MSK0002RH MSK | Alldatasheet

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The MSK 0002RH is a general purpose current amplifier. It is the industry wide RAD tolerant replacement for the LH0002. The device is ideal for use with an operational amplifier in a closed loop configuration to increase current output. The MSK 0002RH is designed with a symmetrical output stage that provides low output impedances to both the positive and negative portions of output pulses. The MSK 0002RH is packaged in a hermetic 8 lead low profile T0-5 header and is specified over the full military temperature range. 4707 Dey Road Liverpool, N.Y. 13088 M.S.KENNEDY CORP. (315) 701-6751 0002RH FEATURES: Total Dose Tested to 300 Krads (Si) RAD Tolerant LH0002 Replacement High Input Impedance-180KΩ Min Low Output Impedance-10Ω Max Low Harmonic Distortion DC to 30 MHz Bandwidth Slew Rate is Typically 400 V/µS Operating Range from±5V to ±20V Contact MSK for MIL-PRF-38534 Qualification Status and Appendix G (Radiation Status) DESCRIPTION: EQUIVALENT SCHEMATIC V2- V1- Input V1+ V2+ Output PIN-OUT INFORMATION High Speed D/A Conversion 30MHz Buffer Line Driver Precision Current Source TYPICAL APPLICATIONS MIL-PRF-38534 CERTIFIED Rev. A 4/071 RAD TOLERANT, HIGH SPEED, BUFFER AMPLIFIER

±10 ±9.5 ±6.3 ±11 ±6.3 ±11 0.97 ±10 ±10 0.97 0.95 0.95 0.92 ±10 V IN=0V RS=10KΩ RL=1.0KΩ VIN=1.0VRMS RS=200KΩ RL=1KΩ f=1.0KHz VIN=1.0VRMS Rs=10KΩ RL=50Ω f=1.0KHz RL=1.0KΩ f=1.0KHz RL=100Ω ±VCC=±15V f=1.0KHz VIN=3.0VPP f=1.0KHz RS=10KΩ RL=1.0KΩ VOUT=2.5VPP f=10KHz RS=100Ω RL=50Ω ±20V ±20V 600mW -55°C to +125°C -40°C to +85°C ABSOLUTE MAXIMUM RATINGS TST TLD TJ θjC Storage Temperature Range Lead Temperature Range (10 Seconds) Junction Temperature Thermal Resistance @ TC=125°C Output Devices -65°C to +150°C +300°C +175°C 55°C/W ±VCC VIN Pd Tc Unless otherwise specified ±VCC=±12VDC, RL=1KΩ . Subgroups 5 & 6 shall be tested as part of device initial characterization and after design and process changes. Parameter shall be guaranteed to the limits specified for subgroups 5 & 6 for all lots not specifically tested. Devices shall be capable of meeting the parameter, but need not be tested. Subgroup 1,4 T A=TC=+25°C Subgroup 2,5 TA=TC=+125°C Subgroup 3,6 TA=TC=-55°C Continuous operation at or above absolute maximum ratings may adversly effect the device performance and/or life cycle. Consult factory for post radiation limits. NOTES: Supply Voltage Input Voltage Power Dissipation Case Operating Temperature (MSK 0002K/H/E RH) (MSK 0002RH) ELECTRICAL SPECIFICATIONS Quiescent Current Input Current Output Offset Voltage Input Impedance Output Impedance Output Voltage Swing Voltage Gain Rise Time Parameter Test Conditions Group A Subgroup Min. Typ. Max. MSK 0002K/H/E RH Min. Typ. Max. MSK 0002RH Units 2,3 2,3 5,6 180 ±10 ±9.5 ±12 mA KΩ Ω Vp Vp nS ±15 ±20 ±30 ±30 µA µA mV mV V/V V/V ±20 ±35 RS=10KΩ RL=1.0KΩ RS=300Ω RL=1.0KΩ Rev. A 4/07

To determine if a heat sink is necessary for your application and if so, what type, refer to the thermal model and governing equation below. R Θ SA = ((TJ - TA)/PD) - (RΘ JC) - (RΘ CS) = 125 - 55.15 = 69.9°C/W This heat sink in this example must have a thermal resistance of no more than 69.9°C/W to maintain a junction temperature of no more than +125°C. T J=PD X (RΘ JC +RΘ CS +RΘ SA) +TA Where TJ=Junction Temperature PD=Total Power Dissipation R Θ JC=Junction to Case Thermal Resistance RΘ CS=Heat Sink to Ambient Thermal Resistance TC=Case Temperature TA=Ambient Temperature TS=Sink Temperature Thermal Model: Governing Equation: Example: This example demonstrates a worst case analysis for the buffer output stage. This occurs when the output voltage is 1/2 the power supply voltage. Under this condition, maximum power transfer occurs and the output is under maximum stress. Conditions: VCC= ±12VDC Vo= ±6Vp Sine Wave, Freq. = 1KHz RL= 100Ω For a worst case analysis we will treat the ±6Vp sine wave as an 6 VDC output voltage. 1.) Find Driver Power Dissipation PD= (Vcc-Vo) (Vo/R = 360mW 2.) For conservative design, set T J=+125°C Max. 3.) For this example, worst case TA=+80°C 4.) RΘ JC = 55° C/W from MSK 0002RH Data Sheet 5.) RΘ CS = 0.15° C/W for most thermal greases 6.) Rearrange governing equation to solve for RΘ SA Typical Applications: Rev. A 4/07

TYPICAL PERFORMANCE CURVES 4 Rev. A 4/07

5 Rev. A 4/07 NOTE: All radiation curve test conditions are in accordance with the electrical specifications table (page 2). See RAD report for bias and dose rate.

RADIATION CURVES CONT'D 6 Rev. A 4/07 NOTE: All radiation curve test conditions are in accordance with the electrical specifications table (page 2). See RAD report for bias and dose rate.

ORDERING INFORMATION

The information contained herein is believed to be accurate at the time of printing. MSK reserves the right to make changes to its products or specifications without notice, however, and assumes no liability for the use of its products. Please visit our website for the most recent revision of this datasheet. Contact MSK for MIL-PRF-38534 qualification status and Appendix G (radiation status) MECHANICAL SPECIFICATIONS M.S. Kennedy Corp.

4707 Dey Road, Liverpool, New York 13088

Phone (315) 701-6751 FAX (315) 701-6752 www.mskennedy.com Part Number ALL DIMENSIONS ARE ±0.010 INCHES UNLESS OTHERWISE LABELED Industrial Extended Reliability MIL-PRF-38534 Class H MIL-PRF-38534 Class K WEIGHT=1 GRAM TYPICAL Rev. A 4/07