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transistor be p89

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transistor p89

Abstract: transistor be p89 SOT89 PNP SILICON PLANAR M EDIUM POWER HIGH PERFORMANCE TRANSISTOR FCX589 ISSU E 3 - OCTOBER 1995_ O_ P A R T M A R K IN G D ET A IL - P89 ABSOLUTE M A X IM U M RATINGS. PARAM ETER SYM BO L VALUE UNIT Collector-Base Voltage V CBO -50 V , A * Base-Emitter Saturation Voltage V BE(sat) -1.2 V lc=-1A, lB= -100m A * Base-Emitter Turn-on Voltage V BE(on) -1.1 V lC=-1A, V ce =-2V* Static Forward Current Transfer
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transistor p89 transistor be p89 FMMT549

transistor p89

Abstract: transistor be p89 SOT89 PNP SILICON PLANAR MEDIUM POWER HIGH PERFORMANCE TRANSISTOR 7 ISSUE 3 - OCTOBER 1995 PARTMARKING DETAIL ­ FCX589 P89 C E C B ABSOLUTE MAXIMUM RATINGS. PARAMETER SYMBOL VALUE UNIT V Collector-Base Voltage VCBO -50 Collector-Emitter Voltage V CEO -30 , =-1A, I B=-100mA* I C=-2A, I B=-200mA* Base-Emitter Saturation Voltage V BE(sat) -1.2 V I C=-1A, I B=-100mA* Base-Emitter Turn-on Voltage V BE(on) -1.1 V I C =-1A, V CE
Zetex Semiconductors
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PNP SILICON PLANAR MEDIUM POWER HIGH CURRENT DSA003667 100MH

transistor p89

Abstract: SOT89 PNP SILICON PLANAR MEDIUM POWER HIGH PERFORMANCE TRANSISTOR 7 ISSUE 3 - OCTOBER 1995 PARTMARKING DETAIL â'" FCX589 P89 C E C B ABSOLUTE MAXIMUM RATINGS. PARAMETER SYMBOL VALUE UNIT V Collector-Base Voltage VCBO -50 Collector-Emitter Voltage V CEO -30 , V I C=-1A, I B=-100mA* I C=-2A, I B=-200mA* Base-Emitter Saturation Voltage V BE(sat) -1.2 V I C=-1A, I B=-100mA* Base-Emitter Turn-on Voltage V BE(on) -1.1 V I C =-1A
Diodes
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Abstract: SOT89 PNP SILICON PLANAR M EDIUM POWER HIGH PERFORM ANCE TRANSISTOR % ISSUE 3 - OCTOBER 1995 PARTMARKING DETAIL â'" FCX589 P89 C E C B ABSOLUTE M AXIM UM RATINGS. PA RA M ETER SYM BOL VALUE UNIT V Collect or -Base Vo lt age VCBO -50 Collector -Em itter Voltage , age V BE(sat ) -1.2 V I C=-1A , I B=-100m A * Base-Em it t er Tur n-on Vo lt ag e V BE(o n ) -1.1 V I C=-1A, V CE=-2V* Stat ic For w ard Cur r en t Tr an sf er Rat io h -
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transistor p89

Abstract: transistor be p89 SOT89 PNP SILICON PLANAR M EDIU M POWER HIGH PERFORMANCE TRANSISTOR ISSU E 3 - OCTOBER 1995 PARTMARKING DETAIL P89 O ABSOLUTE M A X IM U M RATINGS. PARAM ETER C o lle cto r-B a se V o lta ge C olle ctor-E m itter V o lta ge E m itte r-B ase V o lta ge Peak P u lse Current C o n t in u o u s C ollector C urrent B a se C urrent P o w e r D iss ip a tio n at T amb= 2 5 t'C O p e ra tin g and S to ra g , M H z (CB=- 10V, f= 1 M H z 'B E i s a l i 1.2 BE(on) 1.1 h FE 100 100 80 40
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transistor p98

Abstract: P99 transistor transistor drawn current. We will use the CGH40025F transistor in a 2 to 6 GHz broadband amplifier and demonstrate how the transistor operating temperature can be minimized during the simulation phase of the , APPLICATION NOTE Thermal Optimization of GaN HEMT Transistor Power Amplifiers Using New , . Even though GaN/AlGaN on SiC substrates have high thermal conductivity it is necessary to be aware of , (Trise) of the HEMT channel above Tcase. Trise can be used as a function of other parameters such as
Cree
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transistor p98 P99 transistor 100 p38 transistor transistor nc p79 p88 transistor Gan hemt transistor APPNOTE-006

transistor bl p68

Abstract: J955 serial or byte-parallel PROM (master modes), or the configuration data can be written into the FPGA from , readback of the configuration bit stream. Because Xilinx FPGAs can be reprogrammed an unlimited number of times, they can be used in innovative designs where hardware is changed dynamically, or where hardware must be adapted to different user applications. FPGAs are ideal for shortening design and , per month. For lowest high-volume unit cost, a design can first be implemented in the XC4000E or
Xilinx
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transistor bl p68 J955 w29 transistor g41 p28 schematic diagram bl p88 XC4010XL PQ160 XC4000X XC4000EX XC4000XL XC4000XLA XC4000XV DS006

