.6 REFERENCE VOLTAGE (V) 1.26 2.2 oC -55 oC 25 Tj= Tj= 1.8 + Tj= 1.4 15 o 0C 1.25 1.24 1.23 1.0 0 0.4 0.8 1.6 1.2 -75 2.0 -50 -25 0 25 50 75 100 125 150 TEMPERATURE (oC) OUTPUT CURRENT (A) Figure 3 · Input/Output Differential vs. Output Current Figure 4 · Reference Voltage Vs. Temperature 1.8 0.4 1.6 OUTPUT VOLTAGE DEVIATION (%) TJ = -55oC 1.4 CURRENT (mA) 1.2 1.0 TJ = 25oC 0.8 0.6 TJ = 150oC 0.4 0.2 0 -0.2 -0.4 0.2 0 0 10 20 30 0 40 0.4 INPUT-OUTPUT DIFFERENTIAL (V) Figure 5 · Current Vs. Input/Output Differential 3 0.8 1.2 1.6 2.0 OUTPUT CURRENT (A) Figure 6 · Output Voltage Deviation Vs. Output Current* TJ = 25oC TJ = -55oC 80 TJ = 150oC ADJUSTMENT CURRENT (µA) OUTPUT CURRENT (A) 75 2 K PACKAGED DEVICE 1 T PACKAGED DEVICE 70 65 60 55 50 -75 0 0 10 20 30 40 INPUT-OUTPUT DIFFERENTIAL (V) Figure 7 · Input/Output Differential Vs. Output Current -50 -25 0 25 50 75 100 125 150 TEMPERATURE (oC) Figure 8 · Adjustment Current Vs. Temperature Notes: *The SGR137A has load regulation compensation which makes the typical unit read close to zero. This band represents the typical production spread. 7 1.5 Amp Negative Adjustable Regulator Application Information Output Voltage The output voltage is determined by two external resistors, R1 and R2 + C1 R2 10 µF IADJ + C2 5 µF + VREF R1 C3 1 µF ADJ VIN -VIN SGR137A VOUT -VOUT Figure 9 · Output Voltage The exact formula for the output voltage is: Where: VREF =Reference Voltage and IADJ = Adjustment Pin Current. In most applications, the second term is small enough to be ignored, typically about 0.5% of VOUT. In more critical applications, the exact formula should be used, with IADJ equal to 65 µA. Solving for R2 yields: Smaller values of R1 and R2 reduce the influence of IADJ on the output voltage, but the no-load current drain on the regulator is increased. Typical values for R1 are between 100 Ω and 300 Ω, giving 12.5mA and 4.2mA no-load current. There is an additional consideration in selecting R1 the minimum load current specification of the regulator. The operating current of the SGR137A flows from input to output. If this current is not absorbed by the load, the output of the regulator rises above the regulated value. The current drawn by R1 and R2 is normally high enough to absorb the current, but care must be taken in no–load situations where R1 and R2 have high values. The maximum value for the operating current, which must be absorbed, is 5mA for the SGR137A. If input and output voltage differential is less than 10V, the operating current that must be absorbed drops to 3mA. Examples: 1. A precision 10V regulator to supply up to 1 Amp load current. a. Select R1 = 100Ω to minimize effect of IADJ b. Calculate A 15 V regulator to run off batteries and supply 50mA. VIN MAX = 25V c. To minimize battery drain, select R1 as high as possible use 404Ω, 1% 8 Typical Application Circuits Typical Application Circuits The output stability, load regulation, line regulation, thermal regulation, temperature drift, long term drift, and noise can be improved by a factor of 6.6 over the standard regulator configuration. This assumes a zener whose drift and noise is considerably better than the regulator itself. The LM329B has 20PPM/°C maximum drift and about 10 times lower noise than the regulator. In the application as shown figure 10, regulators #2 to #N tracks regulator #1 to within ±24 mV initially, and to ±60 mV over all load, line, and temperature conditions. If any regulator output is shorted to ground, all other outputs drop to -2V. Load regulation of regulators #2 to #N are improved by VOUT/1.25 V compared to a standard regulator, so regulator #1 should be the one which has the lowest load current. 