No. |
Part Name |
Description |
Manufacturer |
91 |
TC1068 |
The TC1068 is a serially programmable temperature sensor optimized for monitoring modern high performance CPUs with on-board integrated thermal diodes. Temperature data is converted from the CPU’s thermal diode outputs and made avail |
Microchip |
92 |
TC1072 |
The TC1072 and TC1073 are high accuracy (typically ±0.5%) CMOS upgrade for older (bipolar) low dropout regulators. Designed specifically for battery-operated systems, the devices’ CMOS construction eliminates wasted ground curre |
Microchip |
93 |
TC1073 |
The TC1072 and TC1073 are high accuracy (typically ±0.5%) CMOS upgrade for older (bipolar) low dropout regulators. Designed specifically for battery-operated systems, the devices’ CMOS construction eliminates wasted ground curre |
Microchip |
94 |
TC1185 |
The TC1014, TC1015, and TC1185 are high accuracy (typically ±0.5%) CMOS upgrades for older (bipolar) low dropout regulators such as the LP2980. Designed specifically for battery-operated systems, the devices’ CMOS construction e |
Microchip |
95 |
TC1186 |
The TC1054, TC1055, and TC1186 are high accuracy (typically ±0.5%) CMOS upgrades for older (bipolar) low dropout regulators. Designed specifically for battery-operated systems, the devices’ CMOS construction eliminates wasted gr |
Microchip |
96 |
TC1262 |
The TC1262 is a fixed output, high accuracy (typically ±0.5%) CMOS low dropout regulator. Designed specifically for battery-operated systems, the TC1262’s CMOS construction eliminates wasted ground current, significantly extendi |
Microchip |
97 |
TC1263 |
The TC1263 is a fixed output, high accuracy (typically ±0.5%) CMOS low dropout regulator. Designed specifically for battery-operated systems, the TC1263’s CMOS construction eliminates wasted ground current, significantly extendi |
Microchip |
98 |
TC1264 |
The TC1264 is a fixed output, high accuracy (typically ±0.5%) CMOS low dropout regulator. Designed specifically for battery-operated systems, the TC1264’s CMOS construction eliminates wasted ground current, significantly extendi |
Microchip |
99 |
TC1265 |
The TC1265 is a fixed output, high accuracy (typically ±0.5%) CMOS low dropout regulator. Designed specifically for battery-operated systems, the TC1265’s CMOS construction eliminates wasted ground current, significantly extendi |
Microchip |
100 |
TC1268 |
The TC1268 is a fixed output, fast turn-on, high accuracy (typically ±0.5%) CMOS low dropout regulator. Designed specifically for battery-operated systems, the TC1268’s CMOS construction eliminates wasted ground current, signifi |
Microchip |
101 |
TC1305 |
The TC1305 combines two CMOS Low Dropout Regulators and a Microprocessor Monitor in a space-saving 10-Pin MSOP package. Designed specifically for battery-operated systems, the device’s CMOS construction eliminates wasted ground curre |
Microchip |
102 |
TC1306 |
The TC1306 combines two CMOS Low Dropout Regulators and a Microprocessor Monitor in a space-saving 8-Pin MSOP package. Designed specifically for battery-operated systems, the device’s CMOS construction eliminates wasted ground curren |
Microchip |
103 |
TC2054 |
The TC2054, TC2055, and TC2186 are high accuracy (typically ±0.4%) CMOS upgrades for older (bipolar) low dropout regulators. Designed specifically for battery-operated systems, the devices’ total supply current is typically 55�A |
Microchip |
104 |
TC2055 |
The TC2054, TC2055, and TC2186 are high accuracy (typically ±0.4%) CMOS upgrades for older (bipolar) low dropout regulators. Designed specifically for battery-operated systems, the devices’ total supply current is typically 55�A |
Microchip |
105 |
TC2117 |
The TC2117 is a fixed, high accuracy (typically ±0.5%) CMOS low dropout regulator. Designed specifically for battery-operated systems, the TC2117’s CMOS construction eliminates wasted ground current, significantly extending batt |
Microchip |
106 |
TC2186 |
The TC2054, TC2055, and TC2186 are high accuracy (typically ±0.4%) CMOS upgrades for older (bipolar) low dropout regulators. Designed specifically for battery-operated systems, the devices’ total supply current is typically 55�A |
Microchip |
107 |
TC3400 |
The TC3400 is a low cost, low power analog-to-digital converter based on Microchip’s Sigma-Delta technology. It will perform 16-bit conversions (15-bit plus sign) at up to eight per second. The TC3400 is optimized for use as a microc |
Microchip |
108 |
TC3401 |
The TC3401 is a low cost, low power analog-to-digital converter based on Microchip’s Sigma-Delta technology. It will perform 16-bit conversions (15-bit plus sign) at up to eight per second. The TC3401 is optimized for use as a microc |
Microchip |
109 |
TC3402 |
The TC3402 is a low cost, low power analog-to-digital converter based on Microchip’s Sigma-Delta technology. It will perform 16-bit conversions (15-bit plus sign) at up to eight per second. The TC3402 is optimized for use as a microc |
Microchip |
110 |
TC3403 |
The TC3403 is a low cost, low power analog-to-digital converter based on Microchip’s Sigma-Delta technology. It will perform 16-bit conversions (15-bit plus sign) at up to eight per second. The TC3403 is optimized for use as a microc |
Microchip |
111 |
TC3404 |
The TC3404 is a low cost, low power analog-to-digital converter based on Microchip’s Sigma-Delta technology. It will perform 16-bit conversions (15-bit plus sign) at up to eight per second. The TC3404 is optimized for use as a microc |
Microchip |
112 |
TC3405 |
The TC3405 is a low cost, low power analog-to-digital converter based on Microchip’s Sigma-Delta technology. It performs 16-bit conversions (15-bit plus sign) at up to eight per second.Thedeviceis optimizedforuseas microcontroller pe |
Microchip |
113 |
TC962 |
The TC962 is an advanced version of the industry-standard 7662 high-voltage DC-to-DC converter. Using improved design techniques and CMOS construction, the TC962 can source as much as 80mA versus the 7662 ’s 20mA capability. As an in |
Microchip |
114 |
TDA8217 |
PAL decoder and video processor |
SGS Thomson Microelectronics |
115 |
TDA8217 |
PAL DECODER AND VIDEO PROCESSOR |
ST Microelectronics |
116 |
UPD78217ACW |
8-BIT SINGLE-CHIP MICROCONTROLLER |
NEC |
117 |
UPD78217AGC-AB8 |
8-BIT SINGLE-CHIP MICROCONTROLLER |
NEC |
118 |
UZ8217 |
POWER ZENERS |
Microsemi |
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