XC6SLX16-CSG324

Abstract: ch7301 DVI VHDL 0 XPS Thin Film Transistor (TFT) Controller (v2.00a) DS695 September 16, 2009 Product Specification 0 0 Introduction LogiCORETM Facts The XPS Thin Film Transistor (TFT) controller is a , Film Transistor (TFT) Controller (v2.00a) Functional Description The XPS TFT controller is a , , the controller can be configured using PLB slave interface, else it can be configured through DCR , www.xilinx.com DS695 September 16, 2009 Product Specification XPS Thin Film Transistor (TFT) Controller
Xilinx
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XC6SLX16-CSG324 ch7301 DVI VHDL DVI VHDL xilinx ch7301 CHRONTEL 7301 Xilinx TFT controller CH-7301

transistor bl p89

Abstract: J955 configuration data can be written into the FPGA from an external device (slave and peripheral modes). XC4000 , FPGAs can be reprogrammed an unlimited number of times, they can be used in innovative designs 6-8 where hardware is changed dynamically, or where hardware must be adapted to different user applications , can first be implemented in the XC4000E or XC4000X, then migrated to one of Xilinx' compatible HardWire mask-programmed devices. Taking Advantage of Reconfiguration FPGA devices can be reconfigured
Xilinx
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XC4000XLT XC4000A XC4000D XC4000H transistor bl p89 bl p74 transistor transistor bl p87 XC4020 XC4013XL HT144 XC4010EPC84 XC4000L PQ160

p301 stag

Abstract: TRANSISTOR R 40 AH-16 (master modes), or the configuration data can be written into the FPGA from an external device (slave and , stream. Because Xilinx FPGAs can be reprogrammed an unlimited number of times, they can be used in innovative designs where hardware is changed dynamically, or where hard ware must be adapted to different , cost, a design can first be implemented in the XC4000E or XC4000X, then migrated to one of Xilinx' compatible H ardw ire mask-programmed devices. Taking Advantage of Reconfiguration FPGA devices can be
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p301 stag TRANSISTOR R 40 AH-16 Stag P301 DE C 748 transistor cs 9013 XC401OE

transistor bl p89

Abstract: bl p78 transistor configuration data from an external serial PROM (Master Serial mode), or the configuration data can be written into the FPGA from an external device (Slave Serial mode). Spartan FPGAs can be used where hardware must be adapted to different user applications. FPGAs are ideal for shortening design and , which will be covered in the "Advanced Features Description" on page 4-183. Function Generators Two , parity checking. The three LUTs in the CLB can also be combined to do any arbitrarily defined Boolean
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bl p78 transistor TRANSISTOR BH p75 transistor bl p81 transistor bl p99 BL P89 LK126 VQ100 TQ144 PQ208 PQ240 BG256 XCS05

XAPP031

Abstract: serial or byteparallel PROM (master modes), or the configuration data can be written into the FPGA from , , and readback of the configuration bit stream. Because Xilinx FPGAs can be reprogrammed an unlimited number of times, they can be used in innovative designs where hardware is changed dynamically, or where hard­ ware must be adapted to different user applications. 4-6 FPGAs are ideal for shortening , beyond 5,000 systems per month. For lowest high-volume unit cost, a design can first be implemented in
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XAPP031 XC4013E XC4020E XC4025E HQ304 XC4005E PG299

P153 transistor

Abstract: sales office. Information furnished by HAMAMATSU is believed to be reliable. However, no responsibility , P43 P41 P44 P42 P59 P57 P60 P58 P75 P73 P76 P74 P91 P89 P92 P90 P107 P105 P108 P106 P123 , SETS OF SOCKET AND CABLE ASSEMBLY WILL BE ATTACHED. (SOCKET: QSE-040-01-F-D-A, SAMTEC / CABLE ASSEMBLY , R9 TRANSISTOR CIRCUIT R21 HAMAMATSU PHOTONICS K.K. ANODE OUTPUT (P16) . ANODE
Hamamatsu
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P153 transistor H9500 H9500-03 D-82211 SE-164 TPMH1309E02 B1201

bl p76

Abstract: IC 7448 (master modes), or the configuration data can be written into the FPGA from an external device (slave , configuration bit stream. Because Xilinx FPGAs can be reprogrammed an unlimited number of times, they can be used in innovative designs where hardware is changed dynamically, or where hardware must be adapted to , lowest high-volume unit cost, a design can first be implemented in the XC4000E or XC4000X, then , Reconfiguration FPGA devices can be reconfigured to change logic function while resident in the system. This
Xilinx
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bl p76 IC 7448 XC4013XL PIN BG256 C1535 connecting diagram for ic 7448 f34 function generator

