ic pbl 3775
Abstract: datasheet ic pbl 3775 pbl 3775 ic pbl 3775 8 pin 3775 MB113 PBL3775-1
Text: February 1999 PBL 3775/1 Dual Stepper Motor Driver Description Key Features The PBL 3775/1 is a switch-mode chopper , constant-current driver IC with two channels, one for each winding of a two-phase stepper motor. The circuit is similar to Ericsson´s PBL 3773/1. While several of Ericsson´s dual stepper motor drivers are
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3775/1NS
3775/1QNS
3775/1QNT
3775/1SOS
3775/1SOT
ic pbl 3775
datasheet ic pbl 3775
pbl 3775
ic pbl 3775 8 pin
3775
MB113
PBL3775-1
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T2D DIODE 94
Abstract: T2D DIODE LTC3850-2 2R5TPD470M5 3775 16 pin ltc3608 power adapter 12v/5a pin RJK0305DPB-00-J0 transistor g23 mosfet LTC3775
Text: LTC3775 High Frequency Synchronous Step-Down Voltage Mode DC/DC Controller DESCRIPTION FEATURES n n n n n n n n n n n n n n Wide VIN Range: 4.5V to 38V Line Feedforward Compensation Low Minimum On-Time: tON MIN < 30ns Powerful Onboard MOSFET Drivers Leading Edge Modulation Voltage Mode Control
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LTC3775
250kHz
LTC3868/
LTC3868-1
50kHz
900kHz,
100kHz
500kHz,
TSSOP-16
3775f
T2D DIODE 94
T2D DIODE
LTC3850-2
2R5TPD470M5
3775 16 pin
ltc3608
power adapter 12v/5a pin
RJK0305DPB-00-J0
transistor g23 mosfet
LTC3775
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RJK0301
Abstract: T2D DIODE 94 LTC3775 LTC3850-2 BSC016NO4LSG power adapter 12v/5a pin LTC3775E LTC3775EMSE LTC3775EUD LTC3775I
Text: LTC3775 High Frequency Synchronous Step-Down Voltage Mode DC/DC Controller DESCRIPTION FEATURES n n n n n n n n n n n n n n Wide VIN Range: 4.5V to 38V Line Feedforward Compensation Low Minimum On-Time: tON MIN < 30ns Powerful Onboard MOSFET Drivers Leading Edge Modulation Voltage Mode Control
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LTC3775
250kHz
16-Lead
780kHz,
LTC3860
LTC3853
750kHz,
3775fa
RJK0301
T2D DIODE 94
LTC3775
LTC3850-2
BSC016NO4LSG
power adapter 12v/5a pin
LTC3775E
LTC3775EMSE
LTC3775EUD
LTC3775I
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Untitled
Abstract: No abstract text available
Text: LTC3775 High Frequency Synchronous Step-Down Voltage Mode DC/DC Controller DESCRIPTION FEATURES n n n n n n n n n n n n n n Wide VIN Range: 4.5V to 38V Line Feedforward Compensation Low Minimum On-Time: tON MIN < 30ns Powerful Onboard MOSFET Drivers Leading Edge Modulation Voltage Mode Control
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LTC3775
250kHz
16-Lead
780kHz,
LTC3860
LTC3853
750kHz,
3775fa
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KEP33
Abstract: EP33 HEP33 HP33 MC100 MC100EP33 MC10EP33 KP33
Text: MC10EP33, MC100EP33 3.3V / 5VĄECL B4 Divider The MC10/100EP33 is an integrated B4 divider. The differential clock inputs. The VBB pin, an internally generated voltage supply, is available to this device only. For single-ended input conditions, the unused
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MC10EP33,
MC100EP33
MC10/100EP33
r14525
MC10EP33/D
KEP33
EP33
HEP33
HP33
MC100
MC100EP33
MC10EP33
KP33
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Untitled
Abstract: No abstract text available
Text: NB100LVEP56 2.5V / 3.3V / 5V ECL Dual Differential 2:1 Multiplexer The NB100LVEP56 is a dual, fully differential 2:1 multiplexer. The differential data path makes the device ideal for multiplexing low skew clock or differential data signals. The device features both
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NB100LVEP56
NB100LVEP56/D
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KEP32
Abstract: HEP32 HP32 MC100 MC100EP32 MC10EP32 100EP32 power transistor 3055
Text: MC10EP32, MC100EP32 3.3V / 5VĄECL B2 Divider The MC10/100EP32 is an integrated B2 divider with differential CLK inputs. The VBB pin, an internally generated voltage supply, is available to this device only. For single–ended input conditions, the unused
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MC10EP32,
MC100EP32
MC10/100EP32
r14525
MC10EP32/D
KEP32
HEP32
HP32
MC100
MC100EP32
MC10EP32
100EP32
power transistor 3055
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KEP32
Abstract: MC100EP32 MC10EP32 HEP32 HP32 MC100
