No. |
Part Name |
Description |
Manufacturer |
121 |
LTC1928ES6-5#TRMPBF |
Doubler Charge Pump with Low Noise Linear Regulator in SOT-23 |
Linear Technology |
122 |
LTC1928ES6-5#TRPBF |
Doubler Charge Pump with Low Noise Linear Regulator in SOT-23 |
Linear Technology |
123 |
LTC5508ESC6 |
300MHz to 7GHz RF Power Detector with Buffered Output in SC70 Package |
Linear Technology |
124 |
LTC5508ESC6#PBF |
300MHz to 7GHz RF Power Detector with Buffered Output in SC70 Package |
Linear Technology |
125 |
LTC5508ESC6#TR |
300MHz to 7GHz RF Power Detector with Buffered Output in SC70 Package |
Linear Technology |
126 |
LTC5508ESC6#TRM |
300MHz to 7GHz RF Power Detector with Buffered Output in SC70 Package |
Linear Technology |
127 |
LTC5508ESC6#TRMPBF |
300MHz to 7GHz RF Power Detector with Buffered Output in SC70 Package |
Linear Technology |
128 |
LTC5508ESC6#TRPBF |
300MHz to 7GHz RF Power Detector with Buffered Output in SC70 Package |
Linear Technology |
129 |
LTC5508ESC6-DUP |
300MHz to 7GHz RF Power Detector with Buffered Output in SC70 Package |
Linear Technology |
130 |
M38258ES-FS |
RAM size: 1536 bytes; single-chip 8-bit CMOS microcomputer |
Mitsubishi Electric Corporation |
131 |
MAX13448ESD+ |
±80V Fault-Protected, Full-Duplex RS-485 Transceiver |
MAXIM - Dallas Semiconductor |
132 |
MAX1648ESE |
Chemistry-Independent Battery Chargers |
MAXIM - Dallas Semiconductor |
133 |
MAX1648ESE+ |
Chemistry-Independent Battery Chargers |
MAXIM - Dallas Semiconductor |
134 |
MAX1648ESE+T |
Chemistry-Independent Battery Chargers |
MAXIM - Dallas Semiconductor |
135 |
MAX1648ESE/G0F |
Chemistry-Independent Battery Chargers |
MAXIM - Dallas Semiconductor |
136 |
MAX1658ESA |
350mA / 16.5V Input / Low-Dropout Linear Regulators |
MAXIM - Dallas Semiconductor |
137 |
MAX1658ESA+ |
350mA, 16.5V Input, Low-Dropout Linear Regulators |
MAXIM - Dallas Semiconductor |
138 |
MAX1658ESA+T |
350mA, 16.5V Input, Low-Dropout Linear Regulators |
MAXIM - Dallas Semiconductor |
139 |
MAX1688ESA |
Step-Up DC-DC Converters with Precise / Adaptive Current Limit for GSM |
MAXIM - Dallas Semiconductor |
140 |
MAX1688ESA+ |
Step-Up DC-DC Converters with Precise, Adaptive Current Limit for GSM |
MAXIM - Dallas Semiconductor |
141 |
MAX1688ESA+T |
Step-Up DC-DC Converters with Precise, Adaptive Current Limit for GSM |
MAXIM - Dallas Semiconductor |
142 |
MAX1708ESE |
0.3-6V; 4A; high-frequency, low-noise, step-up DC-DC converter |
MAXIM - Dallas Semiconductor |
143 |
MAX3088ESA |
Fail-Safe / High-Speed 10Mbps / Slew-Rate-Limited RS-485/RS-422 Transceivers |
MAXIM - Dallas Semiconductor |
144 |
MAX3088ESA+ |
±15kV ESD-Protected, Fail-Safe, High-Speed (10Mbps), Slew-Rate-Limited RS-485/RS-422 Transceivers |
MAXIM - Dallas Semiconductor |
145 |
MAX3088ESA+T |
±15kV ESD-Protected, Fail-Safe, High-Speed (10Mbps), Slew-Rate-Limited RS-485/RS-422 Transceivers |
MAXIM - Dallas Semiconductor |
146 |
MAX308ESE |
Precision, 8-Channel/Dual 4-Channel, High-Performance, CMOS Analog Multiplexers |
MAXIM - Dallas Semiconductor |
147 |
MAX308ESE+ |
Precision, 8-Channel/Dual 4-Channel, High-Performance, CMOS Analog Multiplexers |
MAXIM - Dallas Semiconductor |
148 |
MAX308ESE+T |
Precision, 8-Channel/Dual 4-Channel, High-Performance, CMOS Analog Multiplexers |
MAXIM - Dallas Semiconductor |
149 |
MAX308ESE-T |
Precision, 8-Channel/Dual 4-Channel, High-Performance, CMOS Analog Multiplexers |
MAXIM - Dallas Semiconductor |
150 |
MAX318ESA |
Precision, CMOS Analog Switches |
MAXIM - Dallas Semiconductor |
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