Part Details for LTC1922EG-1#PBF by Analog Devices Inc
Results Overview of LTC1922EG-1#PBF by Analog Devices Inc
- Distributor Offerings: (6 listings)
- Number of FFF Equivalents: (0 replacements)
- Tariff Estimator: (Available) NEW
- Number of Functional Equivalents: (2 options)
- CAD Models: (Available)
- Part Data Attributes: (Available)
- Reference Designs: (Not Available)
Tip: Data for a part may vary between manufacturers. You can filter for manufacturers on the top of the page next to the part image and part number.
LTC1922EG-1#PBF Information
LTC1922EG-1#PBF by Analog Devices Inc is a Switching Regulator or Controller.
Switching Regulator or Controllers are under the broader part category of Power Circuits.
A power circuit delivers electricity in order to operate a load for an electronic device. Power circuits include transformers, generators and switches. Read more about Power Circuits on our Power Circuits part category page.
Price & Stock for LTC1922EG-1#PBF
| Part # | Distributor | Description | Stock | Price | Buy | |
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DISTI #
LTC1922EG-1#PBF-ND
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DigiKey | IC REG CTRLR FULL-BRIDGE 20SSOP Min Qty: 1 Lead time: 10 Weeks Container: Tube |
25 In Stock |
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$9.3386 / $15.0000 | Buy Now |
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DISTI #
584-LTC1922EG-1#PBF
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Mouser Electronics | Switching Controllers Sync PhModulated Full-Bridge Cntr RoHS: Compliant | 31 |
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$8.6100 / $16.0800 | Buy Now |
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Analog Devices Inc | Sync PhModulated Full-Bridge C Package Multiple: 66 | 8387 |
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$6.8900 / $16.0800 | Buy Now |
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Rochester Electronics | Switching Controller, Voltage-mode, 1000kHz Switching Freq-Max, CMOS, PDSO20 RoHS: Compliant Status: Active Min Qty: 1 | 25 |
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$7.2600 / $9.0700 | Buy Now |
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DISTI #
LTC1922EG-1PBF
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TME | PMIC, DC/DC converter, Uin: 3.8÷10.3VDC, Uout: 5VDC, 40A, SSOP20 Min Qty: 1 | 0 |
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$9.3100 / $12.3000 | RFQ |
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DISTI #
LTC1922EG-1#PBF
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Richardson RFPD | POWER MANAGEMENT IC RoHS: Compliant Min Qty: 66 | 0 |
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$8.8900 / $10.3300 | Buy Now |
US Tariff Estimator: LTC1922EG-1#PBF by Analog Devices Inc
Calculations from this tool are estimations only for imports into the United States. Please refer to the distributor or manufacturer and reference official US government sources and authorities to verify any final purchase costs.
Part Details for LTC1922EG-1#PBF
LTC1922EG-1#PBF CAD Models
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LTC1922EG-1#PBF Part Data Attributes
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LTC1922EG-1#PBF
Analog Devices Inc
Buy Now
Datasheet
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LTC1922EG-1#PBF
Analog Devices Inc
Switching Controller, Voltage-mode, 1000kHz Switching Freq-Max, CMOS, PDSO20
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| Pbfree Code | No | |
| Rohs Code | Yes | |
| Part Life Cycle Code | Active | |
| Package Description | Ssop, | |
| Pin Count | 20 | |
| Manufacturer Package Code | 05-08-1640 (G20) | |
| Reach Compliance Code | Compliant | |
| ECCN Code | EAR99 | |
| HTS Code | 8542.39.00.01 | |
| Additional Feature | Also Configurable In Current Mode | |
| Analog IC - Other Type | Switching Controller | |
| Control Mode | Voltage-Mode | |
| Control Technique | Phase-Shift Control | |
| Input Voltage-Max | 9.5 V | |
| Input Voltage-Min | 6.5 V | |
| Input Voltage-Nom | 9.5 V | |
| JESD-30 Code | R-PDSO-G20 | |
| JESD-609 Code | e3 | |
| Length | 7.2 Mm | |
| Moisture Sensitivity Level | 1 | |
| Number of Functions | 1 | |
| Number of Terminals | 20 | |
| Operating Temperature-Max | 85 °C | |
| Operating Temperature-Min | -40 °C | |
| Package Body Material | Plastic/Epoxy | |
| Package Code | SSOP | |
| Package Shape | Rectangular | |
| Package Style | Small Outline, Shrink Pitch | |
| Peak Reflow Temperature (Cel) | 260 | |
| Qualification Status | Not Qualified | |
| Seated Height-Max | 2 Mm | |
| Supply Current-Max (Isup) | 7 Ma | |
| Surface Mount | Yes | |
| Switcher Configuration | Phase-Shift | |
| Switching Frequency-Max | 1000 Khz | |
| Technology | Cmos | |
| Temperature Grade | Industrial | |
| Terminal Finish | Matte Tin (Sn) | |
| Terminal Form | Gull Wing | |
| Terminal Pitch | 0.65 Mm | |
| Terminal Position | Dual | |
| Time@Peak Reflow Temperature-Max (s) | 30 | |
| Width | 5.3 Mm |
Alternate Parts for LTC1922EG-1#PBF
This table gives cross-reference parts and alternative options found for LTC1922EG-1#PBF. The Form Fit Function (FFF) tab will give you the options that are more likely to serve as direct pin-to-pin alternates or drop-in parts. The Functional Equivalents tab will give you options that are likely to match the same function of LTC1922EG-1#PBF, but it may not fit your design. Always verify details of parts you are evaluating, as these parts are offered as suggestions for what you are looking for and are not guaranteed.
| Part Number | Manufacturer | Composite Price | Description | Compare |
|---|---|---|---|---|
| LTC1922EG-1#TRPBF | Analog Devices Inc | Check for Price | Switching Controller, Voltage-mode, 1000kHz Switching Freq-Max, CMOS, PDSO20 | LTC1922EG-1#PBF vs LTC1922EG-1#TRPBF |
| LTC1922IG-1#TRPBF | Analog Devices Inc | Check for Price | Switching Controller, Voltage-mode, 1000kHz Switching Freq-Max, CMOS, PDSO20 | LTC1922EG-1#PBF vs LTC1922IG-1#TRPBF |
LTC1922EG-1#PBF Frequently Asked Questions (FAQ)
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A good PCB layout for the LTC1922EG-1#PBF involves keeping the analog and digital grounds separate, using a solid ground plane, and placing the device close to the power supply. Additionally, it's recommended to use a low-ESR capacitor for the VCC pin and to keep the input and output traces short and away from noise sources.
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The LTC1922EG-1#PBF requires a single 3.3V or 5V power supply. It's recommended to power the device with a low-noise, low-dropout regulator. Power sequencing is not critical, but it's recommended to power the device after the input signals are stable to prevent unwanted output states.
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The LTC1922EG-1#PBF can handle clock frequencies up to 100MHz. However, the maximum clock frequency may be limited by the specific application and the quality of the clock signal.
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The LTC1922EG-1#PBF can be programmed using a 3-wire serial interface (SPI) or a 2-wire serial interface (I2C). The device can be programmed using a microcontroller or a dedicated programming device.
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The typical power consumption of the LTC1922EG-1#PBF is around 10mA. Power consumption can be reduced by using a lower clock frequency, reducing the output load, and using the device's power-down mode when not in use.