Text: MC10EP32, MC100EP32 3.3V / 5VĄECL B2 Divider The MC10/100EP32 is an integrated B2 divider with differential CLK inputs. The VBB pin, an internally generated voltage supply, is available to this device only. For single–ended input conditions, the unused
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MC10EP32,
MC100EP32
MC10/100EP32
r14525
MC10EP32/D
KEP32
MC100EP32
MC10EP32
HEP32
HP32
MC100
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Untitled
Abstract: No abstract text available
Text: MC100EP40 3.3V / 5V ECL Differential Phase−Frequency Detector The MC100EP40 is a three−state phase−frequency detector intended for phase−locked loop applications which require a minimum amount of phase and frequency difference at lock. Advanced design
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MC100EP40
AND8020
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Untitled
Abstract: No abstract text available
Text: NB100LVEP56 2.5V / 3.3V / 5V ECL Dual Differential 2:1 Multiplexer The NB100LVEP56 is a dual, fully differential 2:1 multiplexer. The differential data path makes the device ideal for multiplexing low skew clock or differential data signals. The device features both
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NB100LVEP56
NB100LVEP56
r14525
NB100LVEP56/D
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N100
Abstract: NB100LVEP56 NB100LVEP56DT NB100LVEP56DTR2 NB100LVEP56MN TSSOP-20 LVEP
Text: NB100LVEP56 2.5V / 3.3V / 5V ECL Dual Differential 2:1 Multiplexer The NB100LVEP56 is a dual, fully differential 2:1 multiplexer. The differential data path makes the device ideal for multiplexing low skew clock or differential data signals. The device features both
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NB100LVEP56
NB100LVEP56
r14525
NB100LVEP56/D
N100
NB100LVEP56DT
NB100LVEP56DTR2
NB100LVEP56MN
TSSOP-20
LVEP
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Untitled
Abstract: No abstract text available
Text: MC10EP32, MC100EP32 3.3V / 5VĄECL B2 Divider The MC10/100EP32 is an integrated B2 divider with differential CLK inputs. The VBB pin, an internally generated voltage supply, is available to this device only. For single–ended input conditions, the unused
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MC10EP32,
MC100EP32
MC10/100EP32
r14525
MC10EP32/D
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KP33
Abstract: 100EP33
Text: MC10EP33, MC100EP33 3.3V / 5VĄECL B4 Divider The MC10/100EP33 is an integrated B4 divider. The differential clock inputs. The VBB pin, an internally generated voltage supply, is available to this device only. For single-ended input conditions, the unused
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MC10EP33,
MC100EP33
MC10/100EP33
r14525
MC10EP33/D
KP33
100EP33
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EP33
Abstract: HEP33 HP33 KEP33 MC100 MC100EP33 MC10EP33
Text: MC10EP33, MC100EP33 3.3V / 5VĄECL B4 Divider The MC10/100EP33 is an integrated B4 divider. The differential clock inputs. The VBB pin, an internally generated voltage supply, is available to this device only. For single-ended input conditions, the unused
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MC10EP33,
MC100EP33
MC10/100EP33
r14525
MC10EP33/D
EP33
HEP33
HP33
KEP33
MC100
MC100EP33
MC10EP33
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transistor Amp 3055
Abstract: Marking D1B N100 NB100LVEP56
Text: NB100LVEP56 2.5V / 3.3V / 5V ECL Dual Differential 2:1 Multiplexer The NB100LVEP56 is a dual, fully differential 2:1 multiplexer. The differential data path makes the device ideal for multiplexing low skew clock or differential data signals. The device features both
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NB100LVEP56
NB100LVEP56
NB100LVEP56/D
transistor Amp 3055
Marking D1B
N100
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Untitled
Abstract: No abstract text available
Text: 3.3V/5V PECL/ECL 3GHz DIFFERENTIAL 4:1 MULTIPLEXER FEATURES SY100EP57V DESCRIPTION • Fully differential 4:1 PECL/ECL multiplexer ■ Guaranteed AC-parameters over temp/voltage: • > 3GHz Fmax toggle • < 220ps rise/fall Time • < 520ps propagation delay (D-to-Q)
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220ps
520ps
20-pin
SY100EP57V
SY100EP57V
MC10/100EP57DT.