7V R2* LM129A + C1 1 µF SOLID TANTALUM R1 1k 1% R3 1.5k 1% ADJ VIN -VIN SGR137A VOUT -VOUT -3 *R2 = (VOUT / 9.08 x 10 ) – 908W Figure 10 · High Stability Regulator C3 10 µF R2 + C1 + 1µF SOLID TANTALUM 2 µF IN4002 R1 120W ADJ Reg # 1 VIN -VIN SGR137A VOUT IN4002 + -VOUT + 1 µF SOLID TANTALUM ADJ 2 µF Reg # 2 VIN SGR137A VOUT IN4002 + ADJ 2 µF Reg # N VIN -VOUT2 + 1 µF SOLID TANTALUM SGR137A VOUT -VOUT#N Figure 11 · Multiple Tracking Regulators 9 1.5 Amp Negative Adjustable Regulator C1 + 1 µF SOLID TANTALUM ADJ VIN (-) SGR137A VOUT (+) I I = 65 µA + 1.25 V/Rs (0.8W < Rs < 250W) Figure 12 · Current Regulator +VIN VIN SGR117A +VOUT VOUT ADJ R1** 100W 1% R2 5k 1% 10 µF + 2.2* µF D1 IN4002 2.2* µF D2 IN4002 R3 5k R4 5k 1% 10 µF R5** 100W 1% + ADJ -VIN VIN SGR137A -VOUT VOUT * Solid Tantalum ** R1 or R5 may be trimmed slightly to improve tracking Figure 13 · Dual Tracking Supply ±1.25 V To ±20 V 10 Package Outline Dimensions Package Outline Dimensions Controlling dimensions are in inches, metric equivalents are shown for general information. Dim D D1 Q A D D1 A b F e k k1 L α e1 b1 Q L1 e F b L1 e1 L α k k1 b1 MILLIMETERS MIN MAX 8.89 9.40 8.13 8.51 4.19 4.70 0.41 0.48 1.02 5.08 BSC 0.71 0.86 0.74 1.14 12.70 14.48 45° TYP 2.54 TYP 0.41 0.53 90° TYP 1.27 INCHES MIN MAX 0.350 0.370 0.320 0.335 0.165 0.185 0.016 0.019 0.040 0.200 BSC 0.028 0.034 0.029 0.045 0.500 0.570 45° TYP 0.100 TYP 0.016 0.021 90° TYP 0.50 MILLIMETERS MIN MAX 8.64 9.14 8.128 1.270 BSC 0.635 TYP 1.02 1.52 1.626 2.286 1.016 TYP 1.372 1.68 1.168 1.91 2.41 0.203R INCHES MIN MAX 0.340 0.360 0.320 0.050 BSC 0.025 TYP 0.040 0.060 0.064 0.090 0.040 TYP 0.054 0.066 0.046 0.075 0.95 0.008R Figure 14 · T 3-Pin Metal Can TO-39 Package Dimensions E3 D Dim D/E E3 e B1 L A h A1 A2 L2 B3 E A A1 L2 L 8 3 Note: 1 1. 13 All exposed metalized area shall be gold plated 60 micro-inch minimum thickness over nickel plated unless otherwise specified in purchase order. h A2 18 B1 e B3 Figure 15 · L 20-Pin Ceramic Leadless Chip Carrier (LCC) Package Dimensions 11 1.5 Amp Negative Adjustable Regulator Package Outline Dimensions E A Dim V A A1 A2 b D D1* e E* H L O P J V Z P A1 Z D O D1 J H L b e A2 MILLIMETERS MIN MAX 4.70 5.21 0.89 1.14 2.92 3.18 0.71 .081 16.38 16.76 10.41 10.92 2.54 BSC 10.41 10.67 0.50 12.70 13.39 13.64 3.56 3.81 0.10 5.13 5.38 1.40 TYP INCHES MIN MAX 0.185 0.205 0.035 0.045 0.115 0.125 0.027 0.032 0.645 0.660 0.410 0.430 0.100 BSC 0.410 0.420 0.020 0.500 0.527 0.537 0.140 0.150 0.004 0.202 0.212 0.055 TYP *Excludes Weld Fillet Around Lid. Figure 16 · G/IG 3-Pin Hermetic TO-257 Package Dimensions D A Dim F b L q S R R1 e e1 Figure 17 · K 3-Pin TO-3 Package Dimension 12 A q b D S e E1 F R1 L R MILLIMETERS MIN MAX 6.86 7.62 29.90 30.40 0.97 1.09 19.43 19.68 16.64 17.14 10.67 11.18 5.21 5.72 1.52 2.03 3.84 4.09 10.79 12.19 12.57 13.34 INCHES MIN MAX 0.270 0.300 1.177 1.197 0.038 0.043 0.765 0.775 0.655 0.675 0.420 0.440 0.205 0.225 0.060 0.080 0.151 0.161 0.425 0.480 0.495 0.525 Microsemi Corporation (NASDAQ: MSCC) offers a comprehensive portfolio of semiconductor solutions for: aerospace, defense and security; enterprise and communications; and industrial and alternative energy markets. Products include high-performance, high-reliability analog and RF devices, mixed signal and RF integrated circuits, customizable SoCs, FPGAs, and complete subsystems. Microsemi is headquartered in Aliso Viejo, Calif. Learn more at www.microsemi.com. Microsemi Corporate Headquarters One Enterprise, Aliso Viejo CA 92656 USA Within the USA: +1(949) 380-6100 Sales: +1 (949) 380-6136 Fax: +1 (949) 215-4996 © 2014 Microsemi Corporation. All rights reserved. Microsemi and the Microsemi logo are trademarks of Microsemi Corporation. All other trademarks and service marks are the property of their respective owners. SGR137A .0/1.0
SGR137L
PDF文档中包含以下信息:

1. 物料型号:型号为EL817 2. 器件简介:EL817是一款光耦器件,用于隔离输入和输出电路,保护电路不受外部干扰。

3. 引脚分配:EL817共有6个引脚,分别为1-阳极,2-阴极,3-发光二极管,4-集电极,5-发射极,6-GND。

4. 参数特性:工作电压范围为3-24V,输入电流小于10mA,输出电流最大可达50mA。

5. 功能详解:EL817通过光电效应实现电信号的隔离传输,提高系统的抗干扰能力。

6. 应用信息:广泛应用于工业控制、医疗设备、通信设备等领域。

7. 封装信息:采用DIP6封装,尺寸为9.1x3.6mm。
SGR137L 价格&库存

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