GE rcrt 6-60

Abstract: ot 409 w31 data from an external serial or byte-parallel PROM (master modes), or the configuration data can be , creation, downloading, and readback of the configuration bit stream. Because Xilinx FPGAs can be reprogrammed an unlimited number of times, they can be used in innovative designs where hardware is changed dynamically, or where hard ware must be adapted to different user applications. FPGAs are ideal for shortening , 5,000 systems per month. For lowest high-volume unit cost, a design can first be implemented in the
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GE rcrt 6-60 ot 409 w31 decoder 7448 input 4 7448 with internal pullup an12 pic 632 463 phd c15n3 XC4003E XC4006E XC4008E XC4010E XC4028EX XC4036EX

XCS40-4PQ208C

Abstract: XCS20 PQ208 voltage one transistor threshold below Vcc. Alternatively, the outputs can be globally configured as , Spartan FPGAs can be used where hardware must be adapted to different user applications. FPGAs are ideal , ), or the configuration data can be written into the FPGA from an external device (Slave Serial mode). , . There are also some more advanced features provided by the CLB which will be covered in the "Advanced , be combined to do any arbitrarily defined Boolean function of five inputs. Configurable Logic
Xilinx
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XCS05-3PC84C XCS05-4PC84C XCS10-3PC84C XCS10-4PC84C XCS20-3PQ208C XCS20-4PQ208C XCS40-4PQ208C XCS20 PQ208 XCS204PQ208C xcs20 series

P181 Japan

Abstract: qse-040-01-f-d-a HAMAMATSU is believed to be reliable. However, no responsibility is assumed for possible inaccuracies or , P43 P41 P44 P42 P59 P57 P60 P58 P75 P73 P76 P74 P91 P89 P92 P90 P107 P105 P108 P106 P123 , OF SOCKET AND CABLE ASSEMBLY WILL BE ATTACHED. (SOCKET: QSE-040-01-F-D-A, SAMTEC / CABLE ASSEMBLY , C2 C3 R19 R9 TRANSISTOR CIRCUIT R21 ANODE OUTPUT (P16) . ANODE OUTPUT (P15
Hamamatsu Photonics
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P181 Japan p181 gr AB p89 transistor p88 transistor P239 P177 transistor TPMHA0504EB SE-171-41 TPMH1287E04

xc4000 application note

Abstract: P8202 transistor, pulling to a voltage one transistor threshold below V CC. Alternatively, the outputs can be , IOB IOB BSCAN IOB Spartan series FPGAs can be used where hardware must be adapted to , PROM (Master Serial mode), or the configuration data can be written into the FPGA from an external , the CLB which will be covered in the "Advanced Features Description" on page 12. The Spartan , CLB can also be combined to do any arbitrarily defined Boolean function of five inputs. The
Xilinx
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XCS10 XCS20 XCS30 XCS40 XCS05XL XCS10XL xc4000 application note P8202 DS060 CS280

XCS10 vq100

Abstract: XCS20 pin diagram transistor, pulling to a voltage one transistor threshold below VCC. Alternatively, the outputs can be , unlimited number of times. The values stored in these Spartan series FPGAs can be used where hardware must be adapted to different user applications. FPGAs are ideal for shortening design and development , ), or the configuration data can be written into the FPGA from an external device (Slave Serial mode). , multiplexers. There are also some more advanced features provided by the CLB which will be covered in the
Xilinx
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XCS30XL CS144 XCS10 vq100 XCS20 pin diagram XCS40XL 2CS2802 XCS20XL PDN2004-01

SPARTAN 6 readback

Abstract: CS144 transistor, pulling to a voltage one transistor threshold below V CC. Alternatively, the outputs can be , IOB IOB BSCAN IOB Spartan series FPGAs can be used where hardware must be adapted to , PROM (Master Serial mode), or the configuration data can be written into the FPGA from an external , the CLB which will be covered in the "Advanced Features Description" on page 12. The Spartan , CLB can also be combined to do any arbitrarily defined Boolean function of five inputs. The
Xilinx
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SPARTAN 6 readback toko rcl 409 RAM16X1D xcs30xlvq100 grid tie inverter schematic diagram equivalent transistor s2000 XCS20XL-4 PQ208C
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