150mVpk-pk.
K4-20-1)
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Untitled
Abstract: No abstract text available
Text: NB100LVEP56 2.5V / 3.3V / 5V ECL Dual Differential 2:1 Multiplexer The NB100LVEP56 is a dual, fully differential 2:1 multiplexer. The differential data path makes the device ideal for multiplexing low skew clock or differential data signals. The device features both
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NB100LVEP56
NB100LVEP56/D
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Untitled
Abstract: No abstract text available
Text: MC100EP40 3.3V / 5VĄECL Differential Phase-Frequency Detector The MC100EP40 is a three–state phase–frequency detector intended for phase–locked loop applications which require a minimum amount of phase and frequency difference at lock. Advanced design
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MC100EP40
r14525
MC100EP40/D
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3775 16 pin
Abstract: J 3305 AND8020 AND8040 MC100EP40 MC100EP40DT MC100EP40DTR2
Text: MC100EP40 3.3V / 5VĄECL Differential Phase-Frequency Detector The MC100EP40 is a three–state phase–frequency detector intended for phase–locked loop applications which require a minimum amount of phase and frequency difference at lock. Advanced design
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MC100EP40
MC100EP40
r14525
MC100EP40/D
3775 16 pin
J 3305
AND8020
AND8040
MC100EP40DT
MC100EP40DTR2
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KEP32
Abstract: HEP32 HP32 MC100 MC100EP32 MC10EP32
Text: MC10EP32, MC100EP32 3.3V / 5V ECL B2 Divider The MC10/100EP32 is an integrated B2 divider with differential CLK inputs. The VBB pin, an internally generated voltage supply, is available to this device only. For single−ended input conditions, the unused differential input is connected to VBB as a switching reference voltage.
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MC10EP32,
MC100EP32
MC10/100EP32
MC10EP32/D
KEP32
HEP32
HP32
MC100
MC100EP32
MC10EP32
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KP33
Abstract: No abstract text available
Text: MC10EP33, MC100EP33 3.3V / 5V ECL B4 Divider Description The MC10/100EP33 is an integrated B4 divider. The differential clock inputs. The VBB pin, an internally generated voltage supply, is available to this device only. For single-ended input conditions, the unused
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MC10EP33,
MC100EP33
MC10/100EP33
MC10EP33/D
KP33
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ic pbl 3775
Abstract: 3775
Text: ERICSSON ^ A p ril 1 9 9 8 PBL 3775/1 Dual Stepper Motor Driver Description Key Features The PBL 3775/1 is a switch-mode chopper , constant-current driver IC with two channels, one for each winding of a two-phase stepper motor. The circuit is similar to Ericsson's PBL 3773/1. W hile several of Ericsson's dual stepper motor drivers are
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3775/1N
1522-PBL
S-164
ic pbl 3775
3775
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ericsson rnv connector
Abstract: ericsson rnv ericsson rnv 304 connector pbl 3775 hall 44E Shure p MB210 ericsson rnv 304 ericsson pbl3775 hall IC 44E
Text: ERICSSON COMPONENTS AB MME D • 337331M GD02G01 “H i ■ ERIC ERICSSON ^ May 1991 PBL 3775 Dual Stepper Motor Driver Preliminary Data Description Key Features The PBL 3775 is a switch-mode (chopper), constant-current driver IC with two chan nels, one for each winding of a two-phase stepper motor. The circuit is similar to
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337331M
GD02G01
28-lead
ericsson rnv connector
ericsson rnv
ericsson rnv 304 connector
pbl 3775
hall 44E
Shure p
MB210
ericsson rnv 304
ericsson pbl3775
hall IC 44E
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IC LM 364 pn
Abstract: LM 364 PN 3775
Text: ERICSSON COMPONENTS AB MME D • 337331M GD02G01 “H i ■ ERIC ERICSSON ^ May 1991 PBL 3775 Dual Stepper Motor Driver Preliminary Data Description Key Features The PBL 3775 is a sw itch-m ode (chopper), constant-current driver IC with tw o chan nels, one for each w inding of a tw o-phase stepper motor. The circuit is sim ilar to
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337331M
GD02G01
S-164
IC LM 364 pn
LM 364 PN
3775
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