Référence fabricant
LMV393DR2G
LMV Series 5 V 1 nA SMT Dual General Purpose Low Voltage Comparator - SOIC-8
onsemi LMV393DR2G - Spécifications du produit
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onsemi LMV393DR2G - Caractéristiques techniques
Type: | Voltage |
No of Channels: | 2 |
Average Bias Current-Max: | 1nA |
Supply Voltage: | 2.7V to 5V |
Thermal Resistance: | 212°C/W |
Style d'emballage : | SOIC-8 |
Méthode de montage : | Surface Mount |
Fonctionnalités et applications
The LMV393 is a CMOS single channel, general purpose, low voltage comparator. The LMV393 and LMV339 are dual and quad channel versions, respectively. The LMV331/393/339 are specified for 2.7 V to 5 V performance, have excellent input common−mode range, low quiescent current, and are available in several space saving packages. The LMV331 is available in a 5−pin SC−70, a TSOP−5, and a ULLGA8 package. The LMV393 is available in a 8−pin Micro8, SOIC−8, and a UDFN8 package, and the LMV339 is available in a SOIC−14 and a TSSOP−14 package. The LMV331/393/339 are cost effective solutions for applications where space saving, low voltage operation, and low power are the primary specifications in circuit design for portable applications.
Key Features:
- Guaranteed 2.7 V and 5 V Performance.
- Input Common−mode Voltage Range Extends to Ground.
- Open Drain Output for Wired−OR Applications.
- Low Quiescent Current: 60 A/channel TYP @ 5 V.
- Low Saturation Voltage 200 mV TYP @ 5 V.
- Propagation Delay 200 ns TYP @ 5 V.
- These are Pb−Free Devices.
Benefits:
- Performance for low voltage applications.
- Rail-to-rail input performance.
- Digital logic interface capability.
- Low voltage, portable applications.
- Ensures low output voltage for signal detection.
- Fast response for signal detection.
- RoHS compliance.
Applications:
- Battery Monitors.
- Notebooks and PDA’s.
- General Purpose Portable Devices.
- General Purpose Low Voltage Applications.
To learn more about the LMV393 product family, Click Here.
Emballages disponibles
Qté d'emballage(s) :
2500 par Reel
Style d'emballage :
SOIC-8
Méthode de montage :
Surface Mount