No. | parte # | Fabricante | Descripción | Hoja de Datos |
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Texas Instruments |
Voltage Comparator 1 •2 Operates From Single 5V Supply • Input Current: 150 nA Max. Over Temperature • Offset Current: 20 nA Max. Over Temperature • Differential Input Voltage Range: ±30V • Power Consumption: 135 mW at ±15V DESCRIPTION The LM111-N, LM211-N and LM311-N |
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ETC |
1K-Bit Serial EEPROM |
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ETC |
Hybrid Stepper Motors I High Accuracy I Low Inertia I Small Size General Specifications Bi-polar Model Number 11HS1005 11HS1006 11HS1007 11HS1008 11HS3005 11HS5005 11HS5007 11HS5008 11HS5009 Resistance Inductance Rated per Phase per Phase Current ohm mH A 40 27.8 0 |
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ETC |
Stepper Motor |
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ETC |
Hybrid Stepper Motors I High Accuracy I Low Inertia I Small Size General Specifications Bi-polar Model Number 11HS1005 11HS1006 11HS1007 11HS1008 11HS3005 11HS5005 11HS5007 11HS5008 11HS5009 Resistance Inductance Rated per Phase per Phase Current ohm mH A 40 27.8 0 |
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ETC |
High Power Low Cost Inductors AND BENEFITS • High current capability • Single layer, cost effective design • Available in two styles - horizontal and vertical APPLICATIONS • • • • Switching power supplies Motor control circuits Differential EMI filters Inductor for general purp |
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ETC |
Power Inductance |
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ETC |
Digital Linear Actuator ccurately controlled to drive 35mm movement by a 10K data pulses input. Accomplishing the conversion of rotary to linear motion inside the rotor greatly simplifies the process of delivering linear motion for many applications. Because the linear actua |
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ETC |
Hybrid Stepper Motors I High Accuracy I Low Inertia I Small Size General Specifications Bi-polar Model Number 11HS1005 11HS1006 11HS1007 11HS1008 11HS3005 11HS5005 11HS5007 11HS5008 11HS5009 Resistance Inductance Rated per Phase per Phase Current ohm mH A 40 27.8 0 |
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ETC |
Hybrid Stepper Motors I High Accuracy I Low Inertia I Small Size General Specifications Bi-polar Model Number 11HS1005 11HS1006 11HS1007 11HS1008 11HS3005 11HS5005 11HS5007 11HS5008 11HS5009 Resistance Inductance Rated per Phase per Phase Current ohm mH A 40 27.8 0 |
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ETC |
Hybrid Stepper Motors I High Accuracy I Low Inertia I Small Size General Specifications Bi-polar Model Number 11HS1005 11HS1006 11HS1007 11HS1008 11HS3005 11HS5005 11HS5007 11HS5008 11HS5009 Resistance Inductance Rated per Phase per Phase Current ohm mH A 40 27.8 0 |
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ETC |
Hybrid Stepper Motors I High Accuracy I Low Inertia I Small Size General Specifications Bi-polar Model Number 11HS1005 11HS1006 11HS1007 11HS1008 11HS3005 11HS5005 11HS5007 11HS5008 11HS5009 Resistance Inductance Rated per Phase per Phase Current ohm mH A 40 27.8 0 |
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ETC |
Hybrid Stepper Motors I High Accuracy I Low Inertia I Small Size General Specifications Bi-polar Model Number 11HS1005 11HS1006 11HS1007 11HS1008 11HS3005 11HS5005 11HS5007 11HS5008 11HS5009 Resistance Inductance Rated per Phase per Phase Current ohm mH A 40 27.8 0 |
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ETC |
Hybrid Stepper Motors I High Accuracy I Low Inertia I Small Size General Specifications Bi-polar Model Number 11HS1005 11HS1006 11HS1007 11HS1008 11HS3005 11HS5005 11HS5007 11HS5008 11HS5009 Resistance Inductance Rated per Phase per Phase Current ohm mH A 40 27.8 0 |
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ETC |
High Power Low Cost Inductors AND BENEFITS • High current capability • Single layer, cost effective design • Available in two styles - horizontal and vertical APPLICATIONS • • • • Switching power supplies Motor control circuits Differential EMI filters Inductor for general purp |
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ETC |
7mm (0.3INCH) DUAL DIGIT NUMERIC DISPLAYS l0.3 ® 7mm (0.3INCH) DUAL DIGIT NUMERIC DISPLAYS DA03-11 DC03-11 Description The Bright Red source color devices are made with Gallium Phosphide Red Light Emitting Diode. The Green source color devices are made with Gallium Phosphide Green Light E |
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ETC |
Stepper Motor |
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ETC |
Stepper Motor |
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ETC |
Power Inductance |
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ETC |
Hybrid Stepper Motors I High Accuracy I Low Inertia I Small Size General Specifications Bi-polar Model Number 11HS1005 11HS1006 11HS1007 11HS1008 11HS3005 11HS5005 11HS5007 11HS5008 11HS5009 Resistance Inductance Rated per Phase per Phase Current ohm mH A 40 27.8 0